Passier Robert, Oostwaard Dorien Ward-van, Snapper Jolanda, Kloots Jantine, Hassink Rutger J, Kuijk Ewart, Roelen Bernard, de la Riviere Aart Brutel, Mummery Christine
Hubrecht Laboratory, Uppsalalaan 8, 3584 CT Utrecht, Netherlands.
Stem Cells. 2005 Jun-Jul;23(6):772-80. doi: 10.1634/stemcells.2004-0184.
Human embryonic stem cells (hESCs) can differentiate into cardiomyocytes, but the efficiency of this process is low. We routinely induce cardiomyocyte differentiation of the HES-2 cell line by coculture with a visceral endoderm-like cell line, END-2, in the presence of 20% fetal calf serum (FCS). In this study, we demonstrate a striking inverse relationship between cardiomyocyte differentiation and the concentration of FCS during HES-2-END-2 coculture. The number of beating areas in the cocultures was increased 24-fold in the absence of FCS compared with the presence of 20% FCS. An additional 40% increase in the number of beating areas was observed when ascorbic acid was added to serum-free cocultures. The increase in serum-free cocultures was accompanied by increased mRNA and protein expression of cardiac markers and of Isl1, a marker of cardiac progenitor cells. The number of beating areas increased up to 12 days after initiation of coculture of HES-2 with END-2 cells. However, the number of alpha-actinin-positive cardiomyocytes per beating area did not differ significantly between serum-free cocultures (503 +/- 179; mean +/- standard error of the mean) and 20% FCS cocultures (312 +/- 227). The stimulating effect of serum-free coculture on cardiomyocyte differentiation was observed not only in HES-2 but also in the HES-3 and HES-4 cell lines. To produce sufficient cardiomyocytes for cell replacement therapy in the future, upscaling cardiomyocyte formation from hESCs is essential. The present data provide a step in this direction and represent an improved in vitro model, without interfering factors in serum, for testing other factors that might promote cardiomyocyte differentiation.
人胚胎干细胞(hESCs)可分化为心肌细胞,但这一过程的效率较低。我们通常在20%胎牛血清(FCS)存在的情况下,通过与内胚层样细胞系END-2共培养来诱导HES-2细胞系分化为心肌细胞。在本研究中,我们证明了在HES-2与END-2共培养过程中,心肌细胞分化与FCS浓度之间存在显著的负相关关系。与存在20% FCS相比,无FCS时共培养物中搏动区域的数量增加了24倍。当向无血清共培养物中添加抗坏血酸时,搏动区域的数量又增加了40%。无血清共培养物中搏动区域数量的增加伴随着心脏标志物以及心脏祖细胞标志物Isl1的mRNA和蛋白表达的增加。HES-2与END-2细胞开始共培养后长达12天,搏动区域的数量持续增加。然而,无血清共培养物(503±179;平均值±平均标准误差)与20% FCS共培养物(312±227)中每个搏动区域的α-肌动蛋白阳性心肌细胞数量并无显著差异。无血清共培养对心肌细胞分化的刺激作用不仅在HES-2细胞系中观察到,在HES-3和HES-4细胞系中也观察到了。为了在未来生产足够的心肌细胞用于细胞替代疗法,扩大hESCs来源的心肌细胞形成规模至关重要。目前的数据朝着这个方向迈出了一步,代表了一种改进的体外模型,没有血清中的干扰因素,可用于测试其他可能促进心肌细胞分化的因素。