Testosterone synthesis depends on normal Leydig cell (LC) development, but the mechanisms controlling this development remain unclear. We recently demonstrated that androgen receptor (AR) ablation from a proportion of testicular peritubular myoid cells (PTM-ARKO) did not affect LC number, but resulted in compensated LC failure. The current study extends these investigations, demonstrating that PTM AR signalling is important for normal development, ultrastructure and function of adult LCs. Notably, mRNAs for LC markers [e.g. steroidogenic factor 1 (Nr5a1), insulin-like growth factor (Igf-1) and insulin-like factor 3 (Insl3)] were significantly reduced in adult PTM-ARKOs, but not all LCs were similarly affected. Two LC sub-populations were id...
Background: Testosterone provokes Sertoli cell maturation and represses AMH production. In adult pat...
Regulation of blood flow through the testicular microvasculature by vasomotion is thought to be impo...
Spermatogenesis is regulated by a complex interplay between endocrine signals and local interactions...
Testosterone synthesis depends on normal Leydig cell (LC) development, but the mechanisms controllin...
It is established that androgens and unidentified Sertoli cell (SC)-derived factors can influence th...
Background: The interstitium of the mouse testis contains Leydig cells and a small number of ster...
Androgens are essential for normal spermatogenesis and male fertility, but how androgens exert this ...
Glucocorticoids are steroids involved in key physiological processes such as development, metabolism...
Disruption of normal fetal development can influence functioning of organs and cells in adulthood. C...
The insulin family of growth factors (insulin, IGF1, and IGF2) are critical in sex determination, ad...
The insulin family of growth factors (insulin, IGF1, and IGF2) are critical in sex determination, ad...
Androgen production by Leydig cells is critical for development of the male reproductive organs and ...
Leydig cells are the testosterone-producing cells of the testis. The adult Leydig cell population ul...
To explore the ability of androgens to affect gene expression in Sertoli and peritubular cells in vi...
Mullerian inhibiting substance (MIS) causes Mullerian duct regression during sexual differentiation ...
Background: Testosterone provokes Sertoli cell maturation and represses AMH production. In adult pat...
Regulation of blood flow through the testicular microvasculature by vasomotion is thought to be impo...
Spermatogenesis is regulated by a complex interplay between endocrine signals and local interactions...
Testosterone synthesis depends on normal Leydig cell (LC) development, but the mechanisms controllin...
It is established that androgens and unidentified Sertoli cell (SC)-derived factors can influence th...
Background: The interstitium of the mouse testis contains Leydig cells and a small number of ster...
Androgens are essential for normal spermatogenesis and male fertility, but how androgens exert this ...
Glucocorticoids are steroids involved in key physiological processes such as development, metabolism...
Disruption of normal fetal development can influence functioning of organs and cells in adulthood. C...
The insulin family of growth factors (insulin, IGF1, and IGF2) are critical in sex determination, ad...
The insulin family of growth factors (insulin, IGF1, and IGF2) are critical in sex determination, ad...
Androgen production by Leydig cells is critical for development of the male reproductive organs and ...
Leydig cells are the testosterone-producing cells of the testis. The adult Leydig cell population ul...
To explore the ability of androgens to affect gene expression in Sertoli and peritubular cells in vi...
Mullerian inhibiting substance (MIS) causes Mullerian duct regression during sexual differentiation ...
Background: Testosterone provokes Sertoli cell maturation and represses AMH production. In adult pat...
Regulation of blood flow through the testicular microvasculature by vasomotion is thought to be impo...
Spermatogenesis is regulated by a complex interplay between endocrine signals and local interactions...