首页> 外文期刊>Neurobiology of Aging: Experimental and Clinical Research >Regional responses in antioxidant system to exercise training and dietary vitamin E in aging rat brain.
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Regional responses in antioxidant system to exercise training and dietary vitamin E in aging rat brain.

机译:抗氧化剂系统对衰老大鼠大脑进行运动训练和饮食中维生素E的区域响应。

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摘要

We have evaluated the effect of exercise, Vitamin E and a combination of both on the antioxidant enzymes (AOEs)-superoxide dismutase (SOD), glutathione peroxidase (GSH-Px) and catalase (CAT) along with the products of lipid peroxidation (LP)-malondialdehyde (MDA) and lipofuscin-like auto fluorescent substances (LF-like AFS) in discrete brain regions of rats of 4 (young adults), 8 (old adults), 12 (middle-age) and 22 months (mos) old of age. Hippocampus (HC) showed greater increase in GSH-Px activity than cerebral cortex (CC) to exercise and Vitamin E and was irrespective of the age. A combination of both was effective in the CC of all age groups but not in the supplemented sedentary of 12- and 22-mo-olds. CAT activity increased significantly in the HC of supplemented and trained rats but not in the combination group of any age. SOD increased in both the regions of supplemented trainees. However, old were more benefited in terms of maximal elevation in the HC. Vitamin E reduced MDA content in both regions of adult. LF-like AFS decreased significantly in supplemented sedentary and trainees of all ages. Our results demonstrate that an age-related deficit in AOEs in the CC and HC can be overcome through Vitamin E plus exercise, and further suggests the rationale for looking at these markers of oxidative stress in several age-related neuronal diseases.
机译:我们评估了运动,维生素E和两者的组合对抗氧化酶(AOEs)-超氧化物歧化酶(SOD),谷胱甘肽过氧化物酶(GSH-Px)和过氧化氢酶(CAT)以及脂质过氧化产物(LP)的影响丙二醛(MDA)和脂褐素样自身荧光物质(LF样AFS)在4名(年轻),8名(老年),12名(中年)和22个月(mos)的大鼠的离散脑区域中年纪大了。海马(HC)的GSH-Px活性增加大于运动和维生素E的大脑皮层(CC),并且与年龄无关。两种方法的结合对所有年龄组的CC均有效,但对于12个月和22个月大的久坐者则无效。在补充和训练的大鼠的HC中,CAT活性显着增加,但在任何年龄的组合组中,CAT活性均未显着增加。两个受训学员区域的SOD均增加。但是,就HC的最大高度而言,老年人受益更大。维生素E降低了成年人两个区域的MDA含量。 LF样AFS在所有年龄段的久坐和受训学员中均显着下降。我们的结果表明,通过维生素E加运动可以克服CC和HC中AOE中与年龄有关的缺陷,并进一步提出了在几种与年龄有关的神经元疾病中研究这些氧化应激标志物的原理。

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