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首页> 外文期刊>Respiratory physiology & neurobiology >Oxidative stress time course in the rat diaphragm after freezing-thawing cycles.
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Oxidative stress time course in the rat diaphragm after freezing-thawing cycles.

机译:冻融循环后大鼠隔膜的氧化应激时程。

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Hyperthermia was shown to induce oxidative stress by uncoupling mitochondrial respiratory chain and to reduce superoxide dismutase (SOD) activity in muscles. Reactive carbonyl groups, malondialdehyde (MDA)-protein adducts, 3-nitrotyrosine immunoreactivity, Mn-SOD, and catalase were detected using immunoblotting in rat diaphragm specimens and homogenates thawed at room temperature (after previous storage at -80 degrees C) for 5, 15, 30, and 60min, and 3, 6, and 24h to be subsequently and immediately stored at -80 degrees C. Mn-SOD activity was also measured in all muscles. Both total protein carbonylation (reactive carbonyl groups and MDA-protein adducts) and nitration were significantly increased over time, reaching their peaks in the diaphragms of the 60- and 15-min groups, respectively. Mn-SOD expression and activity were significantly reduced over time, while catalase expression showed no significant variation. Protein oxidation was significantly increased in the rat diaphragms exposed to freezing-thawing cycles of different time lengths, while Mn-SOD was substantially reduced in all muscles.
机译:研究表明,高热能通过解偶联线粒体呼吸链来诱导氧化应激,并降低肌肉中的超氧化物歧化酶(SOD)活性。使用免疫印迹法在大鼠diaphragm肌标本中检测到反应性羰基,丙二醛(MDA)-蛋白加合物,3-硝基酪氨酸免疫反应性,Mn-SOD和过氧化氢酶,并在室温下(先前在-80摄氏度下保存)解冻的匀浆5,分别在15、30和60min,3、6和24h之后立即保存在-80摄氏度。还测量了所有肌肉的Mn-SOD活性。总蛋白羰基化(反应性羰基和M​​DA蛋白加合物)和硝化作用均随时间显着增加,分别在60分钟和15分钟组的隔膜中达到峰值。 Mn-SOD表达和活性随时间显着降低,而过氧化氢酶表达无明显变化。暴露于不同时间长度的冻融循环的大鼠隔膜中,蛋白质氧化显着增加,而所有肌肉中的Mn-SOD均大大降低。

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