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首页> 外文期刊>Brain research >Pre-weaning undernutrition alters the expression levels of reactive oxygen species enzymes but not their activity levels or lipid peroxidation in the rat brain.
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Pre-weaning undernutrition alters the expression levels of reactive oxygen species enzymes but not their activity levels or lipid peroxidation in the rat brain.

机译:断奶前营养不良会改变活性氧酶的表达水平,但不会改变其活性水平或大鼠脑内脂质过氧化作用。

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摘要

It has been hypothesised that the increased life span commonly observed in rodents that have had their diet restricted after weaning may be related to its effects on the anti-oxidant defence systems. However, undernutrition during the gestation and pre-weaning period is known to have long-term deleterious effects on a rodent's growth and development, and it has been suggested that this may reduce their life span. We have now examined some of the anti-oxidant defence system in rats that have been undernourished from conception until 21 postnatal days-of-age, followed in some cases by a period of nutritional rehabilitation until 62 days of age. We found that such undernutrition could modulate the mRNA expression of Cu/ZnSOD and catalase in some brain regions. However, only catalase showed any undernutrition-induced change of enzyme activity level. There was some evidence that undernourished (but not control) rats had an age-related increase in the level of lipid peroxidation between 21 and 62 days of age, although the group x age interaction was not statistically significant. There was no significant change in the level of reduced glutathione induced by the pre-weaning period of undernutrition. If ROS and the extent of oxidative damage are truly implicated in the determination of life span, our results indicate that this is unlikely to be markedly affected by the relatively small changes we have observed in the anti-oxidant defence systems induced by undernutrition of rats from conception until weaning.
机译:假设断奶后饮食受到限制的啮齿动物通常会发现其寿命的延长可能与其对抗氧化防御系统的影响有关。然而,已知在妊娠和断奶前营养不足会对啮齿动物的生长和发育产生长期有害影响,并且有人提出这可能会缩短它们的寿命。现在,我们已经研究了从受孕到出生后21天为止营养不良的大鼠中的一些抗氧化防御系统,在某些情况下还进行了营养恢复直至62天龄。我们发现这种营养不良可以调节某些大脑区域中Cu / ZnSOD和过氧化氢酶的mRNA表达。但是,只有过氧化氢酶显示出营养不足引起的酶活性水平的变化。有证据表明,营养不足(而非对照组)的大鼠在21至62天龄之间脂质过氧化水平与年龄相关,但组x年龄间的交互作用没有统计学意义。断奶前营养不良时期引起的谷胱甘肽减少水平没有明显变化。如果ROS和氧化损伤的程度确实与寿命的确定有关,那么我们的结果表明,我们观察到的营养不足导致的抗氧化防御系统中相对较小的变化不太可能显着影响这一变化。直到断奶为止。

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