正常和抗氧化剂补充大鼠对下坡跑的氧化应激反应:血液和骨骼肌的变化。

Tongjian You, Allan H Goldfarb, Richard J Bloomer, Linh Nguyen, Xin Sha, Michael J McKenzie
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引用次数: 38

摘要

本研究的目的是确定正常和抗氧化剂补充大鼠在下坡跑后血液和骨骼肌中氧化应激生物标志物的变化是否相似。66只雄性Sprague-Dawley大鼠分别饲喂正常大鼠日粮或日粮+抗氧化剂(2000 mg维生素C + 1000 IU维生素E/kg日粮)2周。运动后的大鼠在啮齿类动物跑步机上以16米/分钟的速度在-16度梯度下跑90分钟。大鼠分别在休息、立即、运动后2小时或48小时处死。测定血液、股外侧肌(白色快速抽搐肌)、股中间肌(红色快速抽搐肌)和比目鱼肌(慢抽搐肌)中丙二醛(MDA)和蛋白羰基(PC)浓度和谷胱甘肽状态。下坡后2小时血浆、股中间肌和比目鱼肌PC明显升高(p < 0.05),运动后其他时间未见变化。添加抗氧化剂可显著降低股中间肌和比目鱼肌PC浓度(p < 0.05)。血液和肌肉中的丙二醛和谷胱甘肽状态不受下坡跑步或抗氧化治疗的影响。与骨骼肌相比,血液中PC和MDA的浓度较低,氧化谷胱甘肽的浓度则相反;然而,运动后的反应模式是相似的。这些数据表明(a)雄性大鼠下坡跑步后短暂升高的是PC,而不是MDA或氧化谷胱甘肽;(b)运动后血浆、股中间肌和比目鱼肌PC升高;(c)抗氧化治疗可减弱股中间肌和比目鱼肌的PC;(d)虽然血液和各种骨骼肌的氧化应激生物标志物浓度不同,但运动后的反应模式是相似的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Oxidative stress response in normal and antioxidant supplemented rats to a downhill run: changes in blood and skeletal muscles.

The purpose of this study was to determine if changes in oxidative stress biomarkers in blood and skeletal muscles are similar in normal and antioxidant supplemented rats after a downhill run. Sixty-six male Sprague-Dawley rats were pretreated with a normal rat diet or diet + antioxidants (2,000 mg vitamin C + 1,000 IU vitamin E/kg diet) for 2 weeks. Exercised rats ran 90 min on a rodent treadmill at a speed of 16 m/min at -16 degrees grade. Rats were sacrificed either at rest, immediately, 2 hrs, or 48 hrs postexercise. Malondialdehyde (MDA) and protein carbonyl (PC) concentrations and glutathione status in blood, vastus lateralis (white fast-twitch), vastus intermedius (red fast-twitch), and soleus (slow-twitch) muscles were determined. A significant increase from rest in PC occurred in plasma, vastus intermedius and soleus muscle 2 hrs after the downhill run (p < 0.05), with no changes observed at any other times postexercise. Antioxidant supplementation significantly decreased PC concentrations in both vastus intermedius and soleus muscles at all times combined (p < 0.05). MDA and glutathione status in blood and muscles were unaffected by either the downhill run or antioxidant treatment. For PC and MDA, the concentrations were lower in blood as compared to skeletal muscle, with the opposite finding for oxidized glutathione; however, the pattern of response postexercise was similar. These data indicate that (a) PC, but not MDA or oxidized glutathione, is elevated transiently following downhill running in male rats; (b) the elevation in PC postexercise occurs in plasma, vastus intermedius, and soleus muscles; (c) antioxidant therapy can attenuate PC in vastus intermedius, and soleus muscles; and (d) while the concentrations of oxidative stress biomarkers differ between blood and the various skeletal muscles, the pattern of response postexercise is similar.

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