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工程细胞外囊泡用于诊断和治疗。

Engineering extracellular vesicles for diagnosis and therapy.

机构信息

College of Biological and Pharmaceutical Engineering, Nanjing Tech University, Jiangsu Province, China.

Department of Cardiovascular Surgery, the First Affiliated Hospital of Nanjing Medical University, Jiangsu Province, China.

出版信息

Trends Pharmacol Sci. 2024 Oct;45(10):931-940. doi: 10.1016/j.tips.2024.08.007. Epub 2024 Sep 19.

Abstract

Extracellular vesicle (EV)-based therapeutics have gained substantial interest in the areas of drug delivery, immunotherapy, and regenerative medicine. However, the clinical translation of EVs has been slowed due to limited yields and functional heterogeneity, as well as inadequate targeting. Engineering EVs to modify their inherent function and endow them with additional functions has the potential to advance the clinical translation of EV applications. Bio-orthogonal click chemistry is an engineering approach that modifies EVs in a controlled, specific, and targeted way without compromising their intrinsic structure. Here, we provide an overview of bio-orthogonal labeling approaches involved in EV engineering. We also present the isolation methods of bio-orthogonally labeled vesicles using magnetic beads, microfluidics, and microarray chip technologies. We highlight the in vivo applications of bio-orthogonal labeling EVs for diagnosis and therapy, especially the exciting potential of bio-orthogonal glycometabolic engineered EVs for targeted therapies.

摘要

基于细胞外囊泡 (EV) 的治疗方法在药物输送、免疫疗法和再生医学领域引起了广泛关注。然而,由于产量有限、功能异质性以及靶向性不足,EV 的临床转化一直受到限制。通过工程改造 EV 来改变其固有功能并赋予其额外功能,有可能推进 EV 应用的临床转化。生物正交点击化学是一种工程方法,它可以在不损害其内在结构的情况下,以可控、特异和靶向的方式修饰 EV。在这里,我们提供了一种概述 EV 工程中涉及的生物正交标记方法。我们还介绍了使用磁性珠、微流控和微阵列芯片技术分离生物正交标记囊泡的方法。我们强调了生物正交标记 EV 在诊断和治疗中的体内应用,特别是生物正交糖代谢工程 EV 在靶向治疗中的令人兴奋的潜力。

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