Xu Xiu Qin, Graichen Ralph, Soo Set Yen, Balakrishnan Thavamalar, Rahmat Siti Norfiza Bte, Sieh Shirly, Tham Su Chin, Freund Christian, Moore Jennifer, Mummery Christine, Colman Alan, Zweigerdt Robert, Davidson Bruce P
ES Cell International Pte Ltd., 60 Biopolis St #01-03 Genome, Singapore 138672, Republic of Singapore.
Differentiation. 2008 Nov;76(9):958-70. doi: 10.1111/j.1432-0436.2008.00284.x. Epub 2008 Jun 13.
Many applications of human embryonic stem cells (hESCs) will require fully defined growth and differentiation conditions including media devoid of fetal calf serum. To identify factors that control lineage differentiation we have analyzed a serum-free (SF) medium conditioned by the cell line END2, which efficiently induces hESCs to form cardiomyocytes. Firstly, we noted that insulin, a commonly used medium supplement, acted as a potent inhibitor of cardiomyogenesis in multiple hESC lines and was rapidly cleared by medium conditioning. In the presence of insulin or IGF-1, which also suppressed cardiomyocyte differentiation, the PI3/Akt pathway was activated in undifferentiated hESC, suggesting that insulin/IGF-1 effects were mediated by this signaling cascade. Time course analysis and quantitative RT-PCR revealed impaired expression of endoderm and mesoderm markers in the presence of insulin, particularly if added during early stages of hESC differentiation. Relatively high levels of the neural ectoderm marker Sox1 were expressed under these conditions. Secondly, comparative gene expression showed that two key enzymes in the prostaglandin I2 (PGI2) synthesis pathway were highly up-regulated in END2 cells compared with a related, but non-cardiogenic, cell line. Biochemical analysis confirmed 6-10-fold higher PGI2 levels in END2 cell-conditioned medium (END2-CM) vs. controls. Optimized concentrations of PGI2 in a fully synthetic, insulin-free medium resulted in a cardiogenic activity equivalent to END2-CM. Addition of the p38 mitogen-activated protein kinase-inhibitor SB203580, which we have shown previously to enhance hESC cardiomyogenesis, to these insulin-free and serum-free conditions resulted in a cardiomyocyte content of >10% in differentiated cultures without any preselection. This study represents a significant step toward developing scalable production for cardiomyocytes from hESC using clinically compliant reagents compatible with Good Manufacturing Practice.
人类胚胎干细胞(hESC)的许多应用都需要完全明确的生长和分化条件,包括不含胎牛血清的培养基。为了确定控制谱系分化的因素,我们分析了由END2细胞系条件培养的无血清(SF)培养基,该培养基能有效诱导hESC形成心肌细胞。首先,我们注意到胰岛素作为常用的培养基补充剂,在多个hESC系中是心肌生成的有效抑制剂,并且在培养基条件培养过程中会迅速被清除。在存在胰岛素或IGF-1(其也抑制心肌细胞分化)的情况下,未分化的hESC中PI3/Akt信号通路被激活,这表明胰岛素/IGF-1的作用是由该信号级联介导的。时间进程分析和定量RT-PCR显示,在存在胰岛素的情况下,内胚层和中胚层标志物的表达受损,特别是在hESC分化早期添加胰岛素时。在这些条件下,神经外胚层标志物Sox1表达水平相对较高。其次,比较基因表达显示,与相关但非心肌源性的细胞系相比,前列腺素I2(PGI2)合成途径中的两种关键酶在END2细胞中高度上调。生化分析证实,END2细胞条件培养基(END2-CM)中的PGI2水平比对照高6至10倍。在完全合成的无胰岛素培养基中优化PGI2浓度,可产生与END2-CM相当的心肌生成活性。在这些无胰岛素和无血清条件下添加p38丝裂原活化蛋白激酶抑制剂SB203580(我们之前已证明其可增强hESC心肌生成),可使分化培养物中的心肌细胞含量>10%,且无需任何预选。这项研究朝着使用符合药品生产质量管理规范的临床适用试剂从hESC规模化生产心肌细胞迈出了重要一步。