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迈向基于纳米囊泡的疾病诊断:通过免疫磁提取和纳米光子无标记检测,在一小时内实现快速单步外泌体分析。

Towards nanovesicle-based disease diagnostics: a rapid single-step exosome assay within one hour through immunomagnetic extraction and nanophotonic label-free detection.

机构信息

Department of Electrical and Computer Engineering, Iowa State University, Ames, Iowa 50011, USA.

Department of Biomedical Sciences, Iowa State University, Ames, Iowa 50011, USA.

出版信息

Lab Chip. 2021 Sep 14;21(18):3541-3549. doi: 10.1039/d1lc00446h.

Abstract

Exosomes have been considered as high-quality biomarkers for disease diagnosis, as they are secreted by cells into extracellular environments as nanovesicles with rich and unique molecular information, and can be isolated and enriched from clinical samples. However, most existing exosome assays, to date, require time-consuming isolation and purification procedures; the detection specificity and sensitivity are also in need of improvement for the realization of exosome-based disease diagnostics. This paper reports a unique exosome assay technology that enables completing both magnetic nanoparticle (MNP)-based exosome extraction and high-sensitivity photonic crystal (PC)-based label-free exosome detection in a single miniature vessel within one hour, while providing an improved sensitivity and selectivity. High specificity of the assay to membrane antigens is realized by functionalizing both the MNPs and the PC with specific antibodies. A low limit of detection on the order of 10 exosome particles per milliliter (volume) is achieved because the conjugated MNP-exosome nanocomplexes offer a larger index change on the PC surface, compared to the exosomes alone without using MNPs. Briefly, the single-step exosome assay involves (i) forming specific MNP-exosome nanocomplexes to enrich exosomes from complex samples directly on the PC surface at the bottom of the vessel, with a >500 enrichment factor, and (ii) subsequently, performing quantification of the nanocomplexes using the PC biosensor. The present exosome assay method is validated in analyzing multiple membrane proteins of exosomes derived from murine macrophage cells with high selectivity and sensitivity, while requiring only about one hour. This assay technology will provide great potential for exosome-based disease diagnostics.

摘要

外泌体被认为是疾病诊断的高质量生物标志物,因为它们作为富含丰富且独特分子信息的纳米囊泡由细胞分泌到细胞外环境中,并可以从临床样本中分离和富集。然而,迄今为止,大多数现有的外泌体检测方法都需要耗时的分离和纯化步骤;为了实现基于外泌体的疾病诊断,检测特异性和灵敏度也需要提高。本文报道了一种独特的外泌体检测技术,该技术能够在一个小时内完成基于磁性纳米颗粒(MNP)的外泌体提取和基于高灵敏度光子晶体(PC)的无标记外泌体检测,同时提供改进的灵敏度和选择性。通过用特异性抗体对 MNPs 和 PC 进行功能化,实现了检测对膜抗原的高特异性。由于与 MNPs 相比,共轭的 MNP-外泌体纳米复合物在 PC 表面上提供了更大的折射率变化,因此检测限低至每毫升(体积)约 10 个外泌体颗粒,实现了低检测限。简而言之,一步法外泌体检测法包括(i)在容器底部的 PC 表面上直接形成特定的 MNP-外泌体纳米复合物,以从复杂样品中浓缩外泌体,浓缩因子大于 500,(ii)随后使用 PC 生物传感器对外泌体进行定量。该外泌体检测方法在分析来自鼠巨噬细胞的外泌体的多个膜蛋白时具有高度选择性和灵敏度,同时仅需要约一个小时。这种检测技术将为基于外泌体的疾病诊断提供巨大的潜力。

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