益生菌
内分泌系统
生物
斑马鱼
雌激素
生理学
后代
益生元
肠道菌群
性别分化
肠内分泌细胞
女性化(社会学)
不利影响
黑腹果蝇
内分泌学
少年
作者
Baili Sun,Chenyan Hu,Qi Wang,Xiangzhen Zhou,Yuefei Ruan,Naiyu Xie,Wenbing Zhang,Bingsheng Zhou,Lianguo Chen,Jianbo Shi
标识
DOI:10.1021/acs.est.5c14637
摘要
Perfluorobutanesulfonate (PFBS) is an emerging pollutant with potent endocrine disrupting effects, while probiotic bacteria can significantly modulate animal endocrinology. However, whether and how probiotics interact with PFBS to maintain the host’s endocrine equilibrium are unknown. Herein, juvenile zebrafish (Danio rerio) were chronically exposed to environmentally relevant concentrations of PFBS during the critical window of gonadal differentiation and maturation (from 21 days postfertilization (dpf) until 150 dpf), with or without dietary supplementation of probiotic Lactobacillus rhamnosus. At 35 dpf, probiotics robustly acted to alleviate PFBS body burden and regulate the toxic fingerprints of PFBS on the sex ratio, estrogen hormones, sex differentiating genes, and estrobolome dynamics. In mature adults, PFBS induced antiestrogenic effects in females, thus forming a male-biased population, accompanied by oogenesis blockade, reduced fecundity, and offspring developmental defects. However, these adverse effects were efficiently counteracted by probiotic supplementation, which was attributed to the holistic activation of the reproductive axis and marked increase of estrogen concentrations. In the gut microenvironment, probiotics mitigated the PFBS-induced disturbance of estrogen-metabolizing bacteria, β-glucuronidase enzyme activity, and critical metabolites along the pentose and glucuronate interconversion pathway, thus directing estrogen gut-liver recycling. Overall, our findings highlight the far-reaching implications of probiotics beyond the gut to mitigate endocrine disrupting effects, suggesting a health intervention strategy based on gut estrobolome remediation.
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