INEB - Instituto de Engenharia Biomédica, Biocarrier Group, Rua do Campo Alegre, 823, 4150-180 Porto, Portugal.
Department of Physics, Chemistry and Pharmacy, University of Southern Denmark, Campusvej 55, DK-5230 Odense, Denmark.
Ageing Res Rev. 2015 May;21:43-54. doi: 10.1016/j.arr.2015.03.001. Epub 2015 Mar 19.
As the population ages, brain pathologies such as neurodegenerative diseases and brain cancer increase their incidence, being the need to find successful treatments of upmost importance. Drug delivery to the central nervous system (CNS) is required in order to reach diseases causes and treat them. However, biological barriers, mainly blood-brain barrier (BBB), are the key obstacles that prevent the effectiveness of possible treatments due to their ability to strongly limit the perfusion of compounds into the brain. Over the past decades, new approaches towards overcoming BBB and its efflux transporters had been proposed. One of these approaches here reviewed is through small interfering RNA (siRNA), which is capable to specifically target one gene and silence it in a post-transcriptional way. There are different possible functional proteins at the BBB, as the ones responsible for transport or just for its tightness, which could be a siRNA target. As important as the effective silence is the way to delivery siRNA to its anatomical site of action. This is where nanotechnology-based systems may help, by protecting siRNA circulation and providing cell/tissue-targeting and intracellular siRNA delivery. After an initial overview on incidence of brain diseases and basic features of the CNS, BBB and its efflux pumps, this review focuses on recent strategies to reach brain based on siRNA, and how to specifically target these approaches in order to treat brain diseases.
随着人口老龄化,脑病理学如神经退行性疾病和脑癌的发病率增加,寻找成功的治疗方法变得至关重要。需要将药物递送到中枢神经系统(CNS)才能到达疾病的原因并进行治疗。然而,生物屏障,主要是血脑屏障(BBB),是阻止可能的治疗方法发挥作用的关键障碍,因为它们能够强烈限制化合物进入大脑的灌注。在过去的几十年中,已经提出了许多克服 BBB 及其外排转运体的新方法。本文综述了其中一种方法,即通过小干扰 RNA(siRNA),它能够特异性地靶向一个基因并以转录后方式使其沉默。BBB 上有许多不同的可能的功能蛋白,如负责运输或仅仅是紧密性的蛋白,它们可能是 siRNA 的靶点。与有效沉默一样重要的是将 siRNA 递送到其作用部位的方式。基于纳米技术的系统可能会有所帮助,通过保护 siRNA 的循环并提供细胞/组织靶向和细胞内 siRNA 递送来实现这一点。本文首先概述了脑疾病的发病率和 CNS、BBB 及其外排泵的基本特征,然后重点介绍了基于 siRNA 到达大脑的最新策略,以及如何特异性地针对这些方法来治疗脑疾病。