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The Decrease on Na+, K+-ATPase Activity in the Cortex, but not in Hippocampus, is Reverted by Antioxidants in an Animal Model of Sepsis

机译:在脓毒症动物模型中,抗氧化剂可以逆转皮质中Na + ,K + -ATPase活性的降低,而海马中的活性却没有降低。

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In the present study, we investigated whether sepsis induced by cecal ligation and puncture (CLP) modifies Na+, K+-ATPase activity, mRNA expression, and cerebral edema in hippocampus and cerebral cortex of rats and if antioxidant (ATX) treatment prevented the alterations induced by sepsis. Rats were subjected to CLP and were divided into three groups: sham; CLP—rats were subjected to CLP without any further treatment; and ATX–CLP plus administration of N-acetylcysteine plus deferoxamine. Several times (6, 12, and 24) after CLP or sham operation, the rats were killed and hippocampus and cerebral cortex were isolated. Na+, K+-ATPase activity was inhibited in the hippocampus 24 h after sepsis, and ATX treatment was not able to prevent this inhibition. The Na+, K+-ATPase activity also was inhibited in cerebral cortex 6, 12, and 24 h after sepsis. No differences on Na+, K+-ATPase catalytic subunit mRNA levels were found in the hippocampus and cerebral cortex after sepsis. ATX treatment prevents Na+, K+-ATPase inhibition only in the cerebral cortex. Na+, K+-ATPase inhibition was not associated to increase brain water content. In conclusion, the present study demonstrated that sepsis induced by CLP inhibits Na+, K+-ATPase activity in a mechanism dependent on oxidative stress, but this is not associated to increase brain water content.
机译:在本研究中,我们研究了盲肠结扎穿刺(CLP)引起的败血症是否会改变大鼠海马和大脑皮层的Na + ,K + -ATPase活性,mRNA表达和脑水肿,以及是否抗氧化剂(ATX)处理可防止败血症引起的改变。将大鼠进行CLP,分为三组:假手术;假手术;假手术。 CLP-大鼠未经任何进一步处理即可接受CLP; ATX-CLP加上N-乙酰半胱氨酸加去铁胺给药。 CLP或假手术后数次(6、12和24),将大鼠处死并分离海马和大脑皮层。败血症后24 h,海马中的Na + ,K + -ATPase活性受到抑制,而ATX处理不能阻止这种抑制作用。败血症后6、12和24小时,Na + ,K + -ATPase活性也受到抑制。败血症后海马和大脑皮层的Na + ,K + -ATPase催化亚基mRNA水平无差异。 ATX处理仅在大脑皮层中阻止Na + ,K + -ATPase抑制。 Na + ,K + -ATPase抑制与脑含水量增加无关。总之,本研究表明,CLP诱导的败血症以依赖于氧化应激的机制抑制Na +,K + -ATPase活性,但这与增加脑水含量无关。

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