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鱼类六价铬的生态毒理学:最新综述。

Ecotoxicology of hexavalent chromium in fish: An updated review.

机构信息

Department of Zoology, Visva-Bharati, Santiniketan 731235, West Bengal, India.

Department of Zoology, Visva-Bharati, Santiniketan 731235, West Bengal, India.

出版信息

Sci Total Environ. 2023 Sep 10;890:164395. doi: 10.1016/j.scitotenv.2023.164395. Epub 2023 May 29.

Abstract

Chromium (Cr) is prevalently found in trivalent and hexavalent forms. Though the former is toxicologically benign due to its poor cellular permeability, hexavalent chromium i.e. Cr [VI] crosses the biological membrane and induces toxic effects in organisms. While Cr [VI] toxicity in humans is a subject of occupational exposure at industries involved in ferrochrome production, leather tanning, textile dyeing etc., aquatic abundance of Cr [VI] due to discharge of Cr-laden effluents by these industries lead to extensive toxicity in piscine species. The present review aims to discuss the mode of Cr [VI] entry in fish and the several inimical effects that it imparts on fish health. Such effects have been reported in various studies through behavioral, hormonal and hematological alterations. Bio-accumulation of Cr [VI] in vital organs and subsequent perturbation of the oxidative homeostasis leads to organotoxic effects like changes in organo-somatic indices and histo-architecture. At cellular level, Cr [VI] induced genotoxicity is often found to trigger cellular demise including apoptosis. This review also highlights the stress response in fish against Cr [VI] induced toxicity that is mediated through the expressional alteration of a myriad of anti-oxidant and xenobiotic-metabolizing proteins which is, in turn, a function of activated transcription programs including the Nrf2-ARE pathway.

摘要

铬(Cr)主要以三价和六价形式存在。尽管由于其较差的细胞通透性,三价铬在毒理学上是良性的,但六价铬即 Cr[VI]可以穿过生物膜,并在生物体中引起毒性作用。虽然 Cr[VI]对人类的毒性是从事生产 ferrochrome、皮革鞣制、纺织品染色等行业的职业暴露的一个问题,但由于这些行业排放含铬废水,导致水生 Cr[VI]的大量存在,从而对鱼类物种造成广泛的毒性。本综述旨在讨论 Cr[VI]进入鱼类的方式以及它对鱼类健康造成的几种有害影响。通过行为、激素和血液学改变,各种研究报告了这些影响。Cr[VI]在重要器官中的生物积累以及随后氧化平衡的破坏导致器官毒性效应,如器官体比指数和组织形态的变化。在细胞水平上,Cr[VI]诱导的遗传毒性通常被发现会引发细胞死亡,包括细胞凋亡。本综述还强调了鱼类对 Cr[VI]诱导的毒性的应激反应,这是通过大量抗氧化和外来物质代谢蛋白的表达改变来介导的,而这反过来又是激活转录程序的功能,包括 Nrf2-ARE 途径。

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