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Neuroprotection Caused by Hyperoxia Preconditioning in Animal Stroke Models

机译:动物卒中模型中高氧预处理引起的神经保护

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摘要

Ischemic tolerance induced by hyperoxia (HO) can protect against brain injury and neurodegenerative diseases. Although multiple studies demonstrate neuroprotection by HO, the exact mechanism(s) of HO neuroprotection has not been elucidated. Here, I first review related mechanisms of brain ischemia and then data evaluating the neuroprotective effects of HO in focal and global ischemic animal models. I clearly establish that the cerebrovascular, extracellular matrix, plasma membrane, endoplasmic reticulum, mitochondrial, and lysosomal reactions are critical in neuroprotection induced by HO in focal ischemia. In rats and mice, the middle cerebral artery occlusion (MCAO) model was used to represent cerebrovascular stroke. Neuroprotection induced by HO exhibits specific adaptation responses that involve a number of cellular and biochemical alterations, including metabolic homeostasis and reprogramming of gene expression. The changes in the metabolic pathways are generally short lived and reversible, while the consequences of gene expression are a long-term process and may lead to the permanent alteration in the pattern of gene expression. The neuroprotection provided by HO may have important clinical implications. Therefore, it is important to assess the benefits and risks of HO therapy in noninfarcted tissue.
机译:高氧(HO)诱导的缺血性耐受性可以防止脑损伤和神经变性疾病。虽然多项研究证明了HO的神经保护,但HO神经保护的确切机制尚未阐明。在此,我首先审查脑缺血的相关机制,然后评估何焦点和全球缺血性动物模型的神经保护作用。我清楚地确定了脑血管,细胞外基质,质膜,内质网,线粒体和溶酶体反应对于局灶性缺血诱导的神经保护作用是至关重要的。在大鼠和小鼠中,中间脑动脉闭塞(MCAO)模型用于代表脑血管卒中。 HO诱导的神经保护表现出特异性适应响应,其涉及许多细胞和生物化学改变,包括代谢稳态和基因表达的重新编程。代谢途径的变化通常短暂且可逆,而基因表达的后果是长期过程,可能导致基因表达模式的永久性改变。由何提供的神经保护可能具有重要的临床意义。因此,重要的是评估Ho治疗在非颈部组织中的益处和风险。

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