INTERACTION BETWEEN ALLOPURINOL AND COPPER - POSSIBLE ROLE IN MYOCARDIAL PROTECTION

被引:25
作者
MALKIEL, S
HAREL, R
SCHWALB, H
URETZKY, G
BORMAN, JB
CHEVION, M
机构
[1] HEBREW UNIV JERUSALEM, HADASSAH MED SCH, DEPT CELLULAR BIOCHEM, POB 1172, IL-91010 JERUSALEM, ISRAEL
[2] HEBREW UNIV JERUSALEM, HADASSAH SCH DENT MED, DEPT CELLULAR BIOCHEM, JERUSALEM, ISRAEL
[3] HADASSAH UNIV HOSP, JOSEPH LUNENFELD CARDIAC SURG RES CTR, JERUSALEM, ISRAEL
来源
FREE RADICAL RESEARCH COMMUNICATIONS | 1993年 / 18卷 / 01期
关键词
ALLOPURINOL; COPPER; CHELATION; ASCORBATE; DNA;
D O I
10.3109/10715769309149909
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
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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页码:7 / 15
页数:9
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