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通过病理金属组学揭示暴露组相关疾病:一种针对临床人群的新方法。

Uncovering exposome-related diseases through the pathologic metallome: a novel approach for clinical populations.

作者信息

Leinardi Riccardo, Huaux François

机构信息

Louvain Centre for Toxicology and Applied Pharmacology (LTAP), Institute of Experimental and Clinical Research (IREC), Université catholique de Louvain (UCLouvain), Brussels, Belgium.

出版信息

Front Toxicol. 2025 Aug 11;7:1625874. doi: 10.3389/ftox.2025.1625874. eCollection 2025.

Abstract

Environmental exposure to complex metal mixtures plays a critical role in the onset and progression of diverse chronic diseases, in ways that the traditional toxicological framework fails to capture. A paradigm shift is underway, moving toward a more integrated understanding of combined metal effects through the interdisciplinary study of the metallome, the distribution of metal ions and metalloids within a biological system. In this perspective, we highlight the clinical importance of metallome to identify specific subpopulations in which disease onset or progression is primarily driven by environmental metal exposure rather than genetic predisposition. To achieve this goal, robust and sensitive analytical methods are required to overcome the limitations of conventional approaches and enable the detection of the full spectrum of metal species, including metals sequestered within mineral particles present in body fluids and tissues. We propose methodological innovations in sample preparation and analysis that expand the current scope of metallome-associated research. Together, these advances support a comprehensive framework for assessing metal mixture effects in environmental health, bridging toxicology with clinical practice and enabling more targeted, exposure-informed public health interventions.

摘要

环境暴露于复杂金属混合物中在多种慢性疾病的发生和发展中起着关键作用,而传统毒理学框架无法涵盖这些方式。正在发生范式转变,通过对金属组(生物系统内金属离子和类金属的分布)进行跨学科研究,朝着对金属联合效应有更综合的理解迈进。从这个角度来看,我们强调金属组在识别特定亚人群方面的临床重要性,在这些亚人群中,疾病的发生或发展主要由环境金属暴露而非遗传易感性驱动。为实现这一目标,需要强大且灵敏的分析方法来克服传统方法的局限性,并能够检测全谱金属物种,包括存在于体液和组织中的矿物颗粒内螯合的金属。我们提出了样品制备和分析方面的方法创新,这些创新扩展了当前与金属组相关的研究范围。总之,这些进展支持了一个评估环境健康中金属混合物效应的综合框架,将毒理学与临床实践联系起来,并实现更有针对性的、基于暴露情况的公共卫生干预。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/32cc/12375560/5e0a3b5e1d11/ftox-07-1625874-g001.jpg

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