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过氧化氢酶失活的幼年和老年泽蛙的肺抗氧化酶、过氧化作用、谷胱甘肽系统及耗氧量

Lung antioxidant enzymes, peroxidation, glutathione system and oxygen consumption in catalase inactivated young and old Rana perezi frogs.

作者信息

Perez-Campo R, López-Torres M, Paton D, Sequeros E, Barja de Quiroga G

机构信息

Department of Animal Biology-II (Animal Physiology), Faculty of Biology, Complutense University, Madrid, Spain.

出版信息

Mech Ageing Dev. 1990 Dec;56(3):281-92. doi: 10.1016/0047-6374(90)90089-x.

Abstract

In the lung of Rana perezi no differences as a function of age have been found for any of the five major antioxidant enzymes, reduced (GSH), oxidized (GSSG) or glutathione ratio (GSSG/GSH), oxygen consumption (VO2) and for in vivo or in vitro stimulated tissue peroxidation. This frog shows a moderate rate of oxygen consumption and a life span substantially longer than that of rats and mice. Chronic (2.5 months) catalase depletion in the lung did not affect survival or any additional antioxidant enzyme, GSH, GSSG or in vivo and in vitro lung peroxidation in any age group. Only the GSSG/GSH ratio and the VO2 were elevated in catalase depleted old but not young frogs. After comparison of these results with those obtained in other animal species by other authors we suggest the possibility that decreases in antioxidant capacity in old age be restricted to species with high basal metabolic rates. Nevertheless, scavenging of oxygen radicals can not be 100% effective in any species. Thus, aging can still be due to the continuous presence of small concentrations of O2 radicals in the tissues throughout the life span in animals with either high or low metabolic rates.

摘要

在泽蛙的肺中,未发现五种主要抗氧化酶中的任何一种、还原型谷胱甘肽(GSH)、氧化型谷胱甘肽(GSSG)或谷胱甘肽比率(GSSG/GSH)、耗氧量(VO2)以及体内或体外刺激的组织过氧化作用随年龄而产生差异。这种蛙的耗氧速率适中,寿命比大鼠和小鼠长得多。肺中过氧化氢酶的慢性消耗(2.5个月)对任何年龄组的存活率或任何其他抗氧化酶、GSH、GSSG以及体内和体外肺过氧化作用均无影响。仅在过氧化氢酶耗尽的老年蛙而非幼年蛙中,GSSG/GSH比率和VO2升高。在将这些结果与其他作者在其他动物物种中获得的结果进行比较后,我们认为老年抗氧化能力下降可能仅限于基础代谢率高的物种。然而,在任何物种中,清除氧自由基都不可能100%有效。因此,无论是高代谢率还是低代谢率的动物,衰老仍可能是由于在整个寿命期间组织中持续存在低浓度的O2自由基所致。

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