探索暴露体的化学空间:我们走了多远?

JACS Au Pub Date : 2024-06-20 DOI:10.1021/jacsau.4c00220
Saer Samanipour, Leon Patrick Barron, Denice van Herwerden, Antonia Praetorius, Kevin V. Thomas, Jake William O’Brien
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引用次数: 0

摘要

人类约三分之二的慢性疾病无法仅用遗传学来解释。柳叶刀污染与健康委员会估计,全球 16% 的过早死亡与污染有关。此外,现在人们认为,人类已经超越了将人造化学物质引入地球系统的安全操作空间。直接和间接暴露于无数已知和未知的化学物质,对生物多样性和人类健康构成了重大威胁,包括疫苗效力、抗菌药耐药性的增加以及自身免疫性疾病和精神疾病。由于可能的化学结构数量庞大,估计有超过 1060 种独特形式,暴露组化学空间在很大程度上仍是未知的。传统方法只对暴露组的一部分进行了编目,忽略了转化产物,结果往往不确定。在本《视角》中,我们回顾了在绘制暴露体化学空间及其子空间方面所做的最新努力。我们还就数据驱动方法的整合如何能够弥补已发现的差距提出了自己的看法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Exploring the Chemical Space of the Exposome: How Far Have We Gone?
Around two-thirds of chronic human disease can not be explained by genetics alone. The Lancet Commission on Pollution and Health estimates that 16% of global premature deaths are linked to pollution. Additionally, it is now thought that humankind has surpassed the safe planetary operating space for introducing human-made chemicals into the Earth System. Direct and indirect exposure to a myriad of chemicals, known and unknown, poses a significant threat to biodiversity and human health, from vaccine efficacy to the rise of antimicrobial resistance as well as autoimmune diseases and mental health disorders. The exposome chemical space remains largely uncharted due to the sheer number of possible chemical structures, estimated at over 1060 unique forms. Conventional methods have cataloged only a fraction of the exposome, overlooking transformation products and often yielding uncertain results. In this Perspective, we have reviewed the latest efforts in mapping the exposome chemical space and its subspaces. We also provide our view on how the integration of data-driven approaches might be able to bridge the identified gaps.
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