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城市湿地污染中重金属混合物的细胞遗传毒性评价:印度绿蛙(Euphlyctis hexadactylus)红细胞微核和彗星试验与大蒜根尖生物检测。

Cytogenotoxicity evaluation of a heavy metal mixture, detected in a polluted urban wetland: Micronucleus and comet induction in the Indian green frog (Euphlyctis hexadactylus) erythrocytes and the Allium cepa bioassay.

机构信息

Department of Zoology and Environment Sciences, Faculty of Science, University of Colombo, Colombo 3, Sri Lanka.

Department of Zoology and Environment Sciences, Faculty of Science, University of Colombo, Colombo 3, Sri Lanka.

出版信息

Chemosphere. 2021 Aug;277:130278. doi: 10.1016/j.chemosphere.2021.130278. Epub 2021 Mar 13.

Abstract

Heavy metal contamination in wetland ecosystems is a serious environmental and health concern. This study evaluated the cytogenotoxicity of a previously evidenced heavy metal contamination (Cd, Cr, Cu, Pb and Zn ∼5 ppm each) in a polluted urban wetland, the Bellanwila-Attidiya sanctuary (BAS) in Sri Lanka, using a battery of cytogenotoxic assays. Micronucleus and comet assays evaluated the genotoxicity in erythrocytes of a common amphibian, the Indian green frog (Euphlyctis hexadactylus), under natural metal exposure in the wetland, and in vitro exposure, respectively.The Allium cepa bioassay assessed the cytogenotoxicity of the heavy metal mixture and of the individual metals, under laboratory exposure. Although in vivo natural exposure showed no significant induction of micronuclei in frog erythrocytes (P > 0.1), a significant and dose dependent elevation of comets was evident with in vitro exposure to the metal mixture (P < 0.001). Field controls did not show significant impacts in the A. cepa bioassay, whereas individual exposure to heavy metals reported lower effects than their combined exposure under laboratory conditions; Pbwas the most toxic metal, with the highest mitotic inhibition (Pb>Cd>Zn>Cr >Cu), mutagenic potential as evaluated in the percentage incidence of chromosomal aberrations (Pb> Zn> Cu> Cr> Cd) and cytotoxicity evaluated by the incidence of cell apoptosis and necrosis (Pb>Cr>Cu>Cd>Zn). Thus, the test battery of micronucleus, comet and A. cepa assays that reveal differential aspects of cytogenotoxicity may serve as a valuable tool in environmental monitoring, primarily to screen for complex environmental mixtures of heavy metals that may impact ecological health.

摘要

湿地生态系统中的重金属污染是一个严重的环境和健康问题。本研究采用细胞遗传毒性检测方法,评估了斯里兰卡受污染城市湿地——贝拉尼瓦拉-阿提迪亚保护区(BAS)先前发现的重金属污染(Cd、Cr、Cu、Pb 和 Zn 各约 5ppm)的细胞遗传毒性。微核和彗星试验分别评估了印度绿蛙(Euphlyctis hexadactylus)在自然金属暴露下的红细胞的遗传毒性和体外暴露下的遗传毒性。大蒜根尖细胞染色体畸变试验(A. cepa 生物测定)评估了重金属混合物和个别金属在实验室暴露下的细胞遗传毒性。虽然体内自然暴露并未显著诱导青蛙红细胞微核(P>0.1),但体外暴露于金属混合物时,彗星明显升高且呈剂量依赖性(P<0.001)。现场对照在 A. cepa 生物测定中未显示出显著影响,而个别金属暴露的影响低于实验室条件下的联合暴露;Pb 是最具毒性的金属,具有最高的有丝分裂抑制作用(Pb>Cd>Zn>Cr>Cu),作为染色体畸变发生率评估的诱变潜力(Pb>Zn>Cu>Cr>Cd)和细胞凋亡和坏死发生率评估的细胞毒性(Pb>Cr>Cu>Cd>Zn)。因此,微核、彗星和 A. cepa 试验的测试组合可揭示细胞遗传毒性的不同方面,可作为环境监测的有用工具,主要用于筛选可能影响生态健康的复杂重金属环境混合物。

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