Details of the Researcher

PHOTO

Takayuki Sakai
Section
Research Center for Accelerator and Radioisotope Science
Job title
Assistant Professor
Degree
  • Pharmacy, Ph.D (Gifu Pharmaceutical University)

e-Rad No.
40881925

Research Areas 3

  • Life sciences / Pharmaceuticals - chemistry and drug development / Tumor microenvironment

  • Life sciences / Cognitive neuroscience / Neurodegenerative disease

  • Life sciences / Radiology / PET

Papers 15

  1. Automated cassette-based synthesis, metabolism, and dosimetry of [18F]ApaScan, a PET tracer for aldosterone synthase imaging. International-journal

    Yuki Shimizu, Toko Otaka, Miho Shidahara, Ryuichi Harada, Yuto Yamazaki, Yuta Tezuka, Takayuki Sakai, Tomohiro Kaneta, Takashi Suzuki, Hideki Katagiri, Hironobu Sasano, Fumitoshi Satoh, Kei Takase, Ren Iwata, Shozo Furumoto

    Nuclear medicine and biology 156-157 109621-109621 2026/03/06

    DOI: 10.1016/j.nucmedbio.2026.109621  

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    INTRODUCTION: Aldosterone-producing adenomas (APAs) account for most cases of primary aldosteronism (PA), a major cause of secondary hypertension and hypokalemia. Although adrenal vein sampling (AVS) is the diagnostic gold standard, its invasiveness and limited availability underscore the need for less invasive diagnostic alternatives such as positron emission tomography (PET). We recently developed 6-chloro-5-fluoro-1-(2-[18F]fluoroethyl)-2-(pyridin-3-yl)-1H-benzo[d]imidazole ([18F]ApaScan), a highly CYP11B2-selective PET tracer for imaging APAs. This study characterizes the metabolism, biodistribution, dosimetry, and automated synthesis of [18F]ApaScan in preparation for first-in-human studies. METHODS: Metabolism was evaluated in vitro using mouse, rat, and human liver microsomes and in vivo in mouse blood following the administration of [18F]ApaScan. Biodistribution (%ID/g) was measured in mice, and human radiation doses were estimated using the MIRD schema. The automated radiosynthesis process was optimized on a cassette-based FASTlab module integrated with preparative HPLC to afford the final formulation (ca. 5% ethanol). This formulation was validated in three consecutive production runs in accordance with the in-house manufactured PET drug standards in Japan. RESULTS: A single radiometabolite, identified as the pyridine N-oxide derivative of ApaScan, was observed in both in vitro liver microsome assays and in vivo mouse studies. Biodistribution studies revealed adrenal uptake peaked at 5.9%ID/g at 2 min post-injection and cleared rapidly, with no significant retention in other organs or in bone. The extrapolated human radiation doses were 13.4 μSv/MBq for males and 15.9 μSv/MBq for females, comparable to other clinically used 18F-labeled tracers. The automated radiosynthesis achieved a non-decay-corrected yield of 29.2 ± 0.5%, a molar radioactivity of 1070 ± 246 GBq/μmol, and a radiochemical purity >99%. The final product met all quality specifications, including sterility and endotoxin limits. CONCLUSION: [18F]ApaScan undergoes oxidative metabolism while maintaining favorable adrenal kinetics and exhibiting acceptable dosimetry. We established a reproducible automated radiosynthesis of [18F]ApaScan suitable for clinical use. These findings support proceeding to first-in-human studies to evaluate the pharmacokinetics and APA imaging performance of [18F]ApaScan in patients with PA.

  2. [18F]SMBT-1 PETを用いたラットにおけるイソフルラン麻酔の影響

    原田 龍一, 清水 悠暉, 原田 萌衣, 境 崇行, 船木 善仁, 志田原 美保, 中村 正帆, 古本 祥三, 岡村 信行

    核医学 62 (Suppl.) S182-S182 2025

    Publisher: (一社)日本核医学会

    ISSN: 0022-7854

    eISSN: 2189-9932

  3. HSP90を標的とした分子シャペロンPETイメージングのFirst-in-human試験

    池沼 宏, 小縣 綾, 二橋 尚志, 安野 史彦, 佐藤 弥生, 服部 沙織, 境 崇行, 市瀬 正則, 加藤 隆司, 木村 泰之

    核医学 62 (Suppl.) S220-S220 2025

    Publisher: (一社)日本核医学会

    ISSN: 0022-7854

    eISSN: 2189-9932

  4. A novel PET probe to selectively image heat shock protein 90α/β isoforms in the brain Peer-reviewed

    Takayuki Sakai, Aya Ogata, Hiroshi Ikenuma, Takashi Yamada, Saori Hattori, Junichiro Abe, Shinichi Imamura, Masanori Ichise, Mari Tada, Akiyoshi Kakita, Hiroko Koyama, Masaaki Suzuki, Takashi Kato, Kengo Ito, Yasuyuki Kimura

    EJNMMI Radiopharmacy and Chemistry 9 (1) 2024/03/04

    Publisher: Springer Science and Business Media LLC

    DOI: 10.1186/s41181-024-00248-0  

    eISSN: 2365-421X

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    Abstract Background Heat shock proteins (HSPs) are present throughout the brain. They function as molecular chaperones, meaning they help with the folding and unfolding of large protein complexes. These chaperones are vital in the development of neuropathological conditions such as Alzheimer’s disease and Lewy body disease, with HSP90, a specific subtype of HSP, playing a key role. Many studies have shown that drugs that inhibit HSP90 activity have beneficial effects in the neurodegenerative diseases. Therefore, HSP90 PET imaging ligand can be used effectively to study HSP90 in neurodegenerative diseases. Among four HSP90 isoforms, two cytosolic isoforms (HSP90α and HSP90β) thought to be involved in the structural homeostasis of the proteins related to the neurodegenerative diseases. Currently, no useful PET imaging ligands selectively targeting the two cytosolic isoforms of HSP90 have been available yet. Results In this study, we developed a novel positron emission tomography (PET) imaging ligand, [11C]BIIB021, by 11C-radiolabeling (a positron emitter with a half-life of 20.4 min) 6-Chloro-9-[(4-methoxy-3,5-dimethylpyridin-2-yl)methyl]-9H-purin-2-amine (BIIB021), an inhibitor with a high affinity for and selectivity to HSP90α and HSP90β. [11C]BIIB021 was synthesized with a high yield, molar activity and radiochemical purity. [11C]BIIB021 showed a high binding affinity for rat brain homogenate as well as human recombinant HSP90α and HSP90β proteins. Radioactivity was well detected in the rat brain (SUV 1.4). It showed clear specific binding in PET imaging of healthy rats and autoradiography of healthy rat and human brain sections. Radiometabolite was detected in the brain, however, total distribution volume was well quantified using dual-input graphical model. Inhibition of p-glycoprotein increased brain radioactivity concentrations. However, total distribution volume values with and without p-glycoprotein inhibition were nearly the same. Conclusions We have developed a new PET imaging agent, [11C]BIIB021, specifically targeting HSP90α/β. We have been successful in synthesizing [11C]BIIB021 and in vitro and in vivo imaging HSP90α/β. However, the quantification of HSP90α/β is complicated by the presence of radiometabolites in the brain and the potential to be a substrate for p-glycoprotein. Further efforts are needed to develop radioligand suitable for imaging of HSP90α/β.

  5. グルコーストランスポーター1を標的とする脳PETイメージングリガンドの開発

    境 崇行, 池沼 宏, 山田 貴史, 小縣 綾, 市瀬 正則, 他田 真理, 柿田 明美, 加藤 隆司, 伊藤 健吾, 古本 祥三, 木村 泰之

    核医学 61 (Suppl.) S149-S149 2024

    Publisher: (一社)日本核医学会

    ISSN: 0022-7854

    eISSN: 2189-9932

  6. グルコーストランスポーター1を標的とする脳PETイメージングリガンドの開発

    境 崇行, 池沼 宏, 山田 貴史, 小縣 綾, 市瀬 正則, 他田 真理, 柿田 明美, 加藤 隆司, 伊藤 健吾, 古本 祥三, 木村 泰之

    核医学 61 (Suppl.) S149-S149 2024

    Publisher: (一社)日本核医学会

    ISSN: 0022-7854

    eISSN: 2189-9932

  7. Evaluation of specific binding of [11C]TZ7774 to the receptor-interacting protein kinase 1 (RIPK1) in the brain Peer-reviewed

    Takayuki Sakai, Takashi Yamada, Hiroshi Ikenuma, Aya Ogata, Masanori Ichise, Saori Hattori, Junichiro Abe, Mari Tada, Akiyoshi Kakita, Masaaki Suzuki, Kengo Ito, Takashi Kato, Shinichi Imamura, Yasuyuki Kimura

    American Journal of Nuclear Medicine and Molecular Imaging 14 (5) 345-350 2024

    Publisher: e-Century Publishing Corporation

    DOI: 10.62347/pazg6300  

    eISSN: 2160-8407

  8. Noradrenaline transporter PET reflects neurotoxin-induced noradrenaline level decrease in the rat hippocampus International-journal Peer-reviewed

    Takayuki Sakai, Saori Hattori, Aya Ogata, Takashi Yamada, Junichiro Abe, Hiroshi Ikenuma, Masanori Ichise, Masaaki Suzuki, Kengo Ito, Takashi Kato, Yasuyuki Kimura

    EJNMMI Research 13 (1) 82-82 2023/09/15

    Publisher: Springer Science and Business Media LLC

    DOI: 10.1186/s13550-023-01032-y  

    eISSN: 2191-219X

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    Abstract Background The neuropathological changes of early Alzheimer’s disease (AD) include neurodegenerative loss of noradrenaline neurons in the locus coeruleus with decreasing noradrenaline availability in their projection areas such as the hippocampus. This diminishing noradrenaline availability is thought to play an important role pathophysiologically in the development of cognitive impairment in AD, because noradrenaline is not only essential for maintaining cognitive functions such as memory, learning and attention, but also its anti-inflammatory action, where its lack is known to accelerate the progression of AD in the mouse model. Therefore, the availability of in vivo biomarkers of the integrity of noradrenaline neurons may be beneficial for furthering our understanding of the role played by the noradrenaline system in the progressive cognitive dysfunction seen in AD patients. In this study, we investigated if PET imaging of noradrenaline transporters can predict the level of noradrenaline in the brain. Our hypothesis was PET measured noradrenaline transporter densities could predict the level of noradrenaline concentrations in the rat hippocampus after lesioning of noradrenaline neurons in this region. Results We chemically lesioned the hippocampus of rats (n = 15) by administering a neurotoxin, DSP-4, in order to selectively damage axonal terminals of noradrenergic neurons. These rats then underwent PET imaging of noradrenaline transporters using [11C]MRB ((S,S)-[11C]Methylreboxetine). To validate our hypothesis, postmortem studies of brain homogenates of these rats were performed to measure both noradrenaline transporter and noradrenaline concentrations. [11C]MRB PET showed decreased noradrenaline transporter densities in a DSP-4 dose-dependent manner in the hippocampus of these rats. In turn, these PET measured noradrenaline transporter densities correlated very well with in vitro measured noradrenaline concentrations as well as in vitro transporter densities. Conclusions [11C]MRB PET may be used as an in vivo biomarker of noradrenaline concentrations in the hippocampus of the neurodegenerating brain. Further studies appear warranted to extend its applicability to AD studies.

  9. ヒートショックプロテイン90を標的とする脳PETイメージングリガンドの開発研究

    境 崇行, 池沼 宏, 山田 貴史, 服部 沙織, 小縣 綾, 戸次 雄一, 阿部 潤一郎, 市瀬 正則, 加藤 隆司, 伊藤 健吾, 木村 泰之

    核医学 60 (Suppl.) S203-S203 2023

    Publisher: (一社)日本核医学会

    ISSN: 0022-7854

    eISSN: 2189-9932

  10. Development of antitumor biguanides targeting energy metabolism and stress responses in the tumor microenvironment. International-journal Peer-reviewed

    Takayuki Sakai, Yoshiyuki Matsuo, Kensuke Okuda, Kiichi Hirota, Mieko Tsuji, Tasuku Hirayama, Hideko Nagasawa

    Scientific reports 11 (1) 4852-4852 2021/03/01

    DOI: 10.1038/s41598-021-83708-w  

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    To develop antitumor drugs capable of targeting energy metabolism in the tumor microenvironment, we produced a series of potent new biguanide derivatives via structural modification of the arylbiguanide scaffold. We then conducted biological screening using hypoxia inducible factor (HIF)-1- and unfolded protein response (UPR)-dependent reporter assays and selective cytotoxicity assay under low glucose conditions. Homologation studies of aryl-(CH2)n-biguanides (n = 0-6) yielded highly potent derivatives with an appropriate alkylene linker length (n = 5, 6). The o-chlorophenyl derivative 7l (n = 5) indicated the most potent inhibitory effects on HIF-1- and UPR-mediated transcriptional activation (IC50; 1.0 ± 0.1 μM, 7.5 ± 0.1 μM, respectively) and exhibited selective cytotoxicity toward HT29 cells under low glucose condition (IC50; 1.9 ± 0.1 μM). Additionally, the protein expression of HIF-1α induced by hypoxia and of GRP78 and GRP94 induced by glucose starvation was markedly suppressed by the biguanides, thereby inhibiting angiogenesis. Metabolic flux and fluorescence-activated cell sorting analyses of tumor cells revealed that the biguanides strongly inhibited oxidative phosphorylation and activated compensative glycolysis in the presence of glucose, whereas both were strongly suppressed in the absence of glucose, resulting in cellular energy depletion and apoptosis. These findings suggest that the pleiotropic effects of these biguanides may contribute to more selective and effective killing of cancer cells due to the suppression of various stress adaptation systems in the tumor microenvironment.

  11. PETイメージングを用いたラット脳内NET密度測定とNE濃度に関する研究

    境 崇行, 服部 沙織, 小縣 綾, 山田 貴史, 阿部 潤一郎, 池沼 宏, 市瀬 正則, 鈴木 正昭, 加藤 隆司, 伊藤 健吾, 木村 泰之

    核医学 58 (Suppl.) S207-S207 2021

    Publisher: (一社)日本核医学会

    ISSN: 0022-7854

    eISSN: 2189-9932

  12. Development of near-infrared fluorescent probes with large stokes shifts for non-invasive imaging of tumor hypoxia Invited Peer-reviewed

    Kensuke Okuda, Bahaa G.M. Youssif, Ryosuke Sakai, Takahiro Ueno, Takayuki Sakai, Tetsuya Kadonosono, Yasuyuki Okabe, Ola I.Abdel Razek Salem, Alaa M. Hayallah, Mostafa A. Hussein, Shinae Kizaka-Kondoh, Hideko Nagasawa

    Heterocycles 101 (2) 559-579 2020

    DOI: 10.3987/COM-19-S(F)47  

    ISSN: 0385-5414

    eISSN: 1881-0942

  13. Effects of 2-(2-Chlorophenyl)ethylbiguanide on ERAD Component Expression in HT-29 Cells Under a Serum- and Glucose-Deprived Condition. International-journal Peer-reviewed

    Kentaro Oh-Hashi, Shiori Matsumoto, Takayuki Sakai, Yoko Hirata, Kensuke Okuda, Hideko Nagasawa

    Applied biochemistry and biotechnology 188 (4) 1009-1021 2019/08

    DOI: 10.1007/s12010-019-02969-4  

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    We recently characterized the cytotoxic action of a novel phenformin derivative, 2-(2-chlorophenyl)ethylbiguanide (2-Cl-Phen), on HT-29 cells under a serum- and glucose-deprived condition and found that 2-Cl-Phen attenuated ATF4 and GRP78, typical downstream targets of the unfolded protein response (UPR), together with c-Myc protein expression in a transcriptional and posttranscriptional manner. In the current study, we focused on the expression of ER-associated protein degradation (ERAD) components after treatment with 2-Cl-Phen under a serum- and glucose-deprived condition. Among nine ER-localizing factors regulating protein quality control within the ER, the amounts of Herp, GRP78, GRP94, and OS9 proteins were significantly downregulated by treatment with 2-Cl-Phen. In particular, replacement of the culture medium with the serum- and glucose-deprived medium induced the expression of Herp protein at the early phase. This increase in Herp protein was accompanied by an increase in its mRNA, and its induction was significantly dampened by 2-Cl-Phen. However, cotreatment with a proteasome inhibitor, MG132, restored Herp expression only to a limited extent. Taken together, these results show that 2-Cl-Phen changed the expression of several ERAD components, especially by transcriptional inhibition of Herp induction by 2-Cl-Phen when it occurred at an early phase, and this finding provides new insights into understanding the mechanisms of 2-Cl-Phen-mediated cytotoxicity.

  14. Elucidating the rapid action of 2-(2-chlorophenyl)ethylbiguanide on HT-29 cells under a serum- and glucose-deprived condition. International-journal Peer-reviewed

    Kentaro Oh-Hashi, Shiori Matsumoto, Takayuki Sakai, Yuki Nomura, Kensuke Okuda, Hideko Nagasawa, Yoko Hirata

    Cell biology and toxicology 34 (4) 279-290 2018/08

    DOI: 10.1007/s10565-017-9410-0  

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    We recently demonstrated the cytotoxic action of a novel phenformin derivative, 2-(2-chlorophenyl)ethylbiguanide (2-Cl-Phen), on HT-29 cells under a serum- and glucose-deprived condition. In that study, we showed that the ATF6 arm of the ER stress pathway and c-Myc expression were downregulated 12 h after the treatment with 2-Cl-Phen. Through characterization of intracellular events at the early phase of the 2-Cl-Phen treatment before noticeable morphological changes, we found rapid fluctuations in the c-Myc and ATF4 proteins but not in their mRNAs in 2-Cl-Phen-treated HT-29 cells under the serum- and glucose-deprived condition. The 2-Cl-Phen-mediated downregulation of ATF4 protein was not paralleled by the phosphorylation status of PERK and eIF2α. Reduction of c-Myc expression by 2-Cl-Phen was more profound than that of ATF4 expression, and phosphorylated c-Myc was downregulated within 2 h. Pharmacological studies on the expression of c-Myc and ATF4 proteins showed that this decrease was mediated through proteasomal degradation but not by autophagy. Interestingly, treatment with lithium chloride, which is a well-known inhibitor of GSK3β, partially recovered the expression of ATF4 protein, but its effect on the level of total c-Myc protein was negligible. Treatment with 2-Cl-Phen increased the expression of phosphorylated AMPK, but Compound C, an AMPK inhibitor, did not influence the expression of c-Myc protein in HT-29 cells. Finally, we observed that 2-Cl-Phen partially attenuated the gene expression of integrin subunit α1 (ITGA1), a downstream target of c-Myc. Taken together, these results show that 2-Cl-Phen rapidly downregulated the expression of c-Myc in addition to ER stress responses in a post-translational manner. Further elucidation and improvement of this multi-target-directed compound will provide new insights for developing therapeutic strategies against cancer.

  15. Elucidation of a novel phenformin derivative on glucose-deprived stress responses in HT-29 cells. International-journal Peer-reviewed

    Kentaro Oh-Hashi, Nao Irie, Takayuki Sakai, Kensuke Okuda, Hideko Nagasawa, Yoko Hirata, Kazutoshi Kiuchi

    Molecular and cellular biochemistry 419 (1-2) 29-40 2016/08

    DOI: 10.1007/s11010-016-2747-5  

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    Recently, we developed a variety of phenformin derivatives as selective antitumor agents. Based on previous findings, this study evaluated a promising compound, 2-(2-chlorophenyl)ethylbiguanide (2-Cl-Phen), on the basis of stress responses in the human colon cancer cell line HT-29 under a serum- and glucose-deprived condition. 2-Cl-Phen triggered morphological changes such as shrinkage and plasma membrane disintegration, as well as a decrease in mitochondrial activity and an increase in LDH leakage. To understand intracellular issues relating to 2-Cl-Phen, this study focused on the expression levels of ER stress-inducible genes and several oncogenic genes. Serum and glucose deprivation significantly induced a variety of ER stress-inducible genes, but a 12-h treatment of 2-Cl-Phen down-regulated expression of several ER stress-related genes, with the exception of GADD153. Interestingly, the expression levels of ATF6α, GRP78, MANF, and CRELD2 mRNA were almost completely decreased by 2-Cl-Phen. This study also observed that a 24-h treatment of 2-Cl-Phen attenuated the expression levels of GRP78, GADD153, and c-Myc protein. The decrease in c-Myc protein occurred before the fluctuation of GRP78 protein, while the expression of c-Myc mRNA showed little change with cotreatment of serum and glucose deprivation with 2-Cl-Phen. To further understand the 2-Cl-Phen-induced down-regulation of ATF6-related genes, this study investigated the stability of ATF6α and GRP78 proteins using NanoLuc-tagged constructs. The expression levels of NanoLuc-tagged ATF6α and GRP78 were significantly down-regulated by 2-Cl-Phen in the presence or absence of the translation inhibitor cycloheximide. Taken together, our novel phenformin derivative 2-Cl-Phen has the unique characteristic of diminishing tumor adaptive responses, especially the expression of ATF6-related genes, as well as that of c-Myc protein, in a transcriptional and posttranscriptional manner under a serum- and glucose-deprived condition. Further characterization of cytotoxic mechanisms related to phenformin derivatives may give new insights into developing additional promising anticancer agents.

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Misc. 12

  1. ヒートショックプロテイン90を標的とする脳PETイメージングリガンドの開発研究

    境崇行, 池沼宏, 山田貴史, 服部沙織, 小縣綾, 戸次雄一, 阿部潤一郎, 市瀬正則, 加藤隆司, 伊藤健吾, 木村泰之

    核医学(Web) 60 (Supplement) 2023

    ISSN: 2189-9932

  2. Development of a novel PET ligand for receptor-interacting protein kinase 1 in brain

    Takayuki Sakai, Takashi Yamada, Hiroshi Ikenuma, Aya Ogata, Masanori Ichise, Saori Hattori, Junichiro Abe, Masaaki Suzuki, Kengo Ito, Takashi Kato, Sinichi Imamura, Yasuyuki Kimura

    JOURNAL OF CEREBRAL BLOOD FLOW AND METABOLISM 41 (1_SUPPL) 119-119 2021/11

    ISSN: 0271-678X

    eISSN: 1559-7016

  3. PETイメージングを用いたラット脳内NET密度測定とNE濃度に関する研究

    境 崇行, 服部 沙織, 小縣 綾, 山田 貴史, 阿部 潤一郎, 池沼 宏, 市瀬 正則, 鈴木 正昭, 加藤 隆司, 伊藤 健吾, 木村 泰之

    核医学 58 (Suppl.) S207-S207 2021/10

    Publisher: (一社)日本核医学会

    ISSN: 0022-7854

    eISSN: 2189-9932

  4. PETイメージングを用いたラット脳内NET密度測定とNE濃度に関する研究

    境崇行, 服部沙織, 小縣綾, 小縣綾, 山田貴史, 山田貴史, 阿部潤一郎, 池沼宏, 市瀬正則, 鈴木正昭, 加藤隆司, 伊藤健吾, 木村泰之

    核医学(Web) 58 (Supplement) 2021

    ISSN: 2189-9932

  5. がん微小環境モジュレーターの創出をめざす創薬研究

    永澤秀子, 境崇行, 小池晃太, 奥田健介, 平山祐, 辻美恵子

    日本薬学会年会要旨集(CD-ROM) 139th (1) 290-290 2019

    Publisher: (公社)日本薬学会

    ISSN: 0918-9823

  6. がん微小環境標的ビグアニド誘導体の創薬研究

    境崇行, 小池晃太, 三木彩路, 横尾沙季, 平山祐, 奥田健介, 永澤秀子

    日本薬学会年会要旨集(CD-ROM) 137th (2) 238-238 2017

    Publisher: (公社)日本薬学会

    ISSN: 0918-9823

  7. ヒト結腸癌細胞株HT29におけるグルコース欠乏性ストレス応答に対する新規フェンホルミン誘導体の効果に関する研究

    松本詩織, 境崇行, 奥田健介, 奥田健介, 永澤秀子, 平田洋子, 平田洋子, 大橋憲太郎, 大橋憲太郎

    日本生化学会大会(Web) 90th [3P-0482] 2017

    Publisher: 生命科学系学会合同年次大会運営事務局

  8. がん微小環境のエネルギー代謝を標的とするがん治療薬の開発

    境崇行, 平山祐, 辻美恵子, 永澤秀子

    日本がん分子標的治療学会学術集会プログラム・抄録集 21st 2017

  9. がん微小環境における低栄養ストレス応答を標的とするビグアニド誘導体の創薬研究

    境崇行, 辻美恵子, 平山祐, 奥田健介, 永澤秀子

    メディシナルケミストリーシンポジウム講演要旨集 35th 2017

    ISSN: 0919-214X

  10. ヒト結腸癌細胞HT29におけるグルコース欠乏性ストレス応答に対する新規フェンフォルミン誘導体の効果に関する研究

    大橋憲太郎, 大橋憲太郎, 境崇行, 奥田健介, 永澤秀子

    日本がん分子標的治療学会学術集会プログラム・抄録集 20th 2016

  11. ビグアニド系がん微小環境モジュレーターの標的分子解明を目指すアフィニティプローブの開発

    境崇行, 奥田健介, 竹本安那, 平山祐, 永澤秀子

    日本薬学会年会要旨集(CD-ROM) 135th (2) 190-190 2015

    Publisher: (公社)日本薬学会

    ISSN: 0918-9823

  12. がん微小環境における低酸素・低栄養ストレス応答を標的とする創薬化学研究-新規ビグアニド誘導体GPU-539の開発-

    境崇行, 成瀬康介, 奥田健介, 永澤秀子

    日本がん分子標的治療学会学術集会プログラム・抄録集 18th 2014

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Presentations 2

  1. ヒートショックプロテイン90を標的とする脳PETイメージングリガンドの開発研究

    境 崇行、池沼 宏、山田貴史、服部沙織、小縣 綾、戸次雄一、阿部潤一郎、市瀬正則、鈴木正昭、加藤隆司、伊藤健吾、木村泰之

    第63回日本核医学会学術総会

  2. PETイメージングを用いたラット脳内NET密度とNE濃度に関する研究

    境 崇行、服部沙織、小縣 綾、山田貴史、阿部潤一郎、池沼 宏、市瀬正則、鈴木正昭、加藤隆司、伊藤健吾、木村泰之

    第61回日本核医学会学術総会 2021/11

Research Projects 7

  1. Evaluation of a PET imaging ligand for microglia in Alzheimer's diseases

    Offer Organization: Japan Society for the Promotion of Science

    System: Grants-in-Aid for Scientific Research

    Category: Grant-in-Aid for Scientific Research (B)

    Institution: National Center for Geriatrics and Gerontology

    2024/04/01 - 2027/03/31

  2. がん微小環境のPETイメージング解析研究

    境 崇行

    Offer Organization: 日本学術振興会

    System: 科学研究費助成事業

    Category: 若手研究

    Institution: 東北大学

    2024/04 - 2027/03

  3. Development of an in vivo cell tracking method using biological orthogonal reactions and PET

    Offer Organization: Japan Society for the Promotion of Science

    System: Grants-in-Aid for Scientific Research

    Category: Grant-in-Aid for Challenging Research (Exploratory)

    Institution: National Center for Geriatrics and Gerontology

    2023/06/30 - 2025/03/31

  4. 分子シャペロンHSP90を標的とする新規脳PETイメージングの開発

    境 崇行

    Offer Organization: 日本学術振興会

    System: 科学研究費助成事業

    Category: 若手研究

    Institution: 国立研究開発法人国立長寿医療研究センター

    2022/04/01 - 2024/03/31

  5. Development of PET imaging of brain immunity as a biomarker for drug development to treat neurodegenerative diseases

    Offer Organization: Japan Society for the Promotion of Science

    System: Grants-in-Aid for Scientific Research

    Category: Grant-in-Aid for Scientific Research (B)

    Institution: National Center for Geriatrics and Gerontology

    2021/04/01 - 2024/03/31

  6. Development of brain PET imaging using bioorthogonal reactions

    Offer Organization: Japan Society for the Promotion of Science

    System: Grants-in-Aid for Scientific Research

    Category: Grant-in-Aid for Challenging Research (Exploratory)

    Institution: National Center for Geriatrics and Gerontology

    2021/07/09 - 2023/03/31

  7. GLUTを標的とする新規脳PETイメージングの開発

    境 崇行

    Offer Organization: 堀科学財団

    System: 堀科学財団研究助成金

    Institution: 国立研究開発法人 国立長寿医療研究センター

    2022/04 - 2023/03

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