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细胞外囊泡作为药物传递系统 - 生产方法和潜在的治疗应用。

Extracellular Vesicles as Drug Delivery Systems - Methods of Production and Potential Therapeutic Applications.

机构信息

Department of Glycoconjugate Biochemistry, Institute of Zoology and Biomedical Research, Faculty of Biology, Jagiellonian University, Krakow, Poland.

Department of Medical Physics, M. Smoluchowski Institute of Physics, Faculty of Physics, Astronomy and Applied Computer Science, Jagiellonian University, Krakow, Poland.

出版信息

Curr Pharm Des. 2019;25(2):132-154. doi: 10.2174/1381612825666190306153318.

Abstract

Drug delivery systems are created to achieve the desired therapeutic effect of a specific pharmaceutical compound. Numerous drawbacks and side effects such as unfavorable pharmacokinetics, lack of tissue selectivity, immunogenicity, increased systemic clearance and toxicity, have been observed for currently available drug delivery systems (DDSs). The use of natural and artificial extracellular vesicles (EVs) in drug delivery may help to solve the aforementioned problems faced by different DDSs. Due to their self-origin, small size, flexibility, the presence of multiple adhesive molecules on their surfaces as well as their function as biomolecules carriers, EVs are the perfect candidates for DDSs. Currently, several drug delivery systems based on EVs have been proposed. While the great potential of these particles in targeted drug delivery has been recognized in cancer, hepatitis C, neurodegenerative diseases, inflammatory states etc., this field is still in the early stage of development. Unfortunately, the use of EVs from natural sources (cell cultures, body fluids) results in numerous problems in terms of the heterogeneity of isolated vesicle population as well as the method of isolation thereof, which may influence vesicle composition and properties. Therefore, there is a significant need for the synthesis of artificial EV-based DDSs under strictly controlled laboratory conditions and from well-defined biomolecules (proteins and lipids). Vesicle-mimetic delivery systems, characterized by properties similar to natural EVs, will bring new opportunities to study the mechanisms of DDS internalization and their biological activity after delivering their cargo to a target cell.

摘要

药物传递系统旨在实现特定药物化合物的理想治疗效果。目前可用的药物传递系统(DDS)存在许多缺点和副作用,如药代动力学不理想、缺乏组织选择性、免疫原性、系统清除率和毒性增加等。天然和人工细胞外囊泡(EVs)在药物传递中的应用可能有助于解决不同 DDS 所面临的上述问题。由于其自身起源、体积小、灵活性、表面存在多种黏附分子以及作为生物分子载体的功能,EVs 是 DDS 的理想选择。目前已经提出了几种基于 EVs 的药物传递系统。尽管这些颗粒在癌症、丙型肝炎、神经退行性疾病、炎症状态等靶向药物传递方面具有巨大的潜力,但该领域仍处于早期发展阶段。不幸的是,使用天然来源(细胞培养物、体液)的 EV 会导致分离囊泡群体的异质性以及分离方法方面存在许多问题,这可能会影响囊泡的组成和性质。因此,需要在严格控制的实验室条件下,使用明确的生物分子(蛋白质和脂质)合成人工 EV 基 DDS。具有类似于天然 EV 特性的囊泡模拟传递系统将为研究 DDS 内化机制及其将货物递送到靶细胞后的生物学活性带来新的机会。

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