细胞
转录组
单细胞分析
信使核糖核酸
化学
基因表达
计算生物学
人口
流式细胞术
蛋白质表达
细胞生物学
基因
分子生物学
生物
生物化学
人口学
社会学
作者
Xing Xu,Mingxia Zhang,Xuebing Zhang,Yilong Liu,Linfeng Cai,Qianqian Zhang,Qin Chen,Li Lin,Shichao Lin,Yanling Song,Zhi Zhu,Chaoyong Yang
标识
DOI:10.1021/acs.analchem.1c05312
摘要
Simultaneous analysis of mRNAs and proteins at the single-cell level provides information about the dynamics and correlations of gene and protein expressions in individual cells, enabling a comprehensive study of cellular heterogeneity and expression patterns. Here, we present a platform for about 1000 cellular indexing of mRNAs and membrane proteins, named multi-Paired-seq, with high cell utilization, accurate molecular measurement, and low cost. Based on hydrodynamic differential flow resistance, multi-Paired-seq largely improves cell utilization in the percentage of cells measured in population (>95%). Combined with the pump/valve structure, cell-free antibodies and mRNAs can be removed completely for highly accurate detection (R = 0.96) of protein copies. The picoliter reaction chambers allow high detection sensitivity for both mRNA transcripts and protein copies and low sequencing cost. Using multi-Paired-seq, three clusters of known breast cancer cell types are identified according to multimodal measurements, and the expression correlations between mRNAs and proteins under altered conditions are quantified. Multi-Paired-seq provides multimodal measurements at the single-cell level, which offers a new tool for cell biology, developmental biology, drug discovery, and precision medicine.
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