研究者詳細

顔写真

タナカ ヒロキ
田中 浩揮
Hiroki Tanaka
所属
大学院薬学研究科 生命薬科学専攻 生命解析学講座(薬物送達学分野)
職名
准教授
学位
  • 薬科学博士 (北海道大学)

e-Rad 研究者番号
60801743
プロフィール

よろしくおねがいします。

論文等に記載している所属情報は下記です。

"Laboratory of DDS Design and Drug Disposition, Graduate School of Pharmaceutical Sciences, Chiba University, 1-8-1 Inohana, Chuo-ku, Chiba City, Chiba, 260-0856, Japan"

経歴 5

  • 2024年1月 ~ 継続中
    東北大学 大学院薬学研究科 准教授

  • 2023年4月 ~ 2023年12月
    東北大学 大学院薬学研究科 助教

  • 2021年1月 ~ 2023年3月
    千葉大学大学院薬学研究院 助教

  • 2017年3月 ~ 2020年1月
    千葉大学大学院薬学研究院 特任助教

  • 2014年4月 ~ 2017年3月
    北海道大学(日本学術振興会) 特別研究員(DC1)

学歴 3

  • 北海道大学大学院生命科学院 生命科学専攻博士後期課程

    2014年4月 ~ 2017年3月

  • 北海道大学大学院生命科学院 生命科学専攻修士課程

    2012年4月 ~ 2014年3月

  • 北海道大学 薬学部 薬科学科

    2008年4月 ~ 2012年3月

所属学協会 4

  • 日本RNA学会

  • 日本薬剤学会

  • 日本DDS学会

  • 日本薬学会

研究キーワード 1

  • mRNAデリバリー

研究分野 1

  • ライフサイエンス / 生体医工学 / mRNAデリバリー

受賞 1

  1. 第62回(平成30年度)油脂優秀論文表彰

    2021年2月 油脂工業会館 粒⼦内自己分解反応に基づくメッセンジャーRNA送達⽤の自己分解性脂質様物質

論文 57

  1. Delivery of Oligonucleotides Using a Self-Degradable Lipid-Like Material. 国際誌 招待有り 査読有り

    Hiroki Tanaka, Nae Takata, Yu Sakurai, Tokuyuki Yoshida, Takao Inoue, Shinya Tamagawa, Yuta Nakai, Kota Tange, Hiroki Yoshioka, Masatoshi Maeki, Manabu Tokeshi, Hidetaka Akita

    Pharmaceutics 13 (4) 2021年4月13日

    DOI: 10.3390/pharmaceutics13040544  

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    The world-first success of lipid nanoparticle (LNP)-based siRNA therapeutics (ONPATTRO®) promises to accelerate developments in siRNA therapeutics/gene therapy using LNP-type drug delivery systems (DDS). In this study, we explore the optimal composition of an LNP containing a self-degradable material (ssPalmO-Phe) for the delivery of oligonucleotides. siRNA or antisense oligonucleotides (ASO) were encapsulated in LNP with different lipid compositions. The hepatic knockdown efficiency of the target genes and liver toxicity were evaluated. The optimal compositions for the siRNA were different from those for ASO, and different from those for mRNA that were reported in a previous study. Extracellular stability, endosomal escape and cellular uptake appear to be the key processes for the successful delivery of mRNA, siRNA and ASO, respectively. Moreover, the compositions of the LNPs likely contribute to their toxicity. The lipid composition of the LNP needs to be optimized depending on the type of nucleic acids under consideration if the applications of LNPs are to be further expanded.

  2. Self‐Degradable Lipid‐Like Materials Based on “Hydrolysis accelerated by the intra‐Particle Enrichment of Reactant (HyPER)” for Messenger RNA Delivery 国際誌 査読有り

    Hiroki Tanaka, Tatsunari Takahashi, Manami Konishi, Nae Takata, Masaki Gomi, Daiki Shirane, Ryo Miyama, Shinya Hagiwara, Yuki Yamasaki, Yu Sakurai, Keisuke Ueda, Kenjirou Higashi, Kunikazu Moribe, Eiji Shinsho, Ruka Nishida, Kaori Fukuzawa, Etsuo Yonemochi, Koji Okuwaki, Yuji Mochizuki, Yuta Nakai, Kota Tange, Hiroki Yoshioka, Shinya Tamagawa, Hidetaka Akita

    Advanced Functional Materials 30 (34) 1910575-1910575 2020年8月

    出版者・発行元: Wiley

    DOI: 10.1002/adfm.201910575  

    ISSN:1616-301X

    eISSN:1616-3028

  3. Development of lipid-like materials for RNA delivery based on intracellular environment-responsive membrane destabilization and spontaneous collapse. 国際誌 招待有り 査読有り

    Hiroki Tanaka, Yu Sakurai, Jessica Anindita, Hidetaka Akita

    Advanced drug delivery reviews 154-155 210-226 2020年

    DOI: 10.1016/j.addr.2020.07.001  

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    Messenger RNA and small interfering RNA are attractive modalities for curing diseases by complementation or knock-down of proteins. For success of these RNAs, a drug delivery system (DDS) is required to control a pharmacokinetics, to enhance cellular uptake, to overcome biological membranes, and to release the cargo into the cytoplasm. Based on past research, developing nanoparticles that are neutrally charged have been the mainstream of their development. Also, the materials are further mounted with pH- and/or reducing environment-responsive units. In this review, we summarize progress made in the molecular design of these materials. We also focus on the importance of the hydrophobic scaffold for tissue/cell targeting, intracellular trafficking, and immune responses. As a practical example, the design concept of the SS-cleavable and pH-activated lipid-like material (ssPalm) and subsequent molecular modification tailored to the RNA-based medical application is discussed.

  4. Inhibition of the Inflammatory Pathway Enhances Both the in Vitro and in Vivo Transfection Activity of Exogenous in Vitro-Transcribed mRNAs Delivered by Lipid Nanoparticles. 査読有り

    Takara Ohto, Manami Konishi, Hiroki Tanaka, Koji Onomoto, Mitsutoshi Yoneyama, Yuta Nakai, Kota Tange, Hiroki Yoshioka, Hidetaka Akita

    Biological & pharmaceutical bulletin 42 (2) 299-302 2019年

    DOI: 10.1248/bpb.b18-00783  

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    While the use of in vitro-transcribed mRNA (IVT-mRNA) in therapeutics is a rapidly expanding area, the transfection of the exogenous IVT-mRNA is accompanied by a risk of immune activation. This immunological defense mechanism suppresses cellular translation process and can reduce transfection efficiency to a considerable extent. In the present study, we investigated the in vitro effects of Integrated Stress Response Inhibitor (ISRIB), and dexamethasone, a steroidal anti-inflammatory drug, on the transfection activity of a lipid nanoparticle (LNP) that was composed of ionizable lipids and IVT-mRNA. In the case of transfection to mouse embryonic fibroblast (MEF) cells, ISRIB mainly enhanced the transfection activity at an early stage of transfection (0-6 h). In contrast, dexamethasone caused an increase in transfection activity at intermediate-late stages of transfection (4-48 h). We also investigated the in vivo effects of dexamethasone using an LNP on that the IVT-mRNA and lipid-conjugated dexamethasone (Dex-Pal) were co-loaded. The intravenous administration of the LNP successfully enhanced the protein expression in a mouse liver by up to 6.6-fold. Collectively, the co-delivery of an anti-inflammatory drug is a promising approach for enhancing transfection efficiency of IVT-mRNA.

  5. Temperature and pH sensitivity of a stabilized self-nanoemulsion formed using an ionizable lipid-like material via an oil-to-surfactant transition. 国際誌 査読有り

    Hiroki Tanaka, Sho Oasa, Masataka Kinjo, Kota Tange, Yuta Nakai, Hideyoshi Harashima, Hidetaka Akita

    Colloids and surfaces. B, Biointerfaces 151 95-101 2017年3月1日

    DOI: 10.1016/j.colsurfb.2016.11.020  

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    Lipids functionalized with tertiary amines (ionizable lipids) for a pH-dependent positive charge have been developed extensively as a carrier material for delivering nucleic acids. We previously developed an SS-cleavable proton-activated lipid-like material (ssPalm) as a component of a functionalized lipid envelope structure of a nanoparticle that encapsulated plasmid DNA and short interfering RNA. In this study, we report on the unique characteristics of such an ionizable lipid: the formation of a nano-sized emulsion (ave. 40nm) via pH-triggered self-emulsification in the absence of a cargo (nucleic acids). The particle has a neutral charge at physiological pH and is stabilized by helper lipids and polyethyleneglycol (PEG)-conjugated lipids. The generalized polarization of 6-dodecanoyl-2-dimethylaminonaphthalene (Laurdan), which indicates the surface polarity caused by the invasion of water onto the surface, changes dynamically in response to pH and temperature, while the fluidity of the intra-particle compartment, as measured by the fluorescence anisotropy of 1,6-Diphenyl-1,3,5-hexatriene (DPH), is not affected. Even when the particle contains a high density of PEG on the surface, it shows a high fusogenecity to negatively charged liposomes in response to an acidic pH to a higher degree than a conventional cationic lipid. These characteristics suggest that the ssPalm particle possesses unique properties for delivering lipophilic drugs across the biomembrane.

  6. Combination of ionizable lipids with oleic acid and vitamin E scaffolds for RNA cancer vaccine delivery. 国際誌

    Jessica Anindita, Hiroki Tanaka, Ryotaro Oyama, Atsuya Matsumaru, Yuta Nakai, Kota Tange, Koji Nagaoka, Hideyuki Nakanishi, Takeshi Kawamura, Toshiya Tanaka, Takefumi Yamashita, Akihiro Kuroda, Sachiyo Nomura, Hiroto Hatakeyama, Keiji Itaka, Tatsuhiko Kodama, Kazuhiro Kakimi, Hidetaka Akita

    Journal of controlled release : official journal of the Controlled Release Society 389 114414-114414 2026年1月10日

    DOI: 10.1016/j.jconrel.2025.114414  

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    RNA vaccines based on lipid nanoparticles (LNPs) encapsulating in vitro transcribed mRNA (IVT-mRNA) are a successful but evolving vaccine modality. It has been increasingly recognized that LNPs, which are mainly composed of ionizable lipids, have two roles in the action of RNA vaccines: delivering mRNA into the cytoplasm by overcoming the endosomal membrane and stimulating the innate immune system as an adjuvant. In this study, we report the development of LNPs with enhanced capability to induce cellular immunity by using a combination of ionizable lipids: one containing an oleic scaffold with high transfection activity (ssPalmO-Phe; SS-OP) and the other containing a vitamin E scaffold with high adjuvant activity (ssPalmE; SS-EC), referred to as LNPOP/EC. The formulation's efficacy was evaluated in tumor-bearing mice, focusing on immune responses and tumor suppression. The results showed that the inclusion of vitamin E moieties in LNPOP/EC significantly enhanced cellular immune responses and suppressed tumor growth in an E.G7-OVA tumor-bearing mouse model. Additionally, it demonstrated robust activation of reactive CD8+ T cells specifically recognizing the neoantigens mCdt1, mScarb2, and mZfp106, which are expressed in YTN16 murine gastric cells. Suppression of YTN16 tumors was also observed using LNPOP/EC. The study suggests that LNPOP/EC is a viable platform for RNA-based cancer vaccines, offering a potent combination of gene expression and immune stimulation.

  7. Modulating Immunogenicity and Reactogenicity in mRNA-Lipid Nanoparticle Vaccines through Lipid Component Optimization. 国際誌

    Yoshino Kawaguchi, Mari Kimura, Tatsuya Karaki, Hiroki Tanaka, Chikako Ono, Tatsuhiro Ishida, Yoshiharu Matsuura, Toshiro Hirai, Hidetaka Akita, Taro Shimizu, Yasuo Yoshioka

    ACS nano 19 (30) 27977-28001 2025年8月5日

    DOI: 10.1021/acsnano.5c10648  

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    Messenger RNA (mRNA) vaccines effectively induce antibody production and T cell responses. However, adverse reactions, such as fatigue and fever, following administration remain a key challenge. To modulate the immunogenicity and reactogenicity of mRNA vaccines, the optimization of lipid nanoparticle (LNP) formulations has been attempted, particularly by screening ionizable lipids. In contrast, the potential impact of modifying other LNP components─poly(ethylene glycol) (PEG)-lipids, cholesterol, and phospholipids─on overall vaccine effects and adverse reactions remains underexplored. Here, we prepared mRNA-LNP formulations with altered structures and molar ratios of these components to assess their effects on in vivo protein expression, as well as on the induction of antigen-specific immune responses and adverse reactions. Reducing the PEG chain length and molar ratio of PEG-lipids increased antigen-specific antibody and CD8+ T cell responses. LNPs with cholesterol substituted by plant sterols, or LNPs with phospholipids replaced by those with different head and tail group structures, induced antigen-specific antibody and CD8+ T cell responses comparable to the control formulation. Alternately, these LNPs significantly reduced inflammatory cytokine production and adverse reactions, including fever, compared with the control LNPs. Finally, correlation analysis revealed a positive association between protein expression in specific organs and the magnitude of immune responses and adverse reactions. These findings demonstrate that modifying PEG-lipids, cholesterol, and phospholipids is beneficial for modulating the immunogenicity and reactogenicity of the mRNA-LNP vaccine.

  8. Neoantigen mRNA vaccines induce progenitor-exhausted T cells that support anti-PD-1 therapy in gastric cancer with peritoneal metastasis

    Koji Nagaoka, Hideyuki Nakanishi, Hiroki Tanaka, Jessica Anindita, Takeshi Kawamura, Toshiya Tanaka, Takefumi Yamashita, Akihiro Kuroda, Sachiyo Nomura, Hidetaka Akita, Keiji Itaka, Tatsuhiko Kodama, Kazuhiro Kakimi

    Gastric Cancer 28 (5) 825-836 2025年7月31日

    出版者・発行元: Springer Science and Business Media LLC

    DOI: 10.1007/s10120-025-01640-8  

    ISSN:1436-3291

    eISSN:1436-3305

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    Abstract Background Gastric cancer with peritoneal metastasis is associated with a poor prognosis. Current treatments, including the first-line therapy of combination chemotherapy with nivolumab for advanced recurrent gastric cancer, have shown limited efficacy against peritoneal dissemination. In this study, we evaluated neoantigen (neoAg)-mRNA lipid nanoparticle (LNP) as a potential agent in combination with anti-PD-1 therapy, focusing on its effects on neoAg-specific CD8+ T cell responses and antitumor efficacy in a murine gastric cancer model. Methods The mRNA, comprising a tandem minigene encoding three neoAgs identified from the murine gastric cancer YTN16 cell line, was synthesized by in vitro transcription and encapsulated within LNPs. NeoAg-specific CD8+ T cells in the spleens and tumors were assessed by flow cytometry. The antitumor efficacy of the neoAg-mRNA-LNP vaccine, alone or in combination with anti-PD-1 antibody, was evaluated in both subcutaneous and peritoneal metastasis models of YTN16. Results The neoAg-mRNA-LNP vaccine induced significantly higher frequencies of neoAg-specific CD8+ T cells than the neoAg-dendritic cell vaccine, confirming its enhanced immunogenicity. NeoAg-mRNA-LNP vaccination led to robust tumor regression, achieving complete eradication in all treated mice, especially when combined with anti-PD-1 therapy. This effect was associated with an increase in neoAg-specific progenitor-exhausted and intermediate-exhausted CD8+ T cells. In a peritoneal metastasis model, neoAg-mRNA-LNP monotherapy prevented peritoneal dissemination when administered prophylactically, and combination therapy with anti-PD-1 effectively suppressed tumor growth in a therapeutic setting. Conclusions NeoAg-mRNA-LNP vaccines elicit potent neoAg-specific CD8+ T cell responses and show enhanced antitumor efficacy with anti-PD-1 therapy in gastric cancer with peritoneal metastasis.

  9. A Post-Encapsulation Method for the Preparation of mRNA-LNPs via the Nucleic Acid-Bridged Fusion of mRNA-Free LNPs. 国際誌

    Hiroki Tanaka, Yuka Sato, Tomoya Nakabayashi, Akari Tanaka, Kazuma Nishio, Chika Matsumoto, Atsuya Matsumaru, Takuma Yamakawa, Kota Ishizaki, Keisuke Ueda, Kenjirou Higashi, Kunikazu Moribe, Yuta Nakai, Kota Tange, Hidetaka Akita

    Nano letters 25 (16) 6445-6453 2025年4月23日

    DOI: 10.1021/acs.nanolett.4c06643  

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    Lipid nanoparticles with encapsulated mRNA (mRNA-LNPs) have become key modalities for personalized medicines and RNA vaccines. Once the platform technology is established, the mRNA-LNPs could be applicable to a variety of protein-based therapeutic strategies. A post-encapsulation method, in which the mRNA solution is incubated with preformed mRNA-free LNPs to prepare the mRNA-LNPs, would accelerate the development of RNA-based therapeutics since even nonexperts could manufacture the mRNA-LNPs. In this study, we describe that the post-encapsulation of mRNA into mRNA-free LNPs is accompanied by "nucleic acid-bridged fusion" of them. The adsorption of mRNA onto mRNA-free LNPs via electrostatic interactions and the internalization of mRNA into the LNPs via particle-to-particle fusion are two steps that occur at different levels of pH. To complete post-encapsulation using only one-step mixing, the pH must be controlled within a limited region where both processes occur simultaneously. The size of the mRNA-free LNPs determines the effectiveness of mRNA loading.

  10. Low-inflammatory lipid nanoparticle-based mRNA vaccine elicits protective immunity against H5N1 influenza virus with reduced adverse reactions. 国際誌

    Atsushi Kawai, Taro Shimizu, Hiroki Tanaka, Shintaro Shichinohe, Jessica Anindita, Mika Hirose, Eigo Kawahara, Kota Senpuku, Makoto Shimooka, Le Thi Quynh Mai, Ryo Suzuki, Takuto Nogimori, Takuya Yamamoto, Toshiro Hirai, Takayuki Kato, Tokiko Watanabe, Hidetaka Akita, Yasuo Yoshioka

    Molecular therapy : the journal of the American Society of Gene Therapy 33 (2) 529-547 2025年2月5日

    DOI: 10.1016/j.ymthe.2024.12.032  

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    Messenger RNA vaccines based on lipid nanoparticles (mRNA-LNPs) are promising vaccine modalities. However, mRNA-LNP vaccines frequently cause adverse reactions such as swelling and fever in humans, partly due to the inflammatory nature of LNP. Modification of the ionizable lipids used in LNPs is one approach to avoid these adverse reactions. Here, we report the development of mRNA-LNP vaccines with better protective immunity and reduced adverse reactions using LNPs, which contain a disulfide (SS)-cleavable bond and pH-activated lipid-like materials with oleic acid (ssPalmO) as an ionizable lipid (LNPssPalmO). We used mRNA expressing H5N1 subtype high-pathogenicity avian influenza virus-derived hemagglutinin or neuraminidase to generate mRNA-LNP vaccines against H5N1 influenza. Compared with conventional LNPs, mRNA-LNPssPalmO induced comparable antigen-specific antibodies and better interferon-γ (IFN-γ)-producing T helper type 1 responses in mice. Both mRNA-LNPssPalmO and conventional mRNA-LNPs conferred strong protection against homologous H5N1 virus challenge. In addition, mRNA-LNPssPalmO showed better cross-protection against heterologous H5N1 virus challenge compared with conventional mRNA-LNPs. Furthermore, we observed that mRNA-LNPssPalmO induced less-inflammatory responses (e.g., inflammatory cytokine production, vascular hyperpermeability) and fewer adverse reactions (e.g., weight loss, fever) compared with conventional mRNA-LNPs. These results suggest that mRNA-LNPssPalmO would be a safe alternative to conventional vaccines to overcome mRNA-LNP vaccine hesitancy.

  11. Effect of Anti-PEG Antibody on Immune Response of mRNA-Loaded Lipid Nanoparticles. 国際誌

    Daiki Omata, Eigo Kawahara, Lisa Munakata, Hiroki Tanaka, Hidetaka Akita, Yasuo Yoshioka, Ryo Suzuki

    Molecular pharmaceutics 2024年9月26日

    DOI: 10.1021/acs.molpharmaceut.4c00628  

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    Lipid nanoparticle-encapsulated mRNA (mRNA-LNP) vaccines have been approved for use to combat coronavirus disease 2019 (COVID-19). The mRNA-LNPs contain PEG-conjugated lipids. Clinical studies have reported that mRNA-LNPs induce the production of anti-PEG antibodies, but the anti-PEG antibodies do not affect the production of neutralizing antibodies. However, the detailed influence of anti-PEG antibodies on mRNA-LNP vaccines remains unclear. Therefore, in this study, we prepared ovalbumin (OVA) as a model antigen-encoding mRNA-loaded LNP (mRNA-OVA-LNP), and we determined whether anti-PEG antibodies could affect the antigen-specific immune response of mRNA-OVA-LNP vaccination in mice pretreated with PEG-modified liposomes to induce the production of anti-PEG antibodies. After intramuscular (i.m.) injection of the mRNA-LNP, the anti-PEG antibodies did not change the expression of protein or induction of cytokine and cellular immune response but did slightly increase the induction of antigen-specific antibodies. Furthermore, repeated mRNA-LNP i.m. injection induced the production of anti-PEG IgM and anti-PEG IgG. Our results suggest that mRNA-LNP induces the production of anti-PEG antibodies, but the priming of the antigen-specific immune response of mRNA-LNP vaccination is not notably affected by anti-PEG antibodies.

  12. ネオアンチゲンmRNA脂質ナノ粒子ワクチンは、強力な抗腫瘍CD8+T細胞応答を誘導する(Neoantigen-mRNA-LNP Vaccine Induces Potent Anti-Tumor CD8+T cell responses in the tumor)

    長岡 孝治, 田中 浩揮, 中西 秀之, 川村 猛, 田中 十志也, 山下 雄史, 野村 幸世, 秋田 英万, 位高 啓史, 児玉 龍彦, 垣見 和宏, 垣見 和宏

    日本癌学会総会記事 83回 P-1165 2024年9月

    出版者・発行元: (一社)日本癌学会

    ISSN:0546-0476

  13. NMR-based analysis of impact of siRNA mixing conditions on internal structure of siRNA-loaded LNP. 国際誌

    Keisuke Ueda, Yui Sakagawa, Tomoki Saito, Fumie Sakuma, Hiroki Tanaka, Hidetaka Akita, Kenjirou Higashi, Kunikazu Moribe

    Journal of controlled release : official journal of the Controlled Release Society 373 738-748 2024年8月2日

    DOI: 10.1016/j.jconrel.2024.07.055  

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    This study aimed to assess the applicability of solution-state 1H NMR for molecular-level characterization of siRNA-loaded lipid nanoparticles (LNP). Dilinoleylmethyl-4-dimethylaminobutyrate (DLin-MC3-DMA, MC3) was used as an ionizable lipid, and siRNA-loaded LNPs were prepared by pre-mixing and post-mixing methods. The pre-mixing method involved mixing an acidic solution containing siRNA with an ethanolic lipid solution using a microfluidic mixer. The pre-mixed LNP was prepared by dialyzing the mixed solution into the phosphate buffered saline (PBS, pH 7.4). The post-mixed LNP was prepared by mixing the siRNA solution with empty LNP in an acidic condition with and without ethanol, resulting in post-mixed LNP (A) and (B), respectively. Both pre-mixed and post-mixed LNPs formed LNP particles with an average diameter of approximately 50 nm. Moreover, the ratio of encapsulated siRNA to lipid content in each LNP particle remained constant regardless of the preparation method. However, small-angle X-ray scattering measurements indicated structural variations in the siRNA-MC3 stacked bilayer structure formed in the LNPs, depending on the preparation method. Solution-state 1H NMR analysis suggested that the siRNA was incorporated uniformly into the LNP core for pre-mixed LNP compared to post-mixed LNPs. In contrast, the post-mixed LNPs contained siRNA-empty regions with local enrichment of siRNA in the LNP core. This heterogeneity was more pronounced in post-mixed LNP (B) than in post-mixed LNP (A), suggesting that ethanol facilitated the homogeneous mixing of siRNA with LNP lipids. The silencing effect of each siRNA-loaded LNP was reduced in the order of pre-mixed LNP, post-mixed LNP (A), and post-mixed LNP (B). This suggested that the heterogeneity of the siRNA-loaded LNP could cause a reduction in the silencing effect of the incorporated siRNA inside LNPs. The present study highlighted that NMR-based characterization of siRNA-loaded LNP can reveal the molecular-level heterogeneity of siRNA-loaded LNP, which helps to optimize the preparation conditions of siRNA-loaded LNP formulations.

  14. siRNA混合条件がsiRNA封入LNPの内部構造に及ぼす影響のNMRを用いた解析

    植田 圭祐, 東 顕二郎, 田中 浩揮, 秋田 英万, 森部 久仁一

    日本DDS学会学術集会プログラム予稿集 40回 687-687 2024年7月

    出版者・発行元: 日本DDS学会

  15. 基礎と臨床の融合による新時代のがん免疫療法 ネオアンチゲンmRNA脂質ナノ粒子ワクチンは、強力な抗腫瘍CD8+T細胞応答を誘導する

    長岡 孝治, 田中 浩揮, 中西 秀之, 川村 猛, 田中 十志也, 野村 幸世, 秋田 英万, 位高 啓史, 児玉 龍彦, 垣見 和宏

    日本がん免疫学会総会・日本バイオセラピィ学会学術集会総会合同大会プログラム・抄録集 28回・37回 67-67 2024年6月

    出版者・発行元: 日本がん免疫学会・日本バイオセラピィ学会

  16. The stress-responsive cytotoxic effect of diesel exhaust particles on lymphatic endothelial cells. 国際誌

    Yu Sakurai, Eiki Oba, Akiko Honda, Hiroki Tanaka, Hirohisa Takano, Hidetaka Akita

    Scientific reports 14 (1) 10503-10503 2024年5月7日

    DOI: 10.1038/s41598-024-61255-4  

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    Diesel exhaust particles (DEPs) are very small (typically < 0.2 μm) fragments that have become major air pollutants. DEPs are comprised of a carbonaceous core surrounded by organic compounds such as polycyclic aromatic hydrocarbons (PAHs) and nitro-PAHs. Inhaled DEPs reach the deepest sites in the respiratory system where they could induce respiratory/cardiovascular dysfunction. Additionally, a previous study has revealed that a portion of inhaled DEPs often activate immune cells and subsequently induce somatic inflammation. Moreover, DEPs are known to localize in lymph nodes. Therefore, in this study we explored the effect of DEPs on the lymphatic endothelial cells (LECs) that are a constituent of the walls of lymph nodes. DEP exposure induced cell death in a reactive oxygen species (ROS)-dependent manner. Following exposure to DEPs, next-generation sequence (NGS) analysis identified an upregulation of the integrated stress response (ISR) pathway and cell death cascades. Both the soluble and insoluble components of DEPs generated intracellular ROS. Three-dimensional Raman imaging revealed that DEPs are taken up by LECs, which suggests internalized DEP cores produce ROS, as well as soluble DEP components. However, significant cell death pathways such as apoptosis, necroptosis, ferroptosis, pyroptosis, and parthanatos seem unlikely to be involved in DEP-induced cell death in LECs. This study clarifies how DEPs invading the body might affect the lymphatic system through the induction of cell death in LECs.

  17. The Effect of Cholesterol Content on the Adjuvant Activity of Nucleic-Acid-Free Lipid Nanoparticles. 国際誌

    Jessica Anindita, Hiroki Tanaka, Takuma Yamakawa, Yuka Sato, Chika Matsumoto, Kota Ishizaki, Taiji Oyama, Satoko Suzuki, Keisuke Ueda, Kenjirou Higashi, Kunikazu Moribe, Kasumi Sasaki, Yumika Ogura, Etsuo Yonemochi, Yu Sakurai, Hiroto Hatakeyama, Hidetaka Akita

    Pharmaceutics 16 (2) 2024年1月26日

    DOI: 10.3390/pharmaceutics16020181  

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    RNA vaccines are applicable to the treatment of various infectious diseases via the inducement of robust immune responses against target antigens by expressing antigen proteins in the human body. The delivery of messenger RNA by lipid nanoparticles (LNPs) has become a versatile drug delivery system used in the administration of RNA vaccines. LNPs are widely considered to possess adjuvant activity that induces a strong immune response. However, the properties of LNPs that contribute to their adjuvant activity continue to require clarification. To characterize the relationships between the lipid composition, particle morphology, and adjuvant activity of LNPs, the nanostructures of LNPs and their antibody production were evaluated. To simply compare the adjuvant activity of LNPs, empty LNPs were subcutaneously injected with recombinant proteins. Consistent with previous research, the presence of ionizable lipids was one of the determinant factors. Adjuvant activity was induced when a tiny cholesterol assembly (cholesterol-induced phase, ChiP) was formed according to the amount of cholesterol present. Moreover, adjuvant activity was diminished when the content of cholesterol was excessive. Thus, it is plausible that an intermediate structure of cholesterol (not in a crystalline-like state) in an intra-particle space could be closely related to the immunogenicity of LNPs.

  18. Lymphatic Endothelial Cells Produce Chemokines in Response to the Lipid Nanoparticles Used in RNA Vaccines.

    Yi Liu, Miho Suzuoki, Hiroki Tanaka, Yu Sakurai, Hiroto Hatakeyama, Hidetaka Akita

    Biological & pharmaceutical bulletin 47 (3) 698-707 2024年

    DOI: 10.1248/bpb.b23-00689  

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    RNA vaccines based on Lipid nanoparticles (LNP) were put into practical use within only one year after the global outbreak of the coronavirus disease 2019 (COVID-19). This success of RNA vaccine highlights the utility of an mRNA delivery system as a vaccination strategy. Potent immunostimulatory activity of LNPs (i.e., inflammation occurring at the injection site and the production of inflammatory cytokines) have recently been reported. However, we have only limited knowledge concerning which cells are responsible for responding to the LNPs. We report herein on in vitro chemokine production from non-immune cells in response to exposure to LNPs. In this study, SM-102, an ionizable lipid that is used in the approved RNA vaccine for the clinical usage of COVID-19 mRNA vaccine, was used. Immortalized mouse lymphatic endothelial cells (mLECs) or professional antigen presenting cells (APCs) such as RAW 264.7 monocyte/macrophage cells were incubated with LNPs that contained no mRNA. As a result, chemokines involved in the recruitment of monocytes/neutrophils were produced only by the mLECs following the LNP treatment. These findings indicate that LEC appear to serve as the cell that sends out initial signals to response LNPs.

  19. Intranasal immunization with an RBD-hemagglutinin fusion protein harnesses preexisting immunity to enhance antigen-specific responses. 国際誌

    Atsushi Kawai, Nagisa Tokunoh, Eigo Kawahara, Shigeyuki Tamiya, Shinya Okamura, Chikako Ono, Jessica Anindita, Hiroki Tanaka, Hidetaka Akita, Sho Yamasaki, Jun Kunisawa, Toru Okamoto, Yoshiharu Matsuura, Toshiro Hirai, Yasuo Yoshioka

    The Journal of clinical investigation 133 (23) 2023年12月1日

    DOI: 10.1172/JCI166827  

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    Intranasal vaccines are anticipated to be powerful tools for combating many infectious diseases, including SARS-CoV-2, because they induce not only systemic immunity but also mucosal immunity at the site of initial infection. However, they are generally inefficient in inducing an antigen-specific immune response without adjuvants. Here, we developed an adjuvant-free intranasal vaccine platform that utilizes the preexisting immunity induced by previous infection or vaccination to enhance vaccine effectiveness. We made RBD-HA, a fusion of the receptor-binding domain (RBD) of spike derived from SARS-CoV-2 as a vaccine target with HA derived from influenza A virus (IAV) as a carrier protein. Intranasal immunization of previously IAV-infected mice with RBD-HA without an adjuvant elicited robust production of RBD-specific systemic IgG and mucosal IgA by utilizing both HA-specific preexisting IgG and CD4+ T cells. Consequently, the mice were efficiently protected from SARS-CoV-2 infection. Additionally, we demonstrated the high versatility of this intranasal vaccine platform by assessing various vaccine antigens and preexisting immunity associated with a variety of infectious diseases. The results of this study suggest the promising potential of this intranasal vaccine platform to address problems associated with intranasal vaccines.

  20. Development of a Ready-to-Use-Type RNA Vaccine Carrier Based on an Intracellular Environment-Responsive Lipid-like Material with Immune-Activating Vitamin E Scaffolds. 国際誌

    Jessica Anindita, Hiroki Tanaka, Ryotaro Oyama, Shinya Hagiwara, Daiki Shirane, Sakura Taneichi, Yuta Nakai, Kota Tange, Hiroto Hatakeyama, Yu Sakurai, Hidetaka Akita

    Pharmaceutics 15 (12) 2023年11月29日

    DOI: 10.3390/pharmaceutics15122702  

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    Because of its efficient and robust gene transfer capability, messenger RNA (mRNA) has become a promising tool in various research fields. The lipid nanoparticle (LNP) is considered to be a fundamental technology for an mRNA delivery system and has been used extensively for the development of RNA vaccines against SARS-CoV-2. We recently developed ssPalm, an environmentally responsive lipid-like material, as a component of LNP for mRNA delivery. In this study, a self-degradable unit (phenyl ester) that confers high transfection activity and an immune stimulating unit (vitamin E scaffold) for high immune activation were combined to design a material, namely, ssPalmE-Phe-P4C2, for vaccine use. To design a simple and user-friendly form of an RNA vaccine based on this material, a freeze-drying-based preparation method for producing a ready-to-use-type LNP (LNP(RtoU)) was used to prepare the LNPssPalmE-Phe. The optimization of the preparation method and the lipid composition of the LNPssPalmE-Phe(RtoU) revealed that dioleoyl-sn-glycero phosphatidylethanolamine (DOPE) was a suitable helper lipid for achieving a high vaccination activity of the LNPssPalmE-Phe(RtoU). Other findings indicated that to maintain particle properties and vaccination activity, a 40% cholesterol content was necessary. A single administration of the LNPssPalmE-Phe(RtoU) that contained mRNA-encoding Ovalbumin (mOVA-LNPssPalmE-Phe(RtoU)) demonstrated a significant suppression of tumor progression in a tumor-bearing mouse OVA-expressing cell line (E.G7-OVA). In summary, the LNPssPalmE-Phe(RtoU) is an easy-to-handle drug delivery system (DDS) for delivering mRNA antigens in immunotherapy.

  21. An Ionizable Lipid Material with a Vitamin E Scaffold as an mRNA Vaccine Platform for Efficient Cytotoxic T Cell Responses

    Ryotaro Oyama, Harumichi Ishigame, Hiroki Tanaka, Naho Tateshita, Moeko Itazawa, Ryosuke Imai, Naomasa Nishiumi, Jun-ichi Kishikawa, Takayuki Kato, Jessica Anindita, Yoshifumi Nishikawa, Masatoshi Maeki, Manabu Tokeshi, Kota Tange, Yuta Nakai, Yu Sakurai, Takaharu Okada, Hidetaka Akita

    ACS Nano 2023年9月26日

    出版者・発行元: American Chemical Society (ACS)

    DOI: 10.1021/acsnano.3c02251  

    ISSN:1936-0851

    eISSN:1936-086X

  22. A Lipid Nanoparticle-Based Method for the Generation of Liver-Specific Knockout Mice

    Sumiyo Morita, Takuro Horii, Mika Kimura, Ryosuke Kobayashi, Hiroki Tanaka, Hidetaka Akita, Izuho Hatada

    International Journal of Molecular Sciences 24 (18) 14299-14299 2023年9月19日

    出版者・発行元: MDPI AG

    DOI: 10.3390/ijms241814299  

    eISSN:1422-0067

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    Knockout mice are useful tools that can provide information about the normal function of genes, including their biochemical, developmental, and physiological roles. One problem associated with the generation of knockout mice is that the loss of some genes of interest produces a lethal phenotype. Therefore, the use of conditioned knockout mice, in which genes are disrupted in specific organs, is essential for the elucidation of disease pathogenesis and the verification of drug targets. In general, conditional knockout mice are produced using the Cre/loxP system; however, the production of the large numbers of Cre/flox knockout and control mice required for analysis requires substantial time and effort. Here, we describe the generation of liver-specific conditional knockout mice via the introduction of lipid nanoparticles encapsulating Cre mRNA into the liver of floxed mice. This technique does not require the production of offspring by mating floxed mice and is therefore more convenient than the conventional method. The results presented here demonstrate that the LNP-based method enables liver-specific gene knockout in a short period of time.

  23. Tolerogenic Lipid Nanoparticles for Delivering Self-Antigen mRNA for the Treatment of Experimental Autoimmune Encephalomyelitis. 国際誌

    Masaki Gomi, Yuka Nakayama, Yu Sakurai, Ryotaro Oyama, Koki Iwasaki, Mizuki Doi, Yi Liu, Mizuho Hori, Himeka Watanabe, Kohei Hashimoto, Hiroki Tanaka, Kota Tange, Yuta Nakai, Hidetaka Akita

    Pharmaceuticals (Basel, Switzerland) 16 (9) 2023年9月7日

    DOI: 10.3390/ph16091270  

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    Multiple sclerosis is a disease caused by autoantigen-responsive immune cells that disrupt the myelin in the central nervous system (CNS). Although immunosuppressive drugs are used to suppress symptoms, no definitive therapy exists. As in the experimental autoimmune encephalitis (EAE) model of multiple sclerosis, a partial sequence of the myelin oligodendrocyte glycoprotein (MOG35-55) was identified as a causative autoantigen. This suggests that the induction of immune tolerance that is specific to MOG35-55 would be a fundamental treatment for EAE. We previously reported that lipid nanoparticles (LNPs) containing an anionic phospholipid, phosphatidylserine (PS), in their lipid composition, can be used to deliver mRNA and that this leads to proteins of interest to be expressed in the spleen. In addition to the targeting capability of PS, PS molecules avoid activating the immune system. Physiologically, the recognition of PS on apoptotic cells suppresses immune activation against these cells by releasing cytokines, such as interleukin-10 (IL-10) and transforming growth factor (TGF)-β that negatively regulate immunity. In this study, we tested whether mRNA delivery of autoantigens to the spleen by PS-LNPs causes the expression of MOG35-55 antigens with minimal immune stimulation and whether this could be used to treat an EAE model by inducing immune tolerance.

  24. Comprehensive Evaluation of Lipid Nanoparticles and Polyplex Nanomicelles for Muscle-Targeted mRNA Delivery. 国際誌

    Xuan Du, Erica Yada, Yuki Terai, Takuya Takahashi, Hideyuki Nakanishi, Hiroki Tanaka, Hidetaka Akita, Keiji Itaka

    Pharmaceutics 15 (9) 2023年9月7日

    DOI: 10.3390/pharmaceutics15092291  

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    The growing significance of messenger RNA (mRNA) therapeutics in diverse medical applications, such as cancer, infectious diseases, and genetic disorders, highlighted the need for efficient and safe delivery systems. Lipid nanoparticles (LNPs) have shown great promise for mRNA delivery, but challenges such as toxicity and immunogenicity still remain to be addressed. In this study, we aimed to compare the performance of polyplex nanomicelles, our original cationic polymer-based carrier, and LNPs in various aspects, including delivery efficiency, organ toxicity, muscle damage, immune reaction, and pain. Our results showed that nanomicelles (PEG-PAsp(DET)) and LNPs (SM-102) exhibited distinct characteristics, with the former demonstrating relatively sustained protein production and reduced inflammation, making them suitable for therapeutic purposes. On the other hand, LNPs displayed desirable properties for vaccines, such as rapid mRNA expression and potent immune response. Taken together, these results suggest the different potentials of nanomicelles and LNPs, supporting further optimization of mRNA delivery systems tailored for specific purposes.

  25. Logistics and distribution of small extracellular vesicles from the subcutaneous space to the lymphatic system

    Yu Sakurai, Asa Ohtani, Yuka Nakayama, Masaki Gomi, Takeshi Masuda, Sumio Ohtsuki, Hiroki Tanaka, Hidetaka Akita

    Journal of Controlled Release 361 77-86 2023年9月

    出版者・発行元: Elsevier BV

    DOI: 10.1016/j.jconrel.2023.07.043  

    ISSN:0168-3659

  26. 脂質ナノ粒子の脂質組成と形態が免疫刺激特性に関与する(Lipid composition and morphology of lipid nanoparticle contributed to its immunostimulatory properties)

    アニンディタ・ジェシカ, 田中 浩揮, 植田 圭祐, 東 顕二郎, 森部 久仁一, 佐々木 香純, 米持 悦生, 櫻井 遊, 秋田 英万

    日本DDS学会学術集会プログラム予稿集 39回 185-185 2023年7月

    出版者・発行元: 日本DDS学会

  27. Development of an Alcohol Dilution-Lyophilization Method for the Preparation of mRNA-LNPs with Improved Storage Stability. 国際誌

    Daiki Shirane, Hiroki Tanaka, Yu Sakurai, Sakura Taneichi, Yuta Nakai, Kota Tange, Itsuko Ishii, Hidetaka Akita

    Pharmaceutics 15 (7) 2023年6月26日

    DOI: 10.3390/pharmaceutics15071819  

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    The lipid nanoparticle (LNP) is one of the promising nanotechnologies for the delivery of RNA molecules, such as small interfering RNA (siRNA) and messenger RNA (mRNA). A series of LNPs that contain an mRNA encoding the antigen protein of SARS-CoV-2 were already approved as RNA vaccines against this infectious disease. Since LNP formulations are generally metastable, their physicochemical properties are expected to shift toward a more stable state during the long-time storage of suspensions. The current mRNA vaccines are supplied in the form of frozen formulations with a cryoprotectant for preventing deterioration. They must be stored in a freezer at temperatures from -80 °C to -15 °C. It is thought that therapeutic applications of this mRNA-LNP technology could be accelerated if a new formulation that permits mRNA-LNPs to be stored under milder conditions were available. We previously reported on a one-pot method for producing siRNA-encapsulated LNPs by combining freeze-drying technology with the conventional alcohol dilution method (referred to herein as the "alcohol dilution-lyophilization method"). In this study, this method was applied to the preparation of mRNA-LNPs to provide a freeze-dried formulation of mRNA LNPs. The resulting formulation can be stored at 4 °C for at least 4 months.

  28. 脂質ナノ粒子の脂質組成と形態が免疫賦活特性に及ぼす影響(Contribution of lipid composition and morphology of lipid nanoparticle to its immunostimulatory properties)

    Anindita Jessica, 田中 浩揮, 山川 拓真, 佐藤 裕果, 石崎 弘汰, 松本 千佳, 植田 圭祐, 東 顕二郎, 森部 久仁一, 佐々木 香純, 米持 悦生, 櫻井 遊, 秋田 英万

    日本薬剤学会年会講演要旨集 38年会 182-182 2023年5月

    出版者・発行元: (公社)日本薬剤学会

  29. 脂質ナノ粒子の脂質組成と形態が免疫賦活特性に及ぼす影響(Contribution of lipid composition and morphology of lipid nanoparticle to its immunostimulatory properties)

    Anindita Jessica, 田中 浩揮, 山川 拓真, 佐藤 裕果, 石崎 弘汰, 松本 千佳, 植田 圭祐, 東 顕二郎, 森部 久仁一, 佐々木 香純, 米持 悦生, 櫻井 遊, 秋田 英万

    日本薬剤学会年会講演要旨集 38年会 182-182 2023年5月

    出版者・発行元: (公社)日本薬剤学会

  30. Ready-to-Use-Type Lyophilized Lipid Nanoparticle Formulation for the Postencapsulation of Messenger RNA. 国際誌

    Hiroki Tanaka, Shinya Hagiwara, Daiki Shirane, Takuma Yamakawa, Yuka Sato, Chika Matsumoto, Kota Ishizaki, Miho Hishinuma, Katsuyuki Chida, Kasumi Sasaki, Etsuo Yonemochi, Keisuke Ueda, Kenjirou Higashi, Kunikazu Moribe, Takashi Tadokoro, Katsumi Maenaka, Sakura Taneichi, Yuta Nakai, Kota Tange, Yu Sakurai, Hidetaka Akita

    ACS nano 17 (3) 2588-2601 2023年1月31日

    DOI: 10.1021/acsnano.2c10501  

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    Based on the clinical success of an in vitro transcribed mRNA (IVT-mRNA) that is encapsulated in lipid nanoparticles (mRNA-LNPs), there is a growing demand by researchers to test whether their own biological findings might be applicable for use in mRNA-based therapeutics. However, the equipment and/or know-how required for manufacturing such nanoparticles is often inaccessible. To encourage more innovation in mRNA therapeutics, a simple method for preparing mRNA-LNPs is prerequisite. In this study, we report on a method for encapsulating IVT-mRNA into LNPs by rehydrating a Ready-to-Use empty freeze-dried LNP (LNPs(RtoU)) formulation with IVT-mRNA solution followed by heating. The resulting mRNA-LNPs(RtoU) had a similar intraparticle structure compared to the mRNA-LNPs prepared by conventional microfluidic mixing. In vivo genome editing, a promising application of these types of mRNA-LNPs, was accomplished using the LNPs(RtoU) containing co-encapsulated Cas9-mRNA and a small guide RNA.

  31. Reactivation of Anticancer Immunity by Resetting Interorgan Crosstalk in Immune-Suppressive Cells with a Nanoparticulated Anti-Inflammatory Drug. 国際誌

    Mizuki Doi, Hiroki Tanaka, Takara Ohoto, Naoya Miura, Yu Sakurai, Hiroto Hatakeyama, Hidetaka Akita

    Small (Weinheim an der Bergstrasse, Germany) e2205131 2023年1月26日

    DOI: 10.1002/smll.202205131  

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    The reactivation of anticancer immunity is a fundamental principle in cancer immunotherapy as evidenced by the use of immune checkpoint inhibitors (ICIs). While treatment with the ICIs is shown to have remarkable and durable therapeutic effects in the responders, the low objective response rate (<40%) continues to be a major problem. Since myeloid-derived suppressor cells (MDSCs), heterogenous cells with strong immunosuppressive activity that originate in the hematopoietic system, suppress the anticancer immunity via parallel immune checkpoint-dependent and independent pathways, these cells are potential targets for improving the efficacy of cancer immunotherapy. In this study, it is demonstrated that MDSCs can be depleted by delivering synthetic glucocorticoid dexamethasone to phagocytic cells in the spleen using a lipid nanoparticle. Since the interaction of nanoparticles with T cells is intrinsically poor, this strategy also enables the "detargeting" from T cells, thus avoiding the nonspecific suppression of cytotoxic immune responses against cancer cells. In addition to the direct anticancer effect of the nanoparticulated dexamethasone, their synergistic anticancer effect with ICIs is also reported.

  32. A nasal vaccine with inactivated whole-virion elicits protective mucosal immunity against SARS-CoV-2 in mice. 国際誌

    Nagisa Tokunoh, Shigeyuki Tamiya, Masato Watanabe, Toru Okamoto, Jessica Anindita, Hiroki Tanaka, Chikako Ono, Toshiro Hirai, Hidetaka Akita, Yoshiharu Matsuura, Yasuo Yoshioka

    Frontiers in immunology 14 1224634-1224634 2023年

    DOI: 10.3389/fimmu.2023.1224634  

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    INTRODUCTION: Vaccinations are ideal for reducing the severity of clinical manifestations and secondary complications of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2); however, SARS-CoV-2 continues to cause morbidity and mortality worldwide. In contrast to parenteral vaccines such as messenger RNA vaccines, nasal vaccines are expected to be more effective in preventing viral infections in the upper respiratory tract, the primary locus for viral infection and transmission. In this study, we examined the prospects of an inactivated whole-virion (WV) vaccine administered intranasally against SARS-CoV-2. METHODS: Mice were immunized subcutaneously (subcutaneous vaccine) or intranasally (nasal vaccine) with the inactivated WV of SARS-CoV-2 as the antigen. RESULTS: The spike protein (S)-specific IgA level was found to be higher upon nasal vaccination than after subcutaneous vaccination. The level of S-specific IgG in the serum was also increased by the nasal vaccine, although it was lower than that induced by the subcutaneous vaccine. The nasal vaccine exhibited a stronger defense against viral invasion in the upper respiratory tract than the subcutaneous vaccine and unimmunized control; however, both subcutaneous and nasal vaccines provided protection in the lower respiratory tract. Furthermore, we found that intranasally administered inactivated WV elicited robust production of S-specific IgA in the nasal mucosa and IgG in the blood of mice previously vaccinated with messenger RNA encoding the S protein. DISCUSSION: Overall, these results suggest that a nasal vaccine containing inactivated WV can be a highly effective means of protection against SARS-CoV-2 infection.

  33. siRNA delivery to lymphatic endothelial cells via ApoE-mediated uptake by lipid nanoparticles 国際誌 査読有り

    Yu Sakurai, Keito Yoshikawa, Kenta Arai, Akira Kazaoka, Shigeki Aoki, Kousei Ito, Yuta Nakai, Kota Tange, Tomomi Furihata, Hiroki Tanaka, Hidetaka Akita

    Journal of Controlled Release 353 125-133 2023年1月

    出版者・発行元: Elsevier BV

    DOI: 10.1016/j.jconrel.2022.11.036  

    ISSN:0168-3659

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    Systemically administered lipid nanoparticles (LNPs) are complexed with Apolipoprotein E (ApoE) in the bloodstream, and the complex is subsequently largely taken up by hepatocytes. Based on a previous report showing that, like blood, lymph fluid also contains ApoE, and that LECs, in turn, expresses a low density-lipoprotein receptor (LDLR), which is the receptor responsible for the ApoE-bound LNP, we hypothesized that subcutaneously administered LNPs would be taken up by LECs via an ApoE-LDLR pathway. Our in vitro studies using immortal LECs that we established in a previous study showed that LEC indeed took up LNPs in an ApoE-dependent manner. We then reported on the development of LNPs that target the lymphatic endothelium for in vivo siRNA delivery after subcutaneous administration. The key to success for in vivo LEC targeting is that the surface needs to be modified with a high density of polyethylene glycol (PEG)-conjugated lipids with short acyl chains (C14). The LNPs were drained into the lymphatic system, and then accumulated in lymphatic endothelial cells in an ApoE-dependent manner, most likely after the release of the PEG-lipid. Subcutaneous administration of optimized LNPs containing encapsulated siRNA against VEGFR3, a marker of LECs, significantly inhibited the expression of VEGFR3. These findings are the first report of a simple straightforward strategy for targeting lymphatic endothelial cells by using ionizable lipid-formulated LNPs.

  34. Delivering mRNA to Secondary Lymphoid Tissues by Phosphatidylserine-Loaded Lipid Nanoparticles. 国際誌

    Masaki Gomi, Yu Sakurai, Minami Sato, Hiroki Tanaka, Yumi Miyatake, Koichi Fujiwara, Mizuki Watanabe, Satoshi Shuto, Yuta Nakai, Kota Tange, Hiroto Hatakeyama, Hidetaka Akita

    Advanced healthcare materials e2202528 2022年12月19日

    DOI: 10.1002/adhm.202202528  

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    Lipid nanoparticles (LNPs) are one of the most successful technologies in messenger RNA (mRNA) delivery. While the liver is the most frequent target for LNP delivery of mRNA, technologies for delivering mRNA molecules to extrahepatic tissues are also important. Herein, it is reported on the development of an LNP that targets secondary lymphoid tissues. New types of alcohol-soluble phosphatidylserine (PS) derivatives are designed as materials that target immune cells and then incorporated into LNPs using a microfluidic technique with a high degree of scalability and reproducibility. The resulting LNP that contained the synthesized PS delivered mRNA to the spleen much more efficiently compared to a control LNP. A sub-organ analysis revealed that the PS-loaded LNP is extensively taken up by tissue-resident macrophages in the red pulp and the marginal zone of the spleen. Thus, the PS-loaded LNP reported in this study will be a promising strategy for clinical applications that involve delivering mRNA to the spleen.

  35. Targeted delivery of lipid nanoparticle to lymphatic endothelial cells via anti-podoplanin antibody 国際誌 査読有り

    Yu Sakurai, Nodoka Abe, Keito Yoshikawa, Ryotaro Oyama, Satoshi Ogasawara, Takeshi Murata, Yuta Nakai, Kota Tange, Hiroki Tanaka, Hidetaka Akita

    Journal of Controlled Release 349 379-387 2022年9月

    出版者・発行元: Elsevier BV

    DOI: 10.1016/j.jconrel.2022.06.052  

    ISSN:0168-3659

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    Lymphatic endothelial cells (LECs) that form lymphatic vessels play a pivotal role in immune regulation. It was recently reported that LECs suppress the antigen-dependent anti-tumor immunity in cancer tissues. Thus, regulating the function of LECs is a promising strategy for cancer therapy. The objective of this study was to develop a method for the selective delivery of small interfering RNA (siRNA) to LECs. For this purpose, the siRNA was formulated into nanoparticles (LNPs) to prevent them from being degraded in body fluids and to facilitate their penetration of the cell membrane. A breakthrough technology for achieving this is ONPATTRO®, a world's first siRNA drug. Since LNPs are taken up by hepatocytes relatively well via low-density lipoprotein receptors, most of the LNP systems that have been developed so far target hepatocytes. In this study, we report on the development of a new method for the rapid and convenient method for modifying LNPs with antibodies using the CLick reaction on the Interface of the nanoParticle (CLIP). The CLIP approach was faster and more versatile than the conventional method using amide coupling. As a demonstration, we report on the LEC-targeted siRNA delivery by using antibody-modified LNPs both in vitro and in vivo. The method used for the modification of LNPs is highly promising and has the potential for expanding the LNP-based delivery of nucleic acids in the future.

  36. Improvement of mRNA Delivery Efficiency to a T Cell Line by Modulating PEG-Lipid Content and Phospholipid Components of Lipid Nanoparticles. 国際誌 招待有り 査読有り

    Hiroki Tanaka, Ryo Miyama, Yu Sakurai, Shinya Tamagawa, Yuta Nakai, Kota Tange, Hiroki Yoshioka, Hidetaka Akita

    Pharmaceutics 13 (12) 2021年12月6日

    DOI: 10.3390/pharmaceutics13122097  

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    (1) Background: T cells are important target cells, since they exert direct cytotoxic effects on infected/malignant cells, and affect the regulatory functions of other immune cells in a target antigen-specific manner. One of the current approaches for modifying the function of T cells is gene transfection by viral vectors. However, the insertion of the exogenous DNA molecules into the genome is attended by the risk of mutagenesis, especially when a transposon-based gene cassette is used. Based on this scenario, the transient expression of proteins by an in vitro-transcribed messenger RNA (IVT-mRNA) has become a subject of interest. The use of lipid nanoparticles (LNPs) for the transfection of IVT-mRNA is one of the more promising strategies for introducing exogenous genes. In this study, we report on the development of LNPs with transfection efficiencies that are comparable to that for electroporation in a T cell line (Jurkat cells). (2) Methods: Transfection efficiency was improved by optimizing the phospholipids and polyethylene glycol (PEG)-conjugated lipid components. (3) Results: Modification of the lipid composition resulted in the 221-fold increase in luciferase activity compared to a previously optimized formulation. Such a high transfection activity was due to the efficient uptake by clathrin/dynamin-dependent endocytosis and the relatively efficient escape into the cytoplasm at an early stage of endocytosis.

  37. Optimization of Sentinel Lymph Node Imaging Methodology Using Anionic Liposome and Hyaluronidase. 国際誌 査読有り

    Yu Sakurai, Miho Suzuoki, Masaki Gomi, Hiroki Tanaka, Hidetaka Akita

    Pharmaceutics 13 (9) 2021年9月14日

    DOI: 10.3390/pharmaceutics13091462  

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    The sentinel lymph node (SLN) is the first lymph node into which lymphatic fluid from tumor tissues flows. The development of a highly sensitive probe for detecting SLNs is desired for the lymph node dissection through intraoperative biopsy. We have previously shown that anionic liposomes tend to accumulate in lymph nodes and that macrophage uptake of liposomes contributes to their accumulation. In the present study, we found that among anionic lipids, phosphatidylserine (PS)-containing liposomes were substantially taken up by macrophages. We identified a new lipid composition to improve the SNL-selectivity of liposome accumulation based on Design-of-Experiment. The optimized PS-containing particles were more selectively accumulate to SLN lymph nodes than existing imaging agents indocyanine green. These results indicate the effectiveness of PS-containing anionic particles in SLN imaging.

  38. Effects on Metabolism in Astrocytes Caused by cGAMP, Which Imitates the Initial Stage of Brain Metastasis. 国際誌 査読有り

    Toya Okawa, Kurumi Hara, Momoko Goto, Moe Kikuchi, Masataka Kogane, Hiroto Hatakeyama, Hiroki Tanaka, Daiki Shirane, Hidetaka Akita, Akihiro Hisaka, Hiromi Sato

    International journal of molecular sciences 22 (16) 2021年8月21日

    DOI: 10.3390/ijms22169028  

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    The second messenger 2'3'-cyclic-GMP-AMP (cGAMP) is thought to be transmitted from brain carcinomas to astrocytes via gap junctions, which functions to promote metastasis in the brain parenchyma. In the current study, we established a method to introduce cGAMP into astrocytes, which simulates the state of astrocytes that have been invaded by cGAMP around tumors. Astrocytes incorporating cGAMP were analyzed by metabolomics, which demonstrated that cGAMP increased glutamate production and astrocyte secretion. The same trend was observed for γ-aminobutyric acid (GABA). Conversely, glutamine production and secretion were decreased by cGAMP treatment. Due to the fundamental role of astrocytes in regulation of the glutamine-glutamate cycle, such metabolic changes may represent a potential mechanism and therapeutic target for alteration of the central nervous system (CNS) environment and the malignant transformation of brain carcinomas.

  39. ビタミンE足場型pH応答性材料が誘導するワクチン効果メカニズムの解明

    大山 遼太朗, Anindita Jessica, 田中 浩揮, 櫻井 遊, 石亀 晴道, 岡田 隆陽, 丹下 耕太, 中井 裕太, 吉岡 宏樹, 秋田 英万

    日本DDS学会学術集会プログラム予稿集 37回 97-97 2021年6月

    出版者・発行元: 日本DDS学会

  40. Broaden your horizons~がん克服に向けた薬剤学の多面的アプローチ~ ビタミンE足場型新規材料を用いたmRNAがんワクチンの開発とその機能解析

    大山 遼太朗, 舘下 菜穂, ジェシカ・アニンディタ, 田中 浩揮, 三浦 尚也, 櫻井 遊, 石亀 晴道, 岡田 隆陽, 丹下 耕太, 中井 裕太, 吉岡 宏樹, 秋田 英万

    日本薬剤学会年会講演要旨集 36年会 103-103 2021年5月

    出版者・発行元: (公社)日本薬剤学会

  41. Development of Sentinel LN Imaging with a Combination of HAase Based on a Comprehensive Analysis of the Intra-lymphatic Kinetics of LPs. 国際誌 査読有り

    Masaki Gomi, Yu Sakurai, Takaharu Okada, Naoya Miura, Hiroki Tanaka, Hidetaka Akita

    Molecular therapy : the journal of the American Society of Gene Therapy 29 (1) 225-235 2021年1月6日

    DOI: 10.1016/j.ymthe.2020.09.014  

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    The sentinel lymph node (LN) is the first LN to which lymph fluid flows from tumor tissue. We identified the key parameters of liposomes (LPs) that affect their accumulation in regional (primary) LNs with minimum leakage to its connecting (secondary) LNs by a comprehensive analysis of the LN-to-LN trafficking of LPs with various surface charges and various sizes. We used a lymphatic flow-modified (LFM) mouse that allows for the chronological analysis of inguinal (primary) LN-to-axillary (secondary) LN at the body surface. As a result, the anionic medium-sized LPs (130 nm on average) exhibited the highest accumulation in the primary LNs. A mechanism-based analysis revealed that CD169-positive macrophages in LNs were the dominant cell population that captures anionic LPs. Sentinel LN imaging was also performed by the intratumoral injection of fluorescent medium-sized anionic LPs using a breast cancer orthotopic model. In comparison with the typically used contrast agent indocyanine green, the anionic LPs were detected in sentinel LNs with a high sensitivity. Additionally, the co-injection of hyaluronidase significantly improved the sensitivity of detection of the fluorescent LPs in sentinel LNs. In conclusion, medium-sized anionic LPs combined with hyaluronidase represents a potent strategy for investigating sentinel LNs.

  42. Proteomics Analysis of Lymphatic Metastasis-Related Proteins Using Highly Metastatic Human Melanoma Cells Originated by Sequential in Vivo Implantation. 国際誌 査読有り

    Katsuyuki Chida, Yu Sakurai, Asa Ohtani, Takeshi Masuda, Sumio Ohtsuki, Hiroki Tanaka, Hidetaka Akita

    Biological & pharmaceutical bulletin 44 (10) 1551-1556 2021年

    DOI: 10.1248/bpb.b21-00463  

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    Metastasis of cancer cells to lymph nodes (LN) is a common modality of metastasis in clinical settings, but the mechanisms involved in lymphatic metastasis remain unclear compared to hematogenous metastasis to bones and the brain. To elucidate the molecular mechanisms responsible for melanoma LN metastasis, we first generated LN metastasis-prone melanoma cells (C8161F2) by the sequential in vivo transplantation of parental melanoma cells (C8161F0). Although the in vitro/in vivo proliferative potential of these melanoma cells were similar, the metastatic potential of the C8161F2 for LNs was significantly enhanced. We then conducted a proteomics analysis to identify the proteins and pathways that contribute to LN metastasis. We identified six proteins (three: up-regulated and three: down-regulated) whose expressions were statistically significantly different by more than 2-fold in the two cell groups. Some of these genes are responsible for the activation of the transforming growth factor-β (TGF-β)-related pathway, a well-known inducer of epithelial-mesenchymal transition (EMT). In addition, a gene ontology analysis revealed that the enhanced cell-cell adhesion appears to be involved in lymphatic metastasis. In conclusion, we established highly lymphatic metastatic melanoma cells, which would be valuable for studies of the molecular mechanisms responsible for lymphatic metastasis.

  43. Vitamin E Scaffolds of pH-Responsive Lipid Nanoparticles as DNA Vaccines in Cancer and Protozoan Infection. 国際誌 査読有り

    Mio Maeta, Naoya Miura, Hiroki Tanaka, Takashi Nakamura, Ryo Kawanishi, Yoshifumi Nishikawa, Kenichi Asano, Masato Tanaka, Shinya Tamagawa, Yuta Nakai, Kota Tange, Hiroki Yoshioka, Hideyoshi Harashima, Hidetaka Akita

    Molecular pharmaceutics 17 (4) 1237-1247 2020年4月6日

    DOI: 10.1021/acs.molpharmaceut.9b01262  

    詳細を見る 詳細を閉じる

    DNA vaccinations are promising strategies for treating diseases that require cellular immunity (i.e., cancer and protozoan infection). Here, we report on the use of a liposomal nanocarrier (lipid nanoparticles (LNPs)) composed of an SS-cleavable and pH-activated lipidlike material (ssPalm) as an in vivo DNA vaccine. After subcutaneous administration, the LNPs containing an ssPalmE, an ssPalm with vitamin E scaffolds, elicited a higher gene expression activity in comparison with the other LNPs composed of the ssPalms with different hydrophobic scaffolds. Immunization with the ssPalmE-LNPs encapsulating plasmid DNA that encodes ovalbumin (OVA, a model tumor antigen) or profilin (TgPF, a potent antigen of Toxoplasma gondii) induced substantial antitumor or antiprotozoan effects, respectively. Flow cytometry analysis of the cells that had taken up the LNPs in draining lymph nodes (dLNs) showed that the ssPalmE-LNPs were largely taken up by macrophages and a small number of dendritic cells. We found that the transient deletion of CD169+ macrophages, a subpopulation of macrophages that play a key role in cancer immunity, unexpectedly enhanced the activity of the DNA vaccine. These data suggest that the ssPalmE-LNPs are effective DNA vaccine carriers, and a strategy for avoiding their being trapped by CD169+ macrophages will be a promising approach for developing next-generation DNA vaccines.

  44. Development of a lipoplex-type mRNA carrier composed of an ionizable lipid with a vitamin E scaffold and the KALA peptide for use as an ex vivo dendritic cell-based cancer vaccine. 国際誌 査読有り

    Naho Tateshita, Naoya Miura, Hiroki Tanaka, Takeshi Masuda, Sumio Ohtsuki, Kota Tange, Yuta Nakai, Hiroki Yoshioka, Hidetaka Akita

    Journal of controlled release : official journal of the Controlled Release Society 310 36-46 2019年9月28日

    DOI: 10.1016/j.jconrel.2019.08.002  

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    A dendritic cells (DCs)-based vaccine (DC-vaccine) system is an attractive technology for eliciting antigen-specific immune responses that can protect subjects from infectious diseases and for curing various types of cancers. For the insertion of a foreign antigen to DCs, the transfection of an antigen-coding mRNA to the cells is a promising approach. In order to introduce an antigen, a carrier for mRNA transfection is required, since the mRNA molecule per se is unstable in serum-containing medium. We previously reported on an ionizable lipid-like material with vitamin E-scaffolds (ssPalmE) as a material for a lipid nanoparticle (LNP)-based carrier for nucleic acids. In the present study, we report on the development of a lipoplex-type mRNA carrier for use as a DC-vaccine by using a combination of an ssPalmE-LNP and an α-helical cationic peptide "KALA" (ssPalmE-KALA). The transfection of mRNAs complexed with the ssPalmE-KALA achieved a significantly higher protein expression and the production of proinflammatory cytokines from murine bone marrow derived DCs (BMDCs) in comparison with a lipoplex that was prepared with an ssPalm with fatty acid-scaffolds (myristic acid; ssPalmM-KALA). A cellular uptake process and a pH-responsive membrane-destabilization activity cannot explain the preferred protein expression and immune-stimulation caused by the ssPalmE-KALA. Proteomic analyses suggest that transfection with the ssPalmM-KALA stimulates a down-regulatory pathway of translation, while the transfection with the ssPalmE-KALA does not stimulate it. In the vaccination with the BMDCs that were preliminarily transfected with an ovalbumin (OVA)-encoding mRNA elicited the induction OVA specific cytotoxic T-lymphocyte activity in vivo. In parallel, the vaccination induced significant prophylactic anti-tumor effects against a model tumor that stably expressed the OVA protein. Based on the above findings, the ssPalmE-KALA appears to be a potent ex vivo DCs-based RNA vaccine platform.

  45. ナノ粒子のリンパシステム内動態におけるサイズ・表面電荷の影響

    五味 昌樹, 櫻井 遊, 田中 浩揮, 三浦 尚也, 秋田 新介, 山路 佳久, 三川 信之, 秋田 英万

    日本DDS学会学術集会プログラム予稿集 35回 144-144 2019年6月

    出版者・発行元: 日本DDS学会

  46. The delivery of mRNA to colon inflammatory lesions by lipid-nano-particles containing environmentally-sensitive lipid-like materials with oleic acid scaffolds. 国際誌 査読有り

    Hiroki Tanaka, Ayaka Watanabe, Manami Konishi, Yuta Nakai, Hiroki Yoshioka, Tatsuya Ohkawara, Hiroshi Takeda, Hideyoshi Harashima, Hidetaka Akita

    Heliyon 4 (12) e00959 2018年12月

    DOI: 10.1016/j.heliyon.2018.e00959  

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    An mRNA gene therapy represents a potentially promising therapeutic for curing inflammatory diseases. The transient nature of the gene expression of mRNA would be expected to be beneficial for avoiding undesired side effects. Since the mRNA is a vulnerable molecule, a development of a carrier that can deliver the mRNA to the cytoplasm has a high priority. We report herein on the development of a system for delivering mRNA to the inflammatory lesion in a dextran sulfate sodium (DSS)-induced colitis model. We modulated molecular structures of an ionizable lipid, an SS-cleavable and pH-activated lipid-like material (ssPalm). Among the fatty acids investigated, oleic acid scaffolds (ssPalmO) appeared to be more biocompatible than either myristic acid or linoleic acid scaffolds with the colitis model. The structural modification of the hydrophilic head groups from linear tertiary amines to piperazine rings (ssPalmO-Paz4-C2) resulted in a more than 10-fold higher increasing in the transgene activity in inflammatory colon. The most notable observation is that the transgene activity in the inflammatory colon is significantly higher than that in liver, the major clearance organ of lipid nanoparticles. Collectively, the ssPalmO-Paz4-C2 represents a promising material for the delivery of an mRNA to inflammatory lesions.

  47. DNA-loaded nano-adjuvant formed with a vitamin E-scaffold intracellular environmentally-responsive lipid-like material for cancer immunotherapy. 国際誌 査読有り

    Minori Kawai, Takashi Nakamura, Naoya Miura, Mio Maeta, Hiroki Tanaka, Keisuke Ueda, Kenjirou Higashi, Kunikazu Moribe, Kota Tange, Yuta Nakai, Hiroki Yoshioka, Hideyoshi Harashima, Hidetaka Akita

    Nanomedicine : nanotechnology, biology, and medicine 14 (8) 2587-2597 2018年11月

    DOI: 10.1016/j.nano.2018.08.006  

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    Cytoplasmic DNA triggers cellular immunity via activating the stimulator of interferon genes pathway. Since DNA is degradable and membrane impermeable, delivery system would permit cytoplasmic delivery by destabilizing the endosomal membrane for the use as an adjuvant. Herein, we report on the development of a plasmid DNA (pDNA)-encapsulating lipid nanoparticle (LNP). The structural components include an SS-cleavable and pH-activated lipid-like material that mounts vitamin E as a hydrophobic scaffold, and dual sensing motifs that are responsive to the intracellular environment (ssPalmE). The pDNA-encapsulating LNP (ssPalmE-LNP) induced a high interferon-β production in Raw 264.7 cells. The subcutaneous injection of ssPalmE-LNP strongly enhanced antigen-specific cytotoxic T cell activity. The ssPalmE-LNP treatment efficiently induced antitumor effects against E.G7-OVA tumor and B16-F10 melanoma metastasis. Furthermore, when combined with an anti-programmed death 1 antibody, an extensive therapeutic antitumor effect was observed. Therefore, the ssPalmE-LNP is a promising carrier of adjuvants for cancer immunotherapy.

  48. A hepatic pDNA delivery system based on an intracellular environment sensitive vitamin E-scaffold lipid-like material with the aid of an anti-inflammatory drug. 国際誌 査読有り

    Ryohei Togashi, Hiroki Tanaka, Sakiko Nakamura, Hideo Yokota, Kota Tange, Yuta Nakai, Hiroki Yoshioka, Hideyoshi Harashima, Hidetaka Akita

    Journal of controlled release : official journal of the Controlled Release Society 279 262-270 2018年6月10日

    DOI: 10.1016/j.jconrel.2018.04.022  

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    Non-viral vectors are considered to be an attractive approach for gene delivery, since an artificial material is less immunogenic and oncogenic compared to a viral vector. We previously reported on the hepatic delivery of plasmid DNA (pDNA) by using lipid-like material (an SS-cleavable and pH-activated lipid-like material: ssPalm) which mounts two hydrophobic scaffolds, proton-accepting motifs (tertiary amines), and a cleavable unit (disulfide bonding). In the present study, we report on an advanced hepatic gene delivery system that uses a new type of ssPalm derivative: ssPalmE-Paz4-C2. The hepatic transgene expression of the intravenously administrated lipid nanoparticle (LNP) that was formed with the ssPalmE-Paz4-C2 (LNPssPalmE-Paz4-C2) was significantly higher than that of conventional LNPs formed with a myristic acid-scaffold ssPalm (LNPssPalmM). However, the LNPssPalmE-Paz4-C2 particle induced a severe innate immune response that involved the production of the pro-inflammatory cytokines (IL-6 and TNFα), intracellular DNA sensor-related cytokine (IL-1β) and interferon (IFNβ), even when a pDNA free from CpG-motifs was encapsulated. The production of the pro-inflammatory cytokines and the DNA sensor-related cytokines is attributed to the combination of vitamin E scaffolds and encapsulated pDNA. The depletion of macrophages by chlodronate-encapsulating liposomes dramatically reduced inflammatory gene expression. Based on the above findings, we conclude that the use of a certain type of non-viral carrier that shows a robust gene expression activity is attended by a risk of eliciting an innate immune response. When a highly hydrophobic derivative of dexamethasone, an anti-inflammatory glucocorticoid compound, was co-loaded to the particle, this inflammatory response was relieved, and gene expression efficiency was enhanced. It is thus concluded that the co-delivery of dexamethasone and pDNA is a promising approach for reducing these risks.

  49. In Vivo Introduction of mRNA Encapsulated in Lipid Nanoparticles to Brain Neuronal Cells and Astrocytes via Intracerebroventricular Administration. 国際誌 査読有り

    Hiroki Tanaka, Taichi Nakatani, Tomomi Furihata, Kota Tange, Yuta Nakai, Hiroki Yoshioka, Hideyoshi Harashima, Hidetaka Akita

    Molecular pharmaceutics 15 (5) 2060-2067 2018年5月7日

    DOI: 10.1021/acs.molpharmaceut.7b01084  

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    Gene therapy is a promising strategy for curing certain types of brain diseases. Supplementation of therapeutic proteins such as aromatic amino acid decarboxylase (AADC) or nerve growth factor (NGF) have been reported to be successful examples of such treatments. However, there are safety concerns because these systems are based on virus-based gene vectors. A safe and efficient artificial carrier is thus urgently needed as an alternative. In this study, an mRNA based artificial gene carrier was introduced into the mouse brain via intracerebroventricular administration. As a carrier, a lipid nanoparticle (LNP) composed of environmentally sensitive lipid-like materials called an SS-cleavable proton-activated lipid-like material is used. The apolipoprotein E mediated cellular uptake of the lipid nanoparticles is one of the key features for its superior and homogeneous transfection activity compared to commercially available transfection reagents in both in vitro and in vivo situations. Immunostaining of brain specimens suggested that exogenous proteins can be introduced into neuronal cells as well as astrocytes using the mRNA-based gene carrier. This cannot be achieved using DNA-based artificial gene carriers. The findings suggest that a combination of an mRNA and a lipid based delivery system have great promise as a platform for the treatment of brain disorders.

  50. Development of an Alcohol Dilution-Lyophilization Method for Preparing Lipid Nanoparticles Containing Encapsulated siRNA. 査読有り

    Daiki Shirane, Hiroki Tanaka, Yuta Nakai, Hiroki Yoshioka, Hidetaka Akita

    Biological & pharmaceutical bulletin 41 (8) 1291-1294 2018年

    DOI: 10.1248/bpb.b18-00208  

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    Systems for delivering nucleic acids are now fundamental technologies for realizing personalized medicine. Among the various nucleic acid delivery systems that are currently available, lipid-nanoparticles (LNPs) that contain short interfering RNA (siRNA) have been extensively investigated for clinical applications. LNPs are generally prepared by an alcohol dilution method. In this method, it is necessary to remove the alcohol and then concentrate the LNP sample before they can be used. In this study, we report on the development of an "alcohol dilution-lyophilization method" for preparing siRNA-encapsulating LNPs. This method involves the use of a freeze-drying (lyophilization) method to remove the residual alcohol and to simultaneously concentrate the preparation. At first, the compositions of cryoprotectants and polyethylene glycol (PEG)-lipids that were used were optimized from the point of view of particle stabilization. A combination of sucrose and 1-(monomethoxy polyethyleneglycol5000)-2,3-dimyristoylglycerol (DMG-PEG5000) was found to have the most efficient cryoprotective activity for the LNPs. The knockdown efficiency of the LNP prepared by the alcohol dilution-lyophilization method was comparable to that of an LNP prepared by the conventional ultrafiltration method.

  51. Preparation of envelope-type lipid nanoparticles containing gold nanorods for photothermal cancer therapy. 国際誌 査読有り

    West Kristian D Paraiso, Hiroki Tanaka, Yusuke Sato, Daiki Shirane, Noriyuki Suzuki, Yasumitsu Ogra, Kota Tange, Yuta Nakai, Hiroki Yoshioka, Hideyoshi Harashima, Hidetaka Akita

    Colloids and surfaces. B, Biointerfaces 160 715-723 2017年12月1日

    DOI: 10.1016/j.colsurfb.2017.10.027  

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    The use of gold nanorods (AuNRs) that produce heat in response to near infrared (NIR) irradiation is an attractive approach to cancer photothermal therapy. AuNRs are usually prepared by using a highly toxic detergent: cetyltrimethylammonium bromide (CTAB). Thus, the removal of CTAB from the reaction mixture, and further stabilization of the surface of the AuNRs is required. In the present study, AuNRs were encapsulated in a multifunctional envelope-type nano device (AuNR-MEND) formed with an SS-cleavable and pH-activated lipid-like material. In the process of encapsulation, AuNRs were first stabilized with bovine serum albumin (AuNR-BSA), and then further encapsulated in the lipid envelope by the ethanol dilution method. The in vitro photothermal cytotoxicity of AuNR-MEND was further demonstrated on 4T1 breast cancer cells. After NIR radiation, the temperature of the medium was increased to approximately 60°C, and cell viability was drastically decreased to approximately 11%. However, this cytotoxic effect cannot simply be explained by medium heating. It therefore appears that intracellular delivery of the AuNRs is a key factor for achieving a high degree of cytotoxicity. Dose dependent cytotoxicity data revealed that a higher dose of AuNR-MEND resulted in the complete destruction of the cells when they were subjected to NIR irradiation, while the cell survival rate reached a plateau at 30% in the case of AuNR-BSA. Apoptosis was induced after treatment with the nanoparticles. AuNR-MEND showed superior cellular uptake activity over AuNR-BSA. Thus, delivering AuNR by means of functionalized lipid nanoparticles represents a promising approach to induce NIR-triggered apoptosis.

  52. Effect of particle size on their accumulation in an inflammatory lesion in a dextran sulfate sodium (DSS)-induced colitis model. 国際誌 査読有り

    Ayaka Watanabe, Hiroki Tanaka, Yu Sakurai, Kota Tange, Yuta Nakai, Tatsuya Ohkawara, Hiroshi Takeda, Hideyoshi Harashima, Hidetaka Akita

    International journal of pharmaceutics 509 (1-2) 118-122 2016年7月25日

    DOI: 10.1016/j.ijpharm.2016.05.043  

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    Taking advantage of the enhanced permeation and retention (EPR) effect is a promising approach for delivering macromolecules or nanoparticles to tumors. Recent studies revealed that this strategy is also applicable for targeting other pathological lesions (i.e. inflammatory disease). In the present study, we report the optimal size of a nanoparticle for allowing the higher accumulation of a particle in an inflammatory lesion using a dextran sulfate sodium (DSS)-induced colitis model. As a nanoparticle platform, we utilized a SS-cleavable and pH-activated lipid-like material (ssPalm), that can be used to produce particles in a variety of sizes ranging from 50nm to 180nm while using the same lipid composition. In healthy mice, particle accumulation remained low regardless of size. In contrast, the accumulation in inflammatory colon tissue was enhanced depending on the progress of the inflammation. In this situation, the apparent uptake clearance accumulation of a mid-sized particle (113nm on average) was higher than that for smaller and larger (54nm and 183nm in average, respectively) ones. Therefore, controlling particle size is an important parameter for the extensive targeting of inflammatory lesion.

  53. Cellular environment-responsive nanomaterials for use in gene and siRNA delivery: molecular design for biomembrane destabilization and intracellular collapse. 国際誌 査読有り

    Hiroki Tanaka, Yusuke Sato, Hideyoshi Harashima, Hidetaka Akita

    Expert opinion on drug delivery 13 (7) 1015-27 2016年7月

    DOI: 10.1517/17425247.2016.1154531  

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    INTRODUCTION: The development of gene and nucleic acid-based medication is one of the ultimate strategies in the research field of personalized medicine. For the desired function of a gene or siRNA, these molecules need to be delivered to the appropriate organelle (i.e. nucleus and cytoplasm, respectively). AREAS COVERED: The topics covered herein are rational design in order to control the pharmacokinetics, intracellular trafficking and release (decondensation or decapsulation) of the intended material. Since the endosome and cytoplasm are acidic (endosome) and reducing (cytoplasm) environments, respectively, a large variety of the materials have been developed that induce destabilization of endosome via its protonation, or are spontaneously collapsed in the cytoplasm. Finally, we propose materials (SS-cleavable and pH-activated lipid-like materials: ssPalm) that mount these sensing motifs, i.e., a positive charging unit in response to the acid environment (tertiary amines) and a cleavage unit (disulfide bonding) that is responsive to an reducing environment, respectively. EXPERT OPINION: Currently, the main target of the nanocarrier-mediated siRNA delivery systems is liver. The targeting of non-hepatic tissue is the next challenge. In this case, the design of neutral particle with well-organized intracellular trafficking, as well as an identification of the promising ligand is needed.

  54. Multi-nanoDDS platform based on the intracellular environment-responsive material  (ssPalm) : Delivery of gene/nucleic acid delivery 査読有り

    Hiroki Tanaka, Hidetaka Akita

    Drug Delivery System 31 (1) 24-34 2016年4月25日

    出版者・発行元: Japan Society of Drug Delivery System

    DOI: 10.2745/dds.31.24  

    ISSN:1881-2732 0913-5006

  55. Neutral biodegradable lipid-envelope-type nanoparticle using vitamin A-Scaffold for nuclear targeting of plasmid DNA. 国際誌 査読有り

    Hiroki Tanaka, Hidetaka Akita, Ryohei Ishiba, Kota Tange, Masaya Arai, Kazuhiro Kubo, Hideyoshi Harashima

    Biomaterials 35 (5) 1755-61 2014年2月

    DOI: 10.1016/j.biomaterials.2013.11.016  

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    Biomembranes and cytoplasm, a diffusion-limited region for nanoparticles are critical barriers to be overcome for the successful gene delivery. We herein report on a neutral, and intracellularly degradable lipid nanoparticle (LNP), containing encapsulated plasmid DNA (pDNA) that can be effectively delivered to the nucleus. A key material component in this particle is a vitamin A-scaffold SS-cleavable Proton-Activated Lipid-like Material ((SS)PalmA), which contains tertiary amine groups as proton sponge units that can respond to the acidic pH in endosomes, disulfide bonding for programmed collapse in the cytoplasm, and retinoic acid (RA) as a hydrophobic unit for assembly into LNP. LNP prepared using (SS)PalmA (LNP(PalmA)) exhibited a 15-fold higher gene expression activity compared to particles prepared with a simple acyl chain (myristoyl group)-scaffold one (LNPPalmM). Intracellular imaging studies revealed that LNP(PalmA) unexpectedly showed excessive endosome-disruptive characteristics. Furthermore, the decapsulation of pDNA slowly, but successively occurred in parallel with peri-nuclear accumulation. Nuclear targeting was blocked in the presence of native RA. Collectively, LNP(PalmA) is an intelligent particle that passes through the cytoplasm in particle form with the aid of the intrinsic nuclear transport system of RA, and thereafter releases its encapsulated pDNA for effective gene expression.

  56. A neutral envelope-type nanoparticle containing pH-responsive and SS-cleavable lipid-like material as a carrier for plasmid DNA. 国際誌 査読有り

    Hidetaka Akita, Ryohei Ishiba, Hiroto Hatakeyama, Hiroki Tanaka, Yusuke Sato, Kota Tange, Masaya Arai, Kazuhiro Kubo, Hideyoshi Harashima

    Advanced healthcare materials 2 (8) 1120-5 2013年8月

    DOI: 10.1002/adhm.201200431  

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    SS-cleavable proton-activated lipid-like material (ssPalm) functions as a key element in a lipid nanoparticle in which pDNA is encapsulated. The ssPalm contains dual sensing motifs that can respond to the intracellular environment; a proton-sponge unit (tertiary amines) that functions in response to an acidic environment (endosome/lysosome), and disulfide bonding that can be cleaved in a reducing environment (cytosol).

  57. Particle tracking analysis for the intracellular trafficking of nanoparticles modified with African swine fever virus protein p54-derived peptide. 国際誌 査読有り

    Hidetaka Akita, Kaoru Enoto, Hiroki Tanaka, Hideyoshi Harashima

    Molecular therapy : the journal of the American Society of Gene Therapy 21 (2) 309-17 2013年2月

    DOI: 10.1038/mt.2012.235  

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    Previous studies showed that the cytoplasmic transport of nanoparticles to the nucleus is driven by a vesicular sorting system. Artificial approaches for targeting a microtubule-associating motor complex is also a challenge. We describe herein the development of a liposomal nanoparticle, the surface of which is modified with stearylated octa-arginine (STR-R8), and a dynein light chain (LC8)-associated peptide derived from an African swine fever virus protein p54 (p54(149-161)) with polyethyleneglycol (PEG) as a spacer (p54(149-161)-PEG/R8-liposomal nanoparticles (LNPs)). The p54(149-161)-PEG/R8-LNPs preferentially gain access to the nucleus, resulting in a one- to two-order of magnitude higher transfection activity in comparison with p54(149-161)-free nanoparticles (PEG/R8-LNPs). Further studies of particle tracking in HeLa cells stably expressing green fluorescent protein (GFP)-tagged tubulin (GFP/Tub-HeLa) indicate that p54(149-161) stimulated the transport of nanoparticles along fibrous tubulin structures. Moreover, a part of the p54(149-161)-PEG/R8-LNPs appeared to undergo quasi-straight transport without sharing the tracks corresponding to PKH67, the plasma membrane of which had been prestained with a marker just before transfection, while corresponding movement was never observed in the case of PEG/R8-LNPs. These findings suggest that a portion of the p54(149-161)-modified nanoparticles can use microtubule-dependent transport without the need for an assist by a vesicular sorting system.

︎全件表示 ︎最初の5件までを表示

MISC 33

  1. 分子シミュレーションによる核酸封入ssPalm脂質ナノ粒子の構造および相互作用評価

    小浪なおこ, 奥脇弘次, 奥脇弘次, 田中浩揮, 秋田英万, 東顕二郎, 古石誉之, 米持悦生, 福澤薫

    日本薬剤学会年会講演要旨集(CD-ROM) 40th 2025年

  2. mRNAを基盤とした生体内への抗体導入

    原田純希, 田中浩揮, 下谷和人, 濱道修生, 金井亨輔, 景山誠二, 香月康宏, 香月康宏, 香月康宏, 冨塚一磨, 秋田英万

    日本抗体学会学術大会プログラム・抄録集(Web) 3rd 2024年

  3. Express Humabシステム(3)mRNAワクチンを用いたTc-mAbマウスへの免疫

    西尾一真, 田中浩揮, アニンディタ ジェシカ, 下谷和人, 濱道修生, 金井亨輔, 景山誠二, 香月康宏, 香月康宏, 香月康宏, 冨塚一磨, 秋田英万

    日本抗体学会学術大会プログラム・抄録集(Web) 3rd 2024年

  4. 分子シミュレーションによる核酸添加ssPalmナノ粒子の構造および相互作用解析

    小浪なおこ, 佐々木香純, 奥脇弘次, 奥脇弘次, 奥脇弘次, 田中浩揮, 秋田英万, 古石誉之, 福澤薫, 福澤薫, 米持悦生

    日本薬学会年会要旨集(Web) 144th 2024年

    ISSN: 0918-9823

  5. Lipid nanoparticle(LNP)のためのDDS素材の設計

    田中浩揮, 秋田英万

    PHARM TECH JAPAN 2023年2月

  6. 計算科学的手法を用いたssPalmナノ粒子の構造および相互作用評価

    小浪なおこ, 氏家かれん, 佐々木香純, 奥脇弘次, 田中浩揮, 秋田英万, 古石誉之, 福澤薫, 福澤薫, 米持悦生

    日本薬学会年会要旨集(Web) 143rd 2023年

    ISSN: 0918-9823

  7. 計算化学的手法を用いた核酸添加ssPalmナノ粒子の構造および相互作用解析

    小浪なおこ, 氏家かれん, 佐々木香純, 奥脇弘次, 田中浩揮, 秋田英万, 古石誉之, 福澤薫, 福澤薫, 米持悦生

    日本薬剤学会年会講演要旨集(CD-ROM) 38th 2023年

  8. 脳を標的とするNose-to-Brain型mRNA送達技術の開発

    山本理奈, 藤田翔也, 田中浩揮, 櫻井遊, 中井悠太, 丹下耕太, 金沢貴憲, 秋田英万

    遺伝子・デリバリー研究会シンポジウム要旨集 21st (CD-ROM) 2022年

  9. Ready-to-Use型mRNA内封脂質ナノ粒子製剤の物性評価

    山川拓真, 田中浩揮, 萩原伸哉, 櫻井遊, 佐々木香純, 米持悦生, 福澤薫, 中井悠太, 丹下耕太, 秋田英万, 秋田英万

    遺伝子・デリバリー研究会シンポジウム要旨集 21st (CD-ROM) 2022年

  10. Ready-to-Use型LNP製剤の開発

    田中浩揮, 萩原伸哉, 山川拓真, 櫻井遊, 米持悦生, 福澤薫, 中井悠太, 丹下耕太, 秋田英万, 秋田英万

    日本核酸医薬学会年会講演要旨集(CD-ROM) 7th 2022年

  11. mRNA内封脂質ナノ粒子Ready-to-Use製剤の物性評価

    山川拓真, 田中浩揮, 萩原伸哉, 櫻井遊, 佐々木香純, 米持悦生, 福澤薫, 中井悠太, 丹下耕太, 秋田英万, 秋田英万

    日本核酸医薬学会年会講演要旨集(CD-ROM) 7th 2022年

  12. 脳を標的とするNose-to-Brain型mRNA送達技術の開発

    山本理奈, 藤田翔也, 田中浩揮, 櫻井遊, 中井悠太, 丹下耕太, 金沢貴憲, 秋田英万

    生体膜と薬物の相互作用シンポジウム講演要旨集 43rd 2022年

    ISSN: 0919-2131

  13. 脂質ナノ粒子を基盤とするmRNA送達システムの動向

    Drug Delivery System 37 (3) 237-246 2022年

  14. 細胞内動態・崩壊性を制御するDDS材料としての脂質様材料の分子デザイン

    田中 浩揮, 秋田 英万

    有機合成化学協会誌 80 (1) 55-63 2022年

  15. mRNA内封脂質ナノ粒子Ready-to-Use製剤の物性評価

    山川拓真, 田中浩揮, 萩原伸哉, 白根大貴, 福田翔, 福澤薫, 米持悦生, 中井悠太, 丹下耕太, 秋田英万

    日本DDS学会学術集会プログラム予稿集 37th 2021年

  16. Ready-to-Use型脂質ナノ粒子製剤の物性評価

    山川拓真, 田中浩揮, 萩原伸哉, 白根大貴, 高田奈依, 櫻井遊, 福田翔, 福澤薫, 米持悦生, 玉川晋也, 中井悠太, 丹下耕太, 秋田英万

    日本薬学会関東支部大会講演要旨集 65th (CD-ROM) 2021年

  17. 分子シミュレーションによるssPalm脂質ナノ粒子の構造と相互作用解析

    小浪なおこ, 西田瑠花, 氏家かれん, 佐々木香純, 奥脇弘次, 望月祐志, 田中浩揮, 秋田英万, 古石誉之, 福澤薫, 米持悦生

    日本薬学会関東支部大会講演要旨集 65th (CD-ROM) 2021年

  18. 分子シミュレーションによるssPalm/コレステロール混合系脂質ナノ粒子の構造解析

    氏家かれん, 西田瑠花, 奥脇弘次, 望月祐志, 田中浩揮, 秋田英万, 古石誉之, 福澤薫, 米持悦生

    日本薬学会年会要旨集(Web) 141st 2021年

    ISSN: 0918-9823

  19. FMO-DPDシミュレーションによる脂質二重膜,ナノ粒子の詳細解析

    奥脇弘次, 新庄永治, 西田瑠花, 氏家かれん, 望月祐志, 望月祐志, 福澤薫, 福澤薫, 福澤薫, 米持悦生, 田中浩揮, 秋田英万

    応用物理学会秋季学術講演会講演予稿集(CD-ROM) 81st 2020年

    ISSN: 2436-7613

  20. FMO-DPD連携による脂質ナノ粒子,ペプチドのマルチスケールシミュレーション

    奥脇弘次, 西田瑠花, 氏家かれん, 土屋裕大朗, 望月祐志, 望月祐志, 福澤薫, 福澤薫, 福澤薫, 米持悦生, 田中浩揮, 秋田英万

    分子シミュレーション討論会講演要旨集 34th (CD-ROM) 2020年

  21. mRNAとビタミンE足場型の新規pH応答性材料を基盤とするがんワクチン技術の開発

    大山遼太朗, 舘下菜穂, JESSICA Anindita, 田中浩揮, 三浦尚也, 櫻井遊, 石亀晴道, 岡田峰陽, 秋田英万

    日本DDS学会学術集会プログラム予稿集 36th 2020年

  22. 自己分解性脂質様物質からなる核酸内封ナノキャリアの構造解析

    米持悦生, 古石誉之, 田中浩揮, 秋田英万

    KEK Progress Report (Web) (2020-6) 2020年

    ISSN: 1344-6320

  23. 遺伝子・核酸医療を目指した環境応答性脂質様材料の分子設計

    田中浩揮, 秋田英万

    PHARM TECH JAPAN 35 (13) 2019年10月

  24. ナノ粒子のリンパシステム内動態におけるサイズ・表面電荷の影響

    五味 昌樹, 櫻井 遊, 田中 浩揮, 三浦 尚也, 秋田 新介, 山路 佳久, 三川 信之, 秋田 英万

    日本DDS学会学術集会プログラム予稿集 35回 144-144 2019年6月

    出版者・発行元: 日本DDS学会

  25. ナノ粒子物性がリンパシステム内動態に及ぼす影響 リンパ流改変モデルマウスを用いた検証

    五味 昌樹, 櫻井 遊, 田中 浩揮, 三浦 尚也, 秋田 新介, 山路 佳久, 三川 信之, 秋田 英万

    日本薬学会年会要旨集 139年会 (4) 61-61 2019年3月

    出版者・発行元: (公社)日本薬学会

    ISSN: 0918-9823

  26. 細胞内環境に応答性を有する脂質材料の開発とmRNA送達への応用

    田中浩揮

    Drug Delivery System 34 2019年1月

  27. 環境応答性脂質様材料を基盤とした体内・細胞内動態制御技術 (特集 ナノマテリアルが拓くDDS(ドラッグデリバリーシステム)の新展開)

    田中 浩揮, 秋田 英万

    細胞 49 (12) 597-601 2017年10月

    出版者・発行元: ニューサイエンス社

    ISSN: 1346-7557

  28. 環境応答性脂質様材料:ssPalmを基盤とした体内・細胞内動態制御技術 ~遺伝子・核酸デリバリーへの応用を中心として~

    田中浩揮, 秋田英万

    細胞(Cell)10月臨時増刊号 特集:ナノマテリアルとDDS 49 (12) 2017年10月

  29. 環境応答性脂質様材料:ssPalmを基盤としたナノテクノロジー ~遺伝子・核酸デリバリーへの応用展開~

    田中浩揮, 三浦尚也, 秋田英万

    医学のあゆみ 262 (2) 131-136 2017年7月

    出版者・発行元: 医歯薬出版

    ISSN: 0039-2359

  30. 細胞内環境応答性材料(ssPalm)が拓くマルチ創剤基盤:遺伝子デリバリーを中心として

    田中浩揮, 秋田英万

    Drug Delivery System 31 2016年1月

  31. pH応答性脂質様物質から形成される遺伝子封入中性ナノ粒子の機能および細胞内動態解析

    秋田英万, 石破諒平, 畠山浩人, 佐藤悠介, 田中浩揮, 丹下耕太, 新井将也, 久保和弘, 原島秀吉

    日本DDS学会学術集会プログラム予稿集 28th 2012年

  32. pH応答性脂質様物質を用いた遺伝子封入中性ナノ粒子の創製

    石破諒平, 秋田英万, 畠山浩人, 佐藤悠介, 田中浩揮, 丹下耕太, 新井将也, 久保和弘, 原島秀吉

    日本薬剤学会年会講演要旨集(CD-ROM) 27th 2012年

  33. pH応答性脂質様物質を用いた遺伝子封入中性ナノ粒子の創製

    石破諒平, 秋田英万, 畠山浩人, 佐藤悠介, 田中浩揮, 丹下耕太, 新井将也, 久保和弘, 原島秀吉

    生体膜と薬物の相互作用シンポジウム講演要旨集 33rd 2011年

    ISSN: 0919-2131

︎全件表示 ︎最初の5件までを表示

書籍等出版物 3

  1. mRNAの制御機構の解明と治療薬・ワクチンへの活用

    田中浩揮, 秋田英万

    2023年2月

  2. 医薬品におけるDDS技術開発と製剤への応用

    田中浩揮, 秋田英万

  3. 創薬研究者・アカデミア研究者が知っておくべき最新の免疫学とその応用技術

    田中浩揮, 秋田英万

講演・口頭発表等 71

  1. 人工mRNAベクターを基盤とするT細胞エンジニアリング技術の開発

    三山亮, 田中浩揮, 中井悠太, 櫻井遊, 玉川晋也, 丹下耕太, 秋田英万

    第43回日本分子生物学会 2020年12月2日

  2. ビタミンE足場型pH応答性新規材料を基盤とするmRNAがんワクチンの開発

    大山遼太朗, 舘下菜穂, Jessica Anindita, 田中浩揮, 三浦尚也, 櫻井遊, 石亀晴道, 岡田峰陽, 丹下耕太, 中井裕太, 吉岡宏樹, 秋田英万

    第24回日本がん免疫学会総会 2020年10月7日

  3. 抗腫瘍免疫の正常化を目的とした脾臓の炎症環境の改善:RISET療法の提唱

    土井瑞貴, 大東昂良, 田中浩揮, 三浦尚也, 櫻井遊, 秋田英万

    第24回日本がん免疫学会総会 2020年10月7日

  4. リンパ節高転移性メラノーマ細胞株の樹立とタンパク質発現の解析

    千田克幸, 櫻井遊, 新井健太, 梅原健太, 増田豪, 大槻純男, 降幡知巳, 田中浩輝, 秋田英万

    第44回リンパ学会総会 2020年9月11日

  5. 原発巣リンパ管内皮細胞がメラノーマのリンパ節転移に与える影響の解析

    新井健太, 櫻井遊, 千田克幸, 梅原健太, 降幡知己, 秋田英万

    第44回リンパ学会総会 2020年9月11日

  6. リポソームのリンパシステム内動態の網羅的解析とセンチネルリンパ節イメージングへの応用

    櫻井遊, 五味昌樹, 三浦尚也, 田中浩揮, 秋田英万

    第44回リンパ学会総会 2020年9月11日

  7. エマルション型ナノ粒子製剤における薬物の疎水性が血中動態に及ぼす影響

    土井瑞貴, 田中浩揮, 櫻井遊, 秋田英万

    第36回日本DDS学会学術集会 2020年8月29日

  8. mRNAとビタミンE足場型の新規pH応答性材料を基盤とするがんワクチン技術の開発

    大山遼太朗, 舘下菜穂, Jessica Anindita, 田中浩揮, 三浦尚也, 櫻井遊, 石亀晴道, 岡田峰陽, 秋田英万

    第36回日本DDS学会学術集会 2020年8月29日

  9. 凍結乾燥を基盤とするmRNA内封脂質ナノ粒子Ready-to-Use製剤の創成

    萩原伸哉, 田中浩揮, 白根大貴, 高田奈依, 櫻井遊, 玉川晋也, 中井悠太, 丹下耕太, 秋田英万

    日本薬剤学会 第35年会 2020年5月14日

  10. 人工mRNAベクターを基盤とするT細胞エンジニアリング技術の開発

    三山亮, 田中浩揮, 中井悠太, 櫻井遊, 玉川晋也, 丹下耕太, 秋田英万

    日本薬剤学会 第35年会 2020年5月14日

  11. 抗炎症薬搭載ナノ粒子による脾臓を標的とした新規がん治療戦略の開発

    土井瑞貴, 大東昂良, 田中浩揮, 三浦尚也, 櫻井遊, 秋田英万

    日本薬剤学会 第35年会 2020年5月14日

  12. Development of RNA vaccine platform based on environmentally-responsive and self-degradable lipid-like material with Vitamin E scaffold( ssPalmE-Ph)

    Jessica Anindita, 田中浩揮, 大山遼太郎, 萩原伸哉, 白根大貴, 櫻井遊, 玉川晋也, 中井悠太, 丹下耕太, 秋田英万

    日本薬剤学会 第35年会 2020年5月14日

  13. リポソームの物性制御によるリンパ節標的技術の開発

    五味昌樹, 櫻井遊, 田中浩揮, 秋田英万

    日本薬学会 第140年会 2020年3月26日

  14. Cytoplasmic delivery of exogenous IVT-mRNA using self-degradable lipid-like material

    Hiroki Tanaka, Manami Konishi, Nae Takata, Tatsunari Takahashi, Yuta Nakai, Kota Tange, Hiroki Yoshioka, Shinya Tamagawa, Hidetaka Akita

    7th International mRNA Health Conference 2019年11月11日

  15. リガンド修飾脂質ナノ粒子によるリンパ管内皮細胞ターゲティング技術の確立

    櫻井遊, 阿部のどか, 小笠原諭, 加藤幸成, 村田武士, 丹下耕太, 中井悠太, 吉岡宏樹, 玉川晋也, 田中浩揮, 秋田英万

    第41回生体膜と薬物の相互作用シンポジウム 2019年10月18日

  16. 脂質ナノ粒子の物性制御に基づくリンパ節ターゲティング技術の開発

    五味昌樹, 櫻井遊, 田中浩揮, 三浦尚也, 秋田新介, 山路佳久, 三川信之, 秋田英万

    第41回生体膜と薬物の相互作用シンポジウム 2019年10月18日

  17. Development of DDS material and formulation technology that accelerates therapeutic application of mRNA 招待有り

    Hiroki Tanaka

    Dean's Grand Rounds Seminar 2019年10月16日

  18. Cytoplasmic delivery of exogenous IVT-mRNA using lipid-like material

    Hiroki Tanaka, Manami Konishi, Nae Takata, Tatsunari Takahashi, Yuta Nakai, Kota Tange, Hiroki Yoshioka, Shinya Tamagawa, Hidetaka Akita

    Liposome Research Days 2019 2019年9月15日

  19. Development of RNA vaccine platform based on an intracellular environment-responsive lipid-like material with Vitamin E-scaffold

    Ryotaro Oyama, Naho Tateshita, Jessica Anindita, Hiroki Tanaka, Naoya Miura, Yu Sakurai, Kota Tane, Yuta Nakai, Hiroki Yoshioka, Hidetaka Akita

    Liposome Research Days 2019 2019年9月15日

  20. リンパ節ターゲティングを目的とした脂質ナノ粒子の物性制御

    五味昌樹, 櫻井遊, 田中浩揮, 三浦尚也, 秋田新介, 山路佳久, 三川信之, 秋田英万

    第19回遺伝子・デリバリー研究会夏期セミナー 2019年9月1日

  21. 自己分解性脂質様物質を用いたmRNAの肝臓導入と反復投与に関する検討

    小西真奈美, 田中浩揮, 白根大貴, 中井悠太, 丹下耕太, 玉川晋也, 櫻井遊, 秋田英万

    第35回日本DDS学会学術集会 2019年7月4日

  22. 凍結乾燥ワンポット法を用いた核酸搭載型脂質ナノ粒子乾燥製剤の開発

    白根大貴, 田中浩揮, 丹下耕太, 中井悠太, 吉岡宏樹, 櫻井遊, 秋田英万

    第35回日本DDS学会学術集会 2019年7月4日

  23. ナノ粒子のリンパシステム内動態におけるサイズ・表面電荷の影響

    五味昌樹, 櫻井遊, 田中浩揮, 三浦尚也, 秋田新介, 山路佳久, 三川信之, 秋田英万

    第35回日本DDS学会学術集会 2019年7月4日

  24. 抗腫瘍免疫の正常化を目的とした脾臓および腫瘍組織における炎症環境の同時改善:RISET療法の提唱

    土井瑞貴, 大東昂良, 田中浩揮, 三浦尚也, 丹下耕太, 中井悠太, 吉岡宏樹, 櫻井遊, 秋田英万

    第35回日本DDS学会学術集会 2019年7月4日

  25. ビタミンE足場型pH応答性脂質様材料を基盤とするmRNAワクチンの開発

    大山遼太朗, 舘下菜穂, Jessica Anindita, 田中浩揮, 三浦尚也, 櫻井遊, 丹下耕太, 中井裕太, 吉岡宏樹, 秋田英万

    第25回創剤フォーラム若手研究会 2019年6月6日

  26. リンパ管内皮細胞標的化siRNA搭載脂質ナノ粒子の開発

    阿部のどか, 櫻井遊, 小笠原諭, 村田武士, 丹下耕太, 中井悠太, 吉岡宏樹, 玉川晋也, 田中浩揮, 秋田英万

    第25回創剤フォーラム若手研究会 2019年6月6日

  27. サイズ・表面電荷に基づく脂質ナノ粒子のリンパシステム内動態制御

    五味昌樹, 櫻井遊, 田中浩揮, 三浦尚也, 秋田新介, 山路佳久, 三川信之, 秋田英万

    第25回創剤フォーラム若手研究会 2019年6月6日

  28. Development of DNA/RNA vaccine platform based on an intracellular environment-responsive material (ssPalm) for cancer immune therapy

    Naho Tateshita, Ryotaro Oyama, Jessica Anindita, Hiroki Tanaka, Naoya Miura, Yuta Nakai, Kota Tange, Hiroki Yoshioka, Shinya Tamagawa, Yu sakurai, Hidetaka Akita

    Lymphatic Forum 2019 2019年5月31日

  29. 脾臓と腫瘍組織内の免疫環境を改善するナノ抗炎症薬剤の開発:RISET療法の提唱

    大東昂良, 田中浩揮, 土井瑞貴, 三浦尚也, 丹下耕太, 中井悠太, 吉岡宏樹, 櫻井遊, 秋田英万

    日本薬剤学会 第34年会 2019年5月16日

  30. Development of freeze-dried formulation of RNA-loaded neutral lipid-nanoparticle based on pH-sensitive lipid-like material

    Daiki Shirane, Hiroki Tanaka, Kota Tange, Yuta Nakai, Hiroki Yoshioka, Yu Sakurai, Hidetaka Akita

    19th Symposium for Gene, Design and Delivery 2019年5月8日

  31. RISET-therapy: a strategy for resetting tumor micro environment by the delivery of anti-inflammatory drugs to tumor and spleen

    Mizuki Doi, Takara Ohto, Hiroki Tanaka, Naoya Miura, Yu Sakurai, Kota Tange, Yuta Nakai, Hiroki Yoshioka, Hidetaka Akita

    19th Symposium for Gene, Design and Delivery 2019年5月8日

  32. Development of RNA vaccine platform based on an intracellular environment-responsive lipid-like material with Vitamin E-scaffold

    Ryotaro Oyama, Naho Tateshita, Jessica Anindita, Hiroki Tanaka, Naoya Miura, Yu Sakurai, Kota Tange, Yuta Nakai, Hiroki Yoshioka, Hidetaka Akita

    19th Symposium for Gene, Design and Delivery 2019年5月8日

  33. Establishment of melanoma cells highly metastatic to lymph node by sequential in vivo selection

    Katsuyuki Chida, Yu Sakurai, Kenta Umehara, Tomomi Furihata, Hiroki Tanaka, Hidetaka Akita

    19th Symposium for Gene, Design and Delivery 2019年5月8日

  34. 細胞内/粒子内環境に応答性を有する脂質様材料の分子設計と核酸キャリアの物性評価 招待有り

    田中浩揮, 中井悠太, 丹下耕太, 吉岡宏樹, 秋田英万

    日本薬学会 第139年会 若手シンポジウム 2019年3月20日

  35. Development of RNA vaccine platform based on an intracellular environment-responsive lipid like material with vitamin E-scaffold

    Jessica Anindita, Naho Tateshita, Hiroki Tanaka, Naoya Miura, Yu Sakurai, Kota Tange, Yuta Nakai, Hiroki Yoshioka, Hidetaka Akita

    日本薬学会 第139年会 2019年3月20日

  36. 抗腫瘍免疫の正常化を目的とした脾臓および腫瘍組織における炎症環境の同時改善:RISET 療法の提唱

    大東昂良, 田中浩揮, 土井瑞貴, 三浦尚也, 櫻井遊, 丹下耕太, 中井悠太, 吉岡宏樹, 秋田英万

    日本薬学会 第139年会 2019年3月20日

  37. 凍結乾燥ワンポット法を用いたsiRNA搭載ナノ粒子の開発

    白根大貴, 田中浩揮, 櫻井遊, 丹下耕太, 中井悠太, 吉岡宏樹, 秋田英万

    日本薬学会 第139年会 2019年3月20日

  38. リンパ節高転移性ヒトメラノーマ細胞の樹立およびその液性因子によるリンパ管内皮細胞の遺伝子発現変動の解析

    千田克幸, 櫻井遊, 梅原健太, 降幡知己, 田中浩揮, 秋田英万

    日本薬学会 第139年会 2019年3月20日

  39. ナノ粒子物性がリンパシステム内動態に及ぼす影響:リンパ流改変モデルマウスを用いた検証

    五味昌樹, 櫻井遊, 田中浩揮, 三浦尚也, 秋田新介, 山路佳久, 三川信之, 秋田英万

    日本薬学会 第139年会 2019年3月20日

  40. Development of RNA carriers based on self-degradable materials

    Hiroki Tanaka, Manami Konishi, Nae Takata, Tatsunari Takahashi, Yuta Nakai, Kota Tange, Hiroki Yoshioka, Shinya Tamagawa, Hidetaka Akita

    1st Chiba-Alberta Joint Symposium on Pharmaceutics 2019年2月19日

  41. 抗腫瘍免疫の正常化を目的とした脾臓および腫瘍組織における炎症環境の同時改善:がん治療における RISET 戦略の提唱

    大東昂良, 田中浩揮, 土井瑞貴, 三浦尚也, 丹下耕太, 中井悠太, 吉岡宏樹, 秋田英万

    第40回生体膜と薬物の相互作用シンポジウム 2018年10月18日

  42. 環境応答性脂質様物質を用いた生体投与型mRNAデリバリーシステムの構築

    田中浩揮, 小西真奈美, 高田奈江, 高橋達成, 中井悠太, 丹下耕太, 吉岡宏樹, 玉川晋也, 秋田英万

    第40回生体膜と薬物の相互作用シンポジウム 2018年10月18日

  43. 細胞内環境応答性脂質様材料を基盤とするin vivoメッセンジャーRNA送達システムの開発

    小西真奈美, 田中浩揮, 高橋達也, 高田奈依, 中井悠太, 丹下耕太, 吉岡宏樹, 玉川晋也, 秋田英万

    第12回次世代を担う若手医療薬科学シンポジウム 2018年9月15日

  44. リンパ流改変モデルマウスの開発およびナノ粒子の物性がリンパ節移行性に及ぼす影響の解析

    五味昌樹, 櫻井遊, 田中浩揮, 三浦尚也, 秋田新介, 山路佳久, 三川信之, 秋田英万

    遺伝子・デリバリー研究会 第18回夏期セミナー 2018年7月29日

  45. 粒子内自己分解性脂質様材料の開発とmRNA送達への応用

    高橋達成, 田中浩揮, 中井悠太, 吉岡宏樹, 秋田英万

    遺伝子・デリバリー研究会 第18回夏期セミナー 2018年7月29日

  46. Development of self-hydrolyzable lipid-like material equipped with environment sensing motifs

    Hiroki Tanaka, Manami Konishi, Nae Takata, Tatsunari Takahashi, yuta Nakai, Hiroki Yoshioka, Hidetaka Akita

    18th Symposium for Gene, Design and Delivery 2018年7月28日

  47. 還元環境依存的な粒子内分解機構を搭載した自己崩壊型RNA送達システムの開発

    高田奈依, 田中浩揮, 高橋達成, 小西真奈美, 中井悠太, 丹下耕太, 吉岡宏樹, 玉川晋也, 秋田英万

    日本核酸医薬学会第4回年会 2018年7月9日

  48. 細胞内で自発的に崩壊する脂質材料を用いた外来mRNAの細胞内導入

    田中浩揮, 小西真奈美, 高田奈依, 高橋達成, 中井悠太, 吉岡宏樹, 秋田英万

    第20回日本RNA学会年会 2018年7月9日

  49. 環境応答性材料ssPalmを用いたmRNAキャリアの開発と癌免疫療法を目指したワクチン技術への応用

    館下菜穂, 三浦尚也, 田中浩揮, 中井悠太, 吉岡宏樹, 秋田英万

    第34回日本DDS学会学術集会 2018年6月21日

  50. 凍結乾燥ワンポット法によるsiRNA 搭載型中性脂質ナノ粒子の開発と機能評価

    白根大貴, 田中浩揮, 丹下耕太, 中井悠太, 吉岡宏樹, 秋田英万

    第34回日本DDS学会学術集会 2018年6月21日

  51. 細胞内における動態制御・崩壊を考慮した脂質様材料の開発とその物性および機能評価 招待有り

    秋田英万, 田中浩揮

    日本薬学会第138年会 シンポジウム 「ナノDDS製剤の特性解析とその分析評価技術」 2018年3月28日

  52. 環境応答性脂質様材料を基盤とする外来mRNA導入技術の設計と開発 招待有り

    田中浩揮, 秋田英万

    日本薬学会第138年会 シンポジウム 「人工RNAによる生体機能制御への挑戦」 2018年3月28日

  53. COPD根治治療薬としての Am80 封入 ssPalm ナノ粒子の有用性の検討

    長島彰太, 加藤大貴, 三浦可南子, 秋田智后, 田中浩揮, 秋田英万, 山下親正

    日本薬学会第138年会 2018年3月27日

  54. ワンポット調製法を用いた siRNA 搭載型中性脂質ナノ粒子の開発

    白根大貴, 田中浩揮, 吉岡宏樹, 丹下耕太, 中井悠太, 秋田英万

    日本薬学会第138年会 2018年3月27日

  55. Cytoplasmic delivery of exogenous IVT-mRNA using self-degradable lipid-like material

    Hiroki Tanaka, Manami Konishi, Nae Takata, Tatsunari Takahashi, Yuta Nakai, Hiroki Yoshioka, Shyna Tamagawa, Hidetaka Akita

    第20回武田科学振興財団生命科学シンポジウム RNAネオバイオロジー 2018年2月1日

  56. Development of RNA vaccine platform based on environment-responsive materials for cancer immunotherapy

    Hidetaka Akita, Naho Tateshita, Naoya Miura, Kota Tange, Yuta Nakai, Hiroki Yoshioka, Hiroki Tanaka

    第20回武田科学振興財団生命科学シンポジウム RNAネオバイオロジー 2018年2月1日

  57. 炎症大腸に対するナノ粒子核酸送達システムの開発

    田中浩揮, 渡辺綾香, 丹下耕太, 中井悠太, 原島秀吉, 秋田英万

    日本核酸医薬学会第3回年会 2017年7月12日

  58. 凍結乾燥技術を用いた中性脂質ナノ粒子のワンポット調製法の開発

    白根大貴, 田中浩揮, 丹下耕太, 中井悠太, 秋田英万

    第33回日本DDS学会学術集会 2017年7月6日

  59. 炎症大腸を標的とした核酸封入型中性脂質ナノ粒子の創成

    田中浩揮, 渡邊綾香, 丹下耕太, 中井悠太, 原島秀吉, 秋田英万

    第33回日本DDS学会学術集会 2017年7月6日

  60. Analysis of physicochemical properties of self-nanoemulsion constructed from environment sensitive ionizable lipid

    Hiroki Tanaka, Sho Oasa, Masataka Kinjo, Kota Tange, Yuta Nakai, Hideyoshi Harashima, Hidetaka Akita

    FIP PSWC2017 6th Pharmaceutical Sciences World Congress 2017年5月22日

  61. 中性表面を持つ脂質ナノ液滴の体内動態と低分子薬物送達に関する検討

    田中浩揮, 丹下耕太, 中井悠太, 原島秀吉, 秋田英万

    遺伝子・デリバリー研究会 第16回夏期セミナー 2016年9月12日

  62. 環境感受性脂質からなる微小液滴の体内動態解析

    田中浩揮, 丹下耕太, 中井悠太, 原島秀吉, 秋田英万

    第32回日本DDS学会学術集会 2016年6月30日

  63. 炎症大腸標的型脂質ナノ粒子の最適物性に関する検討

    渡邉綾香, 田中浩揮, 櫻井遊, 丹下耕太, 中井悠太, 大川原辰也, 武田宏司, 原島秀吉, 秋田英万

    医療薬学フォーラム2016 2016年6月25日

  64. 中性表面を持つ脂質ナノ粒子の体内動態に関する検討

    田中浩揮, 丹下耕太, 中井悠太, 原島秀吉, 秋田英万

    日本薬剤学会 第31年会 2016年5月19日

  65. 細胞内環境感受性脂質からなるナノ粒子のセンシング機能評価

    田中浩揮, 大浅翔, 金城政孝, 丹下耕太, 中井悠太, 原島秀吉, 秋田英万

    第25回インテリジェント材料・システムシンポジウム 2016年1月8日

  66. NVESTIGATION OF OPTIMAL NANOPARTICLE PROPERTIES ON DELIVERY TO THE INFLAMED COLON

    Ayaka Watanabe, Hiroki Tanaka, Tatsuya Ohkawara, Kota Tange, Hiroshi Takeda, Hideyoshi Harashima, Hidetaka Akita

    第9回次世代を担う若手医療薬科学シンポジウム 2015年11月7日

  67. Functionalized Self-Nanoemulsion formed with SS- cleavable and pH-activated Lipid-like Material via Oil-to-Surfactant Transition

    Hiroki Tanaka, Sho Oasa, Masataka Kinjo, Kota Tange, Yuta Nakai, Hideyoshi Harashima, Hidetaka Akita

    第9回次世代を担う若手医療薬科学シンポジウム 2015年11月7日

  68. pH応答性脂質様物質(ssPalm)を用いたナノ粒子構造体の物性評価

    田中浩揮, 秋田英万, 丹下耕太, 中井悠太, 原島秀吉

    第31回日本DDS学会学術集会 2015年7月2日

  69. A neutral envelope-type nanoparticle containing pH-responsive and SS-cleavable lipid-like materials as a carrier for plasmid DNA

    Hidetaka Akita, Ryohei Ishiba, Hiroto Hatakeyama, Hiroki Tanaka, Yusuke Sato, Kota Tange, Masaya Arai, Kazuhiro Kubo, Hideyoshi Harashima

    40th Annual Meeting & Exposition of the Controlled Release Society 2013年7月21日

  70. Gene delivery using lipid-like material composed of fat soluble vitamin

    Hiroki Tanaka, Hidetaka Akita, Ryohei Ishiba, Kota Tange, Masaya Arai, Kazuhiro Kubo, Hideyoshi Harashima

    40th Annual Meeting & Exposition of the Controlled Release Society 2013年7月21日

  71. 脂溶性ビタミンを構造内に含む脂質様物質を用いた遺伝子送達

    田中浩揮, 秋田英万, 石破諒平, 丹下耕太, 新井将也, 久保和弘, 原島秀吉

    第29回日本DDS学会学術集会 2013年7月4日

︎全件表示 ︎最初の5件までを表示

産業財産権 4

  1. 脂質ナノ粒子の凍結乾燥組成物

    秋田英万, 白根大貴, 萩原伸哉, 田中浩揮, 丹下耕太, 中井悠太, 玉川晋也, 種市さくら

    産業財産権の種類: 特許権

  2. 細胞内動態を改善した新規カチオン性脂質

    秋田英万, 田中浩揮, 高橋達成, 高田奈依, 小西真奈美, 山本 裕二, 中井悠太, 吉岡宏樹, 玉川晋也

    産業財産権の種類: 特許権

  3. O/W型エマルション

    原島秀吉, 秋田英万, 田中浩揮, 渡辺綾香, 三浦尚也, 丹下耕太, 中井悠太

    産業財産権の種類: 特許権

  4. 細胞内動態を改善したカチオン性脂質

    秋田英万, 畠山浩人, 石破諒平, 鵜川真美, 田中浩揮, 丹下耕太, 久保和弘, 横山晶一, 原島秀吉

    産業財産権の種類: 特許権

共同研究・競争的資金等の研究課題 10

  1. mRNAを基盤とする遺伝子治療のための『Immune Stealth LNP』の開発

    田中 浩揮, 増田 豪

    提供機関:Japan Society for the Promotion of Science

    制度名:Grants-in-Aid for Scientific Research

    研究種目:Grant-in-Aid for Scientific Research (B)

    研究機関:Tohoku University

    2024年4月1日 ~ 2027年3月31日

  2. 脳内病態伝播拠点標的RNA送達Nose-to-Brainミセル開発と脳神経ゲノム編集治療基盤構築

    金沢 貴憲, 田中 浩揮, 澤村 正典

    2024年4月1日 ~ 2027年3月31日

  3. 脳内病態伝播拠点標的RNA送達Nose-to-Brainミセル開発と脳神経ゲノム編集治療基盤構築

    金沢 貴憲, 田中 浩揮, 澤村 正典

    2023年4月1日 ~ 2027年3月31日

  4. 個別化がんワクチンの実現を加速するReady-to-Use型RNAナノ創剤

    秋田 英万, 田中 浩揮, 櫻井 遊, 松下 博和

    提供機関:Japan Society for the Promotion of Science

    制度名:Grants-in-Aid for Scientific Research

    研究種目:Grant-in-Aid for Challenging Research (Pioneering)

    研究機関:Chiba University

    2021年7月9日 ~ 2025年3月31日

    詳細を見る 詳細を閉じる

    次世代シークエンサーの技術が発展する中、患者個々の腫瘍組織が特異に発現する変異蛋白質(ネオ抗原)を標的とするワクチンは、究極的な個別化がん治療法として注目されている。特に、抗原をコードするmRNAを投与し、生体内で抗原を発現させるRNAワクチンは、遺伝子情報を変えるだけで、同一の製剤ながら多種の抗原に迅速に対応できる点で、個別化がんワクチンを実現するための重要な技術となる。 我々は、エンドソーム内の酸性pHや細胞質の還元環境に応答して生体膜を突破し、自己崩壊することで『細胞質内へRNAを送達』できる脂質様材料 (SS-Cleavable and pH-activated lipid-like material: ssPalm)を開発した。特に、ビタミンEを疎水性足場とするssPalmE粒子は免疫活性化能を有し、さらに、抗原をコードするmRNAを本材料から形成されるナノ粒子に対して皮下投与することで抗原特異的な細胞傷害性T細胞を活性化できることから、RNAワクチンとしての応用が期待できる。今年度は、本材料を用いて、RNAを加えるだけでRNA内封ナノ粒子を調製できる凍結乾燥製剤の開発を開始している。 また、ssPalmEの生体内分解性を考慮した新たな材料を開発し、免疫活性化能の評価を開始するとともに、RNA搭載ナノ粒子が調製可能であることを見いだしている。さらに、癌抗原を新たに見いだすべく、マウスの癌自然発症マウスの作成を開始している。

  5. mRNA導入技術を基盤とする免疫抑制性樹状細胞の創出と自己免疫疾患治療

    田中 浩揮

    2021年4月1日 ~ 2024年3月31日

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    自己免疫疾患の標準治療である免疫抑制薬を用いた病態制御は、生涯にわたる服薬が必要なうえ副作用が強い。本疾患の高いアンメットニーズを充足するには、患者体内に存在する自己反応性T細胞を抑制し、自己抗原に対する免疫寛容を成立させる必要がある。非炎症時の末梢組織では、樹状細胞やマクロファージなどの抗原提示細胞が末梢免疫寛容を成立させる。本メカニズムに基づく治療原理として、免疫抑制性の低分子やサイトカインを用いて体外で誘導した寛容性樹状細胞(tolerative-DCs; tol-DCs)による細胞治療が提唱されてきた。従来のtol-DCsは患者体内へ投与されると、免疫抑制シグナルのインプットを失うとともに炎症環境に曝露されるため、生体内で炎症性に再誘導され炎症を増悪してしまうことが懸念されている。また、ペプチド処理により付与された抗原の特異性については、タンパク質のターンオーバーに従い消失することが懸念されている(図1b)。本問題点を解決するためには、生体内で持続的に樹状細胞の表現型を改変し続けるための技術が必要と考えられる。 本研究で我々は、インビトロ転写により作成されたmRNAを用いて樹状細胞の表現型の改変を試みる。mRNAは数日以上のオーダーで細胞内でタンパク質へ合成され続けることから、上記の持続的な表現改変に適する可能性が挙げられる。1年度目である今年度は、Ly-6C(low)/CD11c(high)群の単離とベクターの最適化を実施した。その結果、単離した当該細胞へのトランスフェクションは遺伝子発現に繋がらなかったことから、当該細胞のフェノタイプへの変化はトランスフェクションの後に起きているものと考えられる。ベクターの最適化により、樹状細胞に対し72時間以上にわたり遺伝子を導入可能な製剤が得られた。

  6. 鼻-脳輸送機構に基づく核酸送達ナノDDSの開発とグリア標的治療への応用展開

    金沢 貴憲, 田中 浩揮, 小菅 康弘

    2020年4月1日 ~ 2023年3月31日

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    前年度までに同定したPEGポリマー/ペプチド混合ナノ粒子の組成の最適化を行った。ペプチド2種(Tat、CH2R4H2C)と6種類のブロックポリマーとの組み合わせ計12種の核酸含有ナノ粒子を作製し、動的光散乱法による平均粒子径と粒度分布の評価から、分散均一性と再現性、ならびに物性安定性の優れた組成を3種類同定した。次に、同定した3種類の組成について、様々なポリマー/ペプチド比ならびにN/P比で調製したナノ粒子malat-1標的siRNA含有ナノ粒子を調製し、経鼻投与によるマウス大脳皮質・海馬内および肝・脾・腎での標的遺伝子ノックダウン効率の定量的評価を行った。その結果、PEG-PCLポリマー/CH2R4H2Cからなるナノ粒子において、大脳皮質・海馬でのノックダウン効率が最も高くなるポリマー/ペプチド比ならびにN/P比を明らかとした。このとき、肝・脾・腎におけるノックダウン効率はいずれも見られなかった。また、PEGポリマー/ペプチド混合ナノ粒子の神経細胞に対する細胞生存率を検証した結果、顕著な細胞毒性は見られなかった。次に、前年度明らかにしたグリア細胞親和性の高い脂質材料(ssPalm誘導体)とPEGポリマーナノ粒子へのハイブリッド化について検討した結果、マイクロ流体デバイス法により、脂質材料はPEGポリマーナノ粒子への良好な搭載性を示し、PEGポリマーナノ粒子のミクログリアへの取り込みを有意に向上させることを明らかとした。

  7. ナノ粒子内を反応の場とする有機反応を利用したナノ空間分解性mRNAベクターの開発

    田中 浩揮

    提供機関:Japan Society for the Promotion of Science

    制度名:Grants-in-Aid for Scientific Research

    研究種目:Grant-in-Aid for Early-Career Scientists

    研究機関:Chiba University

    2018年4月1日 ~ 2021年3月31日

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    本研究では、ナノ粒子内で特異的に誘起される分解反応を新原理として提唱し、ナノ粒子に対して細胞内環境応答的な崩壊性を付与することで、核酸を細胞内へ送達する技術の開発を進めてきた。搭載する核酸としては、DNAと比較して変異原性などのリスクを持たないmRNAに着目し、世界最高水準の効率と安全性を兼ね備えたmRNAベクターの開発を目指す。さらに本研究では、炎症性の疾患に対する本技術の応用を目指し研究を進めている。 基盤技術として独自の環境応答性脂質であるssPalmを用い、本分子の設計に分解性リンカーを導入することで新規素材の開発を目指した。 初年度に開発した素材であるssPalmO-Phenyl-P4C2は、次の特徴を有する:濃縮的な環境でのみ特異的に切断されるリンカー構造(フェニルエステル)を有し非分解際材料や市販の試薬と比較し優れたmRNA導入効率を示した。 平成31年度の当初計画は『全身投与型mRNAベクターへの応用』、『炎症性疾患への適用』であった。我々はssPalmO-Phenyl-P4C2を用いた肝臓に対するmRNA送達を行い、化学修飾mRNAと本材料の組み合わせで一か月5回にわたる反復投与が可能であることや、内封核酸の質をが炎症応答を決定する要因であることを見出した。次年度ではmRNAを用いた炎症治療を進める。

  8. 外因性有機微粒子により誘起される統合的ストレス応答および二次的に放出される内因性微粒子の解析

    2020年4月 ~ 2021年3月

  9. pH感受性脂質の分子改変による炎症組織の細胞内ポリソームを標的としたmRNA送達

    田中 浩揮

    2017年8月25日 ~ 2019年3月31日

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    世界初の遺伝子治療薬となるGlybera(アデノ随伴ウイルス)が認可されたことをはじめとし、遺伝子を用いた難治性疾患の治療が現実のものとなりつつある。なかでもmRNAを用いた遺伝子導入は、遺伝子導入効率や安全性の面で優れていると考えられている。我々は、核酸ベクターの構成材料としてSS-cleavable and pH-Activated Lipid-like material(ssPalm)を開発してきた。我々は、ビタミンE足場型ssPalmEを用いることで、脳内のアストロサイトや神経細胞に遺伝子を導入できることを見出した。さらに、オレイン酸を足場とするssPalmOが生体適合性に優れていることを見出した(論文投稿中)。我々は本研究でssPalmOの更なる構造改変を行い、高い生体適合性と遺伝子導入効率を両立可能なmRNAキャリアの創製を目指した。 ssPalmOの直鎖アミン構造改変しssPalmO-P4C2を合成した。さらに、ssPalmO-P4C2の部分構造を改変し、新規骨格を持つ第三世代ssPalmOを開発した。ssPalmO-P4C2は潰瘍性大腸炎モデルであるDSS腸炎マウスの大腸で、ssPalmOに比べ10倍以上高い遺伝子発現活性を示した。この際、肝臓、脾臓、腎臓、肺、心臓に対して有意に高い遺伝子発現活性を示した。更なる改変で得られた第三世代ssPalmOは、分泌タンパク質であるエリスロポエチンのmRNAを尾静脈から導入し血中濃度を解析したところ、さらに100倍以上高い遺伝子発現活性を示した。また、本遺伝子発現活性は市販のトランスフェクション試薬などと比較して有意に高いことが明らかとなった。また、第三世代ssPalmOを投与してから24時間後の血中AST/ALT値は正常域であったことから、本粒子は高い生体適合性を有することが示唆された。

  10. 脂質膜搭載素子の機能発動・解離を時空間的に制御する多重膜遺伝子ナノキャリアの創製

    田中 浩揮

    2014年4月25日 ~ 2017年3月31日

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    本研究では、低分子医薬品や機能性核酸をその作用部位へ送達するため、「体内動態・細胞内動態制御素子の機能発動・解離を時空間的に制御可能なドラッグデリバリーシステム(DDS)」の構築を目指した。 第一年度では、核酸等を封入する『コア粒子』が、細胞内取り込みやエンドソーム脱出を担う『サテライト粒子』に取り巻かれた構造を持つNano-sized Satellite-type Organized Lipid-nanoparticle Assembly(Nano-SOLA)を開発した。本キャリアは二種の粒子が核酸の二本鎖形成により複合体化されており、機能性素子の配置制御が可能である。第二年度目では、本複合体を形成するサテライト粒子に着目した。本粒子の物性を蛍光分光学的手法により解明した。 本研究の第三年度目では、サテライト粒子を低分子送達へ応用するため、低分子医薬品の搭載並びに作用部位への送達を試みた。また、血管透過性の亢進が知られる炎症部位に対し粒子送達を試みた。 粒子径制御技術を用いて50nmから180nmまでの大きさの粒子を作り分け、炎症部位に対する送達能を検証した。その結果、全ての粒子で炎症の誘起による粒子集積量の増加が認められた。粒子集積性と炎症の強さを解析したところ、炎症が強いほど粒子が集積しやすくなることが明らかとなった。特に110nm程度の粒子が炎症部位の集積性に最も優れることを明らかとした。 ここまでの結果からサテライト粒子は高い血中滞留性を持ち、腫瘍や炎症部位へ効率的な送達が可能であることが分かっていた。一方、低分子医薬品をナノ粒子に搭載するためにはcLogP値が9程度必要である。低分子医薬品の疎水性を高めるため、環境応答性リンカーによる二量体化を行った。抗がん剤カンプトテシンの二量体化薬はカンプトテシン単体に比べて効果が向上し副作用が提言されることを明らかとした。

︎全件表示 ︎最初の5件までを表示

担当経験のある科目(授業) 2

  1. 臨床薬物動態学

  2. 物理化学