工程细胞外囊泡作为一类新的纳米药物

Xiaowei Wen*, Zerun Hao, Haofan Yin, Jie Min, Xueying Wang, Sihan Sun and Gang Ruan*, 
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引用次数: 0

摘要

细胞外囊泡(Extracellular vesicles, EVs)是一种由生物细胞分泌的具有诊断价值或治疗功能的分子。学术界和工业界对利用电动汽车作为诊断或治疗工具有着极大的兴趣。此外,电动汽车还可以作为治疗分子的递送载体。关于电动汽车的大量评论文章表明了人们对电动汽车的巨大兴趣,这些文章的重点从其生物学到其应用。电动汽车研究的一个新趋势是生产和使用“工程化电动汽车”,这本质上是电动汽车的增强版。EV工程可以通过细胞培养条件控制、基因工程或化学工程进行。鉴于其纳米尺度的尺寸和治疗潜力,工程化电动汽车是一种新兴的纳米药物。到目前为止,绝大多数关于工程电动汽车的研究都是临床前研究;只有非常少的临床试验报告。本综述的重点是工程化ev,更具体的重点是它们在治疗中的应用。综述了工程电动汽车的各种生产方法及其在各种疾病中的应用。此外,还讨论了EVs的体内成像,机制理解和临床翻译方面的问题。主要讨论临床前研究,同时简要提及临床试验。随着生物学家、药剂师、医生、生物工程师和化学工程师不断的跨学科研究努力,工程化的电动汽车可能成为许多重大疾病(如神经、免疫和心血管疾病)的有力解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Engineered Extracellular Vesicles as a New Class of Nanomedicine

Extracellular vesicles (EVs) are secreted from biological cells and contain many molecules with diagnostic values or therapeutic functions. There has been great interest in academic and industrial communities to utilize EVs as tools for diagnosis or therapeutics. In addition, EVs can also serve as delivery vehicles for therapeutic molecules. An indicator of the enormous interest in EVs is the large number of review articles published on EVs, with the focus ranging from their biology to their applications. An emerging trend in EV research is to produce and utilize “engineered EVs”, which are essentially the enhanced version of EVs. EV engineering can be conducted by cell culture condition control, genetic engineering, or chemical engineering. Given their nanometer-scale sizes and therapeutic potentials, engineered EVs are an emerging class of nanomedicines. So far, an overwhelming majority of the research on engineered EVs is preclinical studies; there are only a very small number of reported clinical trials. This Review focuses on engineered EVs, with a more specific focus being their applications in therapeutics. The various approaches to producing engineered EVs and their applications in various diseases are reviewed. Furthermore, in vivo imaging of EVs, the mechanistic understandings, and the clinical translation aspects are discussed. The discussion is primarily on preclinical studies while briefly mentioning the clinical trials. With continued interdisciplinary research efforts from biologists, pharmacists, physicians, bioengineers, and chemical engineers, engineered EVs could become a powerful solution for many major diseases such as neurological, immunological, and cardiovascular diseases.

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