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靶向大脑:药物递送的进展。

Targeting the brain: advances in drug delivery.

机构信息

UCSD Jacobs Retina Center, 9415 Campus Point Drive, La Jolla, CA 92037-0946, USA.

出版信息

Curr Pharm Biotechnol. 2012 Sep;13(12):2417-26. doi: 10.2174/138920112803341833.

DOI:10.2174/138920112803341833
PMID:23016646
Abstract

The blood-brain barrier (BBB) represents a significant obstacle for drug delivery to the brain. Many therapeutics with potential for treating neurological conditions prove incompatible with intravenous delivery simply because of this barrier. Rather than modifying drugs to penetrate the BBB directly, it has proven more efficacious to either physically bypass the barrier or to use specialized delivery vehicles that circumvent BBB regulatory mechanisms. Controlled-release intracranial polymer implants and particle injections are the clinical state of the art with regard to localized delivery, although these approaches can impose significant surgical risks. Focused ultrasound provides a non-invasive alternative that may prove more desirable for acute treatment of brain tumors and other conditions requiring local tissue necrosis. For targeting the brain as a whole, cell-penetrating peptides (CPPs) and molecular trojan horses (MTHs) have demonstrated particular ability as delivery molecules and will likely see increased application. CPPs are not brain specific but offer the potential for efficient traversal of the BBB, and tandem systems with targeting molecules may produce extremely effective brain drug delivery tools. Molecular trojan horses utilize receptor-mediated transcytosis to transport cargo and are thus limited by the quantity of relevant receptors; however, they can be very selective for the BBB endothelium and have shown promise in gene therapy.

摘要

血脑屏障(BBB)是药物向大脑输送的重大障碍。许多具有治疗神经疾病潜力的治疗药物因其屏障而与静脉内输送不兼容。与其直接修饰药物以穿透 BBB,事实证明,通过物理方式绕过该屏障或使用专门的输送载体绕过 BBB 调节机制更为有效。在局部输送方面,颅内聚合物植入物和颗粒注射的控释是临床的最新技术,尽管这些方法可能会带来重大的手术风险。聚焦超声提供了一种非侵入性的替代方法,对于治疗脑肿瘤和其他需要局部组织坏死的疾病,可能更可取。为了将大脑作为一个整体进行靶向治疗,细胞穿透肽(CPP)和分子木马(MTH)已被证明具有作为输送分子的特殊能力,并且可能会得到更多的应用。CPP 不是大脑特异性的,但具有有效穿透 BBB 的潜力,并且与靶向分子的串联系统可能会产生非常有效的脑药物输送工具。分子木马利用受体介导的胞吞作用来运输货物,因此受到相关受体数量的限制;但是,它们对 BBB 内皮细胞具有非常高的选择性,并在基因治疗中显示出了希望。

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