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用于多参数分子分析的外泌体模板化纳米等离子体技术

Exosome-templated nanoplasmonics for multiparametric molecular profiling.

作者信息

Wu Xingjie, Zhao Haitao, Natalia Auginia, Lim Carine Z J, Ho Nicholas R Y, Ong Chin-Ann J, Teo Melissa C C, So Jimmy B Y, Shao Huilin

机构信息

Institute for Health Innovation and Technology, National University of Singapore, Singapore 117599, Singapore.

Department of Biomedical Engineering, Faculty of Engineering, National University of Singapore, Singapore 117583, Singapore.

出版信息

Sci Adv. 2020 May 6;6(19):eaba2556. doi: 10.1126/sciadv.aba2556. eCollection 2020 May.

Abstract

Exosomes are nanoscale vesicles distinguished by characteristic biophysical and biomolecular features; current analytical approaches, however, remain univariate. Here, we develop a dedicated platform for multiparametric exosome analysis-through simultaneous biophysical and biomolecular evaluation of the same vesicles-directly in clinical biofluids. Termed templated plasmonics for exosomes, the technology leverages in situ growth of gold nanoshells on vesicles to achieve multiselectivity. For biophysical selectivity, the nanoshell formation is templated by and tuned to distinguish exosome dimensions. For biomolecular selectivity, the nanoshell plasmonics locally quenches fluorescent probes only if they are target-bound on the same vesicle. The technology thus achieves multiplexed analysis of diverse exosomal biomarkers (e.g., proteins and microRNAs) but remains unresponsive to nonvesicle biomarkers. When implemented on a microfluidic, smartphone-based sensor, the platform is rapid, sensitive, and wash-free. It not only distinguished biomarker organizational states in native clinical samples but also showed that the exosomal subpopulation could more accurately differentiate patient prognosis.

摘要

外泌体是具有独特生物物理和生物分子特征的纳米级囊泡;然而,目前的分析方法仍然是单变量的。在此,我们开发了一个专门的多参数外泌体分析平台——通过直接在临床生物流体中对同一囊泡进行生物物理和生物分子同步评估。该技术称为外泌体模板等离子体技术,利用金纳米壳在囊泡上的原位生长来实现多重选择性。对于生物物理选择性,纳米壳的形成以囊泡为模板并进行调整以区分外泌体尺寸。对于生物分子选择性,只有当荧光探针与同一囊泡上的靶标结合时,纳米壳等离子体才会局部淬灭荧光探针。因此,该技术能够对多种外泌体生物标志物(如蛋白质和微小RNA)进行多重分析,但对非囊泡生物标志物无反应。当在基于智能手机的微流控传感器上实施时,该平台快速、灵敏且无需洗涤。它不仅能区分天然临床样本中生物标志物的组织状态,还表明外泌体亚群能够更准确地区分患者预后。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/179e/7202874/b0afec7f4706/aba2556-F1.jpg

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