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首页> 外文期刊>Advanced Science Letters >The Effect of Intermittent Hypobaric Hypoxia Exposure on Reduced-Glutathione Level in Rat Lung and Renal Tissues
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The Effect of Intermittent Hypobaric Hypoxia Exposure on Reduced-Glutathione Level in Rat Lung and Renal Tissues

机译:间歇性低氧缺氧暴露对大鼠肺和肾组织降低谷胱甘肽水平的影响

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Hypobaric hypoxia is basically a hypoxia condition experienced in high altitude commonly during flight, that increase reactive oxygen species (ROS). When hypoxia hypobaric does not undergo continuation or in other word, intermittent, it will cause adaptation response in a form of protectionmode into ROS. Moreover, ROS could be eliminated by reduced-glutathione (GSH) as an endogenous non enzymatic antioxidant. Therefore, the aim of this study was to analyze the effects of intermittent hypobaric hypoxia exposure on GSH level in rat lung and renal tissue. Lung and renal sampleswere collected from 6–8 weeks old male Sprague-Dawley rats weighing 150–200 g, previously exposed 1–4 times to intermittent hypobaric hypoxia in 35,000 ft (1 minute), 25.000 ft (5 minute) and 18,000 ft altitude (25 minute). Afterwards, GSH level was calculated from lung andrenal extracts using the Ellman’s method. In lung tissues, GSH level was decreased in hypoxia 1×, 2×, 3×, 4× treatment, and were significant between the control–hypoxia 3×, control–hypoxia 4×, hypoxia 1×–hypoxia 3× andhypoxia 1×–hypoxia 4×. On the contrary, GSH level was increased in renal tissues on hypoxia 1× and hypoxia 2× treatment compared to control. Nevertheless, GSH level was decreased after 3× treatment and found almost stabilized at 4× treatment of hypoxiain renal tissues. Intermittent hypobaric hypoxia exposure affect GSH in rat lung and renal tissues with varying level as an adaptive response system.
机译:低氧性缺氧基本上是在飞行期间通常在高海拔地区经历的缺氧条件,增加了活性氧(ROS)。当缺氧脓肿不会发生延续或换句话说,间歇性地,它将以一种保护频率的形式导致适应响应到ROS。此外,可以通过作为内源性非酶促抗氧化剂来消除ROS作为内源性非酶促抗氧化剂消除。因此,本研究的目的是分析间歇性低氧缺氧暴露对大鼠肺和肾组织的GSH水平的影响。从6-8周龄雄性Sprague-Dawley大鼠收集肺和肾样品,此前暴露在35,000英尺(1分钟),25.000英尺(5分钟)和18,000英尺高度的间歇性低氧缺氧中的1-4次。 (25分钟)。然后,使用Ellman的方法从肺和肾上腺提取物计算GSH水平。在肺组织中,缺氧1×,2×,3×,4×治疗中的GSH水平降低,对照 - 缺氧3×,对照 - 缺氧4×,缺氧1×-Hypoxia 3×Bodhypoxia 1× -Hypoxia 4×。相反,在缺氧1×和缺氧2×治疗中,GSH水平增加了肾脏组织与对照相比治疗。然而,3×治疗后GSH水平降低,发现几乎稳定在4×治疗缺氧肾组织中。间歇性低氧缺氧暴露在大鼠肺和肾组织中影响GSH,随着自适应响应系统的不同水平。

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