首页> 外文期刊>Cell Communication and Signaling >EGF and HB-EGF enhance the proliferation of programmable cells of monocytic origin (PCMO) through activation of MEK/ERK signaling and improve differentiation of PCMO-derived hepatocyte-like cells
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EGF and HB-EGF enhance the proliferation of programmable cells of monocytic origin (PCMO) through activation of MEK/ERK signaling and improve differentiation of PCMO-derived hepatocyte-like cells

机译:EGF和HB-EGF通过激活MEK / ERK信号传导增强单核细胞可编程细胞(PCMO)的增殖并改善PCMO衍生的肝细胞样细胞的分化

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Background Hepatocyte-like cells (NeoHepatocytes) generated from a peripheral blood monocyte-derived stem cell-like cell (the PCMO) are a promising alternative for primary hepatocytes in cell transplantation studies to cure liver diseases. However, to be therapeutically effective NeoHepatocytes are needed in large quantities. It was the aim of the present study to investigate i) whether the proportion of actively proliferating NeoHepatocytes can be enhanced by supplementing the PCMO differentiation medium (containing M-CSF, IL-3, and human serum) with either EGF or HB-EGF and ii) which signaling pathway underlies the promitotic effect. Results EGF and HB-EGF enhanced cell proliferation of PCMOs as demonstrated by increased expression of cycle control genes (ABL, ANAPC2, CDC2, CDK4, CDK6), phosphorylation of the retinoblastoma protein, and increased PCMO cell numbers after stimulation with EGF or HB-EGF. EGF also raised the number of monocytes expressing the proliferation marker Ki67. PCMOs expressed the EGF receptors EGFR (ERBB1) and ERBB3, and expression of both increased during PCMO generation. Phosphoimmunoblotting of PCMOs indicated that both EGF and HB-EGF activated MEK-1/2 and ERK1/2 in a concentration-dependent fashion with the effect of EGF being more prominent. EGF treatment further decreased expression of p47phox and increased that of Nanog indicating enhanced dedifferentiation and pluripotency, respectively. Treatment with both EGF and HB-EGF resulted in NeoHepatocytes with improved functional parameters. Conclusions The results suggested that the addition of EGF or HB-EGF to PCMO differentiation medium superactivates MEK/ERK signaling which then increases both PCMO proliferation, number, and functional differentiation of PCMO-derived NeoHepatocytes.
机译:背景技术从外周血单核细胞样干细胞样细胞(PCMO)产生的类肝细胞样细胞(NeoHepatocytes)是用于治疗肝病的细胞移植研究中原代肝细胞的一种有前途的替代方法。但是,要获得治疗效果,需要大量新肝细胞。本研究的目的是研究i)通过向PCMO分化培养基(含M-CSF,IL-3和人血清)中补充EGF或HB-EGF,是否可以增加活跃增殖的新肝细胞的比例。 ii)哪个信号通路是促细胞分裂作用的基础。结果EGF和HB-EGF增强了PCMO的细胞增殖,这表现为周期控制基因(ABL,ANAPC2,CDC2,CDK4,CDK6)表达增加,视网膜母细胞瘤蛋白磷酸化以及EGF或HB-E刺激后PCMO细胞数量增加EGF。 EGF还增加了表达增殖标记Ki67的单核细胞的数量。 PCMO表达EGF受体EGFR(ERBB1)和ERBB3,两者的表达在PCMO生成过程中均增加。 PCMO的磷酸免疫印迹表明,EGF和HB-EGF均以浓度依赖性方式激活MEK-1 / 2和ERK1 / 2,而EGF的作用更为突出。 EGF处理分别降低了p47 phox 的表达,并增加了Nanog的表达,分别表明去分化和多能性增强。使用EGF和HB-EGF进行治疗后,新肝细胞的功能参数得到改善。结论结果表明,向PCMO分化培养基中添加EGF或HB-EGF可以激活MEK / ERK信号,从而增加PCMO衍生的新肝细胞的PCMO增殖,数量和功能分化。

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