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Chemical-and effect-oriented exposomics; Three Gorges Reservoir (TGR)

机译:化学和效果导向的实验组学;三峡水库(TGR)

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Exposomic studies of the rapidly changing environment of the Three Gorges Reservoir (TGR) after its impounding is elaborated as a novel field of human and environmental research. Molecular exposomics is focused on the measure of all exposures to molecules and especially persistent organic pollutants-like compounds are of emerging interest due to their lifetime existence in the environment and humans. Theoretical considerations in general and particular for the TGR are deduced and presented using quantitative approaches for this research field. Since exposomics is strongly time-dependent, a theory is presented to link extension of exposure, time, and related effects. Similarity to the first law of thermodynamics is outlined. On top of this, the integrated use of biomarkers is presented employing chemical analysis for biomarkers of exposure and effects, biomarkers in vivo, in vitro approaches and the link between chemical mixtures, and the onset of disease and lethality. Besides real organisms, also virtual organisms are favored to act as well-defined sub-compartments such as fat of biota and with respect to time of exposure. Exposomics is the perspective of risk evaluation and chronic exposures in the running century. It needs novel theories, approaches, and integrated action between medical and environmental disciplines. The existing knowledge about molecular stressors has to be assembled and put into a context especially with respect not only to time resp. lifetime exposure of humans but also eco-toxicological findings by using highly conserved phylogenetic mechanisms to enable links between human and risks of environmental biota. The TGR is a good example not only to employ biomonitoring of real but also virtual organisms due to the lack of established ecotopes in this changing environment so far. Progress in understanding long-term risks requires a proper theory as well as novel tools such as virtual organisms. On top, multidisciplinary approaches and the utilization of existing knowledge about the exposure of the environment and humans have to be merged and directed into mutual concepts. Effect-oriented and chemical analysis must be designed time-oriented to determine lifetime exposures of mankind and nature. Perspectively, a first attempt about exposomic theory and concepts is proposed and has to be developed experimentally further enclosing virtual besides of real organisms and compartments. Environmental and human exposomics have to be considered as a unified global issue in order to effectively utilize their mutual existing knowledge most effectively. The TGR is a challenging model system aiming this objective.
机译:三峡水库(TGR)蓄水后,对迅速变化的环境进行了暴露研究,这是人类与环境研究的一个新领域。分子组学研究的重点是对分子的所有接触进行测量,尤其是持久性有机污染物样化合物由于其在环境和人类中的一生而备受关注。使用该研究领域的定量方法推导并提出了有关TGR的一般理论考虑,特别是有关TGR的理论考虑。由于暴露组学与时间密切相关,因此提出了一种理论来联系暴露时间,时间和相关效应的扩展。概述了与热力学第一定律的相似性。最重要的是,生物标志物的综合使用是通过化学分析来进行暴露和效应的生物标志物,体内生物标志物,体外方法以及化学混合物之间的联系,以及疾病和致死性的发作,从而进行综合使用。除了真实的生物外,虚拟生物还应被用作明确定义的小隔间,例如生物群的脂肪和暴露时间。在运行的世纪中,Exposomics是风险评估和长期暴露的观点。它需要新颖的理论,方法以及医学和环境学科之间的综合行动。必须将有关分子应激源的现有知识进行整理,并结合到上下文中,尤其是不仅要考虑时间。通过使用高度保守的系统发生机制,使人类与环境生物群系之间的联系成为可能,从而获得人类一生的暴露以及生态毒理学发现。由于迄今为止在这种不断变化的环境中缺乏成熟的生态环境,TGR不仅是对真实生物而且对虚拟生物进行生物监测的一个很好的例子。要了解长期风险,需要有适当的理论以及诸如虚拟生物之类的新颖工具。最重要的是,必须将多学科方法和有关环境和人类暴露的现有知识的利用合并起来,并引导到共同的概念中。注重效果的分析和化学分析必须以时间为导向,以确定人类和大自然的一生。透视地,提出了关于暴露的理论和概念的首次尝试,并且必须通过实验进一步开发,以进一步封闭除了真实生物和隔室之外的虚拟区域。为了有效地最有效地利用他们的共同存在的知识,必须将环境和人类暴露组学视为一个全球性的统一问题。 TGR是针对此目标的具有挑战性的模型系统。

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