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Deoxynivalenol exposure disturbs the cytoplasmic maturation in porcine oocytes.

Authors :
Hu, Lin-Lin
Liu, Ya-Xi
Yu, Xiao-Ting
Sun, Shao-Chen
Yang, Feng-Lian
Source :
Ecotoxicology & Environmental Safety; Oct2024, Vol. 285, pN.PAG-N.PAG, 1p
Publication Year :
2024

Abstract

Deoxynivalenol (DON) is a secondary metabolite of Fusarium fungi and belonged to trichothecenes, and it widely presents in various food commodities. Previous studies have highlighted its potent toxicity, adversely affecting the growth, development, and reproductive in both humans and animals. However, the potential impact of DON on porcine oocyte organelles remains elusive. In present study, we delved into the toxic effects of DON on mitochondria, endoplasmic reticulum, Golgi during the porcine oocyte maturation. Our findings revealed that DON exposure significantly impeded granulosa cell diffusion and the expulsion of the first polar body. Additionally, mitochondrial fluorescence intensity and membrane potential underwent notable alterations under DON exposure. Notably, lysosomal fluorescence intensity decreased significantly, suggesting protein degradation and potential autophagy, which was further corroborated by the enhanced fluorescence intensity of LC3. Furthermore, endoplasmic reticulum fluorescence intensity declined, and DON exposure elevated endoplasmic reticulum stress levels, evident from the upregulated expression of GRP78. Concurrently, we observed disruption in the fusiform cortex distribution of the Golgi apparatus, characterized by reduced Golgi apparatus fluorescence intensity and GM130 expression. Collectively, our results indicate that DON exposure profoundly affects the fundamental functions of porcine oocyte organelles during meiosis and maturation. • DON impeded granulosa cell diffusion and porcine oocyte polar body extrusion. • DON altered mitochondria distribution and membrane potential of porcine oocytes. • DON disrupted lysosomal function and induced autophagy in porcine oocytes. • DON increased endoplasmic reticulum stress by GRP78 in porcine oocytes. • DON reduced GM130 and altered Golgi apparatus distribution of porcine oocytes. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
01476513
Volume :
285
Database :
Supplemental Index
Journal :
Ecotoxicology & Environmental Safety
Publication Type :
Academic Journal
Accession number :
180233565
Full Text :
https://doi.org/10.1016/j.ecoenv.2024.117137