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首页> 外文期刊>Journal of toxicology >Toxicity of Methylated Bismuth Compounds Produced by Intestinal Microorganisms to Bacteroides thetaiotaomicron,a Member of the Physiological Intestinal Microbiota
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Toxicity of Methylated Bismuth Compounds Produced by Intestinal Microorganisms to Bacteroides thetaiotaomicron,a Member of the Physiological Intestinal Microbiota

机译:通过肠道微生物产生的甲基化铋化合物对菌体ThetaioTaomicron,生理肠道微生物的成员

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Methanoarchaea have an outstanding capability to methylate numerous metal(loid)s therefore producing toxic and highly mobile derivatives. Here, we report that the production of methylated bismuth species by the methanoarchaeum Methanobrevibacter smithii, a common member of the human intestine, impairs the growth of members of the beneficial intestinal microbiota at low concentrations. The bacterium Bacteroides thetaiotaomicron, which is of great importance for the welfare of the host due to its versatile digestive abilities and its protective function for the intestine, is highly sensitive against methylated, but not against inorganic, bismuth species. The level of methylated bismuth species produced by the methanoarchaeum M. smithii in a coculture experiment causes a reduction of the maximum cell density of B. thetaiotaomicron. This observation suggests that the production of methylated organometal(loid) species in the human intestine, caused by the activity of methanoarchaea, may affect the health of the host. The impact of the species to reduce the number of the physiological intestinal microbiota brings an additional focus on the potentially harmful role of methanoarchaea in the intestine of a higher organism.
机译:MethanoArchaea具有卓越的甲酸盐的能力,因此可以产生毒性和高度移动衍生物。在这里,我们报告说,通过甲烷类甲烷类杆菌甲酸甲酸甲基铋渣,人肠的共同构件的生产损害了低浓度低浓度的有益肠道微生物成员的生长。由于其通用的消化能力和其对肠道的保护功能而对宿主的福利具有重要意义的细菌诱导性,这对于甲基化具有高度敏感的,但不对无机,铋物种具有高度敏感的。在共培养实验中,甲烷阶段M. Smithii产生的甲基化铋物种的水平导致B.ThetaiOMicron的最大细胞密度降低。该观察结果表明,由甲烷硫砂的活性引起的人肠中的甲基化有机体(Loid)物种的产生可能影响宿主的健康状况。物种对生理肠道微生物群的数量的影响使额外关注甲烷的潜在有害作用在更高生物体的肠道中。

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