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首页> 外文期刊>Molecular Biology Reports >Adenosine postconditioning protects against myocardial ischemia–reperfusion injury though modulate production of TNF-α and prevents activation of transcription factor NF-kappaB
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Adenosine postconditioning protects against myocardial ischemia–reperfusion injury though modulate production of TNF-α and prevents activation of transcription factor NF-kappaB

机译:腺苷后处理通过调节TNF-α的产生并防止转录因子NF-kappaB的活化,防止心肌缺血-再灌注损伤

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Adenosine serves a number of important physiological roles in the body, which is the most widely studied endogenous signal molecules, and the underlying mechanism responsible for such cardioprotection needs more understood, particularly adenosine postconditioning in myocardial ischemia/reperfusion model. In the present study we performed to investigate the inflammatory response of adenosine postconditioning on the cardiac TNF-α expression and NF-κB activation. Eighteen rats were randomly divided into 4 groups: (1) Group A: sham operation group; (2) Group B: ischemia/reperfusion group; (3) Group C: postconditioned groups, four cycles of 30-s reperfusion/30-s occlusion were started immediately after release of the index ischemia (n = 6 each); (4) Group D: adenosine was infused 40 μg kg−1 min−1 5 min before the onset of reperfusion without subsequent postconditioning cycles. Hearts were removed at the termination of experiments, which were preserved in frozen tube and stored at −70°C refrigerator for Measurement of malonyldialdehyde (MDA), activities of the NF-κB and TNF-α and IL-10 assay. The results of this study indicate that adenosine postconditioning immediately after myocardial ischemia can reduce the myocardial tissue MDA generation and infarct size, improve cardiac function, which is coincidence with conventional postconditioning. The study also found that modulation of NF-κB activation and accordingly reduces inflammatory factor TNF-α expression may be a molecular mechanism of adenosine down-regulation of inflammatory cytokine production.
机译:腺苷在体内起着许多重要的生理作用,这是研究最广泛的内源性信号分子,而负责这种心脏保护作用的潜在机制需要进一步了解,尤其是心肌缺血/再灌注模型中的腺苷后处理。在本研究中,我们进行了研究以研究腺苷后处理对心脏TNF-α表达和NF-κB活化的炎症反应。 18只大鼠随机分为4组:(1)A组:假手术组; (2)B组:缺血/再灌注组; (3)C组:后适应组,指数缺血释放后立即开始四个循环的30-s再灌注/ 30-s闭塞(每个n = 6); (4)D组:在再灌注开始前5分钟输注40μgkg -1 min -1 腺苷,无随后的后处理周期。在实验结束时取出心脏,将心脏保存在冷冻管中,并保存在-70°C的冰箱中,以测量丙二酰二醛(MDA),NF-κB和TNF-α的活性以及IL-10测定。这项研究的结果表明,心肌缺血后立即进行腺苷后处理可以减少心肌组织MDA的生成和梗塞面积,改善心脏功能,这与常规后处理相吻合。研究还发现,调节NF-κB活化并相应降低炎症因子TNF-α的表达可能是腺苷下调炎症细胞因子产生的分子机制。

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