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首页> 外文期刊>Development Growth and Differentiation >Hepatocyte differentiation of human induced pluripotent stem cells is modulated by stearoyl-CoA desaturase 1 activity
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Hepatocyte differentiation of human induced pluripotent stem cells is modulated by stearoyl-CoA desaturase 1 activity

机译:硬脂酰辅酶A去饱和酶1活性调节人诱导的多能干细胞的肝细胞分化

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Stearoyl-CoA desaturase 1 (SCD1) plays important roles in organ development, glucose tolerance, insulin sensitivity, and cancer. Here, we examined the role of SCD1 for the differentiation of human induced pluripotent stem (hiPS) cells to liver cells by using drug inhibition and biochemical experiments. hiPS cells cultured in a pro-hepatic medium were exposed to an SCD1 inhibitor at various stages throughout differentiation. Liver-specific markers, specifically a-fetoprotein, albumin and urea in conditioned medium, and hepatocyte nuclear factor 4 alpha (HNF4 alpha) and cytochrome P450 7A1 (CYP7A1) gene expressions and triglyceride in cellular extracts were analyzed at various development stages. Measures of hepatocyte-specific function and triglyceride accumulation in later stages were strongly inhibited a minimum of -29% (P 0.05) by SCD1 inhibitor in the early stage of hepatic differentiation and effectively reversed (> 30%, P 0.01) by the addition of oleate. The results were also reproducible with human primary mononuclear cells (hPMN). SCD1 inhibitor had no significant effect on liver-specific markers when it was added in the hepatic maturation stage. However, it strikingly led to higher albumin (1.6-fold, P = 0.03) and urea (1.9-fold, P = 0.02) production, and HNF4 alpha (1.9-fold, P = 0.02) and CYP7A1 (1.3-fold, P = 0.03) expression upon incubation during the lineage-commitment stage. Hepatic differentiation from cultured hiPS cells is sensitive to SCD1 inhibition and this sensitivity is affected by the stage of cellular differentiation. Notably, findings also indicate that this notion can be extended to hPMN. The requirement for SCD1 activity in functional differentiation of hepatocytes may have relevance for human liver disease and metabolic dysregulation.
机译:硬脂酰辅酶A去饱和酶1(SCD1)在器官发育,葡萄糖耐量,胰岛素敏感性和癌症中起重要作用。在这里,我们通过药物抑制和生化实验研究了SCD1在人类诱导的多能干(hiPS)细胞向肝细胞分化中的作用。在整个分化过程中的不同阶段,将在前肝培养基中培养的hiPS细胞暴露于SCD1抑制剂。在不同的发育阶段,分析了肝特异标志物,特别是条件培养基中的甲胎蛋白,白蛋白和尿素,以及细胞提取物中的肝细胞核因子4α(HNF4 alpha)和细胞色素P450 7A1(CYP7A1)基因表达和甘油三酸酯。在肝分化的早期阶段,SCD1抑制剂强烈抑制了晚期肝细胞特异性功能和甘油三酸酯积累的测量值,最低抑制了-29%(P <0.05),而在肝分化的早期则有效地将其逆转(> 30%,P <0.01)。除油酸酯。用人原代单核细胞(hPMN)也可以重现该结果。在肝成熟阶段添加SCD1抑制剂对肝脏特异性标志物无明显影响。然而,它显着导致白蛋白(1.6倍,P = 0.03)和尿素(1.9倍,P = 0.02)的产生以及HNF4 alpha(1.9倍,P = 0.02)和CYP7A1(1.3倍,P)的产生= 0.03)在血统承诺阶段孵育后表达。来自培养的hiPS细胞的肝分化对SCD1抑制很敏感,这种敏感性受细胞分化阶段的影响。值得注意的是,研究结果还表明,该概念可以扩展到hPMN。肝细胞功能分化中对SCD1活性的需求可能与人类肝脏疾病和代谢异常有关。

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