Details of the Researcher

PHOTO

Ryota Hirakawa
Section
Graduate School of Agricultural Science
Job title
Specially Appointed Assistant Professor(Research)
Degree
  • PhD (Tohoku University)

e-Rad No.
80984012
Profile

研究内容

・鳥類におけるB細胞の発生分化

・腸管でのIgA結合細菌の役割

Research History 1

  • 2023/04 - Present
    Tohoku University Graduate School of Agricultural Science

Education 4

  • Tohoku University Graduate School of Agricultural Science

    2020/03 - 2023/04

  • Tohoku University Graduate School of Agricultural Science

    2018/04 - 2020/03

  • Tohoku University Faculty of Agriculture

    2014/04 - 2018/04

  • Sagano high school

    2011/04 - 2014/03

Professional Memberships 6

  • World's Poultry Science Association

    2026/06 - Present

  • 日本農芸化学会

    2025 - Present

  • The Japanese Society of Veterinary Science

    2023/03 - Present

  • Society for Mucosal Immunology

    2022/03 - Present

  • Japan Poultry Science Association

    2020/03 - Present

  • Japanese Society of Animal Science

    2020/03 - Present

︎Show all ︎Show first 5

Research Interests 6

  • Holo-omics

  • B cell

  • IgA

  • Microbiome

  • Mucosal immunology

  • Avian

Research Areas 2

  • Life sciences / Animal production science / Functional morphology

  • Life sciences / Animal production science / Mucosal immunology

Awards 7

  1. Awarded an oral presentation (The International Congress of Mucosal Immunology 2024)

    2024/07 Society for Mucosal Immunology Discovery of Bursa-independent B cell differentiation in gastrointestinal tracts of birds

  2. 第166回 日本獣医学会学術集会優秀発表賞(獣医解剖分科会)

    2023/11 日本獣医学会 ニワトリ腸管に備わるファブリキウス嚢非依存的なB細胞分化経路の特定

  3. 優秀発表賞

    2021/09 日本家禽学会2021秋季大会 ニワトリ腸管に発達する免疫臓器の機能解明に資する組織学的研究

  4. 優秀発表賞

    2021/03 日本畜産学会第128回大会 高温感作による免疫疲弊を回避する鶏盲腸に発達する新たな免疫臓器Cecal patchの発見

  5. Presentation Award

    2020/11 International Virtual Symposium "New Insights on Animal Science" Effects of heat stress on the immune function and morphological structure of avian gut-associated lymphoid tissues

  6. 農学研究科長賞

    2020/03 東北大学

  7. Poster Award

    2017/07 New Horizon in Food Science via Agricultural Immunology Effect of chronic heat stress on splenic immune function and amino acids concentration in broiler chickens

Show all ︎Show 5

Papers 12

  1. Bursa of Fabricius–independent B cells establish an IgA-mediated intestinal barrier that safeguards gut–liver homeostasis Peer-reviewed

    Ryota Hirakawa, Motoshi Hisamatsu, Sayoko Maekawa, Eiki Asai, Miyuko Ohta, Ayumi Matsuo, Kunihiro Okano, Toh Miyazaki, Motofusa Akiyama, Masaaki Toyomizu, Jahidul Islam, Mutsumi Furukawa, Tomonori Nochi

    Proceedings of the National Academy of Sciences 123 (29) 2026/07/15

    Publisher: National Academy of Sciences

    DOI: 10.1073/pnas.2605569123  

    ISSN: 0027-8424

    eISSN: 1091-6490

    More details Close

    The bursa of Fabricius (BF), a specialized lymphoid structure in birds, regulates avian B-cell development. However, the BF starts to regress posthatching, suggesting that as-yet-unidentified structures assume this function during maturation. This study reveals that BF-independent B-cell genesis involving the gut cecal tonsils (CTs) predominates over the BF-dependent pathway posthatching. Although B-cell progenitors originating from the bone marrow (BM) typically migrate to the BF, we identified a population that instead migrates to the CTs through CXCL12/CXCR4-mediated chemotaxis. These BF-independent CXCR4 + pre-B cells acquired surface IgM expression within the CT follicular region (FR) and differentiated into immunoglobulin A (IgA)-producing plasma cells. Inhibition of CXCR4 + cell influx from the BM impaired formation of the FR, altered the responsiveness of intestinal IgA to commensal bacteria, promoted gut dysbiosis, allowed translocation of pathogenic bacteria (e.g., Streptococcus alactolyticus ) to the liver, and ultimately caused hepatic inflammation and metabolic dysfunction. These abnormalities were reversed by administering an IgA-enriched fecal preparation derived from healthy chickens. Collectively, these results reveal the existence of a population of BF-independent B cells that function in CTs. These cells represent a promising target for maintaining and improving the immunological and microbiological environment of the avian intestinal tract, which is closely linked to hepatic homeostasis.

  2. Breast milk stabilizes bacterial communities in the large intestine even after weaning Peer-reviewed

    Kaori Ito, Jahidul Islam, Kota Sakurai, Saeka Koyama, Ayumi Matsuo, Kunihiro Okano, Ryota Hirakawa, Mutsumi Furukawa, Tomonori Nochi

    Biochemical and Biophysical Research Communications 151585-151585 2025/03

    Publisher: Elsevier BV

    DOI: 10.1016/j.bbrc.2025.151585  

    ISSN: 0006-291X

  3. Freeze-dried fecal microorganisms as an effective biomaterial for the treatment of calves suffering from diarrhea Peer-reviewed

    Jahidul Islam, Natsuki Ohtani, Yu Shimizu, Masae Tanimizu, Yoshiaki Goto, Masumi Sato, Eiji Makino, Toru Shimada, Chise Ueda, Ayumi Matsuo, Yoshihisa Suyama, Yoshifumi Sakai, Niel A. Karrow, Hiroshi Yoneyama, Ryota Hirakawa, Mutsumi Furukawa, Hidekazu Tanaka, Tomonori Nochi

    Scientific Reports 14 (1) 2024/11/14

    Publisher: Springer Science and Business Media LLC

    DOI: 10.1038/s41598-024-79267-5  

    eISSN: 2045-2322

  4. Formation of the junctions between lymph follicles in the Peyer's patches even before postweaning activation Peer-reviewed

    Anri Teshigahara, Yuri Banba, Hiromi Yoshida, Mitsuji Kaji, Zhou Zhou, Nao Koyama, Yoshifumi Sakai, Niel A. Karrow, Kouetsu Ogasawara, Ryota Hirakawa, Jahidul Islam, Mutsumi Furukawa, Tomonori Nochi

    Scientific Reports 14 (1) 2024/07/09

    Publisher: Springer Science and Business Media LLC

    DOI: 10.1038/s41598-024-65984-4  

    eISSN: 2045-2322

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    Abstract Peyer’s patches (PPs), which contain an abundance of B and T cells, play a key role in inducing pivotal immune responses in the intestinal tract. PPs are defined as aggregated lymph follicles, which consist of multiple lymph follicles (LFs) that may interact with each other in a synergistic manner. LFs are thought to be spherical in shape; however, the characteristics of their structure are not fully understood. To elucidate changes in the structure of PPs as individuals grow, we generated serial 2D sections from entire PPs harvested from mice at 2, 4, and 10 weeks of age and performed a 3D analysis using a software, Amira. Although the number of LFs in PPs was not changed throughout the experiment, the volume and surface area of LFs increased significantly, indicating that LFs in PPs develop continuously by recruiting immune cells, even after weaning. In response to the dramatic changes in the intestinal environment after weaning, the development of germinal centers (GCs) in LFs was observed at 4 and 10 weeks (but not 2 weeks) of age. In addition, GCs gradually began to form away from the center of LFs and close to the muscle layer where export lymphatic vessels develop. Importantly, each LF was joined to the adjacent LF; this feature was observed even in preweaning nonactivated PPs. These results suggest that PPs may have a unique organization and structure that enhance immune functions, allowing cells in LFs to have free access to adjacent LFs and egress smoothly from PPs to the periphery upon stimulation after weaning.

  5. Identification of four genes responsible for antimicrobial resistance of MEL-B against S. aureus Peer-reviewed

    Shinya Yamauchi, So Shimoda, Akio Kawahara, Tomohiro Sugahara, Shuhei Yamamoto, Masao Kitabayashi, Atsushi Sogabe, Christine A. Jansen, Ryuta Tobe, Ryota Hirakawa, Jahidul Islam, Mutsumi Furukawa, Hiroshi Yoneyama, Tomonori Nochi

    Biochemical and Biophysical Research Communications 149566-149566 2024/01

    Publisher: Elsevier BV

    DOI: 10.1016/j.bbrc.2024.149566  

    ISSN: 0006-291X

  6. Heat Stress Causes Immune Abnormalities via Massive Damage to Effect Proliferation and Differentiation of Lymphocytes in Broiler Chickens. International-journal Peer-reviewed

    Ryota Hirakawa, Siti Nurjanah, Kyohei Furukawa, Atsushi Murai, Motoi Kikusato, Tomonori Nochi, Masaaki Toyomizu

    Frontiers in veterinary science 7 46-46 2020/02

    DOI: 10.3389/fvets.2020.00046  

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    Broiler chickens are highly sensitive to high ambient temperatures due to their feathers, lack of skin sweat glands, and high productivity. Heat stress (HS) is a major concern for the poultry industry because it negatively affects growth as well as immune functions, which increase the potential risk of infectious disease outbreaks. Therefore, it is vital to elucidate HS's effect on the avian immune system, especially considering the global rise in average surface temperature. Our study identified a series of immunological disorders in heat-stressed broiler chickens. We exposed 22-day-old broiler chickens to a continuous HS condition (34.5 ± 0.5°C) for 14 days and immunized them with a prototype bovine serum albumin (BSA) antigen. The plasma and lymphoid tissues (thymus, bursa of Fabricius, and spleen) were harvested at the end of the experiments to investigate the induction of BSA-specific immune responses. Our results revealed that plasma titers of immunoglobulin (Ig)Y, IgM, and IgA antibodies specific for BSA were lower than those of thermoneutral chickens immunized with BSA. Furthermore, the spleens of the heat-stressed broiler chickens displayed severe depression of Bu1+ B cells and CD3+ T cells, including CD4+ T cells and CD8+ T cells, and lacked a fully developed germinal center (GC), which is crucial for B cell proliferation. These immunological abnormalities might be associated with severe depression of CD4-CD8- or CD4+CD8+ cells, which are precursors of either helper or killer T cells in the thymus and Bu1+ B cells in the bursa of Fabricius. Importantly, HS severely damaged the morphology of the thymic cortex and bursal follicles, where functional maturation of T and B cells occur. These results indicate that HS causes multiple immune abnormalities in broiler chickens by impairing the developmental process and functional maturation of T and B cells in both primary and secondary lymphoid tissues.

  7. Assessing the Effects of Farm Management Systems and Diarrhea on Gut Microbiota and Metabolites in Dairy Calves in Indonesia Peer-reviewed

    Andi Hiroyuki, Jahidul Islam, Ainissya Fitri, Rusli Fidriyanto, Ki Ageng Sarwono, Andhika Yudha Prawira, Edy Sophian, Rohmatussolihat, Wulansih Dwi Astuti, Sukarman, Delicia Yunita Rahman, Yantyati Widyastuti, Natsuki Ohtani, Ryota Hirakawa, Mutsumi Furukawa, Roni Ridwan, Tomonori Nochi

    Animals 16 (12) 1766-1766 2026/06/08

    Publisher: MDPI AG

    DOI: 10.3390/ani16121766  

    eISSN: 2076-2615

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    Dairy production in Indonesia relies on two contrasting calf-rearing systems: concentrate-driven commercial dairy systems (CDS) and smallholder farms (SH). As these systems differ in feeding practices, they may influence gut development in calves. This study examined how farm management affects the fecal microbiota and metabolites in healthy and diarrhea post-weaning calves. Fecal samples were collected from 11 and 14 calves from CDS and SH facilities, respectively. Gut bacterial communities were analyzed using 16S rRNA gene amplicon sequencing, and metabolites were characterized using untargeted gas chromatography–mass spectrometry (GC-MS). Microbial diversity, metabolite profiles, and correlation networks were compared between the farm types and diarrhea status. Our results showed that farm management strongly shaped microbial community structure and metabolic outputs, but did not alter microbial richness. Although diarrhea is typically associated with reduced microbial richness, it did not affect the microbial community structure, suggesting that it primarily impacted microbial function, particularly the metabolic environment. Correlation network analysis revealed stronger linkages between microbes and metabolites in SH calves, especially under healthy conditions. Overall, these findings indicate that dietary structure is a key determinant of fermentation stability, with CDS calves showing greater metabolic instability. In contrast, SH calves maintain a more resilient, fiber-driven functional state.

  8. Broad specificity of monoclonal IgA (TEPC15-IgA) for enteric bacteria via phosphorylcholine-mediated interaction. Peer-reviewed

    Saeka Koyama, Kaori Ito, Katsuki Usami, Shino Wada, Tsukasa Yamashita, Wakako Ikeda-Ohtsubo, Haruki Kitazawa, Ryota Hirakawa, Jahidul Islam, Mutsumi Furukawa, Tomonori Nochi

    The Journal of veterinary medical science 2024/06/04

    DOI: 10.1292/jvms.23-0441  

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    Immunoglobulin A (IgA) is notable for its broad specificity toward multiple bacteria. Phosphorylcholine (PC) plays a role in the infection of pathogenic bacteria carrying PC and in the induction of IgA responses in the host immune system. The commercially available mouse monoclonal IgA, TEPC15-IgA, is a distinctive antibody with specificity for PC, warranting further exploration of its response to PC-bearing enteric bacteria. In this study, using 17 different enteric bacteria, including 3 aerobic and 14 anerobic bacteria that could be cultured in vitro, we confirmed that TEPC15-IgA recognizes 4 bacterial species: Lactobacillus taiwanensis, Limosilactobacillus frumenti, Streptococcus infantis, and Escherichia coli, although reactivity varied. Interestingly, TEPC15-IgA did not react with four of six Lactobacillus species used. Moreover, distinct target molecules associated with PC in L. taiwanensis and L. frumenti were evident, differing in molecular weight. These findings suggest that the natural generation of PC-specific IgA could prevent PC-mediated infections and potentially facilitate the formation of a microflora rich in indigenous bacteria with PC, particularly in the gastrointestinal tract.

  9. Protective Effects of Gnetin C from Melinjo Seed Extract against High-Fat Diet-Induced Hepatic Steatosis and Liver Fibrosis in NAFLD Mice Model Peer-reviewed

    Tohfa Kabir, Haruki Yoshiba, Afifah Zahra Agista, Halima Sultana, Yusuke Ohsaki, Chiu-Li Yeh, Ryota Hirakawa, Hiroko Tani, Tomoki Ikuta, Tomonori Nochi, Suh-Ching Yang, Hitoshi Shirakawa

    Nutrients 15 (18) 3888-3888 2023/09/06

    Publisher: MDPI AG

    DOI: 10.3390/nu15183888  

    eISSN: 2072-6643

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    Nonalcoholic fatty liver disease (NAFLD), the most common form of chronic liver disease, can progress to hepatic steatosis, inflammation, and advanced fibrosis, increasing the risk of cirrhosis. Resveratrol, a natural polyphenol with antioxidant and anti-inflammatory properties, is beneficial in treating multiple metabolic diseases. Gnetin C, a resveratrol derivative obtained from Melinjo seed extract (MSE), shares similar health-promoting properties. We investigated the role of gnetin C in preventing NAFLD in a mouse model and compared it with resveratrol. Male C57BL/6J mice were fed a control diet (10% calories from fat), a high-fat choline-deficient (HFCD) diet (46% calories from fat) and HFCD diet supplemented with gnetin C (150 mg/kg BW·day−1) or resveratrol (150 mg/kg BW·day−1) for 12 weeks. Gnetin C supplementation reduced body and liver weight, and improved blood glucose levels and insulin sensitivity. Both gnetin C- and resveratrol reduced hepatic steatosis, with gnetin C also decreasing liver lipid content. Gnetin C and resveratrol ameliorated HFCD diet-induced hepatic fibrosis. The mRNA expression results, and western blot analyses showed that gnetin C and, to some extent, resveratrol downregulated fibrosis markers in the TGF-β1 signaling pathway, indicating a possible safeguarding mechanism against NAFLD. These results suggest that gnetin C supplementation may protect against lipid deposition and hepatic fibrosis.

  10. Fermented Rice Bran Supplementation Prevents the Development of Intestinal Fibrosis Due to DSS-Induced Inflammation in Mice. International-journal Peer-reviewed

    Afifah Zahra Agista, Tubagus Bahtiar Rusbana, Jahidul Islam, Yusuke Ohsaki, Halima Sultana, Ryouta Hirakawa, Kouichi Watanabe, Tomonori Nochi, Ardiansyah, Slamet Budijanto, Suh-Ching Yang, Takuya Koseki, Hisashi Aso, Michio Komai, Hitoshi Shirakawa

    Nutrients 13 (6) 2021/05/30

    DOI: 10.3390/nu13061869  

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    Fermented rice bran (FRB) is known to protect mice intestines against dextran sodium sulfate (DSS)-induced inflammation; however, the restoration of post-colitis intestinal homeostasis using FRB supplementation is currently undocumented. In this study, we observed the effects of dietary FRB supplementation on intestinal restoration and the development of fibrosis after DSS-induced colitis. DSS (1.5%) was introduced in the drinking water of mice for 5 days. Eight mice were sacrificed immediately after the DSS treatment ended. The remaining mice were divided into three groups, comprising the following diets: control, 10% rice bran (RB), and 10% FRB-supplemented. Diet treatment was continued for 2 weeks, after which half the population of mice from each group was sacrificed. The experiment was continued for another 3 weeks before the remaining mice were sacrificed. FRB supplementation could reduce the general observation of colitis and production of intestinal pro-inflammatory cytokines. FRB also increased intestinal mRNA levels of anti-inflammatory cytokine, tight junction, and anti-microbial proteins. Furthermore, FRB supplementation suppressed markers of intestinal fibrosis. This effect might have been achieved via the canonical Smad2/3 activation and the non-canonical pathway of Tgf-β activity. These results suggest that FRB may be an alternative therapeutic agent against inflammation-induced intestinal fibrosis.

  11. In vivo emergence of beige-like fat in chickens as physiological adaptation to cold environments. International-journal Peer-reviewed

    Rina Sotome, Akira Hirasawa, Motoi Kikusato, Taku Amo, Kyohei Furukawa, Anna Kuriyagawa, Kouichi Watanabe, Anne Collin, Hitoshi Shirakawa, Ryota Hirakawa, Yuta Tanitaka, Hideki Takahashi, Guoyao Wu, Tomonori Nochi, Tsuyoshi Shimmura, Craig H Warden, Masaaki Toyomizu

    Amino acids 53 (3) 381-393 2021/03

    DOI: 10.1007/s00726-021-02953-5  

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    While it has been hypothesized that brown adipocytes responsible for mammalian thermogenesis are absent in birds, the existence of beige fat has yet to be studied directly. The present study tests the hypothesis that beige fat emerges in birds as a mechanism of physiological adaptation to cold environments. Subcutaneous neck adipose tissue from cold-acclimated or triiodothyronine (T3)-treated chickens exhibited increases in the expression of avian uncoupling protein (avUCP, an ortholog of mammalian UCP2 and UCP3) gene and some known mammalian beige adipocyte-specific markers. Morphological characteristics of white adipose tissues of treated chickens showed increased numbers of both small and larger clusters of multilocular fat cells within the tissues. Increases in protein levels of avUCP and mitochondrial marker protein, voltage-dependent anion channel, and immunohistochemical analysis for subcutaneous neck fat revealed the presence of potentially thermogenic mitochondria-rich cells. This is the first evidence that the capacity for thermogenesis may be acquired by differentiating adipose tissue into beige-like fat for maintaining temperature homeostasis in the subcutaneous fat 'neck warmer' in chickens exposed to a cold environment.

  12. Nutritional regulation of mitochondrial ROS production of chickens exposed to acute and chronic heat stress

    M. Toyomizu, A. Mujahid, R. Hirakawa, K. Furukawa, M. A.K. Azad, M. Taciak, M. Kikusato

    EAAP Scientific Series 138 73-81 2019

    DOI: 10.3920/978-90-8686-891-9_5  

    ISSN: 0071-2477

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Books and Other Publications 2

  1. 暑熱環境が家禽の免疫に与える影響

    平川良太

    月刊「アグリバイオ」 2025/12

  2. 暑熱環境が家禽の免疫臓器に与える影響

    平川良太

    月刊「アグリバイオ」 2025/05

Presentations 17

  1. Influence of the gut microbiota on the formation of B-cell follicles in the avian cecal tonsils

    Tomonori Nochi, Motoshi Hisamatsu, Ryota Hirakawa, Sayoko Maekawa, Mutsumi Furukawa, Islam Jahidul

    2026 World's Poultry Congress 2026/07

  2. Bursa of Fabricius-independent B cell genesis in avian GALTs shape gut microbiota in chickens

    Ryota Hirakawa, Motoshi Hisamatsu, Sayoko Maekawa, Eiki Asai, Miyuko Ohta, Jahidul Islam, Mutsumi Furukawa, Tomonori Nochi

    2026 World's Poultry Congress 2026/07

  3. 鳥類において肝臓侵襲細菌を制御する腸管IgAの細菌特異性と分泌メカニズム

    平川良太

    第2回IgA抗体医療学会学術集会 2026/05/08

  4. 母豚の腸内細菌叢が乳汁IgA産生へ与える影響の評価

    古川 睦実, 太田 実友子, 岡田 拓歩, 覺前 成博, 浅井 映輝, 前川 紗佳子, 槻尾 麻奈絵, 加藤 智子, 栗田 瑞希, 平川 良太, Jahidul Islam, 野地 智法

    2025/09/13

  5. コラーゲンによるB細胞におけるケモカイン受容体 CXCR4およびCXCR5の発現制御

    浅井映輝, 平川良太, 前川紗佳子, 古川睦実, Islam Jahidul, 野地智法

    2025/09/13

  6. ファブリキウス嚢非依存的B細胞 の盲腸扁桃への細胞遊走機序

    平川 良太, 久松 基史, 前川 紗佳子, 浅井 映輝, 太田 実友子, Jahidul Islam, 古川 睦実, 野地 智法

    日本畜産学会 第133回大会 2025/03/13

  7. Discovery of Bursa-independent B cell differentiation in gastrointestinal tracts of birds

    Ryota Hirakawa, Motoshi Hisamatsu, Sayoko Maekawa, Eiki Asai, Islam Jahidul, Mutsumi Furukawa, Tomonori Nochi

    The International Congress of Mucosal Immunology 2024/07/07

  8. Formation of the junctions between lymph follicules in the Peyer's patcheseven before postweaning activation

    Anri Teshigahara, Yuri Banba, Hiromi Yoshida, Mitsuji Kaji, Zhou Zhou, Nao Koyama, Yoshifumi Sakai, Niel A. Karrow, Kouetsu Ogasawara, Ryota Hirakawa, Jahidul Islam, Mutsumi Furukawa, Tomonori Nochi

    2024/07/07

  9. 性成熟前後のニワトリ卵管における IgA 産生能の評価

    前川紗佳子, 平川良太, 久松基史, 山下司, 古川睦実, 野地智法

    日本家禽学会2023年度秋季大会 2023/09/21

  10. 3D可視化技術を用いたニワトリ盲腸扁桃の形態形成機序の解明

    久松基史、平川良太、前川紗佳子、古川睦実、野地智法

    日本畜産学会第131回大会 2023/09/19

  11. ニワトリ腸管に備わるファブリキウス嚢非依存的なB細胞分化経路の特定

    平川 良太, 久松 基史, 前川 紗佳子, 宇佐美 克紀, 岡田 拓歩, Jahidul Islam, 古川 睦実, 野地 智法

    第166回 日本獣医学会 2023/09/05

  12. Heat stress affects the function and structure of cecal tonsils in broiler chickens

    Hirakawa Ryota, Hisamatsu Motoshi, Furukawa Mutsumi, Nochi Tomonori

    The International Congress of Mucosal Immunology 2022/07/17

  13. ニワトリ腸管に発達する免疫臓器の機能解明に資する組織学的研究

    平川良太, 久松基史, 古川睦実, 佐藤幹, 野地智法

    日本家禽学会2021年度秋季大会 2021/09/16

  14. 高温感作による免疫疲弊を回避する鶏盲腸に発達する新たな免疫臓器Cecal patchの発見

    平川 良太, 喜久里 基, 古川 恭平, 古川 睦実, 宇佐美 克紀, 佐藤 幹, 豊水 正昭, 野地 智法

    日本畜産学会第128回大会 2021/03/28

  15. Enterococcus faecium T-110が有する離乳期マウスの腸内免疫・微生物叢形成に与える影響評価

    平川良太, 勅使河原杏莉, 浅井映輝, 嶋崎智史, 沖野洋一, 本田翔太郎, 石其慧太, Jahidul Islam, 古川睦実, 野地智法

    日本農芸化学会 2026 2026/03/11

  16. Evaluation of the effect of female sex hormones on the production of maternal IgA in the broiler oviduct

    Sayoko Maekawa, Ryota Hirakawa, Motoshi Hisamatsu, Eiki Asai, Jahidul Islam, Mutsumi Furukawa, Tomonori Nochi

    2025/03/28

  17. Bacterial specificity of Bursa-dependent and -independent IgA in gut of chickens

    Ryota Hirakawa, Motoshi Hisamatsu, Sayoko Maekawa, Eiki Asai, Islam Jahidul, Mutsumi Furukawa, Tomonori Nochi

    2025/03/28

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Industrial Property Rights 1

  1. IgA欠損鳥類モデルの作製方法

    野地智法, 平川良太

    Property Type: Patent

Research Projects 8

  1. Mechanisms by which milk-derived antibodies act on beneficial microorganisms

    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: Tohoku University

    2025/06/27 - 2027/03/31

  2. 鶏腸管で発達するIgA結合細菌叢が担う生体バリア機能の実態解明

    平川良太, 野地智法

    Offer Organization: 公益財団法人 伊藤記念財団

    System: 令和7年度研究助成

    2026/04 - 2027/03

  3. 鶏腸管IgA抗体が肝障害を誘発する腸内細菌の体内移行を抑制するメカニズム

    平川 良太

    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

    2025/04 - 2027/03

  4. 肝障害性Streptococcus属細菌の体内侵襲を誘発するニワトリ腸内環境の解明

    平川良太, 野地智法

    Offer Organization: 公益財団法人 伊藤記念財団

    System: 令和7年度研究助成

    2025/04 - 2026/03

  5. 酢酸菌が誘導するニワトリ腸管 IgA 抗体による腸内細菌叢の代謝制御メカニズムの解明

    平川良太

    Offer Organization: 一般財団法人 旗影会

    System: 2025年度 旗影会研究助成

    2025/04 - 2026/03

  6. 酢酸菌 G. hansenii の菌体成分によるニワトリ腸管粘膜免疫の調節機構の解明

    平川良太

    Offer Organization: 一般財団法人 旗影会

    System: 2024年度 旗影会研究助成

    2024/04 - 2025/03

  7. 性成熟期のニワトリ卵管IgA産生に働く抗体産生細胞の遊走機序の解明

    平川 良太

    Offer Organization: 日本学術振興会

    System: 科学研究費助成事業

    Category: 研究活動スタート支援

    Institution: 東北大学

    2023/08 - 2025/03

  8. ニワトリ腸管におけるIgA産生を促す候補微生物の有用性評価

    平川良太

    Offer Organization: 一般財団法人 旗影会

    System: 2023年度 旗影会研究助成

    Institution: 東北大学

    2023/04 - 2024/03

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