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早期接触伏马菌素B1的Wistar大鼠卵巢中选定信号分子的动态变化及其与DNA甲基化的关系

Dynamic Changes of Selected Signaling Molecules in Ovaries Following Early-Life Exposure to Fumonisin B1 in Wistar Rats in Association With DNA Methylation.

作者信息

Alhelaisi A, Nahdi S, Alhazmi A, Alwasel S, Harrath A H

机构信息

Department of Zoology, College of Science, King Saud University, Riyadh, Kingdom of Saudi Arabia.

出版信息

Physiol Res. 2025 Jul 25;74(3):493-502.

PMID:40709489
Abstract

RThe mycotoxin fumonisin B1 (FB1) poses a significant global problem due to its presence in the food chain. This study aimed to investigate the intergenerational effects of FB1 on epigenetic changes and the corresponding signaling pathways in rat ovaries. Specifically, we examined the expression levels of DNA methyl-transferase (Dnmt3b) and the Pi3kK/Akt/mTOR/Ampk pathway. Virgin Wistar albino female rats were divided into control and FB1 treatment (doses of 20 and 50 mg/kg body weight/day) groups and monitored from day 6 of pregnancy until delivery. Female rats from the first (F1) and second (F2) generations were euthanized at 4 weeks of age, and their ovaries were collected. In addition to histopathological damage, there was a significant dose-dependent increase in Dnmt3b protein in the ovaries of F1 females (p=0.0022 and p<0.0001, respectively), but not in those of F2 females. Furthermore, overexpression of the PI3K gene was observed only in the high-dose FB1 group in both the F1 and F2 generations. In F2, significant gene overexpression of Akt was observed in the high-dose FB1 group, while no effect was observed in F1. Both treated groups of F1 females showed significant repression of the mTOR gene, whereas no effect was observed in F2 females. In addition, FB1 did not have a significant effect on the expression of the Ampk gene in either treatment group in either generation. We conclude that early-life exposure to FB1 may directly impact the ovarian function of female rats by altering methylation patterns and Pi3k/Akt/mTOR pathway in first- generation females. However, this effect appears to be recoverable in the second-generation females. Key words Mycotoxin " Fumonisin B1 " Epigenetic " Signaling pathway " Methylation " Ovary.

摘要

由于霉菌毒素伏马菌素B1(FB1)存在于食物链中,它给全球带来了重大问题。本研究旨在调查FB1对大鼠卵巢表观遗传变化及相应信号通路的代际影响。具体而言,我们检测了DNA甲基转移酶(Dnmt3b)的表达水平以及Pi3kK/Akt/mTOR/Ampk信号通路。将未交配的Wistar白化雌性大鼠分为对照组和FB1处理组(剂量为20和50毫克/千克体重/天),从怀孕第6天开始监测直至分娩。第一代(F1)和第二代(F2)的雌性大鼠在4周龄时安乐死,并收集其卵巢。除了组织病理学损伤外,F1代雌性大鼠卵巢中Dnmt3b蛋白呈显著的剂量依赖性增加(分别为p = 0.0022和p < 0.0001),但F2代雌性大鼠卵巢中未出现这种情况。此外,仅在F1和F2代的高剂量FB1组中观察到PI3K基因的过表达。在F2代中,高剂量FB1组中观察到Akt基因的显著过表达,而F1代中未观察到影响。F1代雌性大鼠的两个处理组均显示mTOR基因受到显著抑制,而F2代雌性大鼠中未观察到影响。此外,FB1对两代中任一处理组的Ampk基因表达均无显著影响。我们得出结论,生命早期接触FB1可能通过改变第一代雌性大鼠的甲基化模式和Pi3k/Akt/mTOR信号通路直接影响雌性大鼠的卵巢功能。然而这种影响在第二代雌性大鼠中似乎是可恢复的。关键词 霉菌毒素;伏马菌素B1;表观遗传;信号通路;甲基化;卵巢

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