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Hepatocyte growth factor is a mouse fetal Leydig cell terminal differentiation factor. | LitMetric

Hepatocyte growth factor is a mouse fetal Leydig cell terminal differentiation factor.

Biol Reprod

Department of Experimental Medicine, Histology and Embryology Laboratory, School of Medicine, Second University of Naples, Naples, Italy.

Published: June 2012

AI Article Synopsis

  • HGF is a cytokine that plays a crucial role in mouse embryonic organ development, specifically in the testis, where it affects fetal Leydig cells (FLCs).
  • The study reveals that HGF helps reduce cell death (apoptosis) in FLCs but does not promote their growth; instead, it supports their differentiation into mature cells.
  • HGF increases the expression of specific markers associated with Leydig cell maturation while decreasing markers linked to progenitor cells, highlighting its role as a survival and differentiation factor in testis development.

Article Abstract

The hepatocyte growth factor (HGF) is a pleiotropic cytokine and a well-known regulator of mouse embryonic organogenesis. In previous papers, we have shown the expression pattern of HGF and its receptor, C-MET, during the different stages of testis prenatal development. We demonstrated that C-MET is expressed in fetal Leydig cells (FLCs) and that HGF stimulates testosterone secretion in organ culture of late fetal testes. In the present study, we analyzed the proliferation rate, apoptotic index, and differentiation of FLCs in testicular organ culture of 17.5 days postcoitum (17.5 dpc) embryos to clarify the physiological role of HGF in late testis organogenesis. Based on our data, we conclude the following: 1) HGF acts as an antiapoptotic factor that is able to reduce the number of apoptotic FLCs and testicular caspase-3 active fragment; 2) HGF does not affect FLC proliferation; 3) HGF significantly increases expression of insulin-like 3 (INSL3), a marker of Leydig cell terminal differentiation, without affecting 3beta-hydroxysteroid dehydrogenase (3betaHSD) expression; 4) HGF significantly decreases the expression of nestin, a marker of Leydig cell progenitors; and 5) HGF significantly increases the number of fully developed FLCs. Taken together, these observations demonstrate that HGF is able to act in vitro as a survival and differentiation factor in FLC population.

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Source
http://dx.doi.org/10.1095/biolreprod.112.104638DOI Listing

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