噻虫啉对斑马鱼肝脏的遗传毒性研究。

IF 1.4 4区 医学 Q4 ENVIRONMENTAL SCIENCES
Gülçin Yavuz Türel, Vehbi Atahan Toğay, Dilek Aşcı Çelik
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引用次数: 3

摘要

噻虫啉是世界上使用最广泛的农药之一,由于频繁使用,可能会对人类和动物造成DNA损伤等毒性影响。因此,本研究通过碱性彗星试验研究了TH对斑马鱼肝脏的潜在dna损伤作用。两个处理组各10只斑马鱼,分别暴露于1.64和0.82 mg/L两种不同浓度的TH中21天,并与未处理的对照组进行比较。暴露后,切除鱼的肝组织,进行碱性彗星试验。每个样本两张载玻片,每张载玻片50个细胞用视觉评估程序进行评估。对照组、0.82 mg/L TH组和1.64 mg/L TH组的平均DNA损伤值分别为4.37±5.12、8.51±8.54和9.30±9.99。两组患者的DNA损伤均显著高于对照组(p
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Genotoxicity of thiacloprid in zebrafish liver.

Thiacloprid (TH), one of the most widely used pesticides in the world, might cause toxic effects like DNA damage in humans and animals due to their frequent use. Accordingly, this study investigated TH's potential DNA-damaging effects on zebrafish liver via alkaline comet assay. Two treatment groups of ten zebrafish each were exposed to TH at two different concentrations, 1.64 and 0.82 mg/L, for 21 days and compared with an untreated control group. After exposure, the fishes' liver tissues were excised, and an alkaline comet assay was performed. Two slides per sample and 50 cells per slide were assessed with a visual evaluation program. The average DNA Damage values of the control, 0.82 mg/L TH, and 1.64 mg/L TH groups were 4.37 ± 5.12, 8.51 ± 8.54, and 9.30 ± 9.99, respectively. Both TH treatment groups had statistically significantly more DNA damage than the control group (p < 0.001). When comparing the TH treatment groups alone, the 1.64 mg/L dose group featured greater damage than the 0.82 mg/L dose group (p < 0.05). TH therefore causes significant DNA damage to the liver in a dose-dependent manner, revealing it to be a genotoxic agent that should be further investigated.

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来源期刊
Archives of Environmental & Occupational Health
Archives of Environmental & Occupational Health 环境科学-公共卫生、环境卫生与职业卫生
CiteScore
3.70
自引率
0.00%
发文量
33
审稿时长
>36 weeks
期刊介绍: Archives of Environmental & Occupational Health , originally founded in 1919 as the Journal of Industrial Hygiene, and perhaps most well-known as the Archives of Environmental Health, reports, integrates, and consolidates the latest research, both nationally and internationally, from fields germane to environmental health, including epidemiology, toxicology, exposure assessment, modeling and biostatistics, risk science and biochemistry. Publishing new research based on the most rigorous methods and discussion to put this work in perspective for public health, public policy, and sustainability, the Archives addresses such topics of current concern as health significance of chemical exposure, toxic waste, new and old energy technologies, industrial processes, and the environmental causation of disease such as neurotoxicity, birth defects, cancer, and chronic degenerative diseases. For more than 90 years, this noted journal has provided objective documentation of the effects of environmental agents on human and, in some cases, animal populations and information of practical importance on which decisions are based.
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