金属(类)物种的转化毒理学:将其血液中的生物无机化学与器官损伤发作联系起来。

IF 4.1 3区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Biometals Pub Date : 2024-06-01 Epub Date: 2023-10-10 DOI:10.1007/s10534-023-00537-2
Maryam Doroudian, Negar Pourzadi, Astha Gautam, Jürgen Gailer
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引用次数: 0

摘要

如今,人类血液中砷、汞、镉和铅的定量通常用于评估这些有毒金属(类似物)的暴露情况,但对所获得的数据的累积健康相关性的解释仍然存在问题。流行病学研究强烈表明,同时长期暴露于这些环境污染物与自闭症、2型糖尿病、肠易激综合征和其他疾病的病因有关,这似乎与此无关。从公共卫生的角度来看,这种不理想的情况迫切需要研究举措,以建立人类接触多种有毒金属(类似物)物种与不良健康影响之间的功能联系。建立因果暴露-反应关系的一种方法是分子毒理学方法,该方法需要解开单个有毒金属(类似物)进入血液/器官关系后展开的生物分子机制,因为这些相互作用最终决定了哪些代谢产物撞击靶器官,从而提供了与未知病因疾病的机制联系。为了强调血液中金属(类)的毒理学化学的重要性,这篇综述总结了与基于器官的不良健康影响和可能的疾病的病因有关的相关生物无机过程的最新进展。更好地了解这些生物无机过程不仅有助于改善监管框架,更好地保护人类免受有毒金属(类似物)物种的不利影响,而且也是开发治疗方法的重要起点,以改善污染对包括孕妇、胎儿和儿童在内的人群的不利健康影响。
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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Translational toxicology of metal(loid) species: linking their bioinorganic chemistry in the bloodstream to organ damage onset.

The quantification of arsenic, mercury, cadmium and lead in the human bloodstream is routinely used today to assess exposure to these toxic metal(loid)s, but the interpretation of the obtained data in terms of their cumulative health relevance remains problematic. Seemingly unrelated to this, epidemiological studies strongly suggest that the simultaneous chronic exposure to these environmental pollutants is associated with the etiology of autism, type 2 diabetes, irritable bowel disease and other diseases. This from a public health point of view undesirable situation urgently requires research initiatives to establish functional connections between human exposure to multiple toxic metal(loid) species and adverse health effects. One way to establish causal exposure-response relationships is a molecular toxicology approach, which requires one to unravel the biomolecular mechanisms that unfold after individual toxic metal(loid)s enter the bloodstream/organ nexus as these interactions ultimately determine which metabolites impinge on target organs and thus provide mechanistic links to diseases of unknown etiology. In an attempt to underscore the importance of the toxicological chemistry of metal(loid)s in the bloodstream, this review summarizes recent progress into relevant bioinorganic processes that are implicated in the etiology of adverse organ-based health effects and possibly diseases. A better understanding of these bioinorganic processes will not only help to improve the regulatory framework to better protect humans from the adverse effects of toxic metal(loid) species, but also represents an important starting point for the development of treatments to ameliorate pollution-induced adverse health effects on human populations, including pregnant women, the fetus and children.

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来源期刊
Biometals
Biometals 生物-生化与分子生物学
CiteScore
5.90
自引率
8.60%
发文量
111
审稿时长
3 months
期刊介绍: BioMetals is the only established journal to feature the important role of metal ions in chemistry, biology, biochemistry, environmental science, and medicine. BioMetals is an international, multidisciplinary journal singularly devoted to the rapid publication of the fundamental advances of both basic and applied research in this field. BioMetals offers a forum for innovative research and clinical results on the structure and function of: - metal ions - metal chelates, - siderophores, - metal-containing proteins - biominerals in all biosystems. - BioMetals rapidly publishes original articles and reviews. BioMetals is a journal for metals researchers who practice in medicine, biochemistry, pharmacology, toxicology, microbiology, cell biology, chemistry, and plant physiology who are based academic, industrial and government laboratories.
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