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Expression and Activity of the Na-K ATPase in Ischemic Injury of Primary Cultured Astrocytes

机译:Na-K ATPase在原代培养星形胶质细胞缺血性损伤中的表达及活性

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摘要

Astrocytes are reported to have critical functions in ischemic brain injury including protective effects against ischemia-induced neuronal dysfunction. Na-K ATPase maintains ionic gradients in astrocytes and is suggested as an indicator of ischemic injury in glial cells. Here, we examined the role of the Na-K ATPase in the pathologic process of ischemic injury of primary cultured astrocytes. Chemical ischemia was induced by sodium azide and glucose deprivation. Lactate dehydrogenase assays showed that the cytotoxic effect of chemical ischemia on astrocytes began to appear at 2 h of ischemia. The expression of Na-K ATPase α1 subunit protein was increased at 2 h of chemical ischemia and was decreased at 6 h of ischemia, whereas the expression of α1 subunit mRNA was not changed by chemical ischemia. Na-K ATPase activity was time-dependently decreased at 1, 3, and 6 h of chemical ischemia, whereas the enzyme activity was temporarily recovered to the control value at 2 h of chemical ischemia. Cytotoxicity at 2 h of chemical ischemia was significantly blocked by reoxygenation for 24 h following ischemia. Reoxygenation following chemical ischemia for 1 h significantly increased the activity of the Na-K ATPase, while reoxygenation following ischemia for 2 h slightly decreased the enzyme activity. These results suggest that the critical time for ischemia-induced cytotoxicity of astrocytes might be 2 h after the initiation of ischemic insult and that the increase in the expression and activity of the Na-K ATPase might play a protective role during ischemic injury of astrocytes.
机译:据报道,星形胶质细胞在缺血性脑损伤中具有关键功能,包括对缺血性神经元功能障碍的保护作用。 Na-K ATPase维持星形胶质细胞中的离子梯度,并被认为是神经胶质细胞缺血性损伤的指标。在这里,我们检查了Na-K ATPase在原代培养星形胶质细胞缺血性损伤的病理过程中的作用。化学缺血是由叠氮化钠和葡萄糖缺乏引起的。乳酸脱氢酶测定表明,化学缺血对星形胶质细胞的细胞毒性作用在缺血2 h时就开始出现。 Na-K ATPaseα1亚基蛋白的表达在缺血2 h时升高,在缺血6 h时降低,而α1亚基mRNA的表达并未因缺血而改变。 Na-K ATPase活性在化学缺血的1、3和6 h随时间而降低,而在化学缺血2 h时,酶活性暂时恢复至对照值。在缺血后24小时,通过复氧显着阻断了在化学缺血2小时时的细胞毒性。化学缺血1小时后的复氧显着增加了Na-K ATPase的活性,而缺血2小时后的复氧则使酶的活性略有降低。这些结果表明,缺血诱导的星形胶质细胞缺血诱导的细胞毒性的关键时间可能是2小时,并且Na-K ATP酶表达和活性的增加可能在星形胶质细胞缺血性损伤中起保护作用。

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