别嘌呤醇与铜的相互作用:在心肌保护中的可能作用。

S Malkiel, R Har-el, H Schwalb, G Uretzky, J B Borman, M Chevion
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引用次数: 26

摘要

别嘌呤醇是一种有效的黄嘌呤氧化酶抑制剂,已知可以有效地保护心脏免受心脏搭桥手术患者的损害。关于黄嘌呤氧化酶在人类心脏中的存在仍然存在歧义。因此,别嘌呤醇保护作用的机制尚不清楚。过渡金属离子,如铁和铜,可以参与单电子反应并介导氧源自由基的形成。本文研究了别嘌呤醇与Cu(II)的相互作用。分光光度研究表明,别嘌呤醇(0 ~ 0.8 mM)与Cu(II)离子(0 ~ 0.8 mM)形成1:1的络合物,在364 nm处有特定的吸光度峰。此外,在别嘌呤醇的存在下,铜催化抗坏血酸有氧氧化的速率常数(k)显著降低(从0.068 min-1降至0.014 min-1)。别嘌呤醇大大减少了铜介导和抗坏血酸驱动的DNA断裂。分光光度测定没有表明铁离子和别嘌呤醇之间有特定的相互作用。这表明别嘌呤醇在心脏再灌注过程中的有益作用可能源于其与铜的螯合作用,产生低氧化还原活性的复合物。
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Interaction between allopurinol and copper: possible role in myocardial protection.

Allopurinol, a potent inhibitor of xanthine oxidase, is known to effectively protect the heart against damage in patients undergoing cardiac bypass surgery. There is still an ambiguity concerning the presence of xanthine oxidase in the human heart. Thus, the mechanism underlying the protective effect of allopurinol is unclear. Transition metal ions, such as iron and copper, can participate in single-electron reactions and mediate the formation of oxygen-derived free radicals. In this study the interaction between allopurinol and Cu(II) was investigated. Spectrophotometric investigation shows that allopurinol (0-0.8 mM) form a 1:1 complex with Cu(II) ions (0-0.8 mM) with a specific absorbance peak at 364 nm. Also, the rate constant (k) for the copper-catalyzed aerobic oxidation of ascorbate was markedly decreased in the presence of allopurinol (from 0.068 min-1 to 0.014 min-1). Allopurinol substantially reduced the copper-mediated and ascorbate-driven DNA breakage. Spectrophotometric measurements did not indicate a specific interaction between iron ions and allopurinol. It is suggested that the beneficial effects of allopurinol during reperfusion of the heart could stem from its chelation of copper, yielding a complex with low redox activity.

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