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基于纳米结构的脑靶向药物传递系统。

Nanostructure-based drug delivery systems for brain targeting.

机构信息

Jamia Hamdard, New Delhi, India.

出版信息

Drug Dev Ind Pharm. 2012 Apr;38(4):387-411. doi: 10.3109/03639045.2011.608191. Epub 2011 Sep 28.

Abstract

CONTEXT

It is well-known fact that blood brain barrier (BBB) hinders the penetrance and access of many pharmacotherapeutic agents to central nervous system (CNS). Many diseases of the CNS remain undertreated and the inability to treat most CNS disorders is not due to the lack of effective CNS drug discovery, rather, it is due to the ineffective CNS delivery. Therefore, a number of nanostructured drug delivery carriers have been developed and explored over the past couple of years to transport the drugs to brain.

OBJECTIVE

The present review will give comprehensive details of extensive research being done in field of nanostructured carriers to transport the drugs through the BBB in a safe and effective manner.

METHODS

The method includes both the polymeric- and lipid-based nanocarriers with emphasis on their utility, methodology, advantages, and the drugs which have been worked on using a particular approach to provide a noninvasive method to improve the drug transport through BBB.

RESULTS

Polymeric- and lipid-based nanocarriers enter brain capillaries before reaching the surface of the brain microvascular endothelial cells without the disruption of BBB. These systems are further modified with specific ligands vectors and pegylation aiming to target and enhance their binding with surface receptors of the specific tissues inside brain and increase long circulatory time which favors interaction and penetration into brain endothelial cells.

CONCLUSION

This review would give an insight to the researchers working on neurodegenerative and non-neurodegenerative diseases of the CNS including brain tumor.

摘要

背景

众所周知,血脑屏障(BBB)阻碍了许多药物治疗剂渗透和进入中枢神经系统(CNS)。许多 CNS 疾病仍未得到充分治疗,而无法治疗大多数 CNS 疾病并不是因为缺乏有效的 CNS 药物发现,而是因为无法有效将药物递送到 CNS。因此,在过去几年中,已经开发并探索了许多纳米结构药物递送载体,以将药物递送到大脑。

目的

本综述将全面详细介绍在纳米结构载体领域进行的广泛研究,以安全有效地将药物通过 BBB 运输。

方法

该方法包括基于聚合物和脂质的纳米载体,重点介绍了它们的用途、方法、优点,以及使用特定方法研究的药物,以提供一种非侵入性方法来改善药物通过 BBB 的运输。

结果

聚合物和基于脂质的纳米载体在到达脑微血管内皮细胞表面之前进入脑毛细血管,而不会破坏 BBB。这些系统进一步通过特定的配体载体和聚乙二醇化进行修饰,旨在靶向并增强它们与大脑内特定组织表面受体的结合,并增加长循环时间,这有利于与脑内皮细胞的相互作用和渗透。

结论

本综述将为从事 CNS 包括脑肿瘤的神经退行性和非神经退行性疾病研究的研究人员提供深入的了解。

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