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Hepatic retinoid stores are required for normal liver regeneration

机译:正常肝再生需要肝类维生素A存储

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摘要

Preliminary studies of liver regeneration induced by partial hepatectomy (PHE) identified a substantial depletion of hepatic retinoid stores, by greater than 70%, in regenerating livers of wild-type C57Bl/6J mice. To understand this, we compared responses of wild-type and lecithin:retinol acyltransferase (Lrat)-deficient mice, which totally lack hepatic retinoid stores, to PHE. The Lrat-deficient livers showed delayed regeneration in the first 24 h after PHE. At 12 h after PHE, we observed significantly less mRNA expression for growth factors and cytokines implicated in regulating the priming phase of liver regeneration, specifically for Hgf and Tgfα, but not Tgfβ. Compared with wild-type mice, the changes in mRNA levels for p21 and cyclins E1, B1, and A2 mRNAs and for hepatocellular BrdU incorporation and mitoses were delayed (i.e., shifted to later times) in regenerating Lrat−/− livers. Concentrations of all-trans-retinoic acid were significantly lower in the livers of Lrat−/− mice following PHE, and this was accompanied by diminished expression of known retinoid-responsive genes. At later times after PHE, the rate of liver weight restoration for Lrat−/− mice was parallel to that of wild-type mice, although additional biochemical differences were observed. Thus, hepatic retinoid stores are required for maintaining expression of signaling molecules that regulate cell proliferation and differentiation immediately after hepatic injury, accounting for the delayed restoration of liver mass in Lrat−/− mice.
机译:通过部分肝切除术(PHE)诱导的肝再生的初步研究发现,野生型C57Bl / 6J小鼠的再生肝中肝类维生素A储备显着减少了70%以上。为了理解这一点,我们将野生型和卵磷脂:视黄醇酰基转移酶(Lrat)缺陷型小鼠(完全缺乏肝类维生素A存储)对PHE的反应进行了比较。 LHE缺乏的肝脏在PHE后的最初24小时内显示出延迟的再生。在PHE后12小时,我们观察到与调节肝脏再生的启动阶段有关的生长因子和细胞因子的mRNA表达明显减少,特别是对于Hgf和Tgfα,但不是Tgfβ。与野生型小鼠相比,p21和细胞周期蛋白E1,B1和A2 mRNA的mRNA水平变化以及肝细胞BrdU掺入和有丝分裂在再生Lrat -/-< / sup>肝脏。 PHE后,Lrat -/-小鼠的肝脏中全反式维甲酸的浓度显着降低,并且伴有已知类维生素A反应基因的表达减少。在PHE之后,Lrat -/-小鼠的肝脏重量恢复速率与野生型小鼠相似,尽管观察到其他生化差异。因此,肝类维生素A储存是维持肝损伤后立即调节细胞增殖和分化的信号分子表达所必需的,这解释了Lrat -/-小鼠肝脏质量的延迟恢复。

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