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经口暴露于雄性和雌性小鼠的苯扎氯铵会改变肠道微生物组和胆汁酸谱。

Oral exposure to benzalkonium chlorides in male and female mice reveals alteration of the gut microbiome and bile acid profile.

机构信息

Department of Medicinal Chemistry, University of Washington, Seattle, WA 98195, United States.

Department of Environmental and Occupational Health Sciences, University of Washington, Seattle, WA 98195, United States.

出版信息

Toxicol Sci. 2024 Dec 1;202(2):265-277. doi: 10.1093/toxsci/kfae116.

Abstract

Benzalkonium chlorides (BACs) are commonly used disinfectants in a variety of consumer and food-processing settings, and the COVID-19 pandemic has led to increased usage of BACs. The prevalence of BACs raises the concern that BAC exposure could disrupt the gastrointestinal microbiota, thus interfering with the beneficial functions of the microbes. We hypothesize that BAC exposure can alter the gut microbiome diversity and composition, which will disrupt bile acid (BA) homeostasis along the gut-liver axis. In this study, male and female mice were exposed orally to d7-C12- and d7-C16-BACs at 120 µg/g/d for 1 wk. UPLC-MS/MS analysis of liver, blood, and fecal samples of BAC-treated mice demonstrated the absorption and metabolism of BACs. Both parent BACs and their metabolites were detected in all exposed samples. Additionally, 16S rRNA sequencing was carried out on the bacterial DNA isolated from the cecum intestinal content. For female mice, and to a lesser extent in males, we found that treatment with either d7-C12- or d7-C16-BAC led to decreased alpha diversity and differential composition of gut bacteria with notably decreased actinobacteria phylum. Lastly, through a targeted BA quantitation analysis, we observed decreases in secondary BAs in BAC-treated mice, which was more pronounced in the female mice. This finding is supported by decreases in bacteria known to metabolize primary BAs into secondary BAs, such as the families of Ruminococcaceae and Lachnospiraceae. Together, these data signify the potential impact of BACs on human health through disturbance of the gut microbiome and gut-liver interactions.

摘要

苯扎氯铵(BACs)在各种消费和食品加工环境中被广泛用作消毒剂,而 COVID-19 大流行导致 BAC 的使用增加。BAC 的普遍性引起了人们的关注,即 BAC 暴露可能会破坏胃肠道微生物群,从而干扰微生物的有益功能。我们假设 BAC 暴露会改变肠道微生物组的多样性和组成,从而破坏肠道-肝脏轴上的胆汁酸(BA)稳态。在这项研究中,雄性和雌性小鼠经口暴露于 120μg/g/d 的 d7-C12-BAC 和 d7-C16-BAC 中 1 周。用 UPLC-MS/MS 分析 BAC 处理小鼠的肝、血和粪便样本,结果表明 BAC 被吸收和代谢。所有暴露样本中均检测到母体 BAC 及其代谢物。此外,还对从回肠内容物中分离的细菌 DNA 进行了 16S rRNA 测序。对于雌性小鼠,并且在一定程度上对于雄性小鼠,我们发现用 d7-C12-BAC 或 d7-C16-BAC 处理会导致肠道细菌的 alpha 多样性降低和组成差异,放线菌门的数量明显减少。最后,通过靶向 BA 定量分析,我们观察到 BAC 处理小鼠的次级 BA 减少,在雌性小鼠中更为明显。这一发现得到了已知能将初级 BA 代谢为次级 BA 的细菌减少的支持,例如 Ruminococcaceae 和 Lachnospiraceae 家族。这些数据共同表明,BAC 通过干扰肠道微生物组和肠道-肝脏相互作用,可能对人类健康产生影响。

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