在细胞外囊泡货物耗竭方面,超声波疗法优于电穿孔疗法

Yundi Chen , Le Wang , Xu Yu , Wenjun Mao , Yuan Wan
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引用次数: 0

摘要

细胞外囊泡(EVs)是细胞释放的亚微米级膜结构,是组织特异性蛋白质和核酸的载体,可促进细胞间的交流,并在病理生理过程中发挥作用。利用其独特的特性,EVs 已成为前景广阔的药物输送纳米载体。电穿孔(EP)和超声波处理(US)因其简便高效而成为将外源性药物装入 EVs 的常用技术。然而,这两种方法在耗尽初始 EV 货物方面的有效性一直被忽视。但这一信息是不可或缺的,因为EVs的生物活性残留物,特别是来自肿瘤或干细胞供体的残留物,可能会影响下游治疗效果。因此,弥合这一知识鸿沟可以指导人们根据治疗目标选择最佳药物和装载方法。在这里,我们利用高通量测序技术分别研究了经 EP 和 US 处理的 EV 中的蛋白质和小 RNA 载体。我们发现,与EP相比,US在清除EV载货方面表现出更高的效力,而US也可能清除用于联合治疗的重要内源性分子。这两种方法都没有表现出明显的货物消耗选择性,但它们可能会优先保留少数特定分子。此外,在 US 和 EP 处理过程中,膜蛋白比细胞质蛋白更容易丢失。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Ultrasonication outperforms electroporation for extracellular vesicle cargo depletion

Ultrasonication outperforms electroporation for extracellular vesicle cargo depletion
Extracellular vesicles (EVs), submicron-sized membranous structures released by cells, serve as vehicles of tissue-specific proteins and nucleic acids, facilitating intercellular communication and playing roles in pathophysiological processes. Leveraging their unique characteristics, EVs have emerged as promising drug delivery nanocarriers. Electroporation (EP) and ultrasonication (US) are among the prevalent techniques used for loading exogenous drugs into EVs owing to their simplicity and efficiency. However, the effectiveness of the two methods in depleting initial EV cargo has been overlooked. But this information is indispensable, as the bioactive residuals of EVs, notably derived from tumor or stem donor cells, may impact downstream therapeutic effects. Bridging this knowledge gap, therefore, can guide the selection of optimal drugs and loading methods tailored to therapeutic objectives. Here, we used high-throughput sequencing to investigate the protein and small RNA cargo of EVs treated with EP and US, respectively. We found that US exhibits higher efficacy in depleting EV cargo compared to EP, while US may also deplete essential endogenous molecules for combination therapy. Neither method demonstrated significant selectivity in cargo depletion, but they might preferentially retain few specific molecules. Additionally, membrane proteins are more prone to loss during US and EP treatments than cytoplasmic proteins.
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来源期刊
Extracellular vesicle
Extracellular vesicle Biochemistry, Genetics and Molecular Biology (General)
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