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杀虫剂引起的氧化应激:脂肪激素的作用。

Oxidative stress elicited by insecticides: a role for the adipokinetic hormone.

机构信息

Institute of Entomology, Biology Centre, Academy of Sciences, Branišovská 31, 370 05 České Budějovice, Czech Republic.

出版信息

Gen Comp Endocrinol. 2011 May 15;172(1):77-84. doi: 10.1016/j.ygcen.2010.12.009. Epub 2010 Dec 23.

DOI:10.1016/j.ygcen.2010.12.009
PMID:21185291
Abstract

Adipokinetic hormones (AKHs) are insect neuropeptides responding to stress situations including oxidative stress. Two insecticides - endosulfan and malathion - were used to elicit oxidative stress conditions in the firebug Pyrrhocoris apterus, and the physiological functions of AKHs and their ability to activate protective antioxidative reactions were studied. The insecticide treatments elicited only a slight increase of the AKH level in CNS, but more intensive increase in haemolymph, which indicates an immediate involvement of AKH in the stress response. The treatment also resulted in a significant increase of catalase activity in the bug's body and depletion of the reduced glutathione pool in the haemolymph, however, co-application of the insecticides with the AKH (80 pmol) reduced the effect. It has also been found that co-application of the insecticides with AKH increased significantly the bug mortality compared to that induced by the insecticides alone. This enhanced effect of the insecticides probably resulted from the stimulatory role of AKH on bug metabolism: the carbon dioxide production was increased significantly after the co-treatment by AKH with insecticides compared to insecticide treatment alone. It was hypothesized that the increased metabolic rate could intensify the insecticide action by an accelerated rate of exchange of metabolites accompanied by faster penetration of insecticides into tissues.

摘要

脂肪动激素 (AKH) 是一种昆虫神经肽,对包括氧化应激在内的应激情况作出反应。两种杀虫剂 - 硫丹和马拉硫磷 - 被用于诱导红火蚁 Pyrrhocoris apterus 产生氧化应激条件,并研究了 AKH 的生理功能及其激活保护性抗氧化反应的能力。杀虫剂处理仅在 CNS 中引起 AKH 水平的轻微增加,但在血淋巴中引起更强烈的增加,这表明 AKH 立即参与了应激反应。该处理还导致昆虫体内过氧化氢酶活性显著增加和血淋巴中还原型谷胱甘肽池耗竭,但将杀虫剂与 AKH(80 pmol)一起应用可降低这种效果。还发现,与单独使用杀虫剂相比,将杀虫剂与 AKH 一起应用会显著增加昆虫的死亡率。这种杀虫剂增强效果可能是由于 AKH 对昆虫代谢的刺激作用所致:与单独用杀虫剂处理相比,在用 AKH 与杀虫剂共同处理后,昆虫的二氧化碳产生显著增加。据推测,增加的代谢率可以通过加速代谢物交换率和更快地将杀虫剂渗透到组织中来增强杀虫剂的作用。

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