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Smad3 signaling in the regenerating liver: Implications for the regulation of IL-6 expression

机译:再生肝脏中的Smad3信号传导:对IL-6表达调控的意义

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Liver regeneration is vital for graft survival and adequate organ function. Smad activation regulates hepatocyte proliferation and macrophage function. The aim of the current study was to evaluate the impact of Smad3 signaling during liver regeneration in the mouse. Male C57Bl/6 wild-type (wt) mice or mice deficient in Smad3 (Smad3-/-) were subjected to a 70% partial hepatectomy (pHx) or sham surgery and sacrificed 24, 42, or 48 h later. Tissue was analyzed for TGF-β signaling, the mitogenic cytokine response [i.e., tumor necrosis factor alpha, TNF-α; interleukin (IL)-6], and liver regeneration. Partial hepatectomy stimulated a strong regenerative response measured by proliferating cell nuclear antigen-positive hepatocytes 42 and 48 h post-pHx in conjunction with an increased expression of IL-6, TNF-α, and Smad2/3 phosphorylation 24 h post-pHx in both hepatocytes and nonparenchymal cells. Surprisingly, Smad3 deficiency led to reduced hepatocyte proliferation 42 h post-pHx which recovered by 48 h, a process that correlated with and was preceded by significant reductions in IL-6 expression and signal transducer and activator of transcription 3 phosphorylation, and cyclin D1 induction 24 h post-pHx. Loss of Smad3 signaling suppresses the expression of key mitogenic cytokines and delays hepatocellular regeneration. Therapies directed at finely regulating Smad3 activation early within the regenerating liver may prove useful in promoting liver cell proliferation and restoration of liver mass.
机译:肝再生对于移植物存活和适当的器官功能至关重要。 Smad激活调节肝细胞增殖和巨噬细胞功能。当前研究的目的是评估小鼠肝脏再生过程中Smad3信号的影响。对雄性C57Bl / 6野生型(wt)小鼠或Smad3缺陷小鼠(Smad3-/-)进行70%部分肝切除(pHx)或假手术,并在24、42或48小时后处死。分析组织中的TGF-β信号传导,有丝分裂细胞因子反应[即,肿瘤坏死因子α,TNF-α;和白介素(IL)-6]和肝脏再生。部分肝切除术通过在pHx后42和48 h增殖细胞核抗原阳性肝细胞并同时在pHx后24 h均增加IL-6,TNF-α和Smad2 / 3磷酸化的表达来测量强烈的再生反应。肝细胞和非实质细胞。出乎意料的是,Smad3缺乏症导致pHx后42 h肝细胞增殖减少,并在48 h内恢复,这一过程与IL-6表达,信号转导子和转录3磷酸化激活剂以及细胞周期蛋白D1诱导显着降低有关,并在此之前发生。 pHx后24小时。 Smad3信号的丢失抑制关键的有丝分裂细胞因子的表达,并延迟肝细胞再生。旨在在再生肝脏中早期精细调节Smad3活化的疗法可能有助于促进肝细胞增殖和肝脏肿块的恢复。

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