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首页> 外文期刊>American Journal of Physiology >Xenobiotic efflux pumps in isolated fish brain capillaries.
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Xenobiotic efflux pumps in isolated fish brain capillaries.

机译:异种外排泵在孤立的鱼脑毛细血管中。

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摘要

To identify specific transporters that drive xenobiotics from the central nervous system to blood, the accumulation of fluorescent drugs was studied in isolated capillaries from killifish and dogfish shark brain using confocal microscopy and quantitative image analysis. In killifish brain capillaries, luminal accumulation of fluorescent derivatives of cyclosporin A and verapamil was concentrative, specific, and energy dependent (inhibition by KCN). Transport was reduced by PSC-833, but not by leukotriene C4, indicating the involvement of P-glycoprotein. The ability of capillaries to transport the cyclosporin A derivative was unchanged over 20 h, demonstrating the long-term viability of the preparation. Luminal accumulation of the fluorescent organic anions sulforhodamine 101 and fluorescein-methotrexate was also concentrative, specific, and energy dependent. Transport of these compounds was reduced by leukotriene C4, but not by PSC-833, indicating the involvement of a multidrug resistance-associated protein (Mrp). Similar results were obtained for isolated capillaries from dogfish shark. Immunostaining localized P-glycoprotein and Mrp2 to the luminal surface of the killifish brain capillary endothelium. These findings validate a new and long-lived comparative model for studying drug transport across the blood-brain barrier and, as in mammals, implicate P-glycoprotein and Mrp2 in transport from the central nervous system to blood in fish.
机译:为了确定将异源生物素从中枢神经系统驱动到血液的特定转运蛋白,使用共聚焦显微镜和定量图像分析研究了从kill鱼和dog鱼鲨鱼脑中分离出的毛细血管中荧光药物的积累。在比目鱼脑毛细血管中,环孢菌素A和维拉帕米的荧光衍生物的腔内积累是集中的,特异性的和能量依赖性的(被KCN抑制)。 PSC-833减少了转运,但白三烯C4并未减少,表明P-糖蛋白的参与。毛细管运输环孢菌素A衍生物的能力在20小时内未发生变化,这表明该制剂具有长期生存能力。荧光有机阴离子磺基若丹明101和荧光素-甲氨蝶呤的发光积累也是集中的,特定的和能量依赖性的。白三烯C4减少了这些化合物的运输,但PSC-833并未减少,表明涉及多药耐药相关蛋白(Mrp)。从狗鱼鲨中分离出的毛细管获得了相似的结果。免疫染色的局部P糖蛋白和Mrp2到比目鱼脑毛细血管内皮腔表面。这些发现验证了一种新的长期比较模型,该模型可用于研究跨血脑屏障的药物运输,并且在哺乳动物中,也暗示了P-糖蛋白和Mrp2从中枢神经系统到鱼类血液的运输。

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