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体内和计算机模拟研究鉴定氯菊酯的毒性机制及姜的减毒作用。

In-vivo and in-silico studies to identify toxicity mechanisms of permethrin with the toxicity-reducing role of ginger.

机构信息

Department of Biology, Institute of Natural Sciences, University of Giresun, 28200, Giresun, Turkey.

Department of Biology, Faculty of Science and Art, University of Giresun, 28200, Giresun, Turkey.

出版信息

Environ Sci Pollut Res Int. 2024 Feb;31(6):9272-9287. doi: 10.1007/s11356-023-31729-5. Epub 2024 Jan 8.

Abstract

In this study, the toxic effects of permethrin on Allium cepa L. and the protective role of Zingiber officinale rhizome extract (Zoex) were investigated. In this context, 6 different groups were formed. While the control group was treated with tap water, the groups II and III were treated with 10 µg/mL and 20 µg/mL Zoex, respectively, and the group IV was treated with 100 µg/L permethrin. The protective effect of Zoex against permethrin toxicity was studied as a function of dose, and groups V and VI formed for this purpose were treated with 10 µg/mL Zoex + 100 µg/L permethrin and 20 µg/mL Zoex + 100 µg/L permethrin, respectively. After 72 h of germination, cytogenetic, biochemical, physiological, and anatomical changes in meristematic cells of A. cepa were studied. As a result, permethrin application decreased the mitotic index (MI) and increased the frequency of micronuclei (MN), and chromosomal abnormalities. The increase in malondialdehyde (MDA), superoxide dismutase (SOD), and catalase (CAT) and the decrease in glutathione (GSH) indicate that permethrin causes oxidative damage. Compared to the control group, a 68.5% decrease in root elongation (p < 0.05) and an 81.8% decrease (p < 0.05) in weight gain were observed in the permethrin-treated group. It was found that the application of Zoex together with permethrin resulted in regression of all detected abnormalities, reduction in the incidence of anatomical damage, MN and chromosomal aberrations, and improvement in MI rates. The most significant improvement was observed in group VI treated with 20 µg/mL Zoex, and Zoex was also found to provide dose-dependent protection. The toxicity mechanism of permethrin was also elucidated by molecular docking and spectral studies. From the data obtained during the study, it was found that permethrin has toxic effects on A. cepa, a non-target organism, while Zoex plays a protective role by reducing these effects.

摘要

在这项研究中,研究了氯菊酯对洋葱根尖细胞的毒性作用以及生姜根茎提取物(Zoex)的保护作用。为此,共形成了 6 个不同的组。在对照组用自来水处理的情况下,第二和第三组分别用 10μg/mL 和 20μg/mL Zoex 处理,第四组用 100μg/L 氯菊酯处理。研究了 Zoex 作为一种剂量依赖性保护剂对氯菊酯毒性的保护作用,为此形成了第五和第六组,分别用 10μg/mL Zoex+100μg/L 氯菊酯和 20μg/mL Zoex+100μg/L 氯菊酯处理。在发芽 72 小时后,研究了 A. cepa 根尖分生细胞的细胞遗传学、生化、生理和解剖变化。结果表明,氯菊酯的应用降低了有丝分裂指数(MI),增加了微核(MN)和染色体异常的频率。丙二醛(MDA)、超氧化物歧化酶(SOD)和过氧化氢酶(CAT)的增加以及谷胱甘肽(GSH)的减少表明氯菊酯引起氧化损伤。与对照组相比,氯菊酯处理组的根伸长减少了 68.5%(p<0.05),重量增加减少了 81.8%(p<0.05)。结果表明,与氯菊酯一起应用 Zoex 导致所有检测到的异常回归,减少解剖损伤、MN 和染色体异常的发生率,并提高 MI 率。用 20μg/mL Zoex 处理的第六组观察到最显著的改善,并且发现 Zoex 还提供了剂量依赖性的保护。还通过分子对接和光谱研究阐明了氯菊酯的毒性机制。从研究中获得的数据表明,氯菊酯对非靶标生物洋葱根尖细胞具有毒性作用,而 Zoex 通过降低这些作用发挥保护作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1cd9/10824804/4e578c10aef6/11356_2023_31729_Fig1_HTML.jpg

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