Department of Biological Sciences, Simon Fraser University, 8888 University Drive, Burnaby, British Columbia, Canada, V5A 1S6.
J Med Entomol. 2012 May;49(3):614-23. doi: 10.1603/me10272.
The biochemical mechanisms underlying the increased toxicity of several plant essential oils (thymol, eugenol, pulegone, terpineol, and citronellal) against fourth instar of Aedes aegypti L. when exposed simultaneously with piperonyl butoxide (PBO) were examined. Whole body biotransformational enzyme activities including cytochrome P450-mediated oxidation (ethoxyresorufin O-dethylase [EROD]), glutathione S-transferase (GST), and beta-esterase activity were measured in control, essential oil-exposed only (single chemical), and essential oil + PBO (10 mg/liter) exposed larvae. At high concentrations, thymol, eugenol, pulegone, and citronellal alone reduced EROD activity by 5-25% 16 h postexposure. Terpineol at 10 mg/liter increased EROD activity by 5 +/- 1.8% over controls. The essential oils alone reduced GST activity by 3-20% but PBO exposure alone did not significantly affect the activity of any of the measured enzymes. All essential oils in combination with PBO reduced EROD activity by 58-76% and reduced GST activity by 3-85% at 16 h postexposure. This study indicates a synergistic interaction between essential oils and PBO in inhibiting the cytochrome P450 and GST detoxification enzymes in Ae. aegypti.
本研究旨在探讨当与增效醚(PBO)同时暴露时,几种植物精油(百里香酚、丁香酚、侧柏酮、松油醇和柠檬醛)对埃及伊蚊第四龄幼虫毒性增加的生化机制。测量了对照组、仅暴露于精油(单一化学物质)组和精油+PBO(10mg/L)暴露组幼虫的整体生物转化酶活性,包括细胞色素 P450 介导的氧化(乙氧基试卤灵 O-去乙基酶[EROD])、谷胱甘肽 S-转移酶(GST)和β-酯酶活性。在高浓度下,百里香酚、丁香酚、侧柏酮和柠檬醛单独暴露 16 小时后,EROD 活性降低 5-25%。10mg/L 的萜烯醇使 EROD 活性比对照组增加 5+/-1.8%。单独的精油降低 GST 活性 3-20%,但 PBO 单独暴露并未显著影响任何测量酶的活性。所有精油与 PBO 联合使用可使 EROD 活性降低 58-76%,GST 活性降低 3-85%,在暴露后 16 小时。本研究表明,精油与 PBO 之间存在协同相互作用,可抑制埃及伊蚊的细胞色素 P450 和 GST 解毒酶。