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The antioxidant compound tert-butylhydroquinone activates Akt in myocardium suppresses apoptosis and ameliorates pressure overload-induced cardiac dysfunction

机译:抗氧化剂叔丁基对苯二酚激活心肌中的Akt抑制细胞凋亡并改善压力超负荷引起的心脏功能障碍

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摘要

Tert-butylhydroquinone (TBHQ) is an antioxidant compound which shows multiple cytoprotective actions. We evaluated the effects of TBHQ on pathological cardiac remodeling and dysfunction induced by chronic overload. Pressure overload was created by transverse aortic constriction (TAC) in male C57BL/6 mice. TBHQ was incorporated in the diet and administered for 4 weeks. TBHQ treatment prevented left ventricular dilatation and cardiac dysfunction induced by TAC, and decreased the prevalence of myocardial apoptosis. The beneficial effects of TBHQ were associated with an increase in Akt activation, but not related to activations of Nrf2 or AMP-activated protein kinase. TBHQ-induced Akt activation was accompanied by increased phosphorylation of Bad, glycogen synthase kinase-3β (GSK-3β) and mammalian target of rapamycin (mTOR). Mechanistically, we showed that in cultured H9c2 cells and primary cardiac myocytes, TBHQ stimulated Akt phosphorylation and suppressed oxidant-induced apoptosis; this effect was abolished by wortmannin or an Akt inhibitor. Blockade of the Akt pathway in vivo accelerated cardiac dysfunction, and abrogated the protective effects of TBHQ. TBHQ also reduced the reactive aldehyde production and protein carbonylation in stressed myocardium. We suggest that TBHQ treatment may represent a novel strategy for timely activation of the cytoprotective Akt pathway in stressed myocardium.
机译:叔丁基对苯二酚(TBHQ)是一种抗氧化剂,具有多种细胞保护作用。我们评估了TBHQ对慢性超负荷引起的病理性心脏重塑和功能障碍的影响。雄性C57BL / 6小鼠的横向主动脉缩窄(TAC)造成压力超负荷。饮食中加入TBHQ,并持续4周。 TBHQ治疗可预防TAC引起的左心室扩张和心脏功能障碍,并降低心肌细胞凋亡的发生率。 TBHQ的有益作用与Akt激活的增加有关,但与Nrf2或AMP激活的蛋白激酶的激活无关。 TBHQ诱导的Akt激活伴随Bad,糖原合酶激酶3β(GSK-3β)和雷帕霉素哺乳动物靶点(mTOR)的磷酸化增加。从机理上讲,我们发现在培养的H9c2细胞和原代心肌细胞中,TBHQ刺激Akt磷酸化并抑制氧化剂诱导的细胞凋亡。渥曼青霉素或Akt抑制剂可消除这种作用。体内对Akt途径的阻断会加速心脏功能障碍,并取消TBHQ的保护作用。 TBHQ还减少了应激心肌中反应性醛的产生和蛋白质羰基化。我们建议TBHQ治疗可能代表一种及时激活应激心肌细胞保护性Akt途径的新策略。

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