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Updated: Jan 8, 2026

Extra Cellular Matrix-Based and Extra Cellular Matrix-Free Generation of Murine Testicular Organoids
Published on: October 7, 2020
Tracing the origin of testosterone-producing Leydig cells during pubertal development, homeostasis, and regeneration
Jiajie Yu1, Cuifeng Yang2, Yan Guo3
1Department of Urology and Andrology, The First Affiliated Hospital, Sun Yat-sen University, Guangzhou, China; Centre for Stem Cell Biology and Tissue Engineering, Key Laboratory for Stem Cells and Tissue Engineering, Ministry of Education, Sun Yat-sen University, Guangzhou, China; Department of Urology, Jiangmen Central Hospital, Jiangmen, China.
Abstract:
Leydig cells (LCs), which originate from mesenchymal-like progenitors, are the primary testosterone-producing cells in the testis. However, the roles of postnatal LC progenitors in pubertal development, homeostasis, and injury response remain poorly understood. Here, we demonstrate that neonatal testicular Gli1+ cells give rise to nearly all LCs during pubertal development. Conditional deletion of nuclear receptor subfamily 5, group A, member 1 (Nr5a1) in Gli1+ progenitors significantly impairs testicular development by inhibiting pubertal LC formation. Prepubertal exposure to cyclophosphamide disrupts LC formation, further impairing the development of the reproductive system. During adulthood, testicular Gli1+ cells contribute to the slow turnover of LCs, whereas conditional deletion of Nr5a1 has little impact on testicular homeostasis. Following hemicastration, Gli1+ cells rapidly differentiate into LCs in response to unilateral LC depletion, demonstrating that adult Gli1+ cells act as a functional reserve. These findings highlight the critical role of postnatal Gli1+ cells as progenitors of LCs for testicular pubertal development, adult homeostasis, and regeneration.
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