Yu Jing, Zhou Jing, Sutherland Alex, Wei Wei, Shin Young Shik, Xue Min, Heath James R
Division of Chemistry and Chemical Engineering, California Institute of Technology, Pasadena, California 91125; email:
Annu Rev Anal Chem (Palo Alto Calif). 2014;7:275-95. doi: 10.1146/annurev-anchem-071213-020323. Epub 2014 Jun 2.
We review an emerging microfluidics-based toolkit for single-cell functional proteomics. Functional proteins include, but are not limited to, the secreted signaling proteins that can reflect the biological behaviors of immune cells or the intracellular phosphoproteins associated with growth factor-stimulated signaling networks. Advantages of the microfluidics platforms are multiple. First, 20 or more functional proteins may be assayed simultaneously from statistical numbers of single cells. Second, cell behaviors (e.g., motility) may be correlated with protein assays. Third, extensions to quantized cell populations can permit measurements of cell-cell interactions. Fourth, rare cells can be functionally identified and then separated for further analysis or culturing. Finally, certain assay types can provide a conduit between biology and the physicochemical laws. We discuss the history and challenges of the field then review design concepts and uses of the microchip platforms that have been reported, with an eye toward biomedical applications. We then look to the future of the field.
我们综述了一种新兴的基于微流控技术的单细胞功能蛋白质组学工具包。功能蛋白包括但不限于分泌型信号蛋白,其可反映免疫细胞的生物学行为,或与生长因子刺激的信号网络相关的细胞内磷酸化蛋白。微流控平台具有多种优势。首先,可以从统计学数量的单细胞中同时检测20种或更多种功能蛋白。其次,细胞行为(如运动性)可与蛋白质检测相关联。第三,扩展到量化细胞群体可实现细胞间相互作用的测量。第四,稀有细胞可通过功能鉴定,然后分离以进行进一步分析或培养。最后,某些检测类型可在生物学和物理化学定律之间提供一个通道。我们讨论了该领域的历史和挑战,然后回顾了已报道的微芯片平台的设计概念和用途,着眼于生物医学应用。我们接着展望该领域的未来。