Stem Cell and Pancreas Developmental Biology, Stem Cell Center, Department of Laboratory Medicine, Lund University, BMC B10, Klinikgatan 26, SE-22184 Lund, Sweden.
Methods. 2013 Jan;59(1):59-70. doi: 10.1016/j.ymeth.2012.03.030. Epub 2012 Apr 5.
Characterization of directed differentiation of pluripotent stem cells towards therapeutically relevant cell types, including pancreatic beta-cells and hepatocytes, depends on molecular markers and assays that resolve the signature of individual cells. Pancreas and liver both have a common origin of anterior definitive endoderm (DE). Here, we differentiated human embryonic stem cells towards DE using three different activin A based treatments. Differentiation efficiencies were evaluated by gene expression profiling over time at cell population level. A panel of key markers was used to study DE formation. Final DE differentiation was also analyzed with immunocytochemistry and single-cell gene expression profiling. We found that cells treated with activin A in combination with sodium butyrate and B27 serum-free supplement medium generated the most mature DE cells. Cell population studies were useful to monitor the temporal expression of genes involved in primitive streak formation and endoderm formation, while single-cell analysis allowed us to study cell culture heterogeneity and fingerprint individual cells. In addition, single-cell analysis revealed distinct gene expression patterns for the three activin A based protocols applied. Our data provide novel insights in DE gene expression at the cellular level of in vitro differentiated human embryonic stem cells, and illustrate the power of using single-cell gene expression profiling to study differentiation heterogeneity and to characterize cell types and subpopulations.
多能干细胞向治疗相关细胞类型(包括胰岛β细胞和肝细胞)的定向分化的特征取决于能够解析单个细胞特征的分子标记物和检测方法。胰腺和肝脏都有共同的前肠内胚层(DE)起源。在这里,我们使用三种不同的激活素 A 基处理方法将人胚胎干细胞向 DE 分化。通过在细胞群体水平上随时间进行基因表达谱分析来评估分化效率。使用一组关键标记物来研究 DE 的形成。最后还通过免疫细胞化学和单细胞基因表达谱分析来分析 DE 的分化。我们发现,用激活素 A 联合丁酸钠和 B27 无血清补充培养基处理的细胞产生了最成熟的 DE 细胞。细胞群体研究有助于监测参与原始条纹形成和内胚层形成的基因的时空表达,而单细胞分析使我们能够研究细胞培养异质性并鉴定单个细胞。此外,单细胞分析揭示了应用的三种激活素 A 基方案的不同基因表达模式。我们的数据提供了体外分化的人胚胎干细胞中 DE 基因表达在细胞水平上的新见解,并说明了使用单细胞基因表达谱分析来研究分化异质性以及表征细胞类型和亚群的强大功能。