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The Effects of Hypoxia and Inflammation on Synaptic Signaling in the CNS

机译:低氧和炎症对中枢神经系统突触信号的影响

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摘要

Normal brain function is highly dependent on oxygen and nutrient supply and when the demand for oxygen exceeds its supply, hypoxia is induced. Acute episodes of hypoxia may cause a depression in synaptic activity in many brain regions, whilst prolonged exposure to hypoxia leads to neuronal cell loss and death. Acute inadequate oxygen supply may cause anaerobic metabolism and increased respiration in an attempt to increase oxygen intake whilst chronic hypoxia may give rise to angiogenesis and erythropoiesis in order to promote oxygen delivery to peripheral tissues. The effects of hypoxia on neuronal tissue are exacerbated by the release of many inflammatory agents from glia and neuronal cells. Cytokines, such as TNF-α, and IL-1β are known to be released during the early stages of hypoxia, causing either local or systemic inflammation, which can result in cell death. Another growing body of evidence suggests that inflammation can result in neuroprotection, such as preconditioning to cerebral ischemia, causing ischemic tolerance. In the following review we discuss the effects of acute and chronic hypoxia and the release of pro-inflammatory cytokines on synaptic transmission and plasticity in the central nervous system. Specifically we discuss the effects of the pro-inflammatory agent TNF-α during a hypoxic event.
机译:正常的大脑功能高度依赖于氧气和营养供应,当氧气需求超过其供应时,就会引起缺氧。急性缺氧发作可能导致许多大脑区域的突触活动降低,而长时间暴露于缺氧状态会导致神经元细胞丢失和死亡。急性氧气供应不足可能会导致无氧代谢和呼吸增加,从而试图增加氧气的摄入量,而慢性低氧可能引起血管生成和红细胞生成,从而促进氧气向周围组织的输送。缺氧对神经元组织的影响由于胶质细胞和神经元细胞释放出许多炎症物质而加剧。已知诸如TNF-α和IL-1β之类的细胞因子会在缺氧的早期阶段释放,引起局部或全身性炎症,从而导致细胞死亡。越来越多的证据表明,炎症可导致神经保护作用,例如对脑缺血的预处理,从而引起缺血耐受。在下面的综述中,我们讨论了急性和慢性缺氧以及促炎性细胞因子释放对中枢神经系统突触传递和可塑性的影响。具体而言,我们讨论了低氧事件中促炎剂TNF-α的作用。

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