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混合益生菌调节肠道微生物群以改善双酚 A 暴露雄性小鼠的精子发生。

Mixed probiotics modulated gut microbiota to improve spermatogenesis in bisphenol A-exposed male mice.

机构信息

The First Clinical Medical College of Lanzhou University, Lanzhou University, China.

Ministry of Education Key Laboratory of Cell Activities and Stress Adaptations, School of Life Sciences, Lanzhou University, Lanzhou, Gansu 730000, China.

出版信息

Ecotoxicol Environ Saf. 2024 Jan 15;270:115922. doi: 10.1016/j.ecoenv.2023.115922. Epub 2024 Jan 2.

Abstract

Bisphenol A (BPA), an environmental endocrine disruptor (EDC), has been implicated in impairing intestinal and male reproductive dysfunction. The efficacy of gut microbiota modulation for BPA-exposed testicular dysfunction has yet to be verified through research. Therefore, this study explored the potential of mixed probiotics in restoring spermatogenesis damage through the gut-testis axis under BPA exposure. We selected two probiotics strains (Lactobacillus rhamnosus and Lactobacillus plantarum) with BPA removal properties in vitro and the BPA-exposed male mice model was established. The probiotics mixture effectively reduced BPA residue in the gut, serum, and testis in mice. Through 16 S rDNA-seq and metabolomics sequencing, we uncovered that vitamin D metabolism and bile acid levels in the gut was abolished under BPA exposure. This perturbation was linked to an increased abundance of Faecalibaculum and decreased abundance of Lachnospiraceae_NK4A136_group and Ligilactobacillus. The probiotics mixture restored this balance, enhancing intestinal barrier function and reducing oxidative stress. This improvement was accompanied by a restored balance of short-chain fatty acids (SCFAs). Remarkably, the probiotics ameliorated testicular dysfunction by repairing structures of seminiferous tubules and reversing arrested spermiogenesis. Further, the probiotics mixture enhanced testosterone-driven increases in spermatogonial stem cells and all stages of sperm cells. Testicular transcriptome profiling linked these improvements to fatty acid degradation and peroxisome pathways. These findings suggest a significant interplay between spermatogenesis and gut microbiota, demonstrating that probiotic intake could be a viable strategy for combating male subfertility issues caused by BPA exposure.

摘要

双酚 A(BPA)作为一种环境内分泌干扰物(EDC),已被证实会损害肠道和男性生殖功能。通过研究证实,肠道微生物群调节对 BPA 暴露引起的睾丸功能障碍的疗效尚未得到验证。因此,本研究通过 BPA 暴露下的肠-睾丸轴,探索混合益生菌恢复 BPA 暴露致生殖损伤的潜力。我们选择了两种具有体外 BPA 去除特性的益生菌菌株(鼠李糖乳杆菌和植物乳杆菌),并建立了 BPA 暴露雄性小鼠模型。益生菌混合物可有效减少小鼠肠道、血清和睾丸中的 BPA 残留。通过 16S rDNA-seq 和代谢组学测序,我们发现 BPA 暴露会破坏肠道中的维生素 D 代谢和胆汁酸水平。这种干扰与 Faecalibaculum 的丰度增加和 Lachnospiraceae_NK4A136_group 和 Ligilactobacillus 的丰度降低有关。益生菌混合物恢复了这种平衡,增强了肠道屏障功能,减少了氧化应激。这种改善伴随着短链脂肪酸(SCFAs)的平衡恢复。值得注意的是,益生菌通过修复精小管结构和逆转精子发生停滞来改善睾丸功能障碍。此外,益生菌混合物增强了睾丸酮驱动的精原干细胞和所有阶段精子细胞的增加。睾丸转录组分析将这些改善与脂肪酸降解和过氧化物酶体途径联系起来。这些发现表明生殖功能和肠道微生物群之间存在显著的相互作用,表明益生菌摄入可能是对抗 BPA 暴露引起的男性不育问题的一种可行策略。

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