Dynamic single-cell phenotyping of immune cells using the microfluidic platform DropMap

埃利斯波特 微流控 流式细胞术 免疫系统 单细胞分析 分泌物 生物 质量细胞仪 细胞 肿瘤坏死因子α 细胞因子 内吞作用 免疫分析 抗体 细胞生物学 纳米技术 免疫学 T细胞 材料科学 表型 生物化学 基因
作者
Yacine Bounab,Klaus Eyer,Sophie Dixneuf,Maria Rybczyńska,Cécile Chauvel,Maxime Mistretta,Trang Tran,Nathan Aymerich,Guilhem Chenon,Jean‐François Llitjos,Fabienne Venet,Guillaume Monneret,Iain Gillespie,Pierre Cortez,Virginie Moucadel,Alexandre Pachot,Alain Troesch,Philippe Leissner,Julien Textoris,Jérôme Bibette
出处
期刊:Nature Protocols [Nature Portfolio]
卷期号:15 (9): 2920-2955 被引量:97
标识
DOI:10.1038/s41596-020-0354-0
摘要

Characterization of immune responses is currently hampered by the lack of systems enabling quantitative and dynamic phenotypic characterization of individual cells and, in particular, analysis of secreted proteins such as cytokines and antibodies. We recently developed a simple and robust microfluidic platform, DropMap, to measure simultaneously the kinetics of secretion and other cellular characteristics, including endocytosis activity, viability and expression of cell-surface markers, from tens of thousands of single immune cells. Single cells are compartmentalized in 50-pL droplets and analyzed using fluorescence microscopy combined with an immunoassay based on fluorescence relocation to paramagnetic nanoparticles aligned to form beadlines in a magnetic field. The protocol typically takes 8–10 h after preparation of microfluidic chips and chambers, which can be done in advance. By contrast, enzyme-linked immunospot (ELISPOT), flow cytometry, time-of-flight mass cytometry (CyTOF), and single-cell sequencing enable only end-point measurements and do not enable direct, quantitative measurement of secreted proteins. We illustrate how this system can be used to profile downregulation of tumor necrosis factor-α (TNF-α) secretion by single monocytes in septic shock patients, to study immune responses by measuring rates of cytokine secretion from single T cells, and to measure affinity of antibodies secreted by single B cells. This protocol describes a microfluidic platform for dynamic high-throughput analysis of the phenotypes of single cells. Cell-surface markers and secreted proteins are quantified and characterized by fluorescence detection using tailored immunoassays.
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