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海洋污染物环境风险评估中的彗星试验:在非模式生物中检测遗传毒性的应用、优点和不足

The comet assay in Environmental Risk Assessment of marine pollutants: applications, assets and handicaps of surveying genotoxicity in non-model organisms.

作者信息

Martins Marta, Costa Pedro M

机构信息

MARE - Marine and Environmental Sciences Centre/IMAR - Instituto do Mar, Departamento de Ciências e Engenharia do Ambiente, Faculdade de Ciências e Tecnologia da Universidade Nova de Lisboa, 2829-516 Caparica, Portugal.

MARE - Marine and Environmental Sciences Centre/IMAR - Instituto do Mar, Departamento de Ciências e Engenharia do Ambiente, Faculdade de Ciências e Tecnologia da Universidade Nova de Lisboa, 2829-516 Caparica, Portugal

出版信息

Mutagenesis. 2015 Jan;30(1):89-106. doi: 10.1093/mutage/geu037.

Abstract

Determining the genotoxic effects of pollutants has long been a priority in Environmental Risk Assessment (ERA) for coastal ecosystems, especially of complex areas such as estuaries and other confined waterbodies. The acknowledged link between DNA damage, mutagenicity and carcinogenicity to the exposure to certain toxicants has been responsible to the growing interest in determining the genotoxic effects of xenobiotics to wildlife as a measure of environmental risk. The comet assay, although widely employed in in vivo and in vitro toxicology, still holds many constraints in ERA, in large part owing to difficulties in obtaining conclusive cause-effect relationships from complex environments. Nevertheless, these challenges do not hinder the attempts to apply the alkaline comet assay on sentinel organisms, wild or subjected to bioassays in or ex situ (from fish to molluscs) as well to standardise protocols and establish general guidelines to the interpretation of findings. Fish have been regarded as an appealing subject due to the ease of performing the comet assay in whole blood. However, the application of the comet assay is becoming increasingly common in invertebrates (e.g. in molluscan haemocytes and solid tissues such as gills). Virtually all sorts of results have been obtained from the application of the comet assay in ERA (null, positive and inconclusive). However, it has become clear that interpreting DNA damage data from wild organisms is particularly challenging due to their ability to adapt to continuous environmental stressors, including toxicants. Also, the comet assay in non-model organisms for the purpose of ERA implies different constraints, assumptions and interpretation of findings, compared with the in vitro procedures from which most guidelines have been derived. This paper critically reviews the application of the comet assay in ERA, focusing on target organisms and tissues; protocol developments, case studies plus data handling and interpretation.

摘要

确定污染物的遗传毒性效应长期以来一直是沿海生态系统环境风险评估(ERA)中的一个优先事项,特别是对于河口和其他封闭水体等复杂区域。DNA损伤、致突变性和致癌性与接触某些有毒物质之间公认的联系,引发了人们越来越浓厚的兴趣,即确定外源性物质对野生动物的遗传毒性效应,以此作为衡量环境风险的一种手段。彗星试验虽然在体内和体外毒理学中广泛应用,但在环境风险评估中仍存在许多限制,很大程度上是因为难以从复杂环境中获得确凿的因果关系。然而,这些挑战并不能阻碍人们尝试将碱性彗星试验应用于哨兵生物,无论是野生的还是在原位或非原位进行生物测定的生物(从鱼类到软体动物),同时也致力于标准化试验方案,并建立对试验结果进行解释的一般指南。由于全血中易于进行彗星试验,鱼类一直被视为一个有吸引力的研究对象。然而,彗星试验在无脊椎动物(如软体动物的血细胞和鳃等实体组织)中的应用也越来越普遍。在环境风险评估中应用彗星试验几乎得到了各种各样的结果(无影响、阳性和不确定)。然而,很明显,由于野生生物能够适应包括有毒物质在内的持续环境压力源,解读来自野生生物的DNA损伤数据尤其具有挑战性。此外,出于环境风险评估目的,在非模式生物中进行彗星试验意味着与大多数指南所源自的体外程序相比,存在不同的限制、假设和对试验结果的解释。本文对彗星试验在环境风险评估中的应用进行了批判性综述,重点关注目标生物和组织;试验方案的发展、案例研究以及数据处理和解释。

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