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解决血脑屏障难题以有效治疗中枢神经系统中的HIV复制

Solving the Blood-Brain Barrier Challenge for the Effective Treatment of HIV Replication in the Central Nervous System.

作者信息

Bertrand Luc, Nair Madhavan, Toborek Michal

机构信息

University of Miami. Miller School of Medicine, Department of Biochemistry and Molecular Biology, 1011 NW 15th Street, Miami, FL 33136, USA.

出版信息

Curr Pharm Des. 2016;22(35):5477-5486. doi: 10.2174/1381612822666160726113001.

Abstract

Recent decades mark a great progress in the treatment of HIV infection. What was once a deadly disease is now a chronic infection. However, HIV-infected patients are prone to develop comorbidities, which severely affect their daily functions. For example, a large population of patients develop a variety of neurological and cognitive complications, called HIV associated neurological disorders (HAND). Despite efficient repression of viral replication in the periphery, evidence shows that the virus can remain active in the central nervous system (CNS). This low level of replication is believed to result in a progression of neurocognitive dysfunction in infected individuals. Insufficient viral inhibition in the brain results from the inability of several treatment drugs in crossing the blood-brain barrier (BBB) and reaching therapeutic concentrations in the CNS. The current manuscript discusses several strategies that are being developed to enable therapeutics to cross the BBB, including bypassing BBB, inhibition of efflux transporters, the use of active transporters present at the BBB, and nanotechnology. The increased concentration of therapeutics in the CNS is desirable to prevent viral replication; however, potential side effects of anti-retroviral drugs need also to be taken into consideration.

摘要

近几十年来,HIV感染的治疗取得了巨大进展。曾经的致命疾病如今已成为一种慢性感染。然而,HIV感染患者容易出现合并症,这严重影响了他们的日常功能。例如,大量患者会出现各种神经和认知并发症,称为HIV相关神经障碍(HAND)。尽管外周病毒复制得到有效抑制,但有证据表明病毒可在中枢神经系统(CNS)中保持活跃。这种低水平复制被认为会导致受感染个体的神经认知功能障碍进展。大脑中病毒抑制不足是由于几种治疗药物无法穿过血脑屏障(BBB)并在CNS中达到治疗浓度所致。当前的手稿讨论了正在开发的几种使治疗药物能够穿过血脑屏障的策略,包括绕过血脑屏障、抑制外排转运蛋白、利用血脑屏障处存在的主动转运蛋白以及纳米技术。提高CNS中治疗药物的浓度有助于防止病毒复制;然而,抗逆转录病毒药物的潜在副作用也需要考虑在内。

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