Multiplex Biotechnology Laboratory, Department of Chemistry , University at Albany, State University of New York , Albany , New York 12222 , United States.
Cancer Research Center , University at Albany, State University of New York , Rensselaer , New York 12144 , United States.
ACS Sens. 2019 Sep 27;4(9):2296-2302. doi: 10.1021/acssensors.9b00765. Epub 2019 Sep 6.
Cytokine production is often regarded as the marker of immune cells' activation status. The spectrum and temporal secretion of cytokines are dramatically varied between cell phenotypes and even within the same phenotype. Multiparameter analysis of individual immune cell's cytokine secretion has always been a challenging and complicated process that needs special facilities in a laboratory setting. Herein, we present an ultrasimple method with high sensitivity and high robustness to quantify cytokine expression at the single-cell resolution. A microchip is developed based on poly(dimethylsiloxane) nanowells on sticky tape, while each nanowell is integrated with a DNA-antibody convertible microarray. Only pipetting is needed for the whole single-cell analysis process. The sensitivity of the assay is evaluated by measuring various concentrations of six recombinant cytokine proteins, which was found comparable to conventional methods. Once single cells are loaded to nanowells and incubated there, a Fluorinert FC-40 is used to isolate nanowells; so, cytokines from those cells are captured by separate microarrays. The rest of the sandwich enzyme-linked immunosorbent assay detection process is also executed simply by pipetting of various reagents. This method is validated by measuring cytokine production from hundreds of single cells. It has simplified a typically sophisticated multiplex single-cell assay into an instrument-free, point-of-detection technology, and thus it may find a broad utility in clinical diagnostics.
细胞因子的产生通常被认为是免疫细胞激活状态的标志物。细胞表型之间甚至同一表型内细胞因子的产生谱和时间存在显著差异。分析单个免疫细胞细胞因子分泌的多参数分析一直是一个具有挑战性和复杂性的过程,需要在实验室环境中使用特殊设备。在此,我们提出了一种超灵敏且高稳健性的方法,可实现单细胞分辨率下细胞因子表达的定量分析。该微芯片基于粘性带上的聚二甲基硅氧烷纳米孔制成,而每个纳米孔都集成了一个 DNA-抗体可转换的微阵列。整个单细胞分析过程仅需移液操作。通过测量六种重组细胞因子蛋白的不同浓度来评估该检测方法的灵敏度,发现其与传统方法相当。一旦将单细胞加载到纳米孔并在其中孵育,就使用 Fluorinert FC-40 来隔离纳米孔;因此,来自这些细胞的细胞因子被单独的微阵列捕获。其余的夹心酶联免疫吸附测定检测过程也通过移液各种试剂简单地执行。该方法通过测量数百个单个细胞的细胞因子产生进行了验证。它将典型的复杂多重单细胞检测简化为无仪器、即时检测技术,因此它可能在临床诊断中具有广泛的应用。