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丙烯醛与人类疾病:厘清伴随多种不同病症的复杂暴露情况

Acrolein and Human Disease: Untangling the Knotty Exposure Scenarios Accompanying Several Diverse Disorders.

作者信息

Burcham Philip C

机构信息

Pharmacology, Pharmacy & Anaesthesiology Unit, School of Medicine and Pharmacology, The University of Western Australia , Crawley, Western Australia 6007, Australia.

出版信息

Chem Res Toxicol. 2017 Jan 17;30(1):145-161. doi: 10.1021/acs.chemrestox.6b00310. Epub 2016 Nov 17.

Abstract

Acrolein is a highly toxic electrophile that participates in many diseases, yet efforts to delineate its precise mechanistic contributions to specific conditions are complicated by its wide distribution within human environments. This Perspective develops the proposal that due to its mixed status as environmental pollutant, metabolic byproduct, and endotoxicant which forms via ubiquitous pathophysiological processes, many diseases likely involve acrolein released from multiple sources. Although the category boundaries are indistinct, at least four identifiable exposure scenarios are identifiable. First, in some syndromes, such as those accompanying chronic or acute intoxication with smoke, whatever role acrolein plays in disease pathogenesis mainly traces to exogenous sources such as the combustion of tobacco or other organic matter. A second exposure category involves xenobiotics that undergo metabolism within the body to release acrolein. Still other health conditions, however, involve acrolein that forms via several endogenous pathways, some of which are activated upon intoxication with xenobiotics (i.e., Exposure Category 3), while still others accompany direct physical trauma to body tissues (Exposure Category 4). Further complicating efforts to clarify the role of endogenous acrolein in human disease is the likelihood that many such syndromes are complex phenomena that resemble "chemical mixture exposures" by involving multiple toxic substances simultaneously. This Perspective contends that while recent decades have witnessed much progress in describing the deleterious effects of acrolein at the cellular and molecular levels, more work is needed to define the contributions of different acrolein sources to "real-world" health conditions in human subjects.

摘要

丙烯醛是一种剧毒亲电试剂,参与多种疾病的发生,但由于其在人类环境中广泛分布,明确其对特定病症的确切作用机制的研究工作变得复杂。本观点提出,由于丙烯醛兼具环境污染物、代谢副产物和通过普遍存在的病理生理过程形成的内毒素的混合身份,许多疾病可能涉及多种来源释放的丙烯醛。尽管类别界限并不清晰,但至少可识别出四种暴露情况。首先,在某些综合征中,如伴随慢性或急性烟雾中毒的综合征,丙烯醛在疾病发病机制中所起的任何作用主要追溯到外源来源,如烟草或其他有机物的燃烧。第二种暴露类别涉及在体内代谢后释放丙烯醛的外源性物质。然而,还有其他一些健康状况涉及通过多种内源性途径形成的丙烯醛,其中一些途径在接触外源性物质中毒时被激活(即暴露类别3),而另一些则伴随身体组织的直接物理创伤(暴露类别4)。进一步使阐明内源性丙烯醛在人类疾病中作用的努力复杂化的是,许多此类综合征可能是复杂现象,通过同时涉及多种有毒物质而类似于“化学混合物暴露”。本观点认为,尽管近几十年来在描述丙烯醛在细胞和分子水平的有害影响方面取得了很大进展,但仍需要更多工作来确定不同丙烯醛来源对人类受试者“现实世界”健康状况的贡献。

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