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首页> 外文期刊>Journal of Cerebral Blood Flow and Metabolism: Official Journal of the International Society of Cerebral Blood Flow and Metabolism >Clonidine transport at the mouse blood-brain barrier by a new H+ antiporter that interacts with addictive drugs.
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Clonidine transport at the mouse blood-brain barrier by a new H+ antiporter that interacts with addictive drugs.

机译:通过与成瘾性药物相互作用的新型H +反转运蛋白,可乐定在小鼠血脑屏障中转运。

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摘要

Identifying drug transporters and their in vivo significance will help to explain why some central nervous system (CNS) drugs cross the blood-brain barrier (BBB) and reach the brain parenchyma. We characterized the transport of the drug clonidine at the luminal BBB by in situ mouse brain perfusion. Clonidine influx was saturable, followed by Michaelis-Menten kinetics (K(m)=0.62 mmol/L, V(max)=1.76 nmol/sec per g at pH 7.40), and was insensitive to both sodium and trans-membrane potential. In vivo manipulation of intracellular and/or extracellular pH and trans-stimulation showed that clonidine was transported by an H+-coupled antiporter regulated by both proton and clonidine gradients, and that diphenhydramine was also a substrate. Organic cation transporters (Oct1-3), P-gp, and Bcrp did not alter clonidine transport at the BBB in knockout mice. Secondary or tertiary amine CNS compounds such as oxycodone, morphine, diacetylmorphine, methylenedioxyamphetamine (MDMA), cocaine, and nicotine inhibited clonidine transport. However, cationic compounds that interact with choline, Mate, Octn, and Pmat transporters did not. This suggests that clonidine is transported at the luminal mouse BBB by a new H+-coupled reversible antiporter.
机译:识别药物转运蛋白及其体内重要性将有助于解释为什么某些中枢神经系统(CNS)药物会穿过血脑屏障(BBB)并到达脑实质。我们通过原位小鼠脑灌注表征了可乐定在腔BBB的转运。可乐定流入量是饱和的,随后是Michaelis-Menten动力学(K(m)= 0.62 mmol / L,V(max)= 1.76 nmol / sec / g,pH 7.40),对钠和跨膜电位均不敏感。体内对细胞内和/或细胞外pH值的控制和反式刺激表明,可乐定通过质子和可乐定梯度调节的H +偶联反转运蛋白转运,并且苯海拉明也是一种底物。在敲除小鼠中,有机阳离子转运蛋白(Oct1-3),P-gp和Bcrp不会改变可乐定在BBB处的转运。仲胺或叔胺CNS化合物(例如羟考酮,吗啡,二乙酰吗啡,亚甲基二氧苯丙胺(MDMA),可卡因和尼古丁)抑制了可乐定的转运。但是,与胆碱,Mate,Octn和Pmat转运蛋白相互作用的阳离子化合物却没有。这表明可乐定是通过新型H +偶联的可逆反向转运蛋白在腔小鼠BBB上转运的。

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