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In vitro efficacy of liver microenvironment in bone marrow mesenchymal stem cell differentiation

机译:肝脏微环境在骨髓间充质干细胞分化中的体外效果

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Bone marrow-derived mesenchymal stem cells (BM-MSCs) represent an interesting alternative to liver or hepatocyte transplantation to treat liver injuries. Many studies have reported that MSCs can treat several diseases, including liver damage, just by injection into the bloodstream, without evidence of differentiation. The improvements were attributed to the organotrophic factors, low immunogenicity, immunomodulatory, and anti-inflammatory effects of MSCs, rather than their differentiation. The aim of the present study was to answer the question of whether the presence of BM-MSCs in the hepatic microenvironment will lead to their differentiation to functional hepatocyte-like cells. The hepatic microenvironment was mimicked in vitro by culture for 21 d with liver extract. The resulted cells expressed marker genes of the hepatic lineage including AFP, CK18, and Hnf4a. Functionally, they were able to detoxify ammonia into urea, to store glycogen as observed by PAS staining, and to synthesize glucose from pyruvate/lactate mixture. Phenotypically, the expression of MSC surface markers CD90 and CD105 decreased by differentiation. This evidenced differentiation into hepatocyte-like cells was accompanied by a downregulation of the stem cell marker genes sox2 and Nanog and the cell cycle regulatory genes ANAPC2, CDC2, Cyclin A1, and ABL1. The present results suggest a clear differentiation of BM-MSCs into functional hepatocyte-like cells by the extracted liver microenvironment. This differentiation is confirmed by a decrease in the stemness and mitotic activities. Tracking transplanted BM-MSCs and proving their in vivo differentiation remains to be elucidated.
机译:骨髓衍生的间充质干细胞(BM-MSCs)代表肝脏或肝细胞移植治疗肝损伤的有趣替代品。许多研究报道,MSCs可以治疗几种疾病,包括肝损伤,只需注射到血液中,没有分化的证据。改善归因于MSCs的有机营养因子,低免疫原性,免疫调节和抗炎作用,而不是它们的分化。本研究的目的是回答肝脏微环境中BM-MSCs是否存在的问题将导致其与功能性肝细胞样细胞的分化。用肝提取物通过培养物体外模仿肝脏微量环境。所得细胞表达了包括AFP,CK18和HNF4a的肝脏谱系的标记基因。在功能上,它们能够将氨解毒到尿素中,以将糖原储存通过PAS染色观察,并从丙酮酸/乳酸混合物中合成葡萄糖。表型,MSC表面标志物CD90和CD105的表达通过分化降低。这证明了肝细胞样细胞的分化伴随干细胞标记基因Sox2和Nanog的下调,细胞周期调节基因AnaPC2,CDC2,细胞周期蛋白A1和ABL1。本结果表明,通过提取的肝脏微环境对BM-MSCs的函数状肝细胞样细胞的清晰分化。这种分化通过茎和有丝分裂活动的减少来证实。跟踪移植的BM-MSCs并证明其体内分化仍有待阐明。

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