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Section B: Integrated Function of Drug Transporters In Vivo) Drug Transport at the Blood-Brain Barrier and the Choroid Plexus

机译:B部分:体内药物转运蛋白的整合功能)在血脑屏障和脉络膜丛的药物转运

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摘要

The blood-brain barrier (BBB) and blood-CSF barrier (BCSFB) represent the main interfaces between the central nervous system (CNS) and the peripheral circulation. Drug exposure to the CNS is dependent on a variety of factors, including the physical barrier presented by the BBB and the BCSFB and the affinity of the substrate for specific transport systems located at both of these interfaces. It is the aggregate effect of these factors that ultimately determines the total CNS exposure, and thus pharmacological efficacy, of a drug or drug candidate. This review discusses the anatomical and biochemical barriers presented to solute access to the CNS. In particular, the important role played by various efflux transporters in the overall barrier function is considered in detail, as current literature suggests that efflux transport likely represents a key determinant of overall CNS exposure for many substrates. Finally, it is important to consider not only the net delivery of the agent to the CNS, but also the ability of the agent to access the relevant target site within the CNS. Potential approaches to increasing both net CNS and target-site exposure, when such exposure is dictated by efflux transport, are considered.
机译:血脑屏障(BBB)和血脑脊液屏障(BCSFB)代表中枢神经系统(CNS)与周围循环之间的主要界面。药物对CNS的暴露取决于多种因素,包括BBB和BCSFB呈现的物理屏障以及底物对位于这两个界面上的特定转运系统的亲和力。这些因素的综合作用最终决定了药物或候选药物的总CNS暴露量,进而决定了药理作用。这篇评论讨论了溶质进入中枢神经系统的解剖和生化障碍。特别是,详细考虑了各种外排转运蛋白在总体屏障功能中所起的重要作用,因为当前文献表明外排转运可能代表了许多底物的总体CNS暴露的关键决定因素。最后,重要的是,不仅要考虑代理向CNS的净交付,而且还要考虑代理访问CNS内相关目标站点的能力。当外排传输决定了增加净中枢神经系统和目标部位暴露的潜在方法时,可以考虑采用这种方法。

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