Research theme for competitive and other funds (12):
2021 - 2025 超寿命の家畜精子産生システム開発に資する精子幹細胞の性質解明
2021 - 2023 精子の質的不均一性発生機構の解明
2019 - 2023 精子形成を支える幹細胞のホメオスタシスと機能低下
2021 - 精子産生における生殖細胞移動の役割
2019 - 2021 Elucidation of role of sperm stem cell motion
2019 - 2021 精細管内フローと精子インテグリティ
2019 - 2020 雄体内における精子移動に着目した精子の質的ヘテロジェネイティ生成機構
2015 - 2018 Investigating the mechanisms for GSC regulation in mouse gametogenesis
2015 - 2017 幹細胞の柔軟性を生かした抗老化システムの解明
2014 - 2017 Elucidation of patterns and regulatory mechanism of undifferentiated spermatogonial motion in mouse testis
2010 - 2012 Identification of stem cells in mouse spermatogenesis
2006 - 2008 腸管形成不全モデル動物を利用した始原生殖細胞の移動・分化メカニズムの解析
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Papers (54):
Takahiro Sasaki, Jahidul Islam, Kenshiro Hara, Tomonori Nochi, Kentaro Tanemura. Male mice are susceptible to brain dysfunction induced by early-life acephate exposure. Frontiers in Neuroscience. 2024. 18
Ryua HARIMA, Takahiro SASAKI, Takayuki KANEKO, Fuka ASO, Hayato TAKASHIMA, Takashi TOYAMA, Kenshiro HARA, Kentaro TANEMURA, Yoshiro SAITO. <i>Ccdc152</i> is not necessary for male fertility, but contributes to maintaining sperm morphology. Journal of Reproduction and Development. 2024
Kenshi Kaku, Takahiro Sasaki, Kenshiro Hara, Kentaro Tanemura. A single dose of clothianidin exposure induces varying sex-specific behavioral changes in adulthood depending on the developmental stage of its administration. The Journal of toxicological sciences. 2024. 49. 7. 301-311
Takahiro Sasaki, Kenshiro Hara, Kentaro Tanemura. Early-life exposure to acephate inhibits sexual development and induces testicular and ovarian toxicity in mice. Reproductive Toxicology. 2023. 121. 108472-108472
Kazuya Sakai, Kenshiro Hara, Kentaro Tanemura. Testicular histone hyperacetylation in mice by valproic acid administration affects the next generation by changes in sperm DNA methylation. PloS one. 2023. 18. 3. e0282898