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Ischemic preconditioning and postconditioning alleviates hippocampal tissue damage through abrogation of apoptosis modulated by oxidative stress and inflammation during transient global cerebral ischemia-reperfusion in rats

机译:缺血预处理和后处理通过消除短暂性全脑缺血/再灌注过程中氧化应激和炎症调节的细胞凋亡来减轻海马组织损伤

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Introduction: It has been argued recently that ischemic preconditioning (IPre) and postconditioning (IPost) have beneficial effects in many ischemic disorders however; their effects on global ischemia/ reperfusion (I/R) are poorly understood. Thus, the present work aimed to study the possible mechanisms underlying the neuroprotective effects of IPre and IPost.Methods: Animals were randomly allocated into 4 groups (n = 30): (1) Sham operated (SO); (2) I/R group, animals were subjected to 15 min global ischemia followed by 60 min reperfusion; (3) IPre, animals were subjected to 3 episodes of 5 min ischemia followed by 10 min reperfusion before I/R; (4) IPost, animals were subjected to three episodes of 10 s of ischemia and 10 s of reperfusion after the period of ischemia followed by a 60 min reperfusion period. Lactate dehydrogenase activity, oxidative stress, inflammatory and apoptotic biomarkers, as well as neurotransmitters, infarct size and histopathological examination were assessed.Results: I/R induced hippocampal damage through increasing oxidative stress, inflammatory, excito-toxic and apoptotic markers as well as lactate dehydrogenase activity and infarct size. Both, IPre and IPost attenuated most markers induced by I/R.Conclusions: IPre and IPost neuroprotective effects can be explained through their anti-oxidant, anti-inflammatory and anti-apoptotic mechanisms.
机译:简介:最近有人认为,缺血预处理(IPre)和后适应(IPost)在许多缺血性疾病中都有有益的作用。人们对它们对整体缺血/再灌注(I / R)的影响了解甚少。因此,本研究旨在研究IPre和IPost的神经保护作用的潜在机制。方法:将动物随机分为4组(n = 30):(1)假手术(SO); (2)I / R组,动物进行15分钟整体缺血,再灌注60分钟; (3)IPre,在I / R之前,对动物进行3次5分钟缺血3次再灌注10分钟; (4)IPost,在缺血期之后,动物经历3次发作,即10s的缺血和10s的再灌注,随后是60分钟的再灌注期。评估了乳酸脱氢酶活性,氧化应激,炎症和凋亡生物标志物,以及神经递质,梗塞面积和组织病理学检查。结果:I / R通过增加氧化应激,炎症,兴奋性毒性和凋亡标志物以及乳酸来诱导海马损伤。脱氢酶活性和梗死面积。 IPre和IPost均可减弱I / R诱导的大多数标志物。结论:IPre和IPost的神经保护作用可以通过其抗氧化,抗炎和抗凋亡机制来解释。

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