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Nrf2-dependent upregulation of antioxidative enzymes: A novel pathway for hypoxic preconditioning-mediated delayed cardioprotection

机译:抗氧化酶的NRF2依赖性上调:一种新的缺氧预处理介导的延迟心脏保护途径

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It has been well demonstrated that hypoxic preconditioning (HPC) can attenuate hypoxia/reoxygenation (H/R)-induced oxidant stress and elicit delayed cardioprotection by upregulating the expression of multiple antioxidative enzymes such as heme oxygenase-1 (HO-1), manganese superoxide dismutase (MnSOD) and so on. However, the underlying mechanisms of HPC-induced upregulation of antioxidative enzymes are not fully understood. Nuclear factor erythroid 2-related factor 2 (Nrf2) is an essential transcription factor that regulates expression of several antioxidant genes via binding to the antioxidant response element (ARE) and plays a crucial role in cellular defence against oxidative stress. Here, we wondered whether activation of the Nrf2-ARE pathway is responsible for the induction of antioxidative enzymes by HPC and contributes to the delayed cardioprotection of HPC. Cellular model of HPC from rat heart-derived H9c2 cells was induced 24 h prior to H/R. The results showed that HPC efficiently attenuated H/R-induced viability loss and lactate dehydrogenase leakage. In addition, HPC increased nuclear translocation and ARE binding of Nrf2 during the late phase, upregulated the expression of antioxidative enzymes (HO-1 and MnSOD), inhibited H/R-induced oxidant stress. However, when Nrf2 was specifically knocked down by siRNA, the induction of antioxidative enzymes by HPC was completely abolished and, as a result, the inhibitory effect of HPC on H/R-induced oxidant stress was reversed, and the delayed cardioprotection induced by HPC was also abolished. These results suggest that HPC upregulates antioxidative enzymes through activating the Nrf2-ARE pathway and confers delayed cardioprotection against H/R-induced oxidative stress.
机译:据证明,缺氧预处理(HPC)可以通过上调多种抗氧化酶如血红素氧酶-1(HO-1),锰的表达,缺氧/释放(HPC)引起氧化剂应激和引发延迟心脏保护和引发延迟心脏保护。超氧化物歧化酶(MNSOD)等。然而,HPC诱导的抗氧化酶的潜在机制尚不完全理解。核因子红细胞2相关因子2(NRF2)是通过与抗氧化反应元素(是)结合来调节几种抗氧化基因的表达的基本转录因子,并对氧化应激的细胞防御起着至关重要的作用。在这里,我们想知道NRF2的活化是否有途径对HPC诱导抗氧化酶并有助于HPC的延迟心脏保护。在H / R之前诱导来自大鼠心脏衍生H9C2细胞HPC的HPC细胞模型。结果表明,HPC有效地减弱了H / R诱导的活力损失和乳酸脱氢酶泄漏。此外,HPC增加核转位并在晚期期间是NRF2的结合,上调抗氧化酶(HO-1和MNSOD)的表达,抑制了H / R诱导的氧化剂应激。然而,当NRF2由siRNA特异性敲击时,通过HPC抗氧化酶的诱导完全废除,结果,HPC对H / R诱导的氧化剂应激的抑制作用逆转,HPC诱导的延迟心脏保护作用也被废除了。这些结果表明,HPC通过激活NRF2 - 是途径来提动抗氧化酶,并赋予H / R诱导的氧化应激的延迟心脏保护。

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