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Small Molecular Drug Transfer across the Blood-Brain Barrier via Carrier-Mediated Transport Systems

机译:小分子药物通过载体介导的运输系统跨血脑屏障转移

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摘要

>Summary: Because of the physiological nature of the blood-brain barrier (BBB), transport of chemical compounds between blood and brain has been widely believed to occur by means of passive diffusion, depending upon the lipophilicity of the compounds. However, discrepancies exist between the lipophilicity and apparent BBB permeation properties in many cases, and these discrepancies can be ascribed to the existence of multiple mechanisms of drug transport through the BBB. Molecular identification and functional analysis of influx transport proteins (from blood to brain) and efflux transport proteins (from brain to blood) have progressed rapidly. Therefore, the BBB is now considered to be a dynamic interface that controls the influx and efflux of a wide variety of substances, including endogenous nutrients and exogenous compounds such as drugs, to maintain a favorable environment for the CNS. This review focuses on the role of transport systems in the uptake of xenobiotics, including organic anionic/cationic and neutral drugs, across the BBB into the brain, as well as on strategies to increase drug delivery into the brain by blocking efflux transport protein function, or to reduce CNS side effects by modulating BBB transport processes.
机译:>摘要:由于血脑屏障(BBB)的生理特性,人们普遍认为,化学物质在血液和大脑之间的运输是通过被动扩散发生的,具体取决于药物的亲脂性。化合物。但是,在许多情况下,亲脂性和表观BBB渗透性能之间存在差异,这些差异可归因于存在多种通过BBB进行药物转运的机制。内向转运蛋白(从血液到大脑)和外排转运蛋白(从大脑到血液)的分子鉴定和功能分析已迅速发展。因此,BBB现在被认为是一种动态界面,可控制多种物质(包括内源性营养物质和外源性化合物,例如药物)的流入和流出,从而为CNS维持良好的环境。这篇综述着重介绍了传输系统在通过BBB进入大脑吸收异源生物(包括有机阴离子/阳离子和中性药物)中的作用,以及通过阻断外排转运蛋白功能来增加药物向大脑的传递的策略,或通过调节BBB转运过程来减少CNS副作用。

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