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暴露于有机磷化合物的青少年的行为不协调。

Behavioural incongruities in juvenile exposed to organophosphate compounds.

作者信息

Khan Sameena, Qayoom Imtiyaz, Balkhi Masood H, Abubakr Adnan, Rashid Summya, Alsaffar Rana M, Rehman Muneeb U

机构信息

Division of Aquatic Environmental Management, Faculty of Fisheries, SKUAST-K Rangil, Ganderbal, J&K 190006, India.

Department of Pharmacology & Toxicology, College of Pharmacy, Prince Sattam Bin Abdulaziz University, P.O. Box 173, Al-Kharj 11942, Saudi Arabia.

出版信息

Heliyon. 2022 Oct 25;8(11):e11227. doi: 10.1016/j.heliyon.2022.e11227. eCollection 2022 Nov.

Abstract

UNLABELLED

For the ever increasing human population, the necessity to produce the food in large quantities has become the main goal internationally which has led to increase the practice of pesticides globally. Presence of pesticides in aquatic water bodies is largely due to the runoff from agricultural fields causing to deteriorate the healthy characteristics of an aquatic environment system leading to the toxic impact on non-target aquatic organism such as fish.

APPROACH

In fish, there are various portal of entry through which the contaminants enter. Via various routes, the contaminants reach into the blood and subsequently to different organs or systems. Since Pesticides are known to modify the behavior of animals when exposed to toxic levels. The behavioral changes may be caused by the changes in the nervous system triggered directly or through metabolic or physiological activities. However, the effects have been found to be multifarious and known to differ at different concentrations. Also, Blood is the most accessible component of the vertebrate body fluid system and consequences of direct and indirect damage to blood cells and their precursors are predictable and potentially life threatening. Therefore, behavioural and genotoxicological studies have been considered and used as diagnostic tool in order to investigate behavioural and genotoxicological alterations. This study was undertaken to investigate behavioural changes in exposed to two organophosphate compounds, chlorpyrifos (cpf) and dimethoate (dim). Fishes weighing 10 ± 2 g were exposed to sub-lethal concentrations of cpf (0.76 ppb, 1.52 ppb, 2.28 ppb, 3.04 ppb and 3.8 ppb) and dimethoate (0.22 ppm, 0.44 ppm, 0.66 ppm, 0.88 ppm and 1.1 ppm) for the period of 96 h and various behavioural indices were evaluated during that period. Both the pesticides were found to induce behavioral toxicity in fishes such as drop in swimming velocity, reduced swimming activity and retarded opercular movements. Cpf was found more detrimental as compared to dimethoate in all cases. Fishes also elicited a genotoxic response which was evaluated by calculating the frequency of micronuclei formation in their hematocytes after 21 days of exposure. Chlorpyrifos induced more genotoxicity than dimethoate which was found dose and time dependent.

CONCLUSION

It was concluded that the behavioural and genotoxic alterations in common carp could be applied as possible biomarkers in risk assessment and monitoring programs for pesticide contamination of aquatic ecosystems.

CONTRIBUTION

This study is one of its kind and will help to form baseline data.

摘要

未标记

对于不断增长的人口而言,大量生产粮食的必要性已成为国际主要目标,这导致全球农药使用量增加。水体中农药的存在很大程度上是由于农田径流,这导致水生环境系统的健康特性恶化,对鱼类等非目标水生生物产生毒性影响。

方法

在鱼类中,污染物有多种进入途径。通过各种途径,污染物进入血液,随后到达不同器官或系统。由于已知农药在接触毒性水平时会改变动物的行为。行为变化可能是由直接或通过代谢或生理活动触发的神经系统变化引起的。然而,已发现这些影响是多方面的,并且在不同浓度下有所不同。此外,血液是脊椎动物体液系统中最易获取的成分,对血细胞及其前体的直接和间接损伤的后果是可预测的,并且可能危及生命。因此,行为和遗传毒理学研究已被考虑并用作诊断工具,以研究行为和遗传毒理学改变。本研究旨在调查暴露于两种有机磷化合物毒死蜱(cpf)和乐果(dim)的鱼类的行为变化。将体重为10±2克的鱼暴露于毒死蜱(0.76 ppb、1.52 ppb、2.28 ppb、3.04 ppb和3.8 ppb)和乐果(0.22 ppm、0.44 ppm、0.66 ppm、0.88 ppm和1.1 ppm)的亚致死浓度下96小时,并在此期间评估各种行为指标。发现这两种农药都会在鱼类中诱导行为毒性,如游泳速度下降、游泳活动减少和鳃盖运动迟缓。在所有情况下,发现毒死蜱比乐果更具危害性。鱼类还引发了遗传毒性反应,通过计算暴露21天后其血细胞中微核形成的频率来评估。毒死蜱比乐果诱导更多的遗传毒性,这被发现具有剂量和时间依赖性。

结论

得出的结论是,鲤鱼的行为和遗传毒性改变可作为水生生态系统农药污染风险评估和监测计划中可能的生物标志物。

贡献

本研究是同类研究之一,将有助于形成基线数据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee44/9638737/42fb85ce2354/ga1.jpg

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