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Hypoxic Conditioned Medium From Human Adipose-Derived Stem Cells Promotes Mouse Liver Regeneration Through JAK/STAT3 Signaling

机译:来自人类脂肪干细胞的低氧条件培养基通过JAK / STAT3信号促进小鼠肝脏再生

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Adipose-derived stem cells (ASCs) mainly exert their function by secreting materials that are collectively termed the secretome. Despite recent attention to the secretome as an alternative to stem cell therapy, the culture conditions for generating optimal secretome contents have not been determined. Therefore, we investigated the role of hypoxic-conditioned media (HCM) from ASCs. Normoxic-conditioned media (NCM) and HCM were obtained after culturing ASCs in 20% O-2 or 1% O-2 for 24 hours, respectively. Subsequently, partially hepatectomized mice were infused with saline, control medium, NCM, or HCM, and then sera and liver specimens were obtained for analyses. Hypoxia (1% O-2) significantly increased mRNA expression of mediators from ASCs, including interleukin-6 (IL-6), tumor necrosis factor alpha (TNF-alpha), hepatocyte growth factor (HGF), and vascular endothelial growth factor (VEGF). HCM infusion significantly increased the number of Ki67-positive cells in the liver (p < .05). HCM infusion significantly increased phospho-signal transducer and activator of transcription 3 (STAT3) and decreased suppressor of cytokine signaling 3 (SOCS3) expression in the liver (p < .05). To determine the role of IL-6 in liver regeneration, we then performed IL-6 RNA interference study. Conditioned media (CM) obtained from ASCs, which were transfected with either sift-6 or siControl, were administered to partially hepatectomized mice. The silL-6 CM groups exhibited lower liver proliferation (Ki67-positive cells) and markers of regeneration (protein expression of proliferating cell nuclear antigen, p-STAT3, HGF, and VEGF and liver weights) than the siControl CM groups (p < .05). Taken together, hypoxic preconditioning of ASCs increased expression of mediators promoting anti-inflammatory and regenerative responses. The liver regenerative effects of HCM appear to be mediated by persistent and uninhibited expression of STAT3 in the liver, which results from decreased expression of SOCS3.
机译:脂肪干细胞(ASC)主要通过分泌被统称为分泌组的物质来发挥其功能。尽管最近关注分泌蛋白组作为干细胞疗法的替代方法,但尚未确定用于产生最佳分泌蛋白含量的培养条件。因此,我们调查了来自ASC的低氧条件培养基(HCM)的作用。将ASC分别在20%O-2或1%O-2中培养24小时后,获得常氧条件培养基(NCM)和HCM。随后,向部分肝切除的小鼠输注盐水,对照培养基,NCM或HCM,然后获得血清和肝脏标本进行分析。低氧(1%O-2)显着增加了ASC介体的mRNA表达,包括白介素6(IL-6),肿瘤坏死因子α(TNF-alpha),肝细胞生长因子(HGF)和血管内皮生长因子( VEGF)。 HCM输注显着增加了肝脏Ki67阳性细胞的数量(p <.05)。 HCM输注显着增加了磷酸信号转导和转录激活因子3(STAT3),并降低了肝脏中细胞因子信号传导3(SOCS3)表达的抑制因子(p <.05)。为了确定IL-6在肝再生中的作用,我们随后进行了IL-6 RNA干扰研究。将获自ASC的条件培养基(CM)(已用sift-6或siControl转染)施用于部分肝切除的小鼠。与siControl CM组相比,silL-6 CM组显示出较低的肝增殖(Ki67阳性细胞)和再生标记(增殖细胞核抗原,p-STAT3,HGF和VEGF的蛋白表达以及肝重量)(p <。 05)。总之,ASC的低氧预处理增加了促进抗炎和再生反应的介质的表达。 HCM的肝脏再生作用似乎由肝脏中STAT3的持续且不受抑制的表达介导,这是由于SOCS3的表达减少所致。

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