Bard Shannon Mala, Gadbois Simon
Environmental Programmes, Dalhousie University, 1355 Oxford Street, Life Science Centre, Room 820, Halifax, Nova Scotia, Canada B3H 4J1.
Mar Environ Res. 2007 Dec;64(5):679-82. doi: 10.1016/j.marenvres.2007.05.001. Epub 2007 Jul 19.
The neuroprotective role of P-glycoprotein, a multixenobiotic resistance transporter (ABCB1/MDR1), in the blood-brain barrier in fish was examined using behavioural toxicological assays. P-glycoprotein acts as cellular efflux pump to prevent substrates from accumulating in the brain, including environmental contaminants such as ivermectin, a common aquaculture pesticide and mammalian anti-parasitic drug. The behavioural toxicological assays were developed to determine the neuropathological effect of ivermectin in killifish (Fundulus heteroclitus). P-glycoprotein function and thus blood-brain barrier integrity can be compromised by chemosensitizers that inhibit transport activity. Fish treated with ivermectin and the P-glycoprotein inhibitor cyclosporin A were significantly more sensitive and succumbed more rapidly to tilting, lethargy, slowing of pectoral-fin movement and loss of haptic-reactivity compared to fish treated with ivermectin-only. P-glycoprotein inhibition is associated with significantly earlier onset and increased mortality in ivermectin-exposed fish. Our results suggest that P-glycoprotein confers resistance against ivermectin-induced behavioural neuropathology and mortality in fish. This assay provides us with a non-invasive tool to study P-glycoprotein function in the blood-brain barrier and evaluate the behavioural effects of potential environmental neurotoxins.
利用行为毒理学试验,研究了多药耐药转运蛋白(ABCB1/MDR1)——P-糖蛋白在鱼类血脑屏障中的神经保护作用。P-糖蛋白作为细胞外排泵,可防止包括伊维菌素(一种常见的水产养殖杀虫剂和哺乳动物抗寄生虫药物)等环境污染物在大脑中蓄积。开发行为毒理学试验以确定伊维菌素对鳉鱼(Fundulus heteroclitus)的神经病理学影响。抑制转运活性的化学增敏剂会损害P-糖蛋白的功能,进而破坏血脑屏障的完整性。与仅用伊维菌素处理的鱼相比,用伊维菌素和P-糖蛋白抑制剂环孢素A处理的鱼对倾斜、嗜睡、胸鳍运动减慢和触觉反应丧失更为敏感,死亡也更快。P-糖蛋白抑制与伊维菌素暴露鱼的发病显著提前和死亡率增加有关。我们的结果表明,P-糖蛋白可使鱼类对伊维菌素诱导的行为神经病理学和死亡产生抗性。该试验为我们提供了一种非侵入性工具,用于研究血脑屏障中P-糖蛋白的功能,并评估潜在环境神经毒素的行为影响。