Abdollahi Mohammad, Ranjbar Akram, Shadnia Shahin, Nikfar Shekoufeh, Rezaie Ali
Department of Toxicology & Pharmacology, Faculty of Pharmacy and Laboratory of Toxicology, Pharmaceutical Sciences Research Center, Tehran University of Medical Sciences, Tehran 14155-6451, Iran.
Med Sci Monit. 2004 Jun;10(6):RA141-7. Epub 2004 Jun 1.
The purpose of this paper is to provide a brief review of the current state of our knowledge regarding pesticides and oxidative stress. To this end, we performed a search of the literature using Medline/Index Medicus, EMBASE/Excerpta Medica, and Chemical Abstracts; most of the relevant citations were studied and summarized. In order to better understand the nature of oxidative stress, the principles of free radical production and the body's normal defense system are discussed. The pesticides are categorized and discussed according to their ability to produce lipid peroxidation or alter body antioxidant status. It is concluded that stimulation of free radical production, induction of lipid peroxidation, and disturbance of the total antioxidant capability of the body are mechanisms of toxicity in most pesticides, including organophosphates, bipyridyl herbicides and organochlorines.
本文旨在简要回顾我们目前关于农药与氧化应激的知识现状。为此,我们使用医学索引数据库(Medline/Index Medicus)、荷兰医学文摘数据库(EMBASE/Excerpta Medica)和化学文摘数据库进行了文献检索;对大多数相关文献进行了研究和总结。为了更好地理解氧化应激的本质,文中讨论了自由基产生的原理以及机体的正常防御系统。根据农药产生脂质过氧化或改变机体抗氧化状态的能力对其进行分类和讨论。得出的结论是,刺激自由基产生、诱导脂质过氧化以及干扰机体的总抗氧化能力是大多数农药(包括有机磷农药、联吡啶类除草剂和有机氯农药)的毒性作用机制。