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High-performance metabolic profiling of plasma from seven mammalian species for simultaneous environmental chemical surveillance and bioeffect monitoring

机译:来自七种哺乳动物的高性能代谢分析来自七种哺乳动物的同时环境化学监测和生物效应监测

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摘要

High-performance metabolic profiling (HPMP) by Fourier-transform mass spectrometry coupled to liquid chromatography gives relative quantification of thousands of chemicals in biologic samples but has had little development for use in toxicology research. In principle, the approach could be useful to detect complex metabolic response patterns to toxicologic exposures and to detect unusual abundances or patterns of potentially toxic chemicals. As an initial study to develop these possible uses, we applied HPMP and bioinformatics analysis to plasma of humans, rhesus macaques, marmosets, pigs, sheep, rats and mice to determine: 1) whether more chemicals are detected in humans living in a less controlled environment than captive species, and 2) whether a subset of plasma chemicals with similar inter-species and intra-species variation could be identified for use in comparative toxicology. Results show that the number of chemicals detected was similar in humans (3221) and other species (range 2537 to 3373). Metabolite patterns were most similar within species and separated samples according to family and order. A total of 1485 chemicals were common to all species; 37% of these matched chemicals in human metabolomic databases and included chemicals in 137 out of 146 human metabolic pathways. Probability-based modularity clustering separated 644 chemicals, including many endogenous metabolites, with inter-species variation similar to intra-species variation. The remaining chemicals had greater inter-species variation and included environmental chemicals as well as GSH and methionine. Together, the data suggest that HPMP provides a platform that can be useful within human populations and controlled animal studies to simultaneously evaluate environmental exposures and biological responses to such exposures.
机译:通过傅立叶变换质谱法(HPMP)通过傅立叶变换质谱,偶联至液相色谱,在生物学样品中提供了数千种化学品的相对量化,但在毒理学研究中使用了很少的开发。原则上,该方法可用于检测复杂的代谢反应模式,以毒理曝光,并检测潜在有毒化学品的不寻常的丰富或模式。作为发展这些可能的用途的初步研究,我们将HPMP和生物信息学分析应用于人类,恒河猴,猪肉,猪,绵羊,大鼠和小鼠的血浆,以确定:1)是否在生活中以较少控制的人类检测更多化学品环境比俘虏种类和2)可以鉴定用于比较毒理学的物质相似和物质内变异的等离子体化学物质的子集。结果表明,检测到的化学物质数量在人体(3221)和其他物种(范围为2537至3373)中。根据家庭和订单,代谢物模式在物种和分离样品中最相似。总共1485种化学物质对所有物种常见; 37%的人代谢组数据库中有37%的化学品,包括146例人类代谢途径中的137例化学品。基于概率的模块化聚类分离的644种化学物质,包括许多内源代谢物,具有类似于物种内变异的物种间变异。剩余的化学品具有更大的物种间变异,包括环境化学品以及GSH和蛋氨酸。这些数据表明,HPMP提供了一个可以在人类人群和受控动物研究中有用的平台,以同时评估对这种暴露的环境暴露和生物反应。

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