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Merck
  • TCF21+ mesenchymal cells contribute to testis somatic cell development, homeostasis, and regeneration in mice.

TCF21+ mesenchymal cells contribute to testis somatic cell development, homeostasis, and regeneration in mice.

Nature communications (2021-06-25)
Yu-Chi Shen, Adrienne Niederriter Shami, Lindsay Moritz, Hailey Larose, Gabriel L Manske, Qianyi Ma, Xianing Zheng, Meena Sukhwani, Michael Czerwinski, Caleb Sultan, Haolin Chen, Stephen J Gurczynski, Jason R Spence, Kyle E Orwig, Michelle Tallquist, Jun Z Li, Saher Sue Hammoud
摘要

Testicular development and function rely on interactions between somatic cells and the germline, but similar to other organs, regenerative capacity declines in aging and disease. Whether the adult testis maintains a reserve progenitor population remains uncertain. Here, we characterize a recently identified mouse testis interstitial population expressing the transcription factor Tcf21. We found that TCF21lin cells are bipotential somatic progenitors present in fetal testis and ovary, maintain adult testis homeostasis during aging, and act as potential reserve somatic progenitors following injury. In vitro, TCF21lin cells are multipotent mesenchymal progenitors which form multiple somatic lineages including Leydig and myoid cells. Additionally, TCF21+ cells resemble resident fibroblast populations reported in other organs having roles in tissue homeostasis, fibrosis, and regeneration. Our findings reveal that the testis, like other organs, maintains multipotent mesenchymal progenitors that can be potentially leveraged in development of future therapies for hypoandrogenism and/or infertility.

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Sigma-Aldrich
抗肌动蛋白,α-平滑肌抗体,小鼠单克隆, clone 1A4, purified from hybridoma cell culture
Sigma-Aldrich
抗-围脂滴蛋白 A/B 兔抗, affinity isolated antibody, buffered aqueous solution