Bisphenol S impairs oocyte quality by inducing gut microbiota dysbiosis.

IF 5 2区 生物学 Q1 MICROBIOLOGY mSystems Pub Date : 2025-01-21 Epub Date: 2024-12-20 DOI:10.1128/msystems.00912-24
Jiaming Zhang, Xiaoxia Yu, Weidong Li, Yunjing Jiang, Liangran Zhang, Shunxin Wang
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Abstract

A good quality egg is essential for a successful pregnancy and early embryo development. Oocyte development is vulnerable to environmental exposures. Bisphenol S (BPS) is widely used as a replacement for its analog bisphenol A, but the reproductive toxicity of BPS has been of great concern. In this study, we showed that BPS exposure induces dysbiosis of the gut microbiota, which further leads to intestinal permeability and inflammation, and ultimately impairs oocyte quality. More importantly, we found that alginate oligosaccharide reshapes the gut microbiota to improve gut homeostasis, thereby preventing the deleterious effects of BPS on the gut and oocytes. Overall, this study not only demonstrates that BPS exposure impairs the intestine and oocytes by inducing dysbiosis of the gut microbiota but also develops a preventive strategy.

Importance: Oocyte development is vulnerable to stimulation by intrinsic and extrinsic factors, particularly many environmental pollutants and chemicals in daily life. The reproductive toxicity of bisphenol S has been of great concern, although it is widely used as a safe substitute for its analog bisphenol A. However, it is not known how bisphenol S impairs oocyte quality. This work presents the exciting finding that bisphenol S induces gut microbiota dysbiosis, which further leads to increased intestinal permeability and inflammation and ultimately damages oocytes. More importantly, we show that alginate oligosaccharide improves gut homeostasis by reshaping the gut microbiota, therefore preventing the bisphenol S-induced gut microbiota dysbiosis and gut and oocyte damage. These findings present a major advance in the understanding of bisphenol S toxicity to oocytes and also provide a preventive strategy.

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双酚S通过诱导肠道菌群失调损害卵母细胞质量。
一个优质的卵子对成功怀孕和早期胚胎发育至关重要。卵母细胞的发育容易受到环境的影响。双酚S (BPS)被广泛用作双酚a的替代品,但其生殖毒性一直备受关注。在本研究中,我们发现BPS暴露会导致肠道菌群失调,进而导致肠道通透性和炎症,最终损害卵母细胞质量。更重要的是,我们发现海藻酸寡糖可以重塑肠道微生物群,改善肠道稳态,从而防止BPS对肠道和卵母细胞的有害影响。总体而言,本研究不仅表明BPS暴露通过诱导肠道微生物群失调而损害肠道和卵母细胞,而且还制定了预防策略。重要性:卵母细胞的发育容易受到内外因素的刺激,尤其是日常生活中的许多环境污染物和化学物质。尽管双酚S被广泛用作其类似物双酚a的安全替代品,但其生殖毒性一直备受关注。然而,双酚S如何损害卵母细胞质量尚不清楚。这项工作提出了令人兴奋的发现,双酚S诱导肠道微生物群失调,进一步导致肠道通透性增加和炎症,最终损害卵母细胞。更重要的是,我们发现海藻酸寡糖通过重塑肠道微生物群来改善肠道稳态,从而防止双酚s诱导的肠道微生物群失调和肠道和卵母细胞损伤。这些发现在了解双酚S对卵母细胞的毒性方面取得了重大进展,并提供了预防策略。
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来源期刊
mSystems
mSystems Biochemistry, Genetics and Molecular Biology-Biochemistry
CiteScore
10.50
自引率
3.10%
发文量
308
审稿时长
13 weeks
期刊介绍: mSystems™ will publish preeminent work that stems from applying technologies for high-throughput analyses to achieve insights into the metabolic and regulatory systems at the scale of both the single cell and microbial communities. The scope of mSystems™ encompasses all important biological and biochemical findings drawn from analyses of large data sets, as well as new computational approaches for deriving these insights. mSystems™ will welcome submissions from researchers who focus on the microbiome, genomics, metagenomics, transcriptomics, metabolomics, proteomics, glycomics, bioinformatics, and computational microbiology. mSystems™ will provide streamlined decisions, while carrying on ASM''s tradition of rigorous peer review.
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