体细胞
生物
支持细胞
细胞生物学
胚胎干细胞
精子发生
胚状体
干细胞
内生
生殖细胞
精子细胞
间质细胞
诱导多能干细胞
P19电池
细胞分化
成体干细胞
电池类型
生殖系
生精小管
上皮
祖细胞
细胞
重编程
细胞培养
间质细胞
睾丸
转录组
生殖系发育
性别分化
作者
Takuya Sato,Takashi Yoshino,Mai Ohtsuka,Takahiro Suzuki,Takafumi Matsumura,Yuki Matsudaira,Yu Ishikawa-Yamauchi,Shiori Maeda,Haruka Yabukami,Yoshiakira Kanai,Miki Inoue,Yuichi Shima,Makoto Tachibana,Shogo Matoba,Kimiko Inoue,Narumi Ogonuki,Atsuo Ogura,K. Hayashi,Takehiko Ogawa
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2026-02-26
卷期号:12 (9): eadz0269-eadz0269
被引量:4
标识
DOI:10.1126/sciadv.adz0269
摘要
Cellular interactions between germ cells and gonadal somatic cells are essential for the progression of gametogenesis. Here, we report a culture method for generating fetal testicular somatic cell-like cells (fTeSLCs) from embryonic stem cells. These fTeSLCs exhibit a transcriptomic profile closely resembling that of their in vivo counterparts, including distinct cell populations corresponding to Sertoli cells and interstitial cells. For functional assessment, interstitial cell-like cells (ICLCs) and Sertoli-like cells (SerLCs) were isolated from fTeSLCs. ICLCs differentiated into Leydig cells when cocultured with testes lacking endogenous Leydig cells, thereby restoring androgenic support. SerLCs reconstituted the seminiferous epithelium following selective ablation of endogenous Sertoli cells. Both cell types supported spermatogenesis and generated spermatids reaching the elongating stage. Notably, round spermatids derived from these reconstructed systems produced viable offspring by round spermatid injection. These findings demonstrate that fTeSLCs can generate functional testicular somatic cells, providing a valuable platform for studying testis development and spermatogenesis.
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