Institute of Biotechnology, Vilnius University, Vilnius, Lithuania.
Department of Systems Biology, Harvard Medical School, Boston, Massachusetts, USA.
Nat Protoc. 2017 Jan;12(1):44-73. doi: 10.1038/nprot.2016.154. Epub 2016 Dec 8.
Single-cell RNA sequencing has recently emerged as a powerful tool for mapping cellular heterogeneity in diseased and healthy tissues, yet high-throughput methods are needed for capturing the unbiased diversity of cells. Droplet microfluidics is among the most promising candidates for capturing and processing thousands of individual cells for whole-transcriptome or genomic analysis in a massively parallel manner with minimal reagent use. We recently established a method called inDrops, which has the capability to index >15,000 cells in an hour. A suspension of cells is first encapsulated into nanoliter droplets with hydrogel beads (HBs) bearing barcoding DNA primers. Cells are then lysed and mRNA is barcoded (indexed) by a reverse transcription (RT) reaction. Here we provide details for (i) establishing an inDrops platform (1 d); (ii) performing hydrogel bead synthesis (4 d); (iii) encapsulating and barcoding cells (1 d); and (iv) RNA-seq library preparation (2 d). inDrops is a robust and scalable platform, and it is unique in its ability to capture and profile >75% of cells in even very small samples, on a scale of thousands or tens of thousands of cells.
单细胞 RNA 测序最近成为了一种强大的工具,可以用于绘制疾病和健康组织中细胞异质性图谱,但需要高通量的方法来捕获细胞的无偏多样性。液滴微流控技术是最有前途的候选技术之一,它可以以最小的试剂用量,大规模平行地捕获和处理数千个单个细胞,进行全转录组或基因组分析。我们最近建立了一种称为 inDrops 的方法,它能够在一小时内对 >15000 个细胞进行标记。首先,将细胞悬浮液包裹在带有带有条形码 DNA 引物的水凝胶珠(HB)的纳升级液滴中。然后,细胞被裂解,mRNA 通过逆转录(RT)反应进行标记(索引)。这里我们提供了(i)建立 inDrops 平台(1 天);(ii)进行水凝胶珠合成(4 天);(iii)包裹和标记细胞(1 天);以及(iv)RNA-seq 文库制备(2 天)的详细信息。inDrops 是一个强大且可扩展的平台,它的独特之处在于能够捕获和分析即使在非常小的样本中也有 >75%的细胞,规模可达数千或数万细胞。