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Hydrogen sulphide: A novel physiological inhibitor of LDL atherogenic modification by HOC1

机译:硫化氢:HOC1对LDL动脉粥样硬化修饰的新型生理抑制剂

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摘要

Hypochlorite (HOCl), the product of the activated myeloperoxidase/ H2O2/chloride (MPO/H2O2/Cl-2) system is favored as a trigger of LDL modifications, which may play a pivotal role in early atherogenesis. As HOCl has been shown to react with thiol-containing compounds like glutathione and N-acetylcysteine protecting LDL from HOCl modification, we have tested the ability of hydrogen sulfide (H2S) - which has recently been identified as an endogenous vasorelaxant - to counteract the action of HOCl on LDL. The results show that H2S could inhibit the atherogenic modification of LDL induced by HOCl, as measured by apolipoprotein alterations. Beside its HOCl scavenging potential, H2S was found to inhibit MPO ( one may speculate that this occurs via H2S/heme interaction) and destroy H2O2. Thus, H2S may interfere with the reactants and reaction products of the activated MPO/H2O2/Cl-2 system. Our data add to the evidence of an anti-atherosclerotic action of this gasotransmitter taking the role of HOCl in the atherogenic modification of LDL into account.
机译:次氯酸盐(HOCl)是活化的髓过氧化物酶/ H2O2 /氯化物(MPO / H2O2 / Cl-2)系统的产物,被认为是LDL修饰的触发因素,可能在早期动脉粥样硬化的发生中起关键作用。由于已显示HOCl与含硫醇的化合物(如谷胱甘肽和N-乙酰半胱氨酸)反应,从而保护LDL免受HOCl修饰的影响,因此我们测试了硫化氢(H2S)(最近已被确定为内源性血管舒张剂)抵抗这种作用的能力。对低密度脂蛋白的HOCl。结果表明,通过载脂蛋白改变,H2S可以抑制HOCl诱导的LDL的动脉粥样硬化修饰。除了其清除HOCl的潜力外,还发现H2S抑制MPO(可能推测这是通过H2S /血红素相互作用而发生)并破坏H2O2。因此,H2S可能会干扰活化的MPO / H2O2 / Cl-2系统的反应物和反应产物。我们的数据增加了该气体传递递质的抗动脉粥样硬化作用的证据,其中考虑了HOCl在LDL的动脉粥样化修饰中的作用。

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