吡蚜酮对鳙鱼重要器官产生了显著的血液生化改变和遗传毒性。

IF 3.2 4区 医学 Q1 Pharmacology, Toxicology and Pharmaceutics Toxicology Mechanisms and Methods Pub Date : 2025-01-06 DOI:10.1080/15376516.2024.2440738
Munir Ahmad, Yasir Mahmood, Abdul Ghaffar, Riaz Hussain, Shazia Anjum, Dalia Fouad, Farid Shokry Ataya, Ahrar Khan
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引用次数: 0

摘要

吡蚜酮(一种吡啶类亚甲基农药)是最常用的杀虫剂之一。有关吡蚜酮对鱼类特别是鳙鱼的有害影响的资料很少。因此,本研究对吡蚜酮对鳙鱼的慢性毒理学效应进行了研究。共饲养80尾鱼,分为4组(A- d),每组20尾鱼。B组、C组和D组实验鱼分别以5、10、15 mg/L的剂量在水中混合吡蚜酮30天。A组为对照组。在实验第10、20和30天采集血液和其他内脏组织,分析基因毒性作用、红细胞形态和细胞核变化、抗氧化酶和氧化应激谱。结果显示,鳙鱼红细胞的各种核异常(微核红细胞、核凝聚红细胞和核裂红细胞)和形态学改变(梨形红细胞、纺锤形红细胞和球形红细胞)的数值均显著增加。对抗氧化酶和氧化应激状态的研究表明,处理过的鱼的内脏器官(脑、肝、鳃和肾)中氧化应激生物标志物的值较高,抗氧化酶的值较低。pymetrozine潜在的基因毒性发现表明,在高剂量的实验鱼的多个组织(脑、肝、鳃和肾)的分离细胞中DNA损伤的频率显著增加。综上所述,吡蚜酮可能是通过破坏鳙鱼多个内脏器官的生理机制而引起毒性作用的。
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Pymetrozine induced remarkable hemato-biochemical modifications and genotoxicity in vital organs of bighead carp (Aristichthys nobilis).

Pymetrozine (a pyridine azomethine pesticide) is one of the most commonly and frequently used insecticides. Scanty information is available about the deleterious effects of Pymetrozine on fish especially bighead carp. Hence, the current study investigated chronic toxicological effects of pymetrozine in bighead carp. A total of 80 fish were reared and divided into four groups(A-D) each containing 20 fish. Pymetrozine was given to experimental fish of groups B, C, and D mixed in water at doses of 5, 10, and 15 mg/L respectively for 30 days. Group A remained as control group. On days 10, 20, and 30 of the experiment, blood and other visceral tissues were collected for analysis of genotoxic effects, erythrocytic morphological and nuclear changes, antioxidant enzymes, and oxidative stress profile. The results revealed significantly higher values of various nuclear abnormalities (erythrocyte with micronuclei, red blood cells with condensed and lobed nuclei) and morphological changes (pear shaped erythrocyte, spindle shaped erythrocytes and spherocyte) in erythrocytes of bighead carp. The investigations on status of antioxidant enzymes and oxidative stress indicated higher values of oxidative stress biomarkers and lower values of antioxidant enzymes in visceral organs (brain, liver, gills, and kidneys) of treated fish. The findings on genotoxic potential of pymetrozine revealed a considerably increased frequency of DNA damage in isolated cells of multiple tissues (brain, liver, gills, and kidneys) of experimental fish at higher doses. In conclusion, it may be suggested that pymetrozine induces toxic effects via disruption of physiological mechanisms of multiple visceral organs of bighead carp.

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来源期刊
CiteScore
6.60
自引率
3.10%
发文量
66
审稿时长
6-12 weeks
期刊介绍: Toxicology Mechanisms and Methods is a peer-reviewed journal whose aim is twofold. Firstly, the journal contains original research on subjects dealing with the mechanisms by which foreign chemicals cause toxic tissue injury. Chemical substances of interest include industrial compounds, environmental pollutants, hazardous wastes, drugs, pesticides, and chemical warfare agents. The scope of the journal spans from molecular and cellular mechanisms of action to the consideration of mechanistic evidence in establishing regulatory policy. Secondly, the journal addresses aspects of the development, validation, and application of new and existing laboratory methods, techniques, and equipment.
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