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新型电化学可切换、柔性、微孔布,可选择性捕获、释放和浓缩完整的细胞外囊泡。

Novel Electrochemically Switchable, Flexible, Microporous Cloth that Selectively Captures, Releases, and Concentrates Intact Extracellular Vesicles.

作者信息

Akbarinejad Alireza, Hisey Colin L, Brewster Diane, Ashraf Jesna, Chang Vanessa, Sabet Saman, Nursalim Yohanes, Lucarelli Valentina, Blenkiron Cherie, Chamley Larry, Barker David, Williams David E, Evans Clive W, Travas-Sejdic Jadranka

机构信息

Polymer Biointerface Centre, School of Chemical Sciences, The University of Auckland, Auckland 1010, New Zealand.

The MacDiarmid Institute of Advanced Materials and Nanotechnology, Wellington 6140, New Zealand.

出版信息

ACS Appl Mater Interfaces. 2020 Sep 2;12(35):39005-39013. doi: 10.1021/acsami.0c11908. Epub 2020 Aug 20.

Abstract

There is a significant and growing research interest in the isolation of extracellular vesicles (EVs) from large volumes of biological samples and their subsequent concentration into clean and small volumes of buffers, especially for applications in medical diagnostics. Materials that are easily incorporated into simple sampling devices and which allow the release of EVs without the need for auxiliary and hence contaminating reagents are particularly in demand. Herein, we report on the design and fabrication of a flexible, microporous, electrochemically switchable cloth that addresses the key challenges in diagnostic applications of EVs. We demonstrate the utility of our electrochemically switchable substrate for the fast, selective, nondestructive, and efficient capture and subsequent release of EVs. The substrate consists of an electrospun cloth, infused with a conducting polymer and decorated with gold particles. Utilizing gold-sulfur covalent bonding, the electrospun substrates may be functionalized with SH-terminated aptamer probes selective to EV surface proteins. We demonstrate that EVs derived from primary human dermal fibroblast (HDFa) and breast cancer (MCF-7) cell lines are selectively captured with low nonspecific adsorption using an aptamer specific to the CD63 protein expressed on the EV membranes. The specific aptamer-EV interactions enable easy removal of the nonspecifically bound material through washing steps. The conducting polymer component of the cloth provides a means for efficient (>92%) and fast (<5 min) electrochemical release of clean and intact captured EVs by cathodic cleavage of the Au-S bond. We demonstrate successful capture of diluted EVs from a large volume sample and their release into a small volume of clean phosphate-buffered saline buffer. The developed cloth can easily be incorporated into different designs for separation systems and would be adaptable to other biological entities including cells and other EVs. Furthermore, the capture/release capability holds great promise for liquid biopsies if used to targeted disease-specific markers.

摘要

从大量生物样品中分离细胞外囊泡(EVs)并将其随后浓缩到少量纯净缓冲液中,这一研究兴趣日益浓厚且意义重大,特别是在医学诊断应用方面。尤其需要能够轻松整合到简单采样装置中、无需辅助试剂从而避免污染试剂即可释放EVs的材料。在此,我们报告了一种柔性、微孔、可电化学切换的布的设计与制造,该布解决了EVs诊断应用中的关键挑战。我们展示了这种可电化学切换的基质在快速、选择性、无损且高效捕获及随后释放EVs方面的效用。该基质由静电纺丝布组成,注入了导电聚合物并装饰有金颗粒。利用金-硫共价键,静电纺丝基质可用对EV表面蛋白具有选择性的SH端接适配体探针进行功能化。我们证明,使用针对EV膜上表达的CD63蛋白的适配体,可从原代人皮肤成纤维细胞(HDFa)和乳腺癌(MCF-7)细胞系衍生的EVs中选择性捕获,且非特异性吸附较低。特异性适配体-EV相互作用使得通过洗涤步骤能够轻松去除非特异性结合的物质。布中的导电聚合物成分提供了一种通过阴极裂解Au-S键实现高效(>92%)且快速(<5分钟)电化学释放纯净且完整捕获的EVs的方法。我们展示了从大量样品中成功捕获稀释的EVs并将其释放到少量纯净磷酸盐缓冲盐水缓冲液中的过程。所开发的布可轻松整合到分离系统的不同设计中,并且适用于包括细胞和其他EVs在内的其他生物实体。此外,如果用于靶向疾病特异性标志物,这种捕获/释放能力在液体活检方面具有巨大潜力。

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