GRPR down-regulation inhibits spermatogenesis through Ca2+ mediated by PLCβ/IP3R signaling pathway in long-term formaldehyde-exposed rats

  • Yan qi Yang
  • , Rui fang Sun
  • , Pan Ge
  • , Wen Xing Li
  • , Xiang Zhang
  • , Jian Zhang
  • , Lu Ye
  • , Nan Zhang
  • , Si yu Wang
  • , Mo qi Lv
  • , Dang xia Zhou

Research output: Contribution to journalArticlepeer-review

5 Scopus citations

Abstract

Formaldehyde (FA), which is known as an air pollutant, has been proven to induce male infertility. However, the underlying mechanism of FA-induced male infertility remains elusive. In this study, 24 male SD rats were exposed to different levels of FA (0, 0.5, 2.46, and 5 mg/m3) for eight consecutive weeks. Through HE staining and sperm smear, we observed that FA exposure resulted in spermatogenic injury and the sperm quality decreased in rats. The qRT-PCR and Western blot analysis further revealed that GRPR was down-regulated in testicular tissues of FA-exposed rats as well as primary spermatogenic cells. Meanwhile, ZDOCK uncovered an interaction between GRPR and PLCβ. In addition, the CCK8, Fluo 3-AM and Flow cytometry results showed that FA exposure suppressed the expression of GRPR, PLCβ and IP3R, consequently reducing the Ca2+ concentration in spermatogenic cells, inducing apoptosis and inhibiting proliferation of spermatogenic cells. Moreover, rescue experiments confirmed that promoting GRPR could improve intracellular Ca2+ concentration by upregulating PLCβ and IP3R, partially reducing the apoptosis and promoting the proliferation of FA-treated spermatogenic cells. These findings revealed that GRPR participates in spermatogenesis through Ca2+ mediated by the PLCβ/IP3R signaling pathway in FA-exposed rats.

Original languageEnglish
Article number113998
JournalFood and Chemical Toxicology
Volume179
DOIs
StatePublished - Sep 2023

Keywords

  • Ca
  • Formaldehyde exposure
  • GRPR
  • PLCβ/IP3R
  • Reproductive toxicology
  • Spermatogenesis

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