首页> 外文期刊>Journal of Veterinary Medicine, A. Animal Physiology,Pathology and Clinical Veterinary Medicine, A >Rats with a glucocorticoid-induced catabolic state show symptoms of oxidative stress and spleen atrophy: The effects of age and recovery
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Rats with a glucocorticoid-induced catabolic state show symptoms of oxidative stress and spleen atrophy: The effects of age and recovery

机译:糖皮质激素诱导的分解代谢状态的大鼠表现出氧化应激和脾萎缩的症状:年龄和恢复的影响

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In this study we wanted to determine whether changes in antioxidant profile could follow the catabolic effects of glucocorticoids. We also wanted to compare resistance to glucocorticoid overload in young and old rats. To address these questions, whole body catabolism was induced by the administration of dexamethasone (Dex) at either 2 mg/kg bodyweight/day to young (6 weeks old) or 0.5 mg/kg bodyweight/day to old (94 weeks old) rats. Bodyweight loss of pair-fed rats not given Dex was only 2% in the young rats and 8% in the old rats. whereas in Dex-treated rats the decrease in bodyweight was 22% in the young rats and 13% in the old rats after 5 days of treatment. Spleen v eight decreased by 65% in the young rats and by 52% in the old rats. Additionally, in the young rats there A as a 46% reduction in glutathione (GSH) in erythrocytes as well as a 36% reduction in GSH tissue wet freight in the soleus muscle. The corresponding figures for the old rats were 35 and 26%, respectively. Taken together, these results suggest that Dex directly and or indirectly impaired the antioxidant reactions. This,vas further confirmed by a significant (50%) decline in Cu-Zn superoxide dismutase (SOD-1) actin it in erythrocytes isolated from the young rats treated with Dex but not the old rats as they, showed a significant elevation in SOD-1 activity (by 101%). Thiobarbituric acid reactant substances were significantly higher in both young and old rats. Activity, of blood plasma creatine kinase increased by 73% in the young rats and by 307% in the old rats treated with Dex. Although both the young and the old rats could recover from oxidative stress. the old rats in contrast to the young rats remained catabolic until the end of the experiment. In conclusion. we suggest that old rats are more vulnerable to the catabolic action of Dex. whereas young rats are more susceptible to the oxidative stress induced by Dex.
机译:在这项研究中,我们想确定抗氧化剂谱的变化是否可以跟随糖皮质激素的分解代谢作用。我们还想比较年轻和老年大鼠对糖皮质激素超负荷的抵抗力。为了解决这些问题,对年轻(6周龄)大鼠以2 mg / kg体重/天的剂量给予地塞米松(Dex)诱导了全身分解代谢,对老龄(94周龄)大鼠以0.5 mg / kg体重/天的剂量给予了地塞米松(Dex) 。未喂食Dex的成对喂养大鼠的体重损失在年轻大鼠中仅为2%,在老年大鼠中为8%。而接受Dex治疗的大鼠,经过5天的治疗,体重减轻了22%(年轻)和13%(老年)。脾脏八号在年轻大鼠中下降了65%,在老年大鼠中下降了52%。此外,在年轻大鼠中,A导致比目鱼肌中谷胱甘肽(GSH)减少46%,GSH组织湿货运减少36%。老年大鼠的相应数字分别为35%和26%。综上所述,这些结果表明,Dex直接或间接地损害了抗氧化反应。在分离自Dex处理的年轻大鼠而非老大鼠的红细胞中,Cu-Zn超氧化物歧化酶(SOD-1)肌动蛋白显着(50%)下降,进一步证实了这一点,表明SOD显着升高-1活性(101%)。硫代巴比妥酸反应物在年轻和老年大鼠中均显着升高。用Dex治疗的年轻大鼠血浆肌酸激酶活性增加了73%,而老年大鼠则增加了307%。尽管幼鼠和老年鼠均可从氧化应激中恢复。与年轻大鼠相反,老大鼠在实验结束之前一直保持分解代谢。结论。我们建议,老年大鼠更容易受到Dex的分解代谢作用的影响。而幼鼠则更容易受到Dex诱导的氧化应激的影响。

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