Department of Bioengineering, University of California Berkeley, Berkeley, California 94720, USA.
Lab Chip. 2017 Feb 28;17(5):855-863. doi: 10.1039/c6lc01333c.
Cytology of sparingly available cell samples from both clinical and experimental settings would benefit from high-selectivity protein tools. To minimize cell handling losses in sparse samples, we design a multi-stage assay using a lab-on-a-disc that integrates cell handling and subsequent single-cell western blotting (scWestern). As the two-layer microfluidic device rotates, the induced centrifugal force directs dissociated cells to dams, which in turn localize the cells over microwells. Cells then sediment into the microwells, where the cells are lysed and subjected to scWestern. Taking into account cell losses from loading, centrifugation, and lysis-buffer exchange, our lab-on-a-disc device handles cell samples with as few as 200 cells with 75% cell settling efficiencies. Over 70% of microwells contain single cells after the centrifugation. In addition to cell settling efficiency, cell-size filtration from a mixed population of two cell lines is also realized by tuning the cell time-of-flight during centrifugation (58.4% settling efficiency with 6.4% impurity). Following the upstream cell handling, scWestern analysis detects four proteins (GFP, β-TUB, GAPDH, and STAT3) in a glioblastoma cell line. By integrating the lab-on-a-disc cell preparation and scWestern analysis, our platform measures proteins from sparse cell samples at single-cell resolution.
从临床和实验环境中获取的稀有细胞样本的细胞学分析将受益于高选择性的蛋白质工具。为了最大限度地减少稀有样本中细胞处理的损失,我们设计了一种使用盘上实验室的多步分析,该实验室将细胞处理与随后的单细胞western blot(scWestern)相结合。当两层微流控装置旋转时,所诱导的离心力将分离的细胞引导至隔坝,从而将细胞定位在微井上方。然后,细胞沉淀到微井中,在那里进行细胞裂解和 scWestern 分析。考虑到加载、离心和裂解缓冲液交换过程中的细胞损失,我们的盘上实验室设备能够处理低至 200 个细胞的样本,细胞沉降效率达到 75%。在离心后,超过 70%的微井中含有单个细胞。除了细胞沉降效率之外,通过调整离心过程中的细胞飞行时间(58.4%的沉降效率和 6.4%的杂质),还可以从两种细胞系的混合群体中实现细胞大小过滤。在上游细胞处理之后,scWestern 分析在神经胶质瘤细胞系中检测到四种蛋白质(GFP、β-TUB、GAPDH 和 STAT3)。通过整合盘上实验室的细胞制备和 scWestern 分析,我们的平台能够以单细胞分辨率测量来自稀有细胞样本的蛋白质。