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抗氧化微量元素对心脏组织氧化应激反应的影响。

Effect of antioxidant trace elements on the response of cardiac tissue to oxidative stress.

作者信息

Barandier C, Tanguy S, Pucheu S, Boucher F, De Leiris J

机构信息

Groupe de Physiopathologie Cellulaire Cardiaque, Université Joseph Fourier, Grenoble, France.

出版信息

Ann N Y Acad Sci. 1999 Jun 30;874:138-55. doi: 10.1111/j.1749-6632.1999.tb09232.x.

Abstract

It is now well established that several trace elements, because of their involvement in the catalytic activity and spatial conformation of antioxidant enzymes, may contribute to the prevention of oxidative stress such as occurs upon reperfusion of ischemic tissue. The aim of this paper is (1) to review the role of these trace elements (Cu, Mn, Se, and Zn) in antioxidant cellular defenses in the course of post-ischemic reperfusion of cardiac tissue, (2) to provide experimental data suggesting that variations in trace element dietary intake may modulate the vulnerability of cardiac tissue to ischemia-reperfusion, and (3) to discuss in more detail the effect of Mn ions, which seem to play a special protective role against reperfusion injury. Some results obtained from experiments in animal models of myocardial reperfusion have shown that the dietary intake of such trace elements can modulate cardiac activity of antioxidant enzymes and, consequently, the degree of reperfusion damage. In addition, experimental data on the protective effects of an acute treatment with Mn are presented. Finally, experimental evidence on the protective role of salen-Mn complexes, which exhibit catalytic SOD- and CAT-like activities against reperfusion injury, are described. These complexes should be of considerable interest in clinical conditions.

摘要

现已充分证实,几种微量元素由于参与抗氧化酶的催化活性和空间构象,可能有助于预防氧化应激,比如缺血组织再灌注时发生的氧化应激。本文的目的是:(1)综述这些微量元素(铜、锰、硒和锌)在心脏组织缺血后再灌注过程中对细胞抗氧化防御的作用;(2)提供实验数据,表明微量元素饮食摄入量的变化可能调节心脏组织对缺血再灌注的易损性;(3)更详细地讨论锰离子的作用,锰离子似乎对再灌注损伤起着特殊的保护作用。从心肌再灌注动物模型实验中获得的一些结果表明,这些微量元素的饮食摄入量可以调节心脏抗氧化酶的活性,从而调节再灌注损伤的程度。此外,还介绍了关于锰急性治疗保护作用的实验数据。最后,描述了关于salen-锰配合物保护作用的实验证据,该配合物对再灌注损伤表现出类似超氧化物歧化酶和过氧化氢酶的催化活性。这些配合物在临床情况下应具有相当大的意义。

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