首页> 美国卫生研究院文献>Lippincott Williams Wilkins Open Access >EphA4 receptor regulates outwardly rectifying chloride channel in CA1 hippocampal neurons after ischemia-reperfusion
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EphA4 receptor regulates outwardly rectifying chloride channel in CA1 hippocampal neurons after ischemia-reperfusion

机译:EphA4受体调节缺血再灌注后CA1海马神经元的向外整流氯通道

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摘要

CA1 hippocampal neurons are sensitive to ischemia. The erythropoietin-producing hepatocellular carcinoma (Eph) receptors are a cell-cell contact signaling pathway for regulating neuron function and death. However, the mechanisms of EphA receptor in neuron death after ischemia remain unclear. In this study, we present evidence that outwardly rectifying chloride channels reside in CA1 hippocampal neurons. EphA4 receptor increased chloride channel currents. Moreover, the EphA4 receptor no longer had significant effects on enhanced channel currents following ischemia-reperfusion. Inhibition of EphA4 receptor with EphA4-Fc significantly decreased the channel currents after ischemia-reperfusion. These results suggest that the increased effect of the EphA4 receptor on the outwardly rectifying chloride channel activity in CA1 hippocampal neurons may provide better treatment for ischemic brain injury.
机译:CA1海马神经元对缺血敏感。产生促红细胞生成素的肝细胞癌(Eph)受体是调节神经元功能和死亡的细胞间接触信号通路。但是,尚不清楚EphA受体在缺血后神经元死亡中的机制。在这项研究中,我们提供证据表明向外整流的氯离子通道存在于CA1海马神经元中。 EphA4受体增加了氯离子通道电流。此外,EphA4受体不再对缺血再灌注后增强的通道电流有明显影响。 EphA4-Fc对EphA4受体的抑制作用显着降低了缺血再灌注后的通道电流。这些结果表明,EphA4受体对CA1海马神经元向外整流的氯离子通道活性的增强作用可能为缺血性脑损伤提供更好的治疗方法。

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