Ahmed Waqas, Kuniyan Muhammed Shibil, Jawed Aqil Mohammad, Chen Lukui
Department of Neurosurgery, Neuroscience Center, Integrated Hospital of Traditional Chinese Medicine, Southern Medical University, Guangzhou 510310, China.
School of Medicine, Southeast University, Nanjing 210009, China.
Pharmaceutics. 2023 Aug 22;15(9):2173. doi: 10.3390/pharmaceutics15092173.
Extracellular vesicles (EVs) are promising therapeutic modalities for treating neurological conditions. EVs facilitate intercellular communication among brain cells under normal and abnormal physiological conditions. The potential capability of EVs to pass through the blood-brain barrier (BBB) makes them highly promising as nanocarrier contenders for managing stroke. EVs possess several potential advantages compared to existing drug-delivery vehicles. These advantages include their capacity to surpass natural barriers, target specific cells, and stability within the circulatory system. This review explores the trafficking and cellular uptake of EVs and evaluates recent findings in the field of EVs research. Additionally, an overview is provided of the techniques researchers utilize to bioengineer EVs for stroke therapy, new results on EV-BBB interactions, and the limitations and prospects of clinically using EVs for brain therapies. The primary objective of this study is to provide a comprehensive analysis of the advantages and challenges related to engineered EVs drug delivery, specifically focusing on their application in the treatment of stroke.
细胞外囊泡(EVs)是治疗神经系统疾病的有前景的治疗方式。在正常和异常生理条件下,EVs促进脑细胞间的细胞间通讯。EVs穿过血脑屏障(BBB)的潜在能力使其作为治疗中风的纳米载体极具前景。与现有的药物递送载体相比,EVs具有几个潜在优势。这些优势包括它们跨越天然屏障、靶向特定细胞以及在循环系统中的稳定性的能力。本综述探讨了EVs的运输和细胞摄取,并评估了EVs研究领域的最新发现。此外,还概述了研究人员用于对EVs进行生物工程以用于中风治疗的技术、EV与BBB相互作用的新结果,以及临床上使用EVs进行脑部治疗的局限性和前景。本研究的主要目的是对工程化EVs药物递送相关的优势和挑战进行全面分析,特别关注其在中风治疗中的应用。