Pathways for small molecule delivery to the central nervous system across the blood-brain barrier.

Perspectives in medicinal chemistry Pub Date : 2014-06-16 eCollection Date: 2014-01-01 DOI:10.4137/PMC.S13384
John L Mikitsh, Ann-Marie Chacko
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Abstract

The treatment of central nervous system (CNS) disease has long been difficult due to the ineffectiveness of drug delivery across the blood-brain barrier (BBB). This review summarizes important concepts of the BBB in normal versus pathophysiology and how this physical, enzymatic, and efflux barrier provides necessary protection to the CNS during drug delivery, and consequently treatment challenging. Small molecules account for the vast majority of available CNS drugs primarily due to their ability to penetrate the phospholipid membrane of the BBB by passive or carrier-mediated mechanisms. Physiochemical and biological factors relevant for designing small molecules with optimal capabilities for BBB permeability are discussed, as well as the most promising classes of transporters suitable for small-molecule drug delivery. Clinically translatable imaging methodologies for detecting and quantifying drug uptake and targeting in the brain are discussed as a means of further understanding and refining delivery parameters for both drugs and imaging probes in preclinical and clinical domains. This information can be used as a guide to design drugs with preserved drug action and better delivery profiles for improved treatment outcomes over existing therapeutic approaches.

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通过血脑屏障向中枢神经系统输送小分子的途径。
长期以来,中枢神经系统(CNS)疾病的治疗一直很困难,因为药物无法有效通过血脑屏障(BBB)。本综述总结了血脑屏障在正常与病理生理学中的重要概念,以及这一物理、酶和外流屏障如何在给药过程中为中枢神经系统提供必要的保护,从而使治疗面临挑战。小分子药物占现有中枢神经系统药物的绝大多数,这主要是因为它们能够通过被动或载体介导的机制穿透 BBB 磷脂膜。本文讨论了与设计具有最佳 BBB 渗透能力的小分子相关的物理化学和生物学因素,以及适合小分子药物递送的最有前途的转运体类别。还讨论了用于检测和量化大脑中药物摄取和靶向的临床可转化成像方法,以此进一步了解和完善临床前和临床领域中药物和成像探针的给药参数。这些信息可用作设计药物的指南,以保持药物作用和更好的给药特征,从而改善现有治疗方法的治疗效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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