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Sevoflurane Pre-conditioning Ameliorates Diabetic Myocardial Ischemia/Reperfusion Injury Via Differential Regulation of p38 and ERK

机译:七氟醚预调节改善糖尿病心肌缺血/再灌注损伤通过P38和ERK的差分调节

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Diabetes mellitus (DM) significantly increases myocardial ischemia/reperfusion (MI/R) injury. During DM, cardioprotection induced by conventional pre-conditioning (PreCon) is decreased due to impaired AMP-activated protein kinase (AMPK) signaling. The current study investigated whether PreCon with inhaled anesthetic sevoflurane (SF-PreCon) remains cardioprotective during DM, and identified the involved mechanisms. Normal diet (ND) and high-fat diet (HFD)-induced DM mice were randomized into control and SF-PreCon (3 cycles of 15-minute period exposures to 2% sevoflurane) groups before MI/R. SF-PreCon markedly reduced MI/R injury in DM mice, as evidenced by improved cardiac function (increased LVEF and ±Dp/dt), decreased infarct size, and decreased apoptosis. To determine the relevant role of AMPK, the effect of SF-PreCon was determined in cardiac-specific AMPKα2 dominant negative expressing mice (AMPK-DN). SF-PreCon decreased MI/R injury in AMPK-DN mice. To explore the molecular mechanisms responsible for SF-PreCon mediated cardioprotection in DM mice, cell survival molecules were screened. Interestingly, in ND mice, SF-PreCon significantly reduced MI/R-induced activation of p38, a pro-death MAPK, without altering ERK and JNK. In DM and AMPK-DN mice, the inhibitory effect of SF-PreCon upon p38 activation was significantly blunted. However, SF-PreCon significantly increased phosphorylation of ERK1/2, a pro-survival MAPK in DM and AMPK-DN mice. We demonstrate that SF-PreCon protects the heart via AMPK-dependent inhibition of pro-death MAPK in ND mice. However, SF-PreCon exerts cardioprotective action via AMPK-independent activation of a pro-survival MAPK member in DM mice. SF-PreCon may be beneficial compared to conventional PreCon in diabetes or clinical scenarios in which AMPK signaling is impaired.
机译:糖尿病(DM)显着增加心肌缺血/再灌注(MI / R)损伤。在DM期间,由于AMP活化蛋白激酶(AMPK)信号传导受损,通过常规预调节(预调节)诱导的心脏保护。目前的研究研究了在DM期间是否具有吸入麻醉素脲素(SF-PRENON)的预先预防性,并确定了所涉及的机制。正常饮食(Nd)和高脂饮食(HFD)诱导的DM小鼠随机被随机化为在MI / R之前的对照和SF-预先预先(3个15分钟的曝光为2%七氟脲)组。 SF-precon在DM小鼠中显着降低了Mi / R损伤,如改善的心功能(增加的LVEF和±DP / DT)所证明,梗塞大小降低,细胞凋亡降低。为了确定AMPK的相关作用,SF-Premon的效果在心脏特异性AMPKα2中显性阴性表达小鼠(AMPK-DN)测定。 SF-precon在AMPK-DN小鼠中降低了MI / R损伤。为了探讨在DM小鼠中负责SF-Premen介导的心脏保护的分子机制,筛选细胞存活分子。有趣的是,在Nd小鼠中,SF-premon显着降低了Mi / R诱导的P38激活,一系列死亡MAPK,而不改变ERK和JNK。在DM和AMPK-DN小鼠中,SF-预先激活对P38激活的抑制作用显着钝化。然而,SF-预先升高显着增加了ERK1 / 2的磷酸化,DM和AMPK-DN小鼠的PRO-存活MAPK。我们证明SF-Premon通过依赖于Nd小鼠的逐次死亡Mapk的AMPK依赖性抑制来保护心脏。然而,SF-Premon通过在DM小鼠中通过AMPK-Survival Mapk构件的ampk-Surevival激活施加心脏保护作用。与患有AMPK信号传导损害的糖尿病或临床情景中的常规预调锋相比,SF-Precon可能是有益的。

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