A comprehensive atlas of testicular interstitium reveals Cd34+/Sox4+ mesenchymal cells as potential Leydig cell progenitors

Xiaojia Huang, Kai Xiao Xia, Meiling Yang, Mengzhi Xiao Hong, Meihua Xiao Jiang, Weiqiang Li, Zhenmin Lei, Andy Peng Xiang, Wei Zhao
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Abstract

The declining rates of male fertility pose a significant clinical challenge, primarily due to our limited understanding of the testicular interstitium, which is crucial for male reproductive health. Here, we conducted a comprehensive analysis of the single-cell transcriptomic landscape of the murine testicular interstitium across the postnatal lifespan. Our investigation unveiled a previously unrecognized population of Cd34+/Sox4+ mesenchymal cells nestled within the interstitium, hinting at their potential as Leydig cell progenitors. During the aging process of Cd34+/Sox4+ mesenchymal cells, we observed a decline in glutathione levels within the testicular interstitium. Remarkably, these Cd34+/Sox4+ mesenchymal cells exhibited clonogenic self-renewal capacity and an impressive propensity to differentiate into Leydig cells. Intriguingly, when transplanted into Leydig cell-disrupted or failure models, Cd34+/Sox4+ cells efficiently colonized the testicular interstitium, resulting in a notable increase in testosterone production. Exploring the epigenetic landscape, we identified critical transcription factors, most notably Sox4, governing the stem cell fate of Cd34+/Sox4+ mesenchymal cells. Overall, this comprehensive reference atlas of lifespan testicular Leydig cells presents significant findings that may guide the development of cell-based strategies for treating testicular hypogonadism in elderly individuals.
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睾丸间质综合图谱显示 Cd34+/Sox4+ 间充质细胞是潜在的雷迪格细胞祖细胞
男性生育率的下降给临床带来了巨大挑战,这主要是由于我们对睾丸间质的了解有限,而睾丸间质对男性生殖健康至关重要。在这里,我们对小鼠睾丸间质整个出生后生命周期的单细胞转录组情况进行了全面分析。我们的研究揭示了一个以前未被发现的Cd34+/Sox4+间充质细胞群体,这些细胞偎依在间质中,暗示着它们作为雷迪格细胞祖细胞的潜力。在Cd34+/Sox4+间充质细胞衰老过程中,我们观察到睾丸间质内谷胱甘肽水平下降。值得注意的是,这些Cd34+/Sox4+间充质细胞表现出了克隆性自我更新能力和令人印象深刻的分化成Leydig细胞的倾向。有趣的是,当移植到Leydig细胞破坏或失败的模型中时,Cd34+/Sox4+细胞有效地定植于睾丸间质,导致睾酮分泌显著增加。通过探索表观遗传学图谱,我们确定了支配Cd34+/Sox4+间充质细胞干细胞命运的关键转录因子,其中最显著的是Sox4。总之,这份全面的寿命睾丸莱蒂希格细胞参考图集提供了重要发现,可指导开发基于细胞的策略来治疗老年人的睾丸性腺功能减退症。
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