School of Engineering and Applied Sciences (SEAS), Harvard University, Cambridge, Massachusetts, USA.
Nat Protoc. 2013 May;8(5):870-91. doi: 10.1038/nprot.2013.046. Epub 2013 Apr 4.
We present a droplet-based microfluidics protocol for high-throughput analysis and sorting of single cells. Compartmentalization of single cells in droplets enables the analysis of proteins released from or secreted by cells, thereby overcoming one of the major limitations of traditional flow cytometry and fluorescence-activated cell sorting. As an example of this approach, we detail a binding assay for detecting antibodies secreted from single mouse hybridoma cells. Secreted antibodies are detected after only 15 min by co-compartmentalizing single mouse hybridoma cells, a fluorescent probe and single beads coated with anti-mouse IgG antibodies in 50-pl droplets. The beads capture the secreted antibodies and, when the captured antibodies bind to the probe, the fluorescence becomes localized on the beads, generating a clearly distinguishable fluorescence signal that enables droplet sorting at ∼200 Hz as well as cell enrichment. The microfluidic system described is easily adapted for screening other intracellular, cell-surface or secreted proteins and for quantifying catalytic or regulatory activities. In order to screen ∼1 million cells, the microfluidic operations require 2-6 h; the entire process, including preparation of microfluidic devices and mammalian cells, requires 5-7 d.
我们提出了一种基于液滴的微流控方案,用于高通量分析和分选单细胞。将单细胞分隔在液滴中可以分析细胞释放或分泌的蛋白质,从而克服了传统流式细胞术和荧光激活细胞分选的主要限制之一。作为这种方法的一个例子,我们详细介绍了一种用于检测从单个小鼠杂交瘤细胞分泌的抗体的结合测定法。仅需 15 分钟即可检测到分泌的抗体,方法是将单个小鼠杂交瘤细胞、荧光探针和包被有抗小鼠 IgG 抗体的单颗珠子共分隔在 50-pl 的液滴中。珠子捕获分泌的抗体,当捕获的抗体与探针结合时,荧光会在珠子上定位,产生一个清晰可辨的荧光信号,从而能够以约 200 Hz 的速度进行液滴分选和细胞富集。所描述的微流控系统易于适应筛选其他细胞内、细胞表面或分泌的蛋白质,并定量测定催化或调节活性。为了筛选约 100 万个细胞,微流控操作需要 2-6 小时;包括制备微流控器件和哺乳动物细胞在内的整个过程需要 5-7 天。