Deoxynivalenol Inhibits Progenitor Leydig Cell Development by Stimulating Mitochondrial Fission in Rats

J Agric Food Chem. 2024 May 8;72(18):10616-10626. doi: 10.1021/acs.jafc.4c01151. Epub 2024 Apr 24.

Abstract

Deoxynivalenol (DON) is a common food contaminant that can impair male reproductive function. This study investigated the effects and mechanisms of DON exposure on progenitor Leydig cell (PLC) development in prepubertal male rats. Rats were orally administrated DON (0-4 mg/kg) from postnatal days 21-28. DON increased PLC proliferation but inhibited PLC maturation and function, including reducing testosterone levels and downregulating biomarkers like HSD11B1 and INSL3 at ≥2 mg/kg. DON also stimulated mitochondrial fission via upregulating DRP1 and FIS1 protein levels and increased oxidative stress by reducing antioxidant capacity (including NRF2, SOD1, SOD2, and CAT) in PLCs in vivo. In vitro, DON (2-4 μM) inhibited PLC androgen biosynthesis, increased reactive oxygen species production and protein levels of DRP1, FIS1, MFF, and pAMPK, decreased mitochondrial membrane potential and MFN1 protein levels, and caused mitochondrial fragmentation. The mitochondrial fission inhibitor mdivi-1 attenuated DON-induced impairments in PLCs. DON inhibited PLC steroidogenesis, increased oxidative stress, perturbed mitochondrial homeostasis, and impaired maturation. In conclusion, DON disrupts PLC development in prepubertal rats by stimulating mitochondrial fission.

Keywords: deoxynivalenol; mitochondrial fission; oxidative stress; progenitor Leydig cells; testosterone.

MeSH terms

  • Animals
  • Dynamins / genetics
  • Dynamins / metabolism
  • Humans
  • Leydig Cells* / cytology
  • Leydig Cells* / drug effects
  • Leydig Cells* / metabolism
  • Male
  • Membrane Potential, Mitochondrial / drug effects
  • Mitochondria* / drug effects
  • Mitochondria* / metabolism
  • Mitochondrial Dynamics* / drug effects
  • Oxidative Stress* / drug effects
  • Rats
  • Rats, Sprague-Dawley*
  • Reactive Oxygen Species / metabolism
  • Stem Cells / cytology
  • Stem Cells / drug effects
  • Stem Cells / metabolism
  • Testosterone / metabolism
  • Trichothecenes* / toxicity

Substances

  • Trichothecenes
  • deoxynivalenol
  • Reactive Oxygen Species
  • Testosterone
  • Dynamins