Department of Pharmaceutics, College of Pharmacy, University of Florida, Gainesville, Florida, 32610, USA.
UF Cancer and Genetics Research Complex, 2033 Mowry Rd, Lab: 0475G, Gainesville, FL, 32608, USA.
Pharm Res. 2023 Apr;40(4):833-853. doi: 10.1007/s11095-022-03420-w. Epub 2022 Nov 1.
Extracellular vesicles (EVs) have various advantageous properties, including a small size, high biocompatibility, efficient cargo loading, and precise cell targeting ability, making them promising tools for therapeutic development. EVs have been increasingly explored for applications like drug delivery. However, due to limited cellular secretion rates of EVs, wide-scale clinical applications are not achievable. Therefore, substantial strategies and research efforts have been devoted to increasing cellular secretion rates of EVs. This review describes various studies exploring different methods to increase the cellular production of EVs, including the application of electrical stimulus, pharmacologic agents, electromagnetic waves, sound waves, shear stress, cell starvation, alcohol, pH, heat, and genetic manipulation. These methods have shown success in increasing EV production, but careful consideration must be given as many of these strategies may alter EV properties and functionalities, and the exact mechanisms causing the increase in cellular production of EVs is generally unknown. Additionally, the methods' effectiveness in increasing EV secretion may diverge with different cell lines and conditions. Further advancements to enhance EV biogenesis secretion for therapeutic development is still a significant need in the field.
细胞外囊泡(EVs)具有多种优势特性,包括体积小、生物相容性高、有效负载药物以及精确的靶向细胞能力,使其成为治疗开发的有前途的工具。EVs 已越来越多地被探索用于药物输送等应用。然而,由于 EVs 的细胞分泌率有限,广泛的临床应用是无法实现的。因此,已经投入了大量的策略和研究努力来提高 EVs 的细胞分泌率。本综述描述了各种研究探索增加 EV 细胞产生的不同方法,包括电刺激、药物制剂、电磁波、声波、切应力、细胞饥饿、酒精、pH 值、热和遗传操作。这些方法已成功地增加了 EV 的产生,但必须谨慎考虑,因为许多这些策略可能改变 EV 的特性和功能,并且导致 EV 细胞产生增加的确切机制通常是未知的。此外,这些方法在增加 EV 分泌方面的有效性可能因不同的细胞系和条件而有所不同。进一步提高 EV 生物发生分泌以促进治疗开发仍然是该领域的一个重大需求。