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Role of Follicle-Stimulating Hormone in Spermatogenesis

Overview
Specialty Endocrinology
Date 2019 Jan 9
PMID 30619093
Citations 97
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Abstract

Spermatogenesis is a concerted sequence of events during maturation of spermatogonia into spermatozoa. The process involves differential gene-expression and cell-cell interplay regulated by the key endocrine stimuli, i.e., follicle-stimulating hormone (FSH) and luteinizing hormone (LH)-stimulated testosterone. FSH affects independently and in concert with testosterone, the proliferation, maturation and function of the supporting Sertoli cells that produce regulatory signals and nutrients for the maintenance of developing germ cells. Rodents are able to complete spermatogenesis without FSH stimulus, but its deficiency significantly decreases sperm quantity. Men carrying loss-of-function mutation in the gene encoding the ligand () or its receptor ( present, respectively, with azoospermia or suppressed spermatogenesis. Recently, the importance of high intratesticular testosterone concentration for spermatogenesis has been questioned. It was established that it can be completed at minimal intratesticular concentration of the hormone. Furthermore, we recently demonstrated that very robust constitutive FSHR action can rescue spermatogenesis and fertility of mice even when the testosterone stimulus is completely blocked. The clinical relevance of these findings concerns a new strategy of high-dose FSH in treatment of spermatogenic failure.

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References
1.
Meachem S, McLachlan R, Stanton P, Robertson D, Wreford N . FSH immunoneutralization acutely impairs spermatogonial development in normal adult rats. J Androl. 1999; 20(6):756-62; discussion 755. View

2.
Nieschlag E, Buchter D, von Eckardstein S, Abshagen K, Simoni M, Behre H . Repeated intramuscular injections of testosterone undecanoate for substitution therapy in hypogonadal men. Clin Endocrinol (Oxf). 2000; 51(6):757-63. DOI: 10.1046/j.1365-2265.1999.00881.x. View

3.
Orth J, McGuinness M, Qiu J, Jester Jr W, Li L . Use of in vitro systems to study male germ cell development in neonatal rats. Theriogenology. 2000; 49(2):431-9. DOI: 10.1016/s0093-691x(97)00415-9. View

4.
Abel M, Wootton A, Wilkins V, Huhtaniemi I, Knight P, Charlton H . The effect of a null mutation in the follicle-stimulating hormone receptor gene on mouse reproduction. Endocrinology. 2000; 141(5):1795-803. DOI: 10.1210/endo.141.5.7456. View

5.
Lyng F, Jones G, Rommerts F . Rapid androgen actions on calcium signaling in rat sertoli cells and two human prostatic cell lines: similar biphasic responses between 1 picomolar and 100 nanomolar concentrations. Biol Reprod. 2000; 63(3):736-47. DOI: 10.1095/biolreprod63.3.736. View