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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >L-Lactate mediates neuroprotection against ischaemia by increasing TREK1 channel expression in rat hippocampal astrocytes in vitro
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L-Lactate mediates neuroprotection against ischaemia by increasing TREK1 channel expression in rat hippocampal astrocytes in vitro

机译:L-乳酸通过增加大鼠海马星形胶质细胞TREK1通道的表达介导抗缺血的神经保护作用

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Brain ischaemia is a highly debilitating condition where shortage of oxygen and glucose leads to profuse cell death. Lactate is a neuroprotective metabolite whose concentrations increase up to 15-30mmol/L during ischaemia and TREK1 is a neuroprotective potassium channel which is upregulated during ischaemia. The aim of this study was to investigate the effect of l-lactate on TREK1 expression and to evaluate the role of l-lactate-TREK1 interaction in conferring neuroprotection in ischaemia-prone hippocampus. We show that 15-30mmol/L l-lactate increases functional TREK1 protein expression by 1.5-3-fold in hippocampal astrocytes using immunostaining and electrophysiology. Studies with transcription blocker actinomycin-D and quantitative PCR indicate that the increase in TREK1 expression is due to enhanced TREK1 mRNA transcription. We further report that l-lactate-mediated increase in TREK1 expression is via protein kinase A (PKA)-dependent pathway. This is the first report of an ischaemic metabolite affecting functional expression of an ion channel. Our studies in an invitro model of ischaemia using oxygen glucose deprivation show that 30mmol/L l-lactate fails to reduce cell death in rat hippocampal slices treated with TREK1 blockers, PKA inhibitors and gliotoxin. The above effects were specific to l-lactate as pyruvate failed to increase TREK1 expression and reduce cell death. l-Lactate-induced TREK1 upregulation is a novel finding of physiological significance as TREK1 channels contribute to neuroprotection by enhancing potassium buffering and glutamate clearance capacity of astrocytes. We propose that l-lactate promotes neuronal survival in hippocampus by increasing TREK1 channel expression via PKA pathway in astrocytes during ischaemia.
机译:脑缺血是一种高度虚弱的疾病,氧气和葡萄糖不足会导致大量细胞死亡。乳酸是一种神经保护性代谢产物,在缺血期间其浓度增加至15-30mmol / L,TREK1是在缺血期间上调的神经保护钾通道。这项研究的目的是调查l-乳酸酯对TREK1表达的影响,并评估l-乳酸酯-TREK1相互作用在易于缺血的海马中赋予神经保护作用。我们显示15-30mmol / L l-乳酸盐使用免疫染色和电生理学在海马星形胶质细胞中增加功能性TREK1蛋白表达1.5-3倍。用转录阻断剂放线菌素-D和定量PCR进行的研究表明,TREK1表达的增加归因于TREK1 mRNA转录的增强。我们进一步报告,l-乳酸介导的TREK1表达的增加是通过蛋白激酶A(PKA)依赖的途径。这是影响离子通道功能表达的缺血性代谢产物的首次报道。我们在使用氧葡萄糖剥夺的缺血局部模型中的研究表明,在用TREK1受体阻滞剂,PKA抑制剂和胶质毒素处理的大鼠海马切片中,30mmol / L的l-乳酸盐不能降低细胞死亡。由于丙酮酸不能增加TREK1的表达并不能减少细胞死亡,所以上述作用对L-乳酸是特异的。 l-乳酸诱导的TREK1上调是一种具有生理意义的新发现,因为TREK1通道通过增强星形胶质细胞的钾缓冲和谷氨酸清除能力来促进神经保护。我们建议l-乳酸在缺血期间通过星形胶质细胞中PKA途径增加TREK1通道的表达来促进海马神经元的存活。

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