Updated on 2026/07/14

写真a

 
IIDA Atsuo
 
Organization
Graduate School of Bioagricultural Sciences Department of Animal Sciences Assistant Professor
Graduate School
Graduate School of Bioagricultural Sciences
Undergraduate School
School of Agricultural Sciences Department of Bioresource Sciences
Title
Assistant Professor

Degree 1

  1. 博士(理学) ( 2006.3   名古屋大学 ) 

Research Interests 10

  1. Viviparous fish

  2. Medaka & Zebrafish

  3. Bats

  4. Electric eel

  5. Viviparous fish

  6. Electrocyte

  7. Trophotaenia

  8. Electric eel

  9. Zebrafish

  10. Makai-Zoology

Research Areas 6

  1. Life Science / Morphology, anatomy

  2. Life Science / Marine/Aquatic life sciences

  3. Life Science / Developmental biology

  4. Life Science / Virology

  5. Life Science / Marine/Aquatic life sciences

  6. Life Science / Zoological sciences

▼display all

Research History 14

  1. Tokyo University of Agriculture and Technology

    2020.4

      More details

    Country:Japan

  2. Graduate School of Bioagricultural Sciences, Nagoya University, Tokai National Higher Education and Research System   Assistant Professor

    2020.4

  3. Tokyo University of Agriculture and Technology   Faculty of Agriculture Research and Education Center for Prevention of Global Infectious Diseases of Animals

    2020.3

  4. Nagoya University   Graduate School of Bioagricultural Sciences   Assistant Professor

    2019.9

      More details

    Country:Japan

  5. Graduate School of Bioagricultural Sciences, Nagoya University   Assistant Professor

    2019.9 - 2020.3

  6. Kyoto University   Institute for Frontier Life and Medical Sciences   Assistant Professor

    2016.10 - 2019.8

      More details

    Country:Japan

  7. Institute for Frontier Life and Medical Sciences   Assistant Professor

    2016.10 - 2019.8

  8. Kyoto University   Institute for Frontier Medical Sciences   Assistant Professor

    2012.5 - 2016.9

      More details

    Country:Japan

  9. Kyoto University   Institute for Frontier Medical Sciences

    2011.4 - 2012.4

      More details

    Country:Japan

  10. Kyoto University   Graduate School of Medicine

    2008.12 - 2011.3

      More details

    Country:Japan

  11. Kyoto University   Institute for Frontier Medical Sciences

    2008.4 - 2008.11

      More details

    Country:Japan

  12. Kyoto University   Graduate School of Medicine

    2006.11 - 2008.3

      More details

    Country:Japan

  13. Kyoto University   Institute for Frontier Medical Sciences

    2006.4 - 2006.10

      More details

    Country:Japan

  14. 東名古屋病院付属リハビリテーション学院   非常勤講師

    2003 - 2005

      More details

    Country:Japan

▼display all

Education 6

  1. Nagoya University   Graduate School, Division of Natural Science

    2003.4 - 2006.3

      More details

    Country: Japan

  2. 名古屋大学大学院   理学研究科   生命理学専攻 博士後期課程

    2003.4 - 2006.3

  3. Nagoya University   Graduate School, Division of Natural Science

    2001.4 - 2003.3

      More details

    Country: Japan

  4. 名古屋大学大学院   理学研究科   生命理学専攻 博士前期課程

    2001.4 - 2003.3

  5. Nagoya University   Faculty of Science

    1997.4 - 2001.3

      More details

    Country: Japan

  6. Nagoya University   School of Science   Department of Biological Science

    1997.4 - 2001.3

▼display all

Professional Memberships 10

  1. 日本動物学会

  2. 日本獣医学会

  3. 日本発生生物学会

  4. 日本分子生物学会

  5. Animal Geeks

  6. The Unique-Kai

    2015.8

  7. THE JAPANESE SOCIETY OF VETERINARY SCIENCE

  8. THE ZOOLOGICAL SOCIETY OF JAPAN

  9. 日本分子生物学会

  10. 日本発生生物学会

▼display all

Committee Memberships 3

  1. Development, Growth & Differentiation   Editorial Board  

    2020.4   

      More details

    Committee type:Academic society

  2. Development, Growth & Differentiation   Editorial Board  

    2020   

  3. ユニーク会   総帥(財務兼任)  

    2020   

      More details

    Committee type:Other

Awards 10

  1. 第3回血管生物医学若手研究会 優秀賞

    2017.3   日本血管生物医学会  

    飯田敦夫

  2. 血管生物医学若手優秀賞

    2017   血管生物医学会若手研究会  

  3. ガクモンからエンタメ☆優秀賞

    2015.8   第2回博物ふぇすてぃばる!  

    飯田敦夫

  4. ガクモンからエンタメ☆優秀賞

    2015   博物ふぇすてぃばる!  

  5. 優秀発表賞

    2013.12   再生医科学研究所若手発表会  

    飯田敦夫

  6. 優秀発表賞

    2013   京都大学再生医科学研究所  

  7. 第63回日本細胞生物学会大会 若手優秀発表賞

    2011.6   日本細胞生物学会  

    飯田敦夫

  8. 若手優秀発表賞

    2011   日本細胞生物学会  

  9. 第15回日本病態プロテアーゼ学会 若手奨励賞

    2010.8   日本病態プロテアーゼ学会  

    飯田敦夫

  10. 若手奨励賞

    2010   日本病態プロテアーゼ学会  

▼display all

 

Papers 72

  1. Digestive system and gill morphology of the female doublespotted queenfish, Scomberoides lysan (Carangidae: Actinopterygii) Reviewed Open Access

    Tongtako W., Phinrub W., Kenthao A., Thaochan N., Iida A., Nganvongpanit K., Sornying K., Imsonpang S., Prakobkarn A., Senarat S.

    Zoologia (Curitiba)   Vol. 43   2026

     More details

    Language:English   Publishing type:Research paper (scientific journal)   Publisher:FapUNIFESP (SciELO)  

    ABSTRACT The doublespotted queenfish, Scomberoides lysan (Forsskål, 1775), is an economically important coastal teleost with aquaculture potential. Although aspects of growth and reproduction have been investigated, the digestive physiology of this species remains poorly characterized, representing a critical gap for the development of evidence-based aquaculture protocols. This study provides a morphological and histological characterization of the digestive system of female S. lysan (mean total length = 57.0 ± 0.5 cm) obtained from aquaculture ponds. We examined the entire alimentary canal, from the oral cavity to the hindgut, with special attention to gill structures relevant to feeding mechanics. Distinctive morphological features included heterogeneous gill rakers, with elongated, spine-like structures on the first gill arch contrasting with shorter, blunt rakers on subsequent arches, potentially facilitating opportunistic feeding across different prey types. The intestinal coefficient (0.20-0.36; mean = 0.27 ± 0.05) confirmed carnivorous feeding habits. Histologically, the digestive system exhibited the typical four-layer organization (mucosa, submucosa, muscularis, and serosa) throughout, with region-specific specializations. Notably, gastric glands were significantly more abundant in the cardiac region than in the pyloric stomach (p < 0.01), suggesting functional compartmentalization of digestive processes. Specialized mucus-secreting cells were distributed throughout the digestive system, with variable densities among regions. These findings provide foundational insights into the digestive biology of female S. lysan, establishing an anatomical framework for future studies on digestive morphophysiology in emerging aquaculture species.

    DOI: 10.1590/s1984-4689.v43.e25035

    Open Access

  2. A novel transposable element in lampreys that is similar in sequence to Tol2 of teleost fishes Open Access

    Iida A., Pombal M.A., Koga A., Hondo E.

    bioRxiv     2026

     More details

    Authorship:Lead author, Corresponding author   Language:English   Publishing type:Research paper (scientific journal)  

    DOI: 10.64898/2026.01.12.699174

    Open Access

  3. Microanatomical characterization and histochemistry of the Siamese dwarf rasbora, Trigonostigma somphongsi (Meinken, 1958), a critically endangered species in Thailand: Implicating to the conservative biology Reviewed

    1. Mitparian T, Kulabtong S, Thaochan N, Iida A, Wongkamhaeng K, Vidthayanon C, Nganvongpanit K, Kenthao A, Senarat S

    Journal of Fish Biology     2026

     More details

    Language:English   Publishing type:Research paper (scientific journal)  

    DOI: 10.1111/jfb.70366

  4. Comparative observation of the organ development and health of the tropical oyster Crassostrea belcheri (Sowerby, 1871) in hatchery and wild farming conditions. Reviewed International coauthorship Open Access

    3. Senarat S, Chooseangjaew S, Tanyaros S, Kongthong K, Thaochan N, Dusitsittipon S, Sornying P, Iida A, Boonyoung P

    Veterinary Integrative Sciences   Vol. 24 ( e2026066-1-19 )   2026

     More details

    Language:English   Publishing type:Research paper (scientific journal)  

    DOI: 10.12982/VIS.2026.066

    Open Access

  5. RO8191, a new compound for initiating embryo implantation in mice Reviewed Open Access

    Shu J, Terakawa J, Takikawa S, Osuka S, Muraoka A, Ruan J, Iida A, Ito J, Hondo E

    Scientific Reports     page: 32387   2025.9

  6. The mechanism of action of micafungin against pteropine orthoreovirus infection in the human A549 cell line Reviewed Open Access

    Bubphasook W., Iida A., Hondo E.

    Archives of Virology   Vol. 170   page: 201   2025.8

     More details

    Language:English   Publishing type:Research paper (scientific journal)   Publisher:Cold Spring Harbor Laboratory  

    Abstract

    Pteropine orthoreovirus (PRV) is a fusogenic virus carried by bats that causes respiratory illnesses in humans. PRVs are transmitted from bats to humans and among humans. Micafungin (MCFG), an approved drug for fungal treatment, shows potential in inhibiting PRV propagation, although its precise mechanism of action remains unclear. This study aimed to investigate molecular mechanisms of MCFG during PRV propagation. Initially, molecular docking was employed to predict the primary target of MCFG. It was the p17 protein of PRV. Prior to examining the effect of MCFG on p17 suppression, differential gene expression analysis was performed to compare PRV-infected host cells with MCFG-treated cells, and it was found that IL-6 should be the main regulator induced by MCFG. Silencing IL-6 with siRNA markedly induced PRV release, syncytial formation, and marginally enhanced PRV RNA replication, corresponding to the main suppressive effects of MCFG against PRV. The p17, the presumed suppression target to inhibit syncytial formation by MCFG, markedly reduced syncytial formation but did not influence viral RNA replication. In contrast, MCFG significantly suppressed syncytial formation and slightly reduced PRV RNA replication, although both MCFG and anti-p17 antibody increased IL-6 mRNA expression. MCFG may inhibit other PRV proteins, like nonstructural replication protein (sigmaNS), which were found by molecular docking study. In conclusion, MCFG primarily targets p17 and modulates host immunity through IL-6, which likely interferes directly with syncytial formation.

    DOI: 10.1007/s00705-025-06369-4

    DOI: 10.1007/s00705-025-06369-4

    Open Access

    Other Link: https://doi.org/10.1007/s00705-025-06369-4

  7. Ventral-to-dorsal electrocyte development in electric organs of electric eel (Electrophorus) Reviewed International coauthorship

    Senarat S., Matsumoto A., Nagasawa T., Sakaki S., Tsuzuki D., Uchida K., Kuwahara M., Nikaido M., Hondo E., Iida A.

    Developmental Biology   Vol. 524   page: 87 - 96   2025.8

     More details

    Authorship:Last author, Corresponding author   Language:English   Publishing type:Research paper (scientific journal)  

    DOI: https://doi.org/10.1016/j.ydbio.2025.05.003

    DOI: https://doi.org/10.1016/j.ydbio.2025.05.003

    Other Link: https://www.sciencedirect.com/science/article/pii/S0012160625001186?via%3Dihub

  8. MHC Class I-like Gene in Squirrel Monkey Cytomegalovirus and the Evolution of the Virus

    Hondo E., Mizutani T., Shimoda H., Iida A.

        2025.4

     More details

    Language:English   Publishing type:Research paper (scientific journal)   Publisher:Cold Spring Harbor Laboratory  

    Abstract

    Homology searches between the entire viral peptides and the human peptides revealed a squirrel monkey cytomegalovirus (Saimiriine herpesvirus 4 strain [SBHV4]) S9 protein exhibiting 60.6% amino acid sequence identity across 86.3% of the full-length human HLA-A. This represents the most extensive and highest level of homology observed to date between a viral protein and an Major Histocompatibility Complex (MHC) class I molecule. Molecular modeling of the S9 and HLA-A proteins and subsequent structural comparison confirmed significant similarity, including the antigen-presenting region. Although cytomegalovirus exhibits high host specificity, the presence of the S9 protein in this virus warrants immunological caution in the event of cross-species transmission.

    Phylogenetic analysis of MHC class I-like gene sequences corresponding to primate HLA-A and SBHV4 suggested that SBHV4-S9 was likely acquired via LINE-1-mediated horizontal gene transfer from the African Old World monkeyPapio anubisor a closely related ancestral species approximately 12.9 to 22.2 million years ago. SBHV4-S9 displayed evidence of strong negative selection following its divergence fromPapio anubis. Furthermore, phylogenetic analysis of the SBHV4-S1 gene and primate SLAMF6-like genes indicated that this gene was acquired after the divergence from the New World monkeySaimiri boliviensis boliviensis. Evaluation of the overall genetic similarity between the SBHV4 genome and cDNAs from individual primate species using hierarchical clustering based on Levenshtein distance and Wasserstein distance revealed a higher degree of similarity between the SBHV4 genome andPapio anubiscDNA compared to that withSaimiri boliviensis boliviensiscDNA. Taken together, these findings suggest thatPapio anubishas a longer co-evolutionary history with SBHV4 than squirrel monkeys, and that SBHV4 likely spread from Africa to South America, acquiring novel genomic elements in new hosts.

    DOI: 10.1101/2025.04.10.648282

  9. Entomopoxvirus-like long DNA sequences in human centromeric and peri-centromeric regions

    Hondo E., Mizutani T., Shimoda H., Iida A.

        2024.11

     More details

    Language:English   Publishing type:Research paper (scientific journal)   Publisher:Cold Spring Harbor Laboratory  

    Abstract

    Mammalian genomes harbor a range of endogenous virus-like sequences, although these sequences are typically affected by mutations and deletions, and no examples have been reported of long, conserved regions extending tens of kilobases or more. In this study, a comprehensive similarity search against the complete human T2T genome (hT2T) using high-quality viral genome data was performed. Among nearly continuous viral sequences, the longest identified was entomopoxvirus, spanning 140 kb with a similarity of over 57%. Notably, entomopoxvirus-like sequences stood out within the human genome, with a total of 2.42 Mb exhibiting similarity to human sequences. Seven entomopoxvirus species were fragmented into regions less than 37 kb each, with nearly all of these segments scattered throughout the human genome. Surprisingly, nearly all of these sequences were localized within the hsat1A regions of human centromeric and pericentromeric areas. On chromosome 3, for example, all sequences were confined within the centromere, and extensive transcription was observed across these regions. While the lack of fully sequenced genomes for other eukaryotic species limits our ability to infer the phylogenetic significance of these regions, our findings reveal remarkably long virus-like sequences within centromeric and related regions—as integral components of eukaryotic chromosomes. This discovery opens new avenues in the study of co-evolution between viruses and eukaryotes, offering intriguing insights into the genomic landscape at the core of eukaryotic biology.

    DOI: 10.1101/2024.11.07.622552

  10. Evidence of histopathological appearance in the aquatic animal health from Libong Island, Thailand Reviewed

    Imsonpang S., Phinrub W., Dahlan N., Senarat S., lida A., Charoenphon N., Thaochan N., Angsujinda K.

    Veterinary Integrative Sciences   Vol. 23 ( 3 ) page: 1 - 15   2024.11

     More details

    Language:English   Publishing type:Research paper (scientific journal)  

  11. Histological characteristics of oocyte differentiation in the captive longnose seahorse Hippocampus trimaculatus (Leach, 1814) Reviewed

    Senarat S, Chumee S, Kaneko G, Wandee S, Kenthao A, Kongtueng P, Uribe MC, Nganvongpanit K, Iida A, Sornying P

    Journal of Fish Biology     2024.6

     More details

    Language:English   Publishing type:Research paper (scientific journal)  

  12. Systematic histology and evidence for the male reproductive activity of Amphibalanus amphitrite (Darwin, 1854) Reviewed

    Senarat S, Kaewnuan R, Sudtongkong C, Boonyoung P, Sukparangsi W, Kongtueng P, Srivorakul S, Wongkhamhaeng K, Charoenphon N, Iida A, Kenthao A

    Invertebrate Biology   Vol. e12427   2024.5

     More details

    Language:English   Publishing type:Research paper (scientific journal)  

  13. A rapid and simple procedure for the whole-mount bone staining of small fish Reviewed

    Yeesan, N, Sudtongkong, C, Kong-Oh, S, Angsujinda, K, Kettratad, J, Poolprasert, P, Iida, A, Boonyoung, P, Nganvongpanit, K, Kenthao, A, Kaneko, G, Senarat, S

    Journal of histotechnology   Vol. 47 ( 4 ) page: 166 - 172   2024.4

     More details

    Language:English   Publishing type:Research paper (scientific journal)  

  14. Insight into the function of voltage-sensing phosphatase (VSP) in hind-gut derived pseudoplacenta of a viviparous teleost Xenotoca eiseni Reviewed

    Ratanayotha A, Iida A, Nomura J, Hondo E, Okamura Y, Kawai T

    American journal of physiology. Regulatory, integrative and comparative physiology   Vol. 326 ( 6 ) page: 461 - 471   2024.4

     More details

    Language:English   Publishing type:Research paper (scientific journal)  

  15. Functional analysis of a first hindlimb positioning enhancer via Gdf11 expression Reviewed Open Access

    Saito S, Kanazawa U, Iida A, Takemoto T, Suzuki T

    Frontiers in Cell and developmental biology     2024.2

     More details

    Language:English   Publishing type:Research paper (scientific journal)  

    DOI: 10.3389/fcell.2024.1302141

    Open Access

  16. Antiviral Effects of Micafungin against Pteropine Orthoreovirus, an Emerging Zoonotic Virus Carried by Bats Reviewed

    Hondo E, Katta T, Sato A, Kadofusa N, Ishibashi T, Shimoda H, Kato H, Iida A

    Virus Research     page: 199248   2024.1

     More details

    Authorship:Last author   Language:English   Publishing type:Research paper (scientific journal)  

  17. Membrane molecule, bouncer regulates sperm binding activity in immature oocytes in a viviparous teleost species Poecilia reticulata (guppy) Reviewed

    Yoshida J, Tajika Y, Uchida K, Kuwahara M, Sano K, Suzuki T, Hondo E, Iida A

    Development, Growth & Differentiation     2024.1

     More details

    Authorship:Last author, Corresponding author   Language:English   Publishing type:Research paper (scientific journal)  

  18. A rapid and simple procedure for the whole-mount bone staining of small fish. Reviewed International coauthorship

    Yeesan, N., Sudtongkong, C., Kong-Oh, S., Angsujinda, K., Kettratad, J., Poolprasert, P., Iida, A., Boonyoung, P., Nganvongpanit, K., Kenthao, A., Kaneko, G., & Senarat, S

    Journal of histotechnology     2024

     More details

    Language:English   Publishing type:Research paper (scientific journal)  

    DOI: 10.1080/01478885.2024.2339452

  19. Histological characteristics of oocyte differentiation in the captive longnose seahorse Hippocampus trimaculatus (Leach, 1814) Reviewed International coauthorship

    Senarat S, Chumee S, Kaneko G, Wandee S, Kenthao A, Kongtueng P, Uribe MC, Nganvongpanit K, Iida A, Sornying P

    Journal of Fish Biology     2024

     More details

    Language:English   Publishing type:Research paper (scientific journal)  

    DOI: 10.1111/jfb.15768

  20. Electric organ discharge from electric eel facilitates DNA transformation into teleost larvae in laboratory conditions. Reviewed Open Access

    Sakaki S, Ito R, Abe H, Kinoshita M, Hondo E, Iida A

    PeerJ   Vol. 11   page: e16596   2023.12

     More details

    Authorship:Last author, Corresponding author   Language:English   Publishing type:Research paper (scientific journal)  

    DOI: 10.7717/peerj.16596

    DOI: 10.7717/peerj.16596

    Open Access

    Other Link: https://doi.org/10.7717/peerj.16596

  21. Glucose absorption activity and gene expression of sugar transporters in the trophotaenia of the viviparous teleost Xenotoca eiseni Reviewed International coauthorship Open Access

    Iida A, Tsuda N, Yoshida J, Nomura J, Ratanayotha A, Kawai T, Hondo E

    Biochimica et Biophysica Acta – General Subjects   Vol. 1867 ( 11 ) page: 130464   2023.9

     More details

    Authorship:Lead author, Corresponding author   Language:English   Publishing type:Research paper (scientific journal)  

    DOI: https://doi.org/10.1016/j.bbagen.2023.130464

    DOI: https://doi.org/10.1016/j.bbagen.2023.130464

    Open Access

  22. Glucose absorption activity and gene expression of sugar transporters in the trophotaenia of the viviparous teleost Xenotoca eiseni Reviewed

    Iida A, Tsuda N, Yoshida J, Nomura J, Ratanayotha A, Kawai T, Hondo E

    Biochimica et Biophysica Acta – General Subjects   Vol. 1867 ( 11 ) page: 130464   2023.9

     More details

    Authorship:Lead author, Corresponding author   Language:English   Publishing type:Research paper (scientific journal)  

  23. Vitellogenin uptake activity in the intestinal ducts of intraovarian embryos in a viviparous teleost Xenotoca eiseni Reviewed Open Access

    Nomura J, Yokoi H, Hondo E, Iida A

    Biochemical and Biophysical Research Communications   Vol. 644   page: 79 - 84   2023.2

     More details

    Authorship:Last author, Corresponding author   Language:English   Publishing type:Research paper (scientific journal)  

    DOI: 10.1016/j.bbrc.2023.01.009

    Open Access

  24. Vitellogenin uptake activity in the intestinal ducts of intraovarian embryos in a viviparous teleost Xenotoca eiseni Reviewed Open Access

    Nomura J, Yokoi H, Hondo E, Iida A

    Biochemical and Biophysical Research Communications   Vol. 644   page: 79 - 84   2023.1

     More details

    Authorship:Last author, Corresponding author   Language:English   Publishing type:Research paper (scientific journal)  

    DOI: 10.1016/j.bbrc.2023.01.009

    Open Access

  25. A modified histological method for marine invertebrates Reviewed

    Kongthong K, Charoenphon N, Thaochan N, Boonyoung P, Iida A, Jeamah A, Imsonpang S, Wongkhamhaeng K, Senarat S

    Veterinary Integrative Sciences   Vol. 21 ( 1 ) page: 251 - 263   2023.1

     More details

    Language:English   Publishing type:Research paper (scientific journal)  

  26. The brain structure and ultrastructure of the gonadotropic cell in the female grunting toadfish, Allenbatrachus grunniens (Linnaeus 1758) Reviewed

    Mitparian T, Kettratad J, Kangwanrangsan N, Ampawong S, Kaneko G, Iida A, Senarat S, Charoenphon N

      Vol. 57 ( 2 ) page: 281 - 288   2023.1

     More details

    Language:English   Publishing type:Research paper (scientific journal)  

  27. A modified histological method for marine invertebrates Reviewed International coauthorship

    5. Kongthong K, Charoenphon N, Thaochan N, Boonyoung P, Iida A, Jeamah A, Imsonpang S, Wongkhamhaeng K, Senarat S

    Veterinary Integrative Sciences     2023

     More details

    Language:English   Publishing type:Research paper (scientific journal)  

  28. Endocytosis-mediated vitellogenin absorption and lipid metabolism in the hindgut- derived placenta of the viviparous teleost Xenotoca eiseni Reviewed

    Iida A, Nomura J, Yoshida J, Suzuki T, Yokoi H, Hondo E

    Biochimica et Biophysica Acta - Molecular and Cell Biology of Lipids   Vol. 1867   page: 159183   2022.9

     More details

    Authorship:Lead author, Corresponding author   Language:English   Publishing type:Research paper (scientific journal)  

  29. The medaka fish Tol2 transposable element is in an early stage of decay: identification of a nonautonomous copy Reviewed

    Hayashi S, Tsukiyama T, Iida A, Kinoshita M, Koga A

    Genome   Vol. 65 ( 3 ) page: 183 - 187   2022.3

     More details

    Language:English   Publishing type:Research paper (scientific journal)  

  30. Prevalence and Characteristic of Extended Spectrum Beta-lactamase producing Escherichia coli Isolated from Flies in Rural Sakon Nakhon, Thailand. Reviewed

    Kimprasit T, Kumla S, Sirilaophaisan S, Hondo E, Iida A, Kaewpila C

    Agriculture and Natural Resources   Vol. 056 ( 6 ) page: 1069 - 1076   2022.1

     More details

    Language:English   Publishing type:Research paper (scientific journal)  

  31. The medaka fish Tol2 transposable element is in an early stage of decay: identification of a nonautonomous copy Reviewed

    Hayashi S, Tsukiyama T, Iida A, Kinoshita M, Koga A

    Genome   Vol. 65 ( 3 ) page: 183 - 187   2022

     More details

    Language:English   Publishing type:Research paper (scientific journal)  

    DOI: 10.1139/gen-2021-0010.

    DOI: 10.1139/gen-2021-0010.

  32. Endocytosis-mediated vitellogenin absorption and lipid metabolism in the hindgut- derived placenta of the viviparous teleost Xenotoca eiseni Reviewed Open Access

    Iida A, Nomura J, Yoshida J, Suzuki T, Yokoi H, Hondo E

    Biochimica et Biophysica Acta - Molecular and Cell Biology of Lipids   Vol. 1867   page: 159183   2022

     More details

    Authorship:Lead author, Corresponding author   Language:English   Publishing type:Research paper (scientific journal)  

    DOI: 10.1016/j.bbalip.2022.159183

  33. Prevalence and Characteristic of Extended Spectrum Beta-lactamase producing Escherichia coli Isolated from Flies in Rural Sakon Nakhon, Thailand Reviewed International coauthorship

    Kimprasit T, Kumla S, Sirilaophaisan S, Hondo E, Iida A, Kaewpila C

    Agriculture and Natural Resources   Vol. 056 ( 6 ) page: 1069 - 1076   2022

     More details

    Language:English  

  34. Distinct interferon response in bat and other mammalian cell lines infected with pteropine orthoreovirus Reviewed

    Tarigan R, Katta T, Takemae H, Shimoda H, Maeda K, Iida A, Hondo E

    Virus Genes   Vol. 56 ( 6 ) page: 510 - 520   2021.12

     More details

    Language:English   Publishing type:Research paper (scientific journal)  

  35. Expression and antimicrobial activity of liver-expressed antimicrobial peptides in the ovaries of the viviparous teleost Xenotoca eiseni. Reviewed

    Iida A, Nakai R, Yoshida J, Sano K, Hondo E

    Fish and Shellfish Immunology   Vol. 118   page: 405 - 410   2021.11

     More details

    Authorship:Lead author, Corresponding author   Language:English   Publishing type:Research paper (scientific journal)  

  36. Cubam receptor-mediated endocytosis in hindgut-derived pseudoplacenta of a viviparous teleost Xenotoca eiseni Reviewed

    Iida A, Sano K, Inokuchi M, Nomura J, Suzuki T, Kuriki M, Sogabe M, Susaki D, Tonosaki K, Kinoshita T, Hondo E

    Journal of Experimental Biology   Vol. 224 ( 13 )   2021.6

     More details

    Authorship:Lead author, Corresponding author   Language:English   Publishing type:Research paper (scientific journal)  

  37. Viral-derived DNA invasion and variation in Indonesian population of large flying fox Pteropus vampyrus. Reviewed

    Iida A, Takemae H, Tarigan R, Kobayashi R, Kato H, Shimoda H, Omatsu T, Supratikno, Basri C, Mayasari NLPI, Agungpriyono S, Maeda K, Mizutani T, Hondo E

    Journal of Veterinary Medical Science   Vol. 83 ( 7 ) page: 1068 - 1074   2021.6

     More details

    Authorship:Lead author   Language:English   Publishing type:Research paper (scientific journal)  

  38. Sharply angled lateral curvature modification in anal fin of a viviparous fish, Xenotoca variata (Cyprinodontiformes: Goodeidae) Reviewed

    Iida A, Nakai R, Nomura J, Tanaka R, Mizuno N, Kurobe M, Hondo E

    Zoological Science   Vol. 38 ( 1 ) page: 67 - 71   2021.2

     More details

    Authorship:Lead author, Corresponding author   Language:English   Publishing type:Research paper (scientific journal)  

  39. Dispersal history of Miniopterus fuliginosus bats and their associated viruses in east Asia. Reviewed

    Kimprasit T, Nunome M, Iida K, Murakami Y, Wong ML, Wu CH, Kobayashi R, Hengjan Y, Takemae H, Yonemitsu K, Kuwata R, Shimoda H, Si L, Sohn JH, Asakawa S, Ichiyanagi K, Maeda K, Oh HS, Mizutani T, Kimura J, Iida A, Hondo E

    PLOS ONE   Vol. 16 ( 1 ) page: e0244006   2021.1

     More details

    Language:English   Publishing type:Research paper (scientific journal)  

  40. Cubam receptor-mediated endocytosis in hindgut-derived pseudoplacenta of a viviparous teleost Xenotoca eiseni Reviewed Open Access

    Iida A, Sano K, Inokuchi M, Nomura J, Suzuki T, Kuriki M, Sogabe M, Susaki D, Tonosaki K, Kinoshita T, Hondo E

    Journal of Experimental Biology   Vol. 224 ( 13 ) page: jeb242613   2021

     More details

    Authorship:Lead author, Corresponding author   Language:English   Publishing type:Research paper (scientific journal)  

    DOI: :10.1242/jeb.242613

    Open Access

  41. Dispersal history of Miniopterus fuliginosus bats and their associated viruses in east Asia. Reviewed International coauthorship Open Access

    Kimprasit T, Nunome M, Iida K, Murakami Y, Wong ML, Wu CH, Kobayashi R, Hengjan Y, Takemae H, Yonemitsu K, Kuwata R, Shimoda H, Si L, Sohn JH, Asakawa S, Ichiyanagi K, Maeda K, Oh HS, Mizutani T, Kimura J, Iida A, Hondo E

    PLOS ONE   Vol. 16 ( 1 ) page: e0244006   2021

     More details

    Language:English   Publishing type:Research paper (scientific journal)  

    DOI: 10.1371/journal.pone.0244006

    Open Access

  42. Histological observation of the reproductive system in a viviparous teleost Xenotoca eiseni Rutter 1896 (Cyprinodontiformes: Goodeidae) Reviewed

    Iida A, Nomura J, Hondo E.

    Anatomia, Histologia, Embryologia   Vol. 50   page: 161 - 168   2021

     More details

    Authorship:Lead author, Corresponding author   Language:English   Publishing type:Research paper (scientific journal)  

    DOI: 10.1111/ahe.12614

  43. Sharply angled lateral curvature modification in anal fin of a viviparous fish, Xenotoca variata (Cyprinodontiformes: Goodeidae) Reviewed

    Iida A, Nakai R, Nomura J, Tanaka R, Mizuno N, Kurobe M, Hondo E

    Zoological Science   Vol. 38   page: 67 - 71   2021

     More details

    Authorship:Lead author, Corresponding author   Language:English   Publishing type:Research paper (scientific journal)  

    DOI: 10.2108/zs200135

  44. Viral-derived DNA invasion and variation in Indonesian population of large flying fox Pteropus vampyrus. Reviewed International coauthorship Open Access

    Iida A, Takemae H, Tarigan R, Kobayashi R, Kato H, Shimoda H, Omatsu T, Supratikno, Basri C, Mayasari NLPI, Agungpriyono S, Maeda K, Mizutani T, Hondo E

    Journal of Veterinary Medical Science   Vol. 83 ( 7 ) page: 1068 - 1074   2021

     More details

    Authorship:Lead author   Language:English   Publishing type:Research paper (scientific journal)  

    DOI: 10.1292/jvms.21-0115

    Open Access

  45. Expression and antimicrobial activity of liver-expressed antimicrobial peptides in the ovaries of the viviparous teleost Xenotoca eiseni. Reviewed

    Iida A, Nakai R, Yoshida J, Sano K, Hondo E

    Fish and Shellfish Immunology   Vol. 118   page: 405 - 410   2021

     More details

    Authorship:Lead author, Corresponding author   Language:English   Publishing type:Research paper (scientific journal)  

    DOI: https://doi.org/10.1016/j.fsi.2021.09.029

  46. Distinct interferon response in bat and other mammalian cell lines infected with pteropine orthoreovirus Reviewed Open Access

    Tarigan R, Katta T, Takemae H, Shimoda H, Maeda K, Iida A, Hondo E

    Virus Genes   Vol. 57 ( 6 ) page: 510 - 520   2021

     More details

    Language:English   Publishing type:Research paper (scientific journal)  

    DOI: 10.1007/s11262-021-01865-6

  47. Innervation of the wing membrane in the bent-winged bat Miniopterus fuliginosus. Reviewed

    Aoyama A, Doysabas KCC, Iida A, Hondo E

    Anatomia, Histologia, Embryologia   Vol. 49 ( 6 ) page: 681 - 685   2020.11

     More details

    Language:English   Publishing type:Research paper (scientific journal)  

  48. Role of Pattern Recognition Receptors and Interferon-beta in protecting bat cell lines from Encephalomyocarditis virus and Japanese encephalitis virus infection Reviewed

    Tarigan R, Shimoda H, Doysabas KCC, Maeda K, Iida A, Hondo E

    Biochemical and Biophysical Research Communications   Vol. 527   page: 1 - 7   2020.6

     More details

    Language:English   Publishing type:Research paper (scientific journal)  

  49. ATeam technology for detecting early signs of viral cytopathic effect. Reviewed

    Doysabas KCC, Oba M, Ishibashi T, Shibata H, Takemae H, Shimoda H, Mizutani T, Iida A, Hondo E

    Journal of Veterinary Medical Science   Vol. 82   page: 387 - 393   2020.3

     More details

    Language:English   Publishing type:Research paper (scientific journal)  

  50. Generation and evaluation of a transgenic zebrafish for tissue-specific expression of a dominant-negative Rho-associated protein kinase-2. Reviewed

    Iida A†, Wang Z†, Hondo E, Sehara-Fujisawa A

    Biochemical and Biophysical Research Communications   Vol. 525   page: 8 - 13   2020.2

     More details

    Authorship:Lead author, Corresponding author   Language:English   Publishing type:Research paper (scientific journal)  

  51. ATeam technology for detecting early signs of viral cytopathic effect. Reviewed Open Access

    Doysabas KCC, Oba M, Ishibashi T, Shibata H, Takemae H, Shimoda H, Mizutani T, Iida A, Hondo E

    The Journal of Veterinary Medical Science   Vol. 82   page: 387-393   2020

     More details

    Language:English   Publishing type:Research paper (scientific journal)  

    DOI: 10.1292/jvms.20-0021

    Open Access

  52. Generation and evaluation of a transgenic zebrafish for tissue-specific expression of a dominant-negative Rho-associated protein kinase-2. Reviewed Open Access

    Iida A, Wang Z, Hondo E, Sehara-Fujisawa A

    Biochemical and Biophysical Research Communications   Vol. 525   page: 8-13   2020

     More details

    Authorship:Lead author, Corresponding author   Language:English   Publishing type:Research paper (scientific journal)  

    DOI: 10.1016/j.bbrc.2020.02.055

    Open Access

  53. Innervation of the wing membrane in the bent-winged bat Miniopterus fuliginosus. Reviewed

    Aoyama A, Doysabas KCC, Iida A, Hondo E*.

    Anatomia, Histologia, Embryologia     page: in press   2020

     More details

    Language:English   Publishing type:Research paper (scientific journal)  

    DOI: 10.1111/ahe.12560

  54. Role of Pattern Recognition Receptors and Interferon-beta in protecting bat cell lines from Encephalomyocarditis virus and Japanese encephalitis virus infection Reviewed Open Access

    Tarigan R, Shimoda H, Doysabas KCC, Maeda K, Iida A, Hondo E*

    Biochemical and Biophysical Research Communications   Vol. 525   page: 1-7   2020

     More details

    Language:English   Publishing type:Research paper (scientific journal)  

    DOI: 10.1016/j.bbrc.2020.04.060

  55. In silico analysis-based identification of the target residue of integrin α6 for metastasis inhibition of basal-like breast cancer. Reviewed Open Access

    Tanaka S, Senda N, Iida A, Sehara-Fujisawa A, Ishii T, Sato F, Toi M, Itou J*

    Genes to Cells   Vol. 24 ( 9 ) page: 596-607.   2019

     More details

    Language:English   Publishing type:Research paper (scientific journal)  

    DOI: 10.1111/gtc.12714

  56. Mother-to-embryo vitellogenin transport in a viviparous teleost Xenotoca eiseni. Reviewed Open Access

    Iida A, Arai HN, Someya Y, Inokuchi M, Onuma TA, Yokoi H, Suzuki T, Hondo E, Sano K

    Proc Natl Acad Sci U S A   Vol. 116   page: 22359-22365   2019

     More details

    Authorship:Lead author, Corresponding author   Language:English   Publishing type:Research paper (scientific journal)  

    DOI: 10.1073/pnas.1913012116

    Open Access

  57. A disruption of integrin α4 in zebrafish that leads to cephalic hemorrhage during development Reviewed

    Iida A, Wang Z, Sehara-Fujisawa A

    Genes & Genetic Systems   Vol. 94   page: 117 - 119   2019

     More details

    Authorship:Lead author, Corresponding author  

  58. Rap1b Promotes Notch Signal-Mediated Hematopoietic Stem Cell Development by Enhancing Integrin-Mediated Cell Adhesion Reviewed

    Rho SS, Kobayashi I, Oguri-Nakamura E, Ando K, Fujiwara M, Kamimura N, Hirata H, Iida A, Iwai Y, Mochizuki M, Fukuhara S

    Developmental Cell   Vol. 49   page: 1 - 16   2019

  59. Male-specific asymmetric curvature of anal fin in a viviparous teleost, Xenotoca eiseni Reviewed Open Access

    Iida A

    Zoology   Vol. 134   page: 1 - 7   2019

     More details

    Authorship:Lead author, Last author, Corresponding author  

    DOI: 10.1016/j.zool.2019.03.002

    Open Access

  60. Focal adhesions are essential to drive zebrafish heart valve morphogenesis Reviewed International coauthorship Open Access

    Gunawan F, Gentile A, Fukuda R, Tsedeke AT, Jimenez-Amilburu V, Ramadass R, Iida A, Sehara-Fujisawa A, Stainier D

    Journal of Cell Biology   Vol. 218   page: 1039 - 1054   2019

     More details

  61. Integrin β1 activity is required for cardiovascular formation in zebrafish. Reviewed Open Access

    Iida A, Wang Z, Hirata H, Sehara-Fujisawa A

    Genes to Cells   Vol. 23   page: 938 - 951   2018

     More details

    Authorship:Lead author, Corresponding author  

    DOI: 10.1111/gtc.12641

  62. The Sal-like 4 - integrin α6β1 network promotes cell migration for metastasis via activation of focal adhesion dynamics in basal-like breast cancer cells. Reviewed

    Itou J, Tanaka S, Li W, Iida A, Sehara-Fujisawa A, Sato F, Toi M

    BBA Molecular Cell Research   Vol. 1864   page: 76 - 88   2017

  63. Generation of a transgenic medaka (Oryzias latipes) strain for visualization of nuclear dynamics in early developmental stages Reviewed Open Access

    Inoue T†, Iida A†, Maegawa S, Sehara-Fujisawa A, Kinoshita M

    Development, Growth & Differentiation   Vol. 58   page: 679 - 687   2016.12

     More details

    Authorship:Lead author   Language:English   Publishing type:Research paper (scientific journal)  

    DOI: 10.1111/dgd.12324

  64. ADAM12-deficient zebrafish exhibit retardation in body growth at the juvenile stage without developmental defects Reviewed Open Access

    Tokumasu Y†, Iida A†, Wang Z, Ansai S, Kinoshita M, Sehara-Fujisawa A

    Development, Growth & Differentiation   Vol. 58   page: 409 - 421   2016.5

     More details

    Authorship:Lead author   Language:English   Publishing type:Research paper (scientific journal)  

    DOI: 10.1111/dgd.12286

    Open Access

  65. Prenatal regression of the trophotaenial placenta in a viviparous fish, Xenotoca eiseni Reviewed Open Access

    Iida A, Nishimaki T, Sehara-Fujisawa A

    Scientific Reports   Vol. 5   page: 7855   2015

     More details

    Authorship:Lead author, Corresponding author  

    DOI: 10.1038/srep07855

    Open Access

  66. Metalloprotease-Dependent Onset of Blood Circulation in Zebrafish. Reviewed Open Access

    Iida A, Sakaguchi K, Sato K, Sakurai H, Nishimura D, Iwaki A, Takeuchi M, Kobayashi M, Misaki K, Yonemura S, Kawahara A, Sehara-Fujisawa A

    Current Biology   Vol. 20   page: 1110 - 1116   2010

     More details

    Authorship:Lead author  

    DOI: 10.1016/j.cub.2010.04.052

  67. Vertebrate DNA Transposon as a Natural Mutator: The Medaka Fish Tol2 Element Contributes to Genetic Variation without Recognizable Traces. Reviewed

    Koga A, Iida A, Hori H, Shimada A, Shima A

    Molecular biology and evolution   Vol. 23   page: 1414 - 1419   2006

  68. Targeted reduction of the DNA methylation level with 5-azacytidine promotes excision of the medaka fish Tol2 Reviewed

    Iida A, Shimada A, Shima A, Takamatsu N, Hori H, Takeuchi K, Koga A

    Genetical Research   Vol. 87   page: 187 - 193   2006

     More details

    Authorship:Lead author  

  69. Reversion mutation of i b oculocutaneous albinism to wild-type pigmentation in medaka fish. Reviewed

    Iida A, Takamatsu N, Hori H, Wakamatsu Y, Shimada A, Shima A, Koga A

    Pigment Cell Research   Vol. 18   page: 382 - 384   2005

     More details

    Authorship:Lead author  

  70. Low transposition frequency of the medaka fish Tol2 transposable element may be due to extranuclear localization of its transposase. Reviewed

    Iida A, Tachibana A, Hamada S, Hori H and Koga A

    Genes & Genetics Systems   Vol. 79   page: 119 - 124   2004

     More details

    Authorship:Lead author  

  71. The tyrosinase gene of the i b albino mutant of the medaka fish carries a transposable element insertion in the promoter region. Reviewed

    Iida A, Inagaki H, Suzuki M, Wakamatsu Y, Hori H, Koga A

    Pigment Cell Research   Vol. 17   page: 158 - 164   2004

     More details

    Authorship:Lead author  

  72. The medaka fish Tol2 transposable element can undergo excision in human and mouse cells. Reviewed Open Access

    Koga A, Iida A, Kamiya M, Hayashi R, Hori H, Ishikawa Y, Tachibana A

    Journal of Human Genetics   Vol. 48   page: 231 - 235   2003

     More details

▼display all

Books 8

  1. ゼブラフィッシュ実験ガイド

    平田普三, 酒井則良, 飯田敦夫, 亀井宏泰, 伊藤素行, 武藤彩, 宮坂信彦, 川上浩一, 川原敦雄, 東島眞一, 木村有希子, 浅川和秀, 鑪迫典久, 松田大樹, 横井勇人, 岡本仁, 石岡亜季子, 日比正彦, 清水貴史, 橋本寿史, 井原邦夫( Role: Sole author ,  第3章 飼 育)

    朝倉書店  2020.11 

     More details

    Language:Japanese

  2. ゼブラフィッシュ実験ガイド

    平田普三, 酒井則良, 飯田敦夫, 亀井宏泰, 伊藤素行, 武藤彩, 宮坂信彦, 川上浩一, 川原敦雄, 東島眞一, 木村有希子, 浅川和秀, 鑪迫典久, 松田大樹, 横井勇人, 岡本仁, 石岡亜季子, 日比正彦, 清水貴史, 橋本寿史, 井原邦夫( Role: Contributor ,  第3章 飼 育)

    朝倉書店  2020.11 

     More details

    Language:Japanese

  3. 遺伝子から解き明かす魚の不思議な世界

    神田真司,高木亙,矢野十織,二階堂雅人,安齋賢,渡邊壮一,石川麻乃,小橋常彦,池永隆徳,佐野香織,飯田敦夫,竹花佑介,荻野由紀子,野津了,小林靖尚( Role: Joint author)

    一色出版  2019.8 

  4. Zebrafish, Medaka, and Other Small Fishes ; New Model Animals in Biology, Medicine, and Beyond

    Atsuo Iida (eds. Hirata H & Iida A)( Role: Sole author ,  Chapter 14: Xenotoca eiseni, a viviparous teleost, possesses a trophotaenial placenta for maternal nutrient intake.)

    Springer  2018.11 

  5. 実験医学『連載「私の実験動物、やっぱり個性派です!」』

    飯田敦夫( Role: Sole author)

    羊土社  2018.2 

  6. 実験医学『連載「私の実験動物、個性派です!」』

    飯田敦夫( Role: Sole author ,  妊娠する魚の研究-グーデア科胎生魚を用いた実験生物学の試み-)

    羊土社  2016.2 

  7. New Principles in Developmental Processes

    Atsuo Iida (Kondo H & Kuroiwa A, eds.)( Role: Sole author ,  Chapter 14: Primitive erythroblast cell autonomously regulates the timing of blood circulation onset via a control of adherence to endothelium.)

    Springer  2014.3 

  8. ADAM8-dependent onset of blood circulation. [Article in Japanese]

    Iida A & Sehara A( Role: Sole author)

    Nihon Rinsho  2011.9 

▼display all

MISC 6

  1. DNA Transformation Driven by Electric Organ Discharge from Electric Eel Invited Reviewed

    Atsuo IIDA

    生物物理   Vol. 64 ( 5 ) page: 266 - 268   2024.10

     More details

    Authorship:Corresponding author   Language:Japanese   Publishing type:Rapid communication, short report, research note, etc. (scientific journal)  

    DOI: 10.2142/biophys.64.266

  2. Pregnancy and Parturition: Teleost Fishes and Elasmobranchs

    Kawaguchi M, Iida A, Sato K

    Reference Module in Biomedical Sciences     2024

     More details

    Language:English   Publisher:Elsevier  

    DOI: 10.1016/b978-0-443-21477-6.00202-9

  3. グーデア科胎生魚における胎仔の栄養供給機構 Invited

    飯田敦夫

    比較内分泌学   Vol. 44 ( 164 ) page: 82   2018.5

     More details

    Language:Japanese  

  4. グーデア科胎生魚における胎仔の栄養供給機構 Invited

    飯田 敦夫

    比較内分泌学   Vol. 44 ( 164 ) page: 82 - 83   2018.5

     More details

    Authorship:Corresponding author   Language:Japanese   Publishing type:Rapid communication, short report, research note, etc. (scientific journal)  

  5. ADAM8-dependent onset of blood circulation in zebrafish Invited

    Atsuo Iida, Atsuko Sehara-Fujisawa

    Seikagaku   Vol. 82 ( 10 ) page: 921 - 930   2010.10

     More details

    Authorship:Lead author   Language:Japanese   Publishing type:Rapid communication, short report, research note, etc. (scientific journal)  

  6. ADAM8-dependent onset of blood circulation in zebrafish Invited

    Atsuo Iida, Atsuko Sehara-Fujisawa

    Seikagaku   Vol. 82 ( 10 ) page: 921-930   2010

     More details

    Language:Japanese  

▼display all

Presentations 71

  1. デンキウナギの研究 Invited

    飯田 敦夫

    第515回獣医学科セミナー< 外部研究者招聘セミナー>  2024.10.4  北里大学獣医学部

     More details

    Event date: 2024.10

    Language:Japanese   Presentation type:Public lecture, seminar, tutorial, course, or other speech  

    Venue:北里大学獣医学部  

  2. 特定の魚類が持つユニークな形質を探求する話 Invited

    飯田 敦夫

    北里大学 特別講義  2024.9.9  北里大学海洋生命科学部

     More details

    Event date: 2024.9

    Language:Japanese   Presentation type:Public lecture, seminar, tutorial, course, or other speech  

    Venue:北里大学海洋生命科学部  

  3. ちょっぴり数奇(すき)で乙(オツ)な研究の眺め方 Invited

    飯田 敦夫

    第108回名大カフェ  2024.9.7 

     More details

    Event date: 2024.9

    Language:Japanese   Presentation type:Public lecture, seminar, tutorial, course, or other speech  

  4. 哺乳類モデルでは代替できない 魚類の形質を探究する Invited

    飯田 敦夫

    日本動物学会近畿支部2024年春季公開講演会  2024.5.11  日本動物学会近畿支部会

     More details

    Event date: 2024.5

    Language:Japanese   Presentation type:Public lecture, seminar, tutorial, course, or other speech  

    Venue:京都  

  5. デンキウナギの放電が遺伝子組み換えを引き起こしたら面白いな』と閃いてしまったので検証した話 Invited

    飯田 敦夫

    名大発アカデミックフラッシュ 第32報  2024.3.14 

     More details

    Event date: 2024.3

    Language:Japanese   Presentation type:Public lecture, seminar, tutorial, course, or other speech  

    Venue:オンライン  

  6. デンキウナギの放電はゼブラフィッシュ稚魚への遺伝子導入を促進する Invited

    飯田 敦夫

    第59回インターゲノミクスセミナー   2024.1.26  神戸大学Intergenomics研究会

     More details

    Event date: 2024.1

    Language:Japanese   Presentation type:Public lecture, seminar, tutorial, course, or other speech  

    Venue:神戸大学  

  7. モデル動物で学んだ発生学をベースにして、 非モデル動物に展開する生物学研究 〜グーデア科胎生魚の妊娠の仕組みを例にして〜

    飯田敦夫

    愛知県立一宮高等学校 SSH生物特別研究  2023.12.15 

     More details

    Event date: 2023.12

    Language:Japanese   Presentation type:Public lecture, seminar, tutorial, course, or other speech  

  8. 魚類を使った発生生物学〜メジャーな卵生魚とマイナーな胎生魚の紹介〜

    飯田敦夫

    愛知県立一宮高等学校 SSH生物特別研究  2022.12.14 

     More details

    Event date: 2022.12

    Language:Japanese   Presentation type:Public lecture, seminar, tutorial, course, or other speech  

  9. グーデア科胎生魚とユニーク会:反骨心から独自路線の研究を始めたものの、友達がいなくて寂しかったので溜まり場となる研究会を作った話とか Invited

    飯田敦夫

    The 114th Scienc-ome  2022.9.28 

     More details

    Event date: 2022.9

    Language:Japanese   Presentation type:Public lecture, seminar, tutorial, course, or other speech  

  10. 胎生硬骨魚の妊娠の分子生物学

    飯田敦夫

    第92回日本動物学会オンライン 米子大会(シンポジウムS9)  2021.9 

     More details

    Event date: 2021.9

    Language:Japanese   Presentation type:Symposium, workshop panel (public)  

  11. Mother-to-embryo vitellogenin transport in a viviparous teleost Xenotoca eiseni Invited

    飯田敦夫

    第43回日本分子生物学会年会(ワークショップ:多様なモデル動物で紡ぐ次世代栄養学)  2020.12 

     More details

    Event date: 2020.12

    Language:English   Presentation type:Symposium, workshop panel (nominated)  

  12. 赤ちゃんを産む魚

    飯田敦夫

    豊橋市自然史博物館「名古屋大学出前授業」 

     More details

    Event date: 2020.11

    Language:English   Presentation type:Oral presentation (general)  

  13. グーデア科胎生魚の研究:独身時代のノリと勢いで始めたテーマが結婚後も看板になってるとは夢にも思わなかった話 Invited

    飯田 敦夫

    第44回日本比較内分泌学会大会及びシンポジウム,男女共同参画ランチョンセミナー 

     More details

    Event date: 2019.11

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:埼玉大学   Country:Japan  

  14. 妊娠時の母仔間栄養分から探るグーデア科胎生魚の繁殖機構 Invited

    飯田 敦夫

    日本動物学会 第 90回 大阪大会 シンポジウム 

     More details

    Event date: 2019.9

    Language:Japanese   Presentation type:Symposium, workshop panel (public)  

    Country:Japan  

  15. 赤ちゃんを産む魚「グーデア科胎生魚」の話

    飯田敦夫

    城西大学コロキウム 

     More details

    Event date: 2018.4

    Language:English   Presentation type:Oral presentation (general)  

  16. 自分の研究にユニーク生物を採用し、同志を募って研究会を作った話

    飯田敦夫

    第42回日本比較内分泌学会大会及びシンポジウム(若手企画シンポジウム) 

     More details

    Event date: 2017.11

    Language:English   Presentation type:Oral presentation (general)  

  17. グーデア科胎生魚の研究を1人で0から始めてみた話

    飯田敦夫

    北里大学『特別講義Ⅱ』 

     More details

    Event date: 2017.7

    Language:English   Presentation type:Oral presentation (general)  

  18. 小型魚類ゼブラフィッシュを使った発生機構の研究

    飯田敦夫

    第2回次世代生命科学の研究会 

     More details

    Event date: 2017.7

    Language:English   Presentation type:Oral presentation (general)  

  19. ゼブラフィッシュを用いた血管・血球分化の研究

    飯田敦夫

    第3回血管生物若手研究会 

     More details

    Event date: 2017.3

    Language:English   Presentation type:Oral presentation (general)  

  20. Analysis of non-mammalian viviparous vertebrate using a livebearer fish Xenotoca eiseni

     More details

    Event date: 2016.11

    Language:English   Presentation type:Oral presentation (general)  

  21. クラウドファンディングってなんだろう?

    飯田敦夫

    早稲田大学理工学術院総合研究所 アーリーバードプログラム 

     More details

    Event date: 2016.2

    Language:English   Presentation type:Oral presentation (general)  

  22. Prenatal regression of trophotaenial placenta is regulated by apoptosis in a livebearer fish, Xenotoca eiseni.

    BMB2015 

     More details

    Event date: 2015.12

    Language:English   Presentation type:Oral presentation (general)  

  23. グーデア科胎生魚Xenotoca eiseniを用いて非哺乳類で獲得された胎生形質を探る

    飯田敦夫

    第2回脳科学セミナー(青山学院大学) 

     More details

    Event date: 2015.10

    Language:English   Presentation type:Oral presentation (general)  

  24. グーデア科胎生魚Xenotoca eiseniを用いて、非哺乳類で獲得された胎生形質を探る

    飯田敦夫

    IGERセミナー/アドバンス生命理学特論 

     More details

    Event date: 2015.6

    Language:English   Presentation type:Oral presentation (general)  

  25. グーデア科胎生魚で見られた栄養リボンのアポトーシス

    飯田敦夫

    日本動物学会近畿支部会 研究発表会 

     More details

    Event date: 2015.5

    Language:English   Presentation type:Oral presentation (general)  

  26. グーデア科胎生魚Xenotoca eiseniの胎仔が持つ『へその緒ではない』構造物の話

    飯田敦夫

    甲南大学統合ニューロバイオロジー研究所セミナー 

     More details

    Event date: 2015.3

    Language:English   Presentation type:Oral presentation (general)  

  27. 真胎生魚ハイランドカープの胎仔発生

    飯田敦夫

    日本動物学会 第85回仙台大会 

     More details

    Event date: 2014.9

    Language:English   Presentation type:Oral presentation (general)  

  28. 胎生魚Xenotoca eiseniの初期発生と交尾事情

    飯田敦夫

    大阪大学大学院理学研究科セミナー 

     More details

    Event date: 2014.6

    Language:English   Presentation type:Oral presentation (general)  

  29. 透明の魚でピカピカ光る細胞を視る!

    飯田敦夫

    武蔵野美術大学『自然科学』 

     More details

    Event date: 2014.6

    Language:English   Presentation type:Oral presentation (general)  

  30. メダカのトランスポゾンTol2の内在性転移について

    飯田敦夫

    奈良先端科学技術大学院大学セミナー 

     More details

    Event date: 2013.7

    Language:English   Presentation type:Oral presentation (general)  

  31. 遺伝子組換えゼブラフィッシュを使って体の構造を生きたまま観察する

    飯田敦夫

    武蔵野美術大学『自然科学IA/IB』 

     More details

    Event date: 2013.6

    Language:English   Presentation type:Oral presentation (general)  

  32. 膜型プロテアーゼADAM8による血液循環開始の制御

    飯田敦夫

    IGERセミナー/アドバンス生命理学特論 

     More details

    Event date: 2012.6

    Language:English   Presentation type:Oral presentation (general)  

  33. 小型魚類をモデルとした血液循環開始のライブイメージング

    飯田敦夫

    京都大学・ライカマイクロシステムズイメージングセンター開設記念セミナー 

     More details

    Event date: 2011.6

    Language:English   Presentation type:Oral presentation (general)  

  34. 魚類を使った発生生物学〜メジャーな卵生魚とマイナーな胎生魚の紹介〜 Invited

    飯田敦夫

    愛知県立一宮高等学校 SSH生物特別研究  2022.12.14 

     More details

    Language:Japanese   Presentation type:Public lecture, seminar, tutorial, course, or other speech  

  35. 赤ちゃんを産む魚「グーデア科胎生魚」の話

    飯田敦夫

    城西大学コロキウム  2018.4 

     More details

    Language:English   Presentation type:Oral presentation (general)  

  36. 赤ちゃんを産む魚

    飯田敦夫

    豊橋市自然史博物館「名古屋大学出前授業」  2020.11.15 

     More details

    Language:English   Presentation type:Public lecture, seminar, tutorial, course, or other speech  

  37. 論文の読み方講座 Invited

    飯田敦夫

    愛知県立一宮高等学校 SSH1年生課題研究特別講演  2025.9.29 

     More details

    Language:Japanese   Presentation type:Public lecture, seminar, tutorial, course, or other speech  

  38. 自分の研究にユニーク生物を採用し、同志を募って研究会を作った話 Invited

    飯田敦夫

    第42回日本比較内分泌学会大会及びシンポジウム(若手企画シンポジウム)  2017.11 

     More details

    Language:Japanese   Presentation type:Symposium, workshop panel (nominated)  

  39. 胎生魚Xenotoca eiseniの初期発生と交尾事情

    飯田敦夫

    大阪大学大学院理学研究科セミナー  2014.6 

     More details

    Language:English   Presentation type:Oral presentation (general)  

  40. 胎生硬骨魚の妊娠の分子生物学

    飯田敦夫

    第92回日本動物学会オンライン 米子大会(シンポジウムS9)  2021.9 

     More details

    Language:Japanese   Presentation type:Symposium, workshop panel (nominated)  

  41. 真胎生魚ハイランドカープの胎仔発生

    飯田敦夫

    日本動物学会 第85回仙台大会  2014.9 

     More details

    Language:Japanese   Presentation type:Oral presentation (general)  

  42. 特定の魚類が持つユニークな形質を探求する話 Invited

    飯田 敦夫

    北里大学 特別講義  2024.9.9 

     More details

    Language:Japanese   Presentation type:Public lecture, seminar, tutorial, course, or other speech  

  43. 母仔間での栄養供給に関わる分子機構の探求

    飯田敦夫

    第7回生殖若手の会  2020.10.9 

     More details

    Language:Japanese   Presentation type:Oral presentation (general)  

  44. 小型魚類ゼブラフィッシュを使った発生機構の研究

    飯田敦夫

    第2回次世代生命科学の研究会  2017.7 

     More details

    Language:Japanese   Presentation type:Oral presentation (general)  

  45. 小型魚類をモデルとした血液循環開始のライブイメージング

    飯田敦夫

    京都大学・ライカマイクロシステムズイメージングセンター開設記念セミナー  2011.6  ライカマイクロシステムズ、京都大学再生医科学研究所

     More details

    Language:Japanese   Presentation type:Oral presentation (general)  

  46. 妊娠時の母仔間栄養分から探るグーデア科胎生魚の繁殖機構 Invited

    飯田敦夫

    日本動物学会第90回大阪大会  2019.9 

     More details

    Language:Japanese   Presentation type:Symposium, workshop panel (nominated)  

  47. 哺乳類モデルでは代替できない 魚類の形質を探究する Invited

    飯田 敦夫

    日本動物学会近畿支部2024年春季公開講演会  2024.5.11 

     More details

    Language:Japanese   Presentation type:Public lecture, seminar, tutorial, course, or other speech  

  48. ユニークな「少数派実験動物」の世界へ!

    飯田 敦夫

    自分の可能性を探求する小さな研究室~toi toi toi~  2026.2.17 

     More details

    Language:Japanese   Presentation type:Public lecture, seminar, tutorial, course, or other speech  

  49. モデル動物で学んだ発生学をベースにして、 非モデル動物に展開する生物学研究 〜グーデア科胎生魚の妊娠の仕組みを例にして〜 Invited

    飯田敦夫

    愛知県立一宮高等学校 SSH生物特別研究  2023.12.15 

     More details

    Language:Japanese   Presentation type:Public lecture, seminar, tutorial, course, or other speech  

  50. メダカのトランスポゾンTol2の内在性転移について

    飯田敦夫

    奈良先端科学技術大学院大学セミナー  2013.7  奈良先端科学技術大学院大学

     More details

    Language:Japanese   Presentation type:Oral presentation (general)  

  51. ヘンテコな魚を飼って調べる 〜図鑑や教科書を書き換える研究がしたい〜 Invited

    飯田敦夫

    愛知県立一宮高等学校 SSH生物特別研究  2024.12.13 

     More details

    Language:Japanese   Presentation type:Public lecture, seminar, tutorial, course, or other speech  

  52. デンキウナギ発電細胞を再現する魔改造生物学

    飯田 敦夫

    第41回関西おさかな勉強会  2025.10.17 

     More details

    Language:Japanese   Presentation type:Public lecture, seminar, tutorial, course, or other speech  

  53. デンキウナギの科学

    飯田敦夫

    日本動物学会 第96回 名古屋大会 2025 一般公開行事「動物学ひろば」  2025.9.6 

     More details

    Language:Japanese   Presentation type:Public lecture, seminar, tutorial, course, or other speech  

  54. デンキウナギの研究 Invited

    飯田 敦夫

    第515回獣医学科セミナー<外部研究者招聘セミナー>  2024.10.4 

     More details

    Language:Japanese   Presentation type:Public lecture, seminar, tutorial, course, or other speech  

  55. デンキウナギの発電の仕組みを探る Invited

    飯田敦夫

    生理学セミナー(大阪医科薬科大学)  2025.9.22 

     More details

    Language:Japanese   Presentation type:Public lecture, seminar, tutorial, course, or other speech  

  56. デンキウナギの放電はゼブラフィッシュ稚魚への遺伝子導入を促進する Invited

    飯田敦夫

    第59回インターゲノミクスセミナー  2024.1.26 

     More details

    Language:Japanese   Presentation type:Public lecture, seminar, tutorial, course, or other speech  

  57. デンキウナギの放電が遺伝子組み換えを引き起こしたら面白いな』と閃いてしまったので検証した話 Invited

    飯田敦夫

    名大発アカデミックフラッシュ 第32報  2024.3.14 

     More details

    Language:Japanese   Presentation type:Public lecture, seminar, tutorial, course, or other speech  

  58. デンキウナギ どんなかたち?どんなしくみ?

    飯田敦夫

    第119回名大カフェ「夏だ! 珍魚だ!! 名大サカナ祭り」  2025.7.26 

     More details

    Language:Japanese   Presentation type:Public lecture, seminar, tutorial, course, or other speech  

  59. ゼブラフィッシュを用いた血管・血球分化の研究

    飯田敦夫

    第3回血管生物若手研究会  2017.3 

     More details

    Language:Japanese   Presentation type:Oral presentation (general)  

  60. グーデア科胎生魚の研究:独身時代のノリと勢いで始めたテーマが結婚後も看板になってるとは夢にも思わなかった話 Invited

    飯田敦夫

    第44回日本比較内分泌学会大会及びシンポジウム(男女共同参画セミナー)  2019.11 

     More details

    Language:Japanese   Presentation type:Public lecture, seminar, tutorial, course, or other speech  

  61. グーデア科胎生魚とユニーク会:反骨心から独自路線の研究を始めたものの、友達がいなくて寂しかったので溜まり場となる研究会を作った話とか Invited

    飯田敦夫

    The 114th Scienc-ome  2022.9.28 

     More details

    Language:Japanese  

  62. グーデア科胎生魚で見られた栄養リボンのアポトーシス

    飯田敦夫

    日本動物学会近畿支部会 研究発表会  2015.5 

     More details

    Language:Japanese   Presentation type:Oral presentation (general)  

  63. グーデア科胎生魚Xenotoca eiseniの胎仔が持つ『へその緒ではない』構造物の話

    飯田敦夫

    甲南大学統合ニューロバイオロジー研究所セミナー  2015.3 

     More details

    Language:English   Presentation type:Oral presentation (general)  

  64. グーデア科胎生真骨魚を使って、哺乳類ではない胎生の仕組みを探求する Invited

    飯田敦夫

    動物発生学研究室セミナー  2023.12.12 

     More details

    Language:Japanese   Presentation type:Public lecture, seminar, tutorial, course, or other speech  

  65. クラウドファンディングってなんだろう? Invited

    飯田敦夫

    早稲田大学理工学術院総合研究所 アーリーバードプログラム  2016.2 

     More details

    Language:Japanese   Presentation type:Oral presentation (general)  

  66. グーデア科胎生魚Xenotoca eiseniを用いて非哺乳類で獲得された胎生形質を探る

    飯田敦夫

    第2回脳科学セミナー(青山学院大学)  2015.10 

     More details

    Language:English   Presentation type:Oral presentation (general)  

  67. エクストリームな魚を飼って調べる 〜令和の時代に図鑑や教科書を書き換える研究は可能なのか?〜 Invited

    飯田敦夫

    愛知県立一宮高等学校 SSH生物特別研究  2025.12.16 

     More details

    Language:Japanese   Presentation type:Public lecture, seminar, tutorial, course, or other speech  

  68. ちょっぴり数奇(すき)で乙(オツ)な研究の眺め方 Invited

    飯田敦夫

    第108回名大カフェ  2024.9.7 

     More details

    Language:Japanese   Presentation type:Public lecture, seminar, tutorial, course, or other speech  

  69. Prenatal regression of trophotaenial placenta is regulated by apoptosis in a livebearer fish, Xenotoca eiseni. International conference

    飯田敦夫

    BMB2015  2015.12 

     More details

    Language:Japanese   Presentation type:Symposium, workshop panel (nominated)  

  70. Mother-to-embryo vitellogenin transport in a viviparous teleost Xenotoca eiseni Invited

    飯田敦夫

    第43回日本分子生物学会年会(ワークショップ:多様なモデル動物で紡ぐ次世代栄養学)  2020.12 

     More details

    Language:English   Presentation type:Symposium, workshop panel (nominated)  

  71. Analysis of non-mammalian viviparous vertebrate using a livebearer fish Xenotoca eiseni International conference

    飯田敦夫

    第22回国際動物学会 第87回日本動物学会 合同大会  2016.11 

     More details

    Language:Japanese   Presentation type:Symposium, workshop panel (nominated)  

▼display all

Research Project for Joint Research, Competitive Funding, etc. 17

  1. 真骨魚類で獲得された胎生の遺伝基盤の探求

    Grant number:23K05877  2023.4 - 2026.3

    科学研究費助成事業  基盤研究(C)

      More details

    Authorship:Principal investigator 

  2. サカナ(胎生発生真骨魚類)にゲノムインプリンティングは存在するか?

    Grant number:21K19237   2021.7 - 2023.3

    科学研究費助成事業  挑戦的研究(萌芽)

      More details

    Grant type:Competitive

  3. 高輝度パルス電子線を用いた高速オペランドイメージング法の開拓

    2021 - 2025

    科学研究費助成事業  基盤研究A

      More details

    Authorship:Coinvestigator(s)  Grant type:Competitive

  4. 胎生魚類で見出された抗菌ペプチドの量と質の変化に関する研究

    2021

    研究助成 

      More details

    Authorship:Principal investigator  Grant type:Competitive

    Grant amount:\500000

  5. グーデア科胎生魚の母仔間栄養供給に関わる分子機構の解明

    2020 - 2021

    自然科学系学術研究助成 

      More details

    Authorship:Principal investigator  Grant type:Competitive

    Grant amount:\3000000

  6. グーデア科胎生魚胎仔の栄養吸収組織における高分子取り込み経路をライブイメージングにより解析する

    2019 - 2020

    研究費助成 

      More details

    Authorship:Principal investigator  Grant type:Competitive

    Grant amount:\1000000

  7. ゲノム組成の変化を伴ってヨザルで実現した暗環境への適応:霊長類全般での再現性

    2019 - 2020

    科学研究費助成事業  基盤研究B

      More details

    Authorship:Coinvestigator(s)  Grant type:Competitive

  8. 細胞接着を基盤とした赤芽球の血管内侵入機構の解析

    2016 - 2018

    科学研究費助成事業  若手研究B

      More details

    Authorship:Principal investigator  Grant type:Competitive

  9. 骨格筋の発達・維持・萎縮における負荷依存性の分子基盤の理解

    2015

    科学研究費助成事業  新学術領域研究

      More details

    Authorship:Coinvestigator(s)  Grant type:Competitive

  10. 形態形成および疾患における膜型プロテアーゼADAMの機能を小型魚類ゼブラフィッシュを用いて解析する

    2015

    少壮研究者奨励金 

      More details

    Authorship:Principal investigator  Grant type:Competitive

    Grant amount:\200000

  11. お腹の中で子育てする魚「ハイランドカープ」の謎に迫る!

    2015

    学術系クラウドファンディングサイト「academist(アカデミスト)」 

      More details

    Authorship:Principal investigator  Grant type:Other

    Grant amount:\693120

  12. 真胎生魚をモデルとして一次造血機構の意義と進化を探る

    2012 - 2013

    科学研究費助成事業  挑戦的萌芽研究

      More details

    Authorship:Principal investigator  Grant type:Competitive

  13. 赤血球ー血管内皮細胞の相互作用に基づいた血液循環の成立機構を解明する

    2011 - 2013

    科学研究費助成事業  新学術領域研究

      More details

    Authorship:Principal investigator  Grant type:Competitive

  14. 赤血球を起源とする新規の血管新生制御機構

    2011

    研究奨励金 

      More details

    Authorship:Principal investigator  Grant type:Competitive

    Grant amount:\2000000

  15. 発生における血液循環が始まる仕組みの解明

    2010

    成茂動物科学振興基金 

      More details

    Authorship:Principal investigator  Grant type:Competitive

    Grant amount:\500000

  16. 初期発生で血液循環が始まるまでの血管・血球の相互作用の解明

    2010

    研究助成 

      More details

    Authorship:Principal investigator  Grant type:Competitive

    Grant amount:\1000000

  17. 外部刺激に応答した魚類の感覚器の形成・維持機構の解明

    2008 - 2009

    科学研究費助成事業  若手研究B

      More details

    Authorship:Principal investigator  Grant type:Competitive

▼display all

KAKENHI (Grants-in-Aid for Scientific Research) 21

  1. デンキウナギを模倣した生体電池(人工発電細胞)の開発の試み

    2026.2 - 2028.1

    公益財団法人 豊秋奨学会  2025年度 研究費助成 

      More details

    Authorship:Principal investigator 

  2. Investigating Cross-Species Mechanisms in Mammalian Embryo Implantation

    Grant number:23K23785  2024.4 - 2025.3

    Grants-in-Aid for Scientific Research  Grant-in-Aid for Scientific Research (B)

    Hondo Eiichi

      More details

    Authorship:Coinvestigator(s) 

    This study primarily investigated the adhesion of mouse embryos to the endometrium, identifying a compound that facilitates embryo adhesion and thereby prevents peri-implantation pregnancy loss in various models of this condition. We discovered that a novel compound, RO8191, not only induces embryo implantation in delayed implantation mouse models but also rescues implantation failure in STAT3-, gp130-, and Lifr-cKO peri-implantation pregnancy loss mouse models. Notably, RO8191 demonstrated an implantation-inducing effect in approximately 80% of delayed implantation mice. Furthermore, in these mice, the number of implanted embryos was comparable to that observed in normal pregnancy. Our findings suggest that RO8191 likely induces implantation by acting on the Lif-specific receptor monomer.

  3. 真骨魚類で獲得された胎生の遺伝基盤の探求

    Grant number:23K05877   2023.4 - 2026.3

    日本学術振興会  科学研究費助成事業  基盤研究(C)

      More details

    Authorship:Principal investigator 

  4. 胎生硬骨魚類でゲノム編集を実現する基盤技術の開発

    2021.10

    リージョナルフィッシュ株式会社  ゲノム編集テクノロジー実用化研究助成(Get-Research Grant) 

      More details

    Authorship:Principal investigator 

  5. 胎生魚類で見出された抗菌ペプチドの量と質の変化に関する研究

    2021.6

    伊藤忠兵衛基金  研究助成 

    飯田敦夫

      More details

    Authorship:Principal investigator 

  6. Ultra-fast operando measurement using pulse electron beam

    Grant number:21H04637  2021.4 - 2025.3

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research Grant-in-Aid for Scientific Research (A)  Grant-in-Aid for Scientific Research (A)

    Kuwahara Makoto

      More details

    Authorship:Coinvestigator(s) 

    We succeeded in developing an operando measurement method with nanometer and tens picosecond spatiotemporal resolution using a pulsed scanning electron beam. We achieved high-speed operando measurements of various materials, such as laser-induced structural changes of nanoparticles, plasmon relaxation processes, and the electric field and I-V characteristics of PN junctions under laser irradiation. We also realized single-shot serial NBD and single-shot 4D-STEM, enabling damage-free structural analysis and operando STEM imaging of photo-induced phase transition materials.
    We revealed thermal expansion and the rotation of two-dimensional materials by using time-resolved measurement of Moire fringes. We also established an electron microscopic method for fish biological tissues, verified the electron beam damage effect on polymeric materials, and demonstrated the extraction of dynamic components from time-resolved image data.

  7. グーデア科胎生魚の母仔間栄養供給に関わる分子機構の解明

    2020.10

    大幸財団  自然科学系学術研究助成 

    飯田敦夫

      More details

    Authorship:Principal investigator 

  8. グーデア科胎生魚胎仔の栄養吸収組織における高分子取り込み経路をライブイメージングにより解析する

    2019.9 - 2020.3

    中辻創智社  研究費助成 

    飯田敦夫

      More details

    Authorship:Principal investigator  Grant type:Competitive

  9. Adaptation of owl monkeys to dark environments accompanied by genome composition alterations: reproducibility in a wide range of primates

    Grant number:19H03311  2019.4 - 2021.3

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research Grant-in-Aid for Scientific Research (B)  Grant-in-Aid for Scientific Research (B)

    Koga Akihiko

      More details

    Authorship:Coinvestigator(s) 

    Owl monkeys carry, in their photoreceptor cells, a microlens structure that leads to an elevated night vision. This is an adaptation associated with their shift to a nocturnal lifestyle. The purpose of the present study was to reveal the past evolutionary process of the acquisition of the microlens structure, and to infer its generality in a wide range of organisms. The following results were obtained: [1] the acquisition was a recent and rapid process (after the divergence between owl monkey and marmoset), [2] the acquisition was accompanied by formation of novel satellite DNA (tandemly repeated sequences on a large scale) and its rapid expansion in the genome, and [3] another example of a rapid expansion of a new satellite DNA was found in a marsupial. These results suggested that adaptation associated with satellite DNA formation or expansion could occur in a wide range of organisms.

  10. Analysis for a mechanism of erythroblast migration based on intercellular adhesions

    Grant number:16K18549  2016.4 - 2019.3

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research Grant-in-Aid for Young Scientists (B)  Grant-in-Aid for Young Scientists (B)

    Iida Atsuo, Wang Zi, Wang Zi

      More details

    Authorship:Principal investigator 

    Grant amount:\4290000 ( Direct Cost: \3300000 、 Indirect Cost:\990000 )

    I investigated how erythroblasts migrate into vascular tubes prior to onset of blood circulation. There were no apparent phenotypes in the zebrafish embryo which lacks an integrin beta-1 activity in erythroblasts. On the other hands, I found blood vessel abnormalities and cephalic hemorrhage in the endothelial cell-specific integrin beta-1 inhibition zebrafish. I revealed the integrin beta-1 functions in zebrafish and generated useful transgenic zebrafish line for related studies.

  11. Understanding the Molecular Foundations of Load Dependency in the Development, Maintenance, and Atrophy of Skeletal Muscles

    Grant number:15H05938  2015.6 - 2020.3

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research Grant-in-Aid for Scientific Research on Innovative Areas (Research in a proposed research area)  Grant-in-Aid for Scientific Research on Innovative Areas (Research in a proposed research area)

    Sehara-Fujisawa Atsuko

      More details

    Authorship:Coinvestigator(s) 

    Questions what causes muscle atrophy in space and how skeletal muscles achieve adaptation to the gravitational changes remain unknown. While comparison of animal samples before and after space stays are essential to understand mechanisms of muscle atrophy in space and its recovery after the return, difficulty in fresh muscle sampling of higher vertebrates in ISS has hampered acquisition of accurate information from those animals. In this study, we found that space stay causes skeletal muscle atrophy also in zebrafish, aquatic vertebrate and that they quickly learn how to swim in the microgravity. Comparison of transcriptome profiles with RNA-seq obtained from individual zebrafish during space stay and those after return to the earth uncovers clusters of genes that are regulated in location-sensitive manners.

  12. 形態形成および疾患における膜型プロテアーゼADAMの機能を小型魚類ゼブラフィッシュを用いて解析する

    2015.4 - 2016.3

    藤原記念財団  小壮研究者奨励金 

    飯田敦夫

      More details

    Authorship:Principal investigator  Grant type:Competitive

  13. Analysis of early developments in a viviparous fish Xenotoca eiseni

    Grant number:24657161  2012.4 - 2014.3

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research Grant-in-Aid for Challenging Exploratory Research  Grant-in-Aid for Challenging Exploratory Research

    IIDA Atsuo

      More details

    Authorship:Principal investigator 

    Grant amount:\3640000 ( Direct Cost: \2800000 、 Indirect Cost:\840000 )

    I analyzed a mechanism of non-mammalian viviparous system using a live-bearer teleost Xenotoca eiseni. The viviparous fish doesn't possess defined analog of fetal organs corresponding to a placenta and an umbilical cable of mammals. They have unique ribbon-like structure elongated from a perianal. This structure is presumed to be a functional analog of the fetal organ of mammals, which plays a role for absorption of maternal nutrients. I found that the ribbon-like structure of the fetal fry is disrupted by programed cell death in perinatal stage. Such regression mechanism has not reported in mammals. It was presumed to be a unique system in viviparous fish.

  14. 赤血球を起源とする新規の血管新生制御機構

    2012

    上原記念生命科学財団 研究奨励金 

    飯田敦夫

      More details

    Authorship:Principal investigator  Grant type:Competitive

  15. 赤血球ー血管内皮細胞の相互作用に基づいた血液循環の成立機構を解明する

    Grant number:23111513  2011.4 - 2013.3

    日本学術振興会  科学研究費助成事業 新学術領域研究(研究領域提案型)  新学術領域研究(研究領域提案型)

    飯田 敦夫

      More details

    Authorship:Principal investigator 

    Grant amount:\8970000 ( Direct Cost: \6900000 、 Indirect Cost:\2070000 )

    本研究課題はゼブラフィッシュをモデルとして、初期血管形成における一次造血赤芽球の役割を明らかにする目的で実施した。一次造血赤芽球と血管内皮細胞は隣接して移動・分化し、脈管系とその内部を循環する赤血球へと分化する。2011年度までに赤芽球で発現するインテグリン接着因子の機能が、隣接して進行する血管形成に重要であることを発見していた。それに加え2012年度は、赤芽球で発現して血管形成に作用する膜型プロテアーゼADAM因子を見いだした。これらの因子は赤芽球特異的に機能抑制すると血管形成に異常が生じたことから、赤芽球-血管内皮細胞の細胞間相互作用が重要であることが示唆された。
    ゼブラフィッシュにおける最初の血管形成は「(1)背側大動脈の形成」「(2)腹側へ向けた内皮細胞の出芽・移動」「(3)後主静脈の形成」の順で進行する。トランスジェニックゼブラフィッシュを用いた蛍光組織観察により、インテグリン機能阻害は動脈形成にも異常が生じることから(1)より以前で作用しており、ADAM機能阻害は動脈形成後の細胞移動および管形成に異常を生じることから(2)と(3)の中間に作用点があることが示唆された。このことからインテグリンとADAMは、それぞれの異なる時間的制御で赤芽球-血管内皮細胞の相互作用に寄与していると考えている。
    具体的な作用機序としては、インテグリンは赤芽球と血管内皮細胞間の細胞接着を形成し、お互いを足場とした細胞移動に寄与していることが考えられる。ADAMはこれらの接着の解除、もしくは膜型成長因子の細胞外切断などに関わっていると考えられる。ADAMについては哺乳類オーソログを用いた生化学的解析の先行研究を参考とし、接着因子をより有力な候補として検証を行なってる。各々の因子の分子メカニズムを明らかにした時点で論文発表を行なう予定である。

  16. 個体を用いたライブイメージングを基盤として血管新生に必要な細胞間クロストークを解明する

    2011

    京都大学若手研究者ステップアップ研究費 

    飯田敦夫

      More details

    Authorship:Principal investigator  Grant type:Competitive

  17. 初期発生で血液循環が始まるまでの血管・血球の相互作用の解明

    2010

    国際科学技術財団研究助成 

    飯田敦夫

      More details

    Authorship:Principal investigator  Grant type:Competitive

  18. 血液循環の開始機構を生きた脊椎動物で解析する

    2010

    京都大学若手研究者スタートアップ研究費 

    飯田敦夫

      More details

    Authorship:Principal investigator  Grant type:Competitive

  19. 発生における血液循環が始まる仕組みの解明

    2010

    成茂動物科学振興基金 

    飯田敦夫

      More details

    Authorship:Principal investigator  Grant type:Competitive

  20. Sensory organ developments and responses corresponding to exogenous stimuli in fish.

    Grant number:20770045  2008 - 2009

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research Grant-in-Aid for Young Scientists (B)  Grant-in-Aid for Young Scientists (B)

    IIDA Atsuo

      More details

    Authorship:Principal investigator 

    Grant amount:\4290000 ( Direct Cost: \3300000 、 Indirect Cost:\990000 )

    My purpose is a clarification of functions of the neuregulin, known as responsible gene of the schizophrenia, using live animal.
    To analyze roles of neuregulin in sensory organ developments and responses corresponding to exogenous stimuli, I chose lateral line, which is a sensory organ in fish, as a model tissue, and zebrafish as a model animal.
    In the result, I identify several novel genes as markers of lateral line, but could not trace a detailed behavior of lateral line developments and its responses.

  21. 神経伸長に関わる増殖因子の細胞外領域切断の制御機構に関する研究

    2006

    京都大学若手研究者スタートアップ研究費 

    飯田敦夫

      More details

    Authorship:Principal investigator  Grant type:Competitive

▼display all

 

Teaching Experience (On-campus) 6

  1. 農学セミナー2

    2024

  2. 動物解剖生理学特論

    2020

  3. 資源生物科学科実験実習

    2020

  4. 農学セミナー2

    2020

  5. 動物解剖生理学特論

    2019

  6. 資源生物科学科実験実習

    2019

▼display all

Teaching Experience (Off-campus) 12

  1. 農学セミナー2

    2022 名古屋大学農学部)

  2. 生物学実験

    2021 名古屋大学農学部)

  3. 資源生物学科基盤実験実習

    2021 名古屋大学農学部)

  4. 農学セミナー1

    2021 名古屋大学農学部)

  5. 動物形態学

    2020 名古屋大学農学部)

  6. 農学セミナー2

    2020 名古屋大学農学部)

  7. Animal Morphology and Physiology

    2019 Graduate School of Bioagricultural Sciences, Nagoya University,)

  8. 資源生物科学科実験実習

    2019 名古屋大学農学部)

  9. 特別講義Ⅱ

    2017 Kitasato University)

  10. アドバンス生命理学特論

    2015 名古屋大学大学院理学研究科)

  11. 自然科学IA/IB

    2013 - 2014 Musashino Art University)

  12. アドバンス生命理学特論

    2012 名古屋大学大学院理学研究科)

▼display all

 

Media Coverage 20

  1. 第25回「南米の不思議な魚・デンキウナギを研究する話」 TV or radio program

    NHK  ミルクボーイのそれオカンに言うといて!  2026.6

  2. キャンパス発 研究室めぐり Newspaper, magazine

    読売新聞  朝刊12面  2026.4

     More details

    Author:Other 

  3. デンキウナギ、遺伝子から迫る 放電の仕組み研究へCF 名大助教ら Newspaper, magazine

    朝日新聞  朝刊23面  2026.3

     More details

    Author:Other 

  4. Nagoya university discovers undifferentiated cells in electric eels - Hopes for understanding "powerful electricity generation" Internet

    Japan Science and Technology Agency  Science Japan  2025.7

     More details

    Author:Other 

  5. 名古屋大学等发现电鳗未分化细胞,向阐明“强力发电”机理迈出第一步 Internet

    日本国立研究开发法人科学技术振兴机构(JST)  客观日本  2025.6

     More details

    Author:Other 

  6. デンキウナギの未分化細胞 Newspaper, magazine

    科学新聞  朝刊6面  2025.5

     More details

    Author:Other 

  7. デンキウナギ発電器の「もと」 Newspaper, magazine

    日本経済新聞  朝刊16面  2025.5

     More details

    Author:Other 

  8. Les anguilles, moteur (électrique) de l’évolution? Internet

    Radio-Canada  Les années lumière  2024.3

     More details

    Author:Other 

  9. デンキウナギの放出電気 遺伝子組み換え促進か Newspaper, magazine

    毎日新聞  朝刊18面  2024.2

     More details

    Author:Other 

  10. デンキウナギの放電 遺伝子組み換え 他生物に影響か Newspaper, magazine

    日本経済新聞  夕刊9面  2024.2

     More details

    Author:Other 

  11. Nutrient absorption in the embryos of viviparous fish occurs through the trophotaenia ― Nagoya University clarifies mechanism in redtail splitfins Internet

    Japan Science and Technology Agency  Science Japan  2022.7

     More details

    Author:Other 

  12. 胎生魚類の胎児 栄養受け取りは栄養リボンから Newspaper, magazine

    科学新聞  朝刊4面  2022.6

  13. 生き抜くからくり 母親の体に「抗菌薬」 Newspaper, magazine

    日本経済新聞  朝刊26面  2021.12

  14. 先端人-未知の胎生魚 多様性探る- Newspaper, magazine

    朝日新聞  2019.11

  15. 「栄養リボン」仕組み解明 Newspaper, magazine

    科学新聞  2015.2

  16. 母体で育つ稚魚 へその緒状の管 Newspaper, magazine

    日本経済新聞  夕刊14面  2015.1

  17. 子供で生まれる魚「へその緒」実は・・・ Newspaper, magazine

    産経新聞  朝刊  2015.1

  18. 親の栄養”リボン”で吸収 Newspaper, magazine

    京都新聞  朝刊  2015.1

  19. 血液循環 赤血球切り離され開始 Newspaper, magazine

    朝日新聞  2010.6

  20. 血流開始 酵素が決め手 Newspaper, magazine

    毎日新聞  朝刊27面  2010.6

▼display all