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Cell line-dependent differentiation of induced pluripotent stem cells into cardiomyocytes in mice.

机译:在小鼠中诱导多能干细胞向心肌细胞的细胞系依赖性分化。

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AIMS: Mouse and human fibroblasts can be directly reprogrammed to pluripotency by the ectopic expression of four transcription factors (Oct3/4, Sox2, Klf4, and c-Myc) to yield induced pluripotent stem (iPS) cells. iPS cells can be generated even without the expression of c-Myc. The present study examined patterns of differentiation of mouse iPS cells into cardiomyocytes in three different cell lines reprogrammed by three or four factors. METHODS AND RESULTS: During the induction of differentiation on feeder-free gelatinized dishes, genes involved in cardiogenesis were expressed as in embryonic stem cells and myogenic contraction occurred in two iPS cell lines. However, in one iPS cell line (20D17) generated by four factors, the expression of cardiac-specific genes and the beating activity were extremely low. Treating iPS cells with trichostatin A (TSA), a histone deacetylase (HDAC) inhibitor, increased Nkx2.5 expression in all iPS cell lines. While the basal Nkx2.5 expression was very low in 20D17, the TSA-induced increase was the greatest. TSA also induced the expression of contractile proteins in 20D17. Furthermore, we demonstrated the increased mRNA level of Oct3/4 and nuclear protein level of HDAC4 in 20D17 compared with the other two iPS cell lines. DNA microarray analysis identified genes whose expression is up- or down-regulated in 20D17. CONCLUSIONS: Mouse iPS cells differentiate into cardiomyocytes in a cell line-dependent manner. TSA induces myocardial differentiation in mouse iPS cells and might be useful to overcome cell line variation in the differentiation efficiency.
机译:目的:可以通过异位表达四个转录因子(Oct3 / 4,Sox2,Klf4和c-Myc)异位表达,将小鼠和人类成纤维细胞直接重编程为多能性,以产生诱导性多能干(iPS)细胞。即使不表达c-Myc,也可以生成iPS细胞。本研究在三种或四种因素重新编程的三种不同细胞系中研究了小鼠iPS细胞向心肌细胞的分化模式。方法和结果:在无饲养者的糊化培养皿中诱导分化的过程中,涉及心脏发生的基因在胚胎干细胞中表达,并且在两个iPS细胞系中发生肌原性收缩。然而,在由四个因素产生的一种iPS细胞系(20D17)中,心脏特异性基因的表达和跳动活性极低。用组蛋白脱乙酰基酶(HDAC)抑制剂曲古抑菌素A(TSA)处理iPS细胞,可在所有iPS细胞系中增加Nkx2.5表达。虽然基础Nkx2.5表达在20D17中非常低,但TSA诱导的增加最大。 TSA还诱导20D17中收缩蛋白的表达。此外,我们证明了与其他两种iPS细胞系相比,20D17中Oct3 / 4的mRNA表达水平和HDAC4的核蛋白水平升高。 DNA微阵列分析鉴定了在20D17中表达上调或下调的基因。结论:小鼠iPS细胞以细胞系依赖性方式分化为心肌细胞。 TSA诱导小鼠iPS细胞的心肌分化,可能有助于克服细胞系分化效率的差异。

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