P-糖蛋白
生物
血脑屏障
药理学
长春碱
药品
糖蛋白
ATP结合盒运输机
运输机
基因
拉顿
免疫学
中枢神经系统
内分泌学
化疗
分子生物学
抗药性
生物化学
多重耐药
遗传学
作者
Alfred H. Schinkel,Jan Maerten Smit,Olaf van Tellingen,Jos H. Beijnen,Els Wagenaar,Liesbeth van Deemter,C. A. A. M. Mol,Martin A. van der Valk,Els C. Robanus-Maandag,Hein P. J. te Riele,Anton Berns,Piet Borst
出处
期刊:Cell
[Cell Press]
日期:1994-05-01
卷期号:77 (4): 491-502
被引量:2164
标识
DOI:10.1016/0092-8674(94)90212-7
摘要
We have generated mice homozygous for a disruption of the mdr1a (also called mdr3) gene, encoding a drug-transporting P-glycoprotein. The mice were viable and fertile and appeared phenotypically normal, but they displayed an increased sensitivity to the centrally neurotoxic pesticide ivermectin (100-fold) and to the carcinostatic drug vinblastine (3-fold). By comparison of mdr1a (+/+) and (-/-) mice, we found that the mdr1a P-glycoprotein is the major P-glycoprotein in the blood-brain barrier and that its absence results in elevated drug levels in many tissues (especially in brain) and in decreased drug elimination. Our findings explain some of the side effects in patients treated with a combination of carcinostatics and P-glycoprotein inhibitors and indicate that these inhibitors might be useful in selectively enhancing the access of a range of drugs to the brain.
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