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首页> 外文期刊>Journal of proteome research >Serum Metabolomics Reveals That Gut Microbiome Perturbation Mediates Metabolic Disruption Induced by Arsenic Exposure in Mice
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Serum Metabolomics Reveals That Gut Microbiome Perturbation Mediates Metabolic Disruption Induced by Arsenic Exposure in Mice

机译:血清代谢组学显示,肠道微生物组扰动介导通过小鼠砷暴露引起的代谢破坏

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Arsenic contamination in drinking water has been a worldwide health concern for decades. In addition to being a well-recognized carcinogen, arsenic exposure has also been linked to diabetes, neurological effects, and cardiovascular diseases. Recently, increasing evidence has indicated that gut microbiome is an important risk factor in modulating the development of diseases. We aim to investigate the role of gut microbiome perturbation in arsenic-induced diseases by coupling a mass-spectrometry-based metabolomics approach and an animal model with altered gut microbiome induced by bacterial infection. Serum metabolic profiling has revealed that gut microbiome perturbation and arsenic exposure induced the dramatic changes of numerous metabolite pathways, including fatty acid metabolism, phospholipids, sphingolipids, cholesterols, and tryptophan metabolism, which were not or were less disrupted when the gut microbiome stayed normal. In summary, this study suggests that gut microbiome perturbation can exacerbate or cause metabolic disorders induced by arsenic exposure.
机译:饮用水中的砷污染已经是几十年来全世界的健康问题。除了是一种公认​​的致癌物之外,砷暴露还与糖尿病,神经效应和心血管疾病有关。最近,越来越多的证据表明,肠道微生物组是调节疾病发展的重要风险因素。我们的目的是通过偶联肠道诱导的疾病在砷诱导的疾病中探讨肠道微生物扰动的作用和细菌感染诱导的肠道微生物组改变的动物模型。血清代谢分析表明,肠道微生物组扰动和砷暴露诱导了许多代谢物途径的显着变化,包括脂肪酸代谢,磷脂,鞘脂,胆固醇和色氨酸代谢,当肠道微生物组保持正常时,这些脂肪酸代谢,鞘脂,胆固醇和色氨酸代谢。总之,本研究表明,肠道微生物组扰动可以加剧或引起由砷暴露引起的代谢紊乱。

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