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用于脑部药物递送的纳米颗粒装置。

Nanoparticulate devices for brain drug delivery.

机构信息

Department of Pharmacobiological Sciences, Faculty of Pharmacy, University "Magna Graecia" of Catanzaro, Campus Universitario "Salvatore Venuta"-Building of BioSciences, Viale Europa, Catanzaro, Italy.

出版信息

Med Res Rev. 2011 Sep;31(5):716-56. doi: 10.1002/med.20201. Epub 2010 Feb 16.

Abstract

The blood-brain barrier (BBB) limits the transport of therapeutic molecules from the blood compartment into the brain, thus greatly reducing the species of therapeutic compounds that can be efficiently accumulated in the central nervous system (CNS). Various strategies have been proposed for improving the delivery of drugs to this tissue, and numerous invasive and noninvasive methods have been proposed by different scientists in an attempt to circumvent the BBB and to increase the delivery of drug compounds into the brain. An interesting alternative, in the solution of this problem and also that of reaching a suitable target in the CNS, has recently been provided through the use of nanoparticulate colloidal devices as a noninvasive technique for brain drug delivery. These systems offer diverse advantages over invasive strategies, because (1) they are designed using biocompatible and biodegradable materials; (2) they avoid the disruption and/or modification of the BBB; and (3) they modulate the biopharmaceutical properties of the entrapped drugs. Moreover, the possibility of targeting specific brain tissue, thanks to ligands linked to the surface of the nanoparticulate colloidal devices, confers the necessary characteristics for the treatment of CNS pathologies to these drug carriers. The aim of this review is to focus on describing the main strategies in use for designing nanoparticulate colloidal devices for CNS delivery, their potentiality as noninvasive strategies in the delivery of drugs to the cerebral tissues, and their biological and clinical applications in cerebral drug delivery.

摘要

血脑屏障(BBB)限制了治疗分子从血液隔室向大脑的转运,从而大大降低了可有效积累在中枢神经系统(CNS)中的治疗化合物的种类。已经提出了各种用于改善此类组织中药物输送的策略,并且不同的科学家提出了许多侵入性和非侵入性的方法,试图绕过 BBB 并增加药物化合物向大脑的输送。最近,通过使用纳米颗粒胶体装置作为非侵入性脑内药物输送技术,为解决此问题以及到达 CNS 中的合适靶标提供了一个有趣的选择。这些系统相对于侵入性策略具有多种优势,因为(1)它们是使用生物相容性和可生物降解的材料设计的;(2)它们避免了 BBB 的破坏和/或修饰;(3)它们调节了所包封药物的生物制药特性。此外,由于纳米颗粒胶体装置表面连接的配体,靶向特定脑组织的可能性赋予了这些药物载体治疗 CNS 疾病所需的特性。本文综述的目的是集中描述用于设计 CNS 递药的纳米颗粒胶体装置的主要策略,以及它们作为向脑组织递药的非侵入性策略的潜力,以及它们在脑内药物输送中的生物学和临床应用。

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