Faculty of Chemistry and Chemical Engineering, University of Maribor, Smetanova 17, 2000 Maribor, Slovenia.
Faculty of Medicine, University of Maribor, Taborska Ulica 8, 2000 Maribor, Slovenia.
Int J Mol Sci. 2021 Sep 2;22(17):9543. doi: 10.3390/ijms22179543.
Exosomes are becoming increasingly important therapeutic biomaterials for use in a variety of therapeutic applications due to their unique characteristics, especially due to the ineffectiveness and cytotoxicity of some existing therapies and synthetic therapeutic nanocarriers. They are highly promising as carriers of drugs, genes, and other therapeutic agents that can be incorporated into their interior or onto their surface through various modification techniques to improve their targeting abilities. In addition, they are biocompatible, safe, and stable. The review focuses on different types of exosomes and methods of their preparation, including the incorporation of different kinds of cargo, especially for drug delivery purposes. In particular, their importance and effectiveness as delivery vehicles of various therapeutic agents for a variety of therapeutic applications, including different diseases and disorders such as cancer treatment, cardiovascular and neurodegenerative diseases, are emphasized. Administration routes of exosomes into the body are also included. A novelty in the article is the emphasis on global companies that are already successfully developing and testing such therapeutic biomaterials, with a focus on the most influential ones. Moreover, a comparison of the advantages and disadvantages of the various methods of exosome production is summarized for the first time.
外泌体由于其独特的特性,特别是由于一些现有治疗方法和合成治疗性纳米载体的无效性和细胞毒性,正成为各种治疗应用中越来越重要的治疗生物材料。它们作为药物、基因和其他治疗剂的载体具有很大的应用前景,可以通过各种修饰技术将其包裹在内部或表面,以提高其靶向能力。此外,它们具有生物相容性、安全性和稳定性。本综述重点介绍了不同类型的外泌体及其制备方法,包括不同种类的货物的掺入,特别是用于药物传递目的。特别强调了它们作为各种治疗剂的递药载体在各种治疗应用中的重要性和有效性,包括癌症治疗、心血管和神经退行性疾病等不同疾病和障碍。还包括外泌体进入体内的给药途径。本文的一个新颖之处在于强调了已经成功开发和测试此类治疗性生物材料的全球公司,重点介绍了最有影响力的公司。此外,首次总结了外泌体生产的各种方法的优缺点比较。