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Differentiation of Mesenchymal Stem Cells into Hepatocyte-Like Cells by Autologous Serum after Radiofrequency Ablation of Liver Tumor

机译:射频消融肝肿瘤后自体血清诱导间充质干细胞向肝样细胞的分化

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Mesenchymal stem cells?(MSCs) have been shown to differentiate into liver cells in serum of part-resection liver, but it was hardly feasible in clinical use. Our studies revealed that MSCs could differentiate into hepatocyte-like cells in autologous serum after radiofrequency ablation (RFA) therapy of the liver tumor. Rabbits with liver tumor subsequently treated with RFA therapy. Serum was collected from those rabbits before RFA therapy and 72 hours after RFA therapy. MSCs were isolated from each rabbit’s bone marrow and cultured in DMEM medium containing the following different supplements: 30% fetal calf serum (FCS group), 30% rabbit autologous serum (AS group) or 30% autologous serum after RFA treatment of the liver tumor (ASRF group), observed by electron microscopy, flow cytometry, immunofluorescence. Seven days later, most of the spindle-shaped MSCs in the ASRF group transformed into polygon or round-shaped cells resembling hepatocytes, and the percentage in S/G2/M phase was higher than in the FCS or AS groups. Fourteen days later, slender microvilli, cell-cell junction structures and cholangiole emerged in the cells belonging to the ASRF group, the expression of albumin and CK18 was observed only in the differentiated cells from the ASRF group. These changes were not observed in the FCS group or the AS group. This study may provide a potential cell source and culture process for clinical application in liver injury treatment.
机译:间充质干细胞(MSCs)在部分切除肝脏的血清中可分化为肝细胞,但在临床上几乎不可行。我们的研究表明,经射频消融(RFA)治疗肝肿瘤后,MSCs可在自体血清中分化为肝细胞样细胞。患有肝肿瘤的兔子随后接受了RFA治疗。在RFA治疗前和RFA治疗后72小时从这些兔子收集血清。从每只兔的骨髓中分离出MSC,并在含有以下不同补充剂的DMEM培养基中培养:经RFA处理后30%胎牛血清(FCS组),30%兔自体血清(AS组)或30%自体血清。肝肿瘤(ASRF组),通过电子显微镜,流式细胞仪,免疫荧光观察。 7天后,ASRF组的大多数纺锤形MSC转化为类似于肝细胞的多边形或圆形细胞,S / G2 / M期的百分比高于FCS或AS组。 14天后,在属于ASRF组的细胞中出现了细长的微绒毛,细胞-细胞连接结构和胆管,仅在来自ASRF组的分化细胞中观察到白蛋白和CK18的表达。在FCS组或AS组中未观察到这些变化。这项研究可能为肝损伤治疗的临床应用提供潜在的细胞来源和培养过程。

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