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High-Throughput Single-Cell Extracellular Vesicle Secretion Analysis on a Desktop Scanner without Cell Counting

Fengjiao Zhu, Yahui Ji, Linmei Li, Xue Bai, Xianming Liu, Yong Luo, Tingjiao Liu, Bingcheng Lin, Yao Lu

2021Analytical Chemistry18 citationsDOI

Abstract

Single-cell EV (extracellular vesicle) secretion analysis is emerging for a better understanding of non-genetic cellular heterogeneity regulating human health and diseases through intercellular mediators. However, the requirements of expensive and bulky instrumentations hinder its widespread use. Herein, by combining gold nanoparticle-enhanced silver staining and the Poisson distribution, we reported the use of a home-use scanner to realize high-throughput single-cell EV secretion analysis without cell counting. We applied the platform to analyze the secretions of different EV phenotypes with the human oral squamous cell carcinoma cell line and primary cells from patients, which generated single-cell results comparable with those of the immunofluorescence approach. Notably, we also realized the quantification of the number of EVs secreted from every single cell using their respective titration curves obtained from population samples, making it possible to directly compare different EV phonotypes in regard to their secretion number, secretion rate, and so forth. The technology introduced here is simple, easy to operate, and of low cost, which make it a potential, easily accessible, and affordable tool for widespread use in both basic and clinical research.

Topics & Concepts

SecretionChemistryCellSingle-cell analysisExtracellular vesicleIntracellularExtracellularCell countingCell cultureCell biologyThroughputPopulationVesicleNanotechnologyMicrovesiclesComputer scienceBiochemistryBiologyCell cycleMaterials scienceWirelessTelecommunicationsGeneDemographyGeneticsMembraneSociologymicroRNAExtracellular vesicles in diseaseCell Adhesion Molecules ResearchAdvanced biosensing and bioanalysis techniques
High-Throughput Single-Cell Extracellular Vesicle Secretion Analysis on a Desktop Scanner without Cell Counting | Litcius