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尖吻鲈对氯氰菊酯亚致死浓度暴露的生物标志物和组织病理学反应。

Biomarker and histopathological responses of Lates calcarifer on exposure to sub lethal concentrations of chlorpyrifos.

机构信息

Integrated Coastal and Marine Area Management-Project Directorate, NIOT Campus, Ministry of Earth Sciences, Govt. of India, Pallikaranai, Chennai 600100, India.

Integrated Coastal and Marine Area Management-Project Directorate, NIOT Campus, Ministry of Earth Sciences, Govt. of India, Pallikaranai, Chennai 600100, India.

出版信息

Ecotoxicol Environ Saf. 2018 Feb;148:327-335. doi: 10.1016/j.ecoenv.2017.10.026. Epub 2017 Nov 6.

Abstract

Bioassay tests on fingerlings (3.0 ± 0.5cm) of euryhyaline fish Lates calcarifer were conducted using customized continuous flow through system and derived 96h acute toxicity value for chlorpyrifos (CPF). Based on the measured concentration of CPF mean median lethal concentration (LC) of 1.07µg/l with lower and upper 95% confidence limits (0.95 and 1.19µg/l). No observed Effect Concentration (NOEC), Lowest Observed Effect Concentration (LOEC) and chronic values were found to be 0.4, 0.09 and 0.07µg/l respectively. Key biomarker enzyme activities such as esterase, superoxide dismutase and malate dehydrogenase were measured in whole body tissues of the fish fingerlings on exposure to sublethal toxicity of CPF resulting in inhibition of enzyme activities. Native gel electrophoresis revealed single isoform of SOD and MDH enzyme activities exhibiting time and concentration dependent inhibition. Interestingly, three isoforms of esterase activity were witnessed, two isoforms didn't show changes and one isoform was completely inhibited. The observed changes indicated continuous production of reactive oxygen species (ROS) in cells, affecting the integrity and function of cell membrane. Decreased MDH activity indicates reduction of ATP production in the mitochondria leading to susceptibility of fish fingerlings due to the imposed CPF toxicity. Histopathological changes are evident as physiological signatures of chemical interactions in the cell and are prominently used for the evaluation of toxic effects. Gills and eye tissues were selected considering the possible effects on respiratory surfaces and vision impairment. Their tissue sections were observed for changes in primary & secondary lamellae, and retina of the eye respectively. Prominent pathological lesions of gills and retina of the eye include degeneration of cells, fusion, lifting of epithelium and increased cellular space, detachment of pigment epithelium, fusion of photoreceptor cells, respectively on exposure to 30 days of sub lethal concentrations. CPF was found to be highly toxic, affecting the vital functions of respiration, vision and cellular activities leading to susceptibility of fish fingerlings.

摘要

使用定制的连续流动系统对虹鳟幼鱼(3.0±0.5cm)进行了生物测定试验,得出了毒死蜱(CPF)的 96 小时急性毒性值。根据 CPF 的实测浓度,其平均中位致死浓度(LC)为 1.07µg/l,置信下限为 95%(0.95 和 1.19µg/l)。未观察到效应浓度(NOEC)、最低观察到效应浓度(LOEC)和慢性值分别为 0.4、0.09 和 0.07µg/l。在亚致死毒性暴露下,关键生物标志物酶活性如酯酶、超氧化物歧化酶和苹果酸脱氢酶在鱼幼鱼的全身组织中被测量,导致酶活性抑制。天然凝胶电泳显示 SOD 和 MDH 酶活性的单一同工型,表现出时间和浓度依赖性抑制。有趣的是,观察到三种同工型的酯酶活性,两种同工型没有变化,一种同工型完全被抑制。观察到的变化表明细胞中活性氧(ROS)的持续产生,影响细胞膜的完整性和功能。MDH 活性的降低表明线粒体中 ATP 产生减少,导致鱼幼鱼对 CPF 毒性的易感性。组织病理学变化是细胞内化学相互作用的生理特征,是评估毒性作用的重要指标。考虑到对呼吸表面和视力损害的可能影响,选择了鳃和眼部组织进行研究。观察了它们的组织切片在初级和次级鳃片以及眼部视网膜上的变化。在暴露于亚致死浓度 30 天后,鳃和眼部视网膜的突出病理病变包括细胞退化、融合、上皮抬起和细胞间空间增加、色素上皮分离、感光细胞融合等。CPF 具有高度毒性,影响呼吸、视觉和细胞活动等重要功能,导致鱼幼鱼易感性增加。

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