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百草枯对氧化应激和炎症反应中细胞毒性的影响:机制与生态意义综述

Effect of paraquat on cytotoxicity involved in oxidative stress and inflammatory reaction: A review of mechanisms and ecological implications.

作者信息

Chen Jiaxin, Su Yalin, Lin Fei, Iqbal Mujahid, Mehmood Khalid, Zhang Hui, Shi Dayou

机构信息

College of Veterinary Medicine, South China Agricultural University, Guangzhou 510642, China.

Department of Pathology, Cholistan University of Veterinary and Animal Sciences (CUVAS), Bahawalpur 63100, Pakistan.

出版信息

Ecotoxicol Environ Saf. 2021 Aug 26;224:112711. doi: 10.1016/j.ecoenv.2021.112711.

Abstract

Paraquat (PQ) is a cheap and an effective herbicide, which is widely being used worldwide to remove weeds in cultivated crop fields. However, it can cause soil and water pollution, and pose serious harm to the environment and organisms. Several countries have started to limit or prohibit the use of PQ because of the increasing number of human deaths. Its toxicity can damage the organisms with a multi-target mechanism, which has not been fully understood yet. That is why it is hard to treat as well. The current research on PQ focuses on its targeted organ, the lungs, in which PQ mostly trigger pulmonary fibrosis. While there is a lack of systematic research, there are few studies published discussing its toxic effects at systematic level. This review summarizes the major damages caused by PQ in different organisms and partial mechanisms by which it causes these damages. For this purpose, we consulted several research articles that studied the toxicity of PQ in various tissues. We also listed some drugs that can be used to alleviate the toxicity of PQ. However, at present, the effectiveness of these drugs is still being explored in animal experiments and the study of their mechanism will also help in understanding the poisoning mechanism of PQ, which will ultimately lead to effective treatment in future.

摘要

百草枯(PQ)是一种廉价且有效的除草剂,在全球范围内被广泛用于去除耕地中的杂草。然而,它会造成土壤和水污染,并对环境和生物构成严重危害。由于人类死亡人数不断增加,一些国家已开始限制或禁止使用PQ。其毒性可通过多靶点机制损害生物体,目前尚未完全了解该机制。这也是难以治疗的原因。目前关于PQ的研究主要集中在其靶器官——肺,PQ在肺中大多引发肺纤维化。虽然缺乏系统性研究,但很少有已发表的研究在系统层面讨论其毒性作用。本综述总结了PQ在不同生物体中造成的主要损害以及它造成这些损害的部分机制。为此,我们查阅了几篇研究PQ在各种组织中毒性的科研文章。我们还列出了一些可用于减轻PQ毒性的药物。然而,目前这些药物的有效性仍在动物实验中进行探索,对其作用机制的研究也将有助于了解PQ的中毒机制,最终在未来实现有效治疗。

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