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IGF-1 Expression in Infarcted Myocardium and MGF E Peptide Actions in Rat Cardiomyocytes in Vitro

机译:大鼠心肌梗死心肌中IGF-1的表达和MGF E肽的作用

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摘要

Insulinlike growth factor-1 (IGF-1) expression is implicated in myocardial pathophysiology, and two IGF-1 mRNA splice variants have been detected in rodents, IGF-1Ea and mechano-growth factor (MGF). We investigated the expression pattern of IGF-1 gene transcripts in rat myocardium from 1 h up to 8 wks after myocardial infarction induced by left anterior descending coronary artery ligation. In addition, we characterized IGF-1 and MGF E peptide action and their respective signaling in H9C2 myocardial-like cells in vitro. IGF-1Ea and MGF expression were significantly increased, both at transcriptional and translational levels, during the late postinfarction period (4 and 8 wks) in infarcted rat myocardium. Measurements of serum IGF-1 levels in infarcted rats were initially decreased (24 h up to 1 wk) but remained unaltered throughout the late experimental phase (4 to 8 wks) compared with sham-operated rats. Furthermore, specific anti–IGF-1R neutralizing antibody failed to block the synthetic MGF E peptide action, whereas it completely blocked IGF-1 action on the proliferation of H9C2 cells. Moreover, this synthetic MGF E peptide did not activate Akt phosphorylation, whereas it activated ERK1/2 in H9C2 rat myocardial cells. These data support the role of IGF-1 expression in the myocardial repair process and suggest that synthetic MGF E peptide actions may be mediated via an IGF-1R independent pathway in rat myocardial cells, as suggested by our in vitro experiments.
机译:胰岛素样生长因子-1(IGF-1)的表达与心肌病理生理有关,并且在啮齿动物中检测到两个IGF-1 mRNA剪接变体,即IGF-1Ea和机械生长因子(MGF)。我们调查了左前降支结扎所致心肌梗塞后1 h至8 wks大鼠IGF-1基因转录物在大鼠心肌中的表达模式。此外,我们表征了H9C2心肌样细胞中IGF-1和MGF E肽的作用及其各自的信号传导。在梗死后大鼠心肌梗死后期(4周和8周),IGF-1Ea和MGF的表达在转录和翻译水平上均显着增加。与假手术大鼠相比,梗死大鼠血清IGF-1水平的测定值最初有所降低(24 h至1 wk),但在整个实验后期(4至8 wks)均保持不变。此外,特异性抗IGF-1R中和抗体未能阻止合成的MGF E肽的作用,而完全阻止了IGF-1对H9C2细胞增殖的作用。此外,这种合成的MGF E肽不激活Akt磷酸化,而在H9C2大鼠心肌细胞中激活ERK1 / 2。这些数据支持了IGF-1表达在心肌修复过程中的作用,并表明合成的MGF E肽可能通过大鼠心肌细胞中的IGF-1R独立途径介导,如我们的体外实验所暗示的。

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