Xin Yurong, Kim Jinrang, Ni Min, Wei Yi, Okamoto Haruka, Lee Joseph, Adler Christina, Cavino Katie, Murphy Andrew J, Yancopoulos George D, Lin Hsin Chieh, Gromada Jesper
Regeneron Pharmaceuticals, Tarrytown, NY 10591.
Regeneron Pharmaceuticals, Tarrytown, NY 10591
Proc Natl Acad Sci U S A. 2016 Mar 22;113(12):3293-8. doi: 10.1073/pnas.1602306113. Epub 2016 Mar 7.
This study provides an assessment of the Fluidigm C1 platform for RNA sequencing of single mouse pancreatic islet cells. The system combines microfluidic technology and nanoliter-scale reactions. We sequenced 622 cells, allowing identification of 341 islet cells with high-quality gene expression profiles. The cells clustered into populations of α-cells (5%), β-cells (92%), δ-cells (1%), and pancreatic polypeptide cells (2%). We identified cell-type-specific transcription factors and pathways primarily involved in nutrient sensing and oxidation and cell signaling. Unexpectedly, 281 cells had to be removed from the analysis due to low viability, low sequencing quality, or contamination resulting in the detection of more than one islet hormone. Collectively, we provide a resource for identification of high-quality gene expression datasets to help expand insights into genes and pathways characterizing islet cell types. We reveal limitations in the C1 Fluidigm cell capture process resulting in contaminated cells with altered gene expression patterns. This calls for caution when interpreting single-cell transcriptomics data using the C1 Fluidigm system.
本研究对Fluidigm C1平台用于小鼠单个胰岛细胞的RNA测序进行了评估。该系统结合了微流控技术和纳升规模的反应。我们对622个细胞进行了测序,从而鉴定出341个具有高质量基因表达谱的胰岛细胞。这些细胞聚集成α细胞群(5%)、β细胞群(92%)、δ细胞群(1%)和胰多肽细胞群(2%)。我们鉴定出了主要参与营养感知、氧化和细胞信号传导的细胞类型特异性转录因子和信号通路。出乎意料的是,由于活力低、测序质量差或污染导致检测到不止一种胰岛激素,有281个细胞不得不从分析中剔除。总体而言,我们提供了一个用于鉴定高质量基因表达数据集的资源,以帮助扩展对表征胰岛细胞类型的基因和信号通路的认识。我们揭示了Fluidigm C1细胞捕获过程中的局限性,这会导致细胞受到污染,基因表达模式发生改变。这就要求在使用C1 Fluidigm系统解释单细胞转录组学数据时要谨慎。