首页> 外文期刊>Journal of Turbulence >Contribution of Intrinsic Lactate to Maintenance of Seizure Activity in Neocortical Slices from Patients with Temporal Lobe Epilepsy and in Rat Entorhinal Cortex
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Contribution of Intrinsic Lactate to Maintenance of Seizure Activity in Neocortical Slices from Patients with Temporal Lobe Epilepsy and in Rat Entorhinal Cortex

机译:颞叶癫痫患者和大鼠Entorhinal Cortex患者对新生科切片治疗癫痫发作癫痫发作活性的贡献

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摘要

Neuronal lactate uptake supports energy metabolism associated with synaptic signaling and recovery of extracellular ion gradients following neuronal activation. Altered expression of the monocarboxylate transporters (MCT) in temporal lobe epilepsy (TLE) hampers lactate removal into the bloodstream. The resulting increase in parenchymal lactate levels might exert both, anti- and pro-ictogen effects, by causing acidosis and by supplementing energy metabolism, respectively. Hence, we assessed the contribution of lactate to the maintenance of transmembrane potassium gradients, synaptic signaling and pathological network activity in chronic epileptic human tissue. Stimulus induced and spontaneous field potentials and extracellular potassium concentration changes ([K+](O)) were recorded in parallel with tissue pO(2) and pH in slices from TLE patients while blocking MCTs by -cyano-4-hydroxycinnamic acid (4-CIN) or d-lactate. Intrinsic lactate contributed to the oxidative energy metabolism in chronic epileptic tissue as revealed by the changes in pO(2) following blockade of lactate uptake. However, unlike the results in rat hippocampus, [K+](O) recovery kinetics and field potential amplitude did not depend on the presence of lactate. Remarkably, inhibition of lactate uptake exerted pH-independent anti-seizure effects both in healthy rat and chronic epileptic tissue and this effect was partly mediated via adenosine 1 receptor activation following decreased oxidative metabolism.
机译:神经元乳酸摄取支持与神经元激活后细胞外离子梯度的突触信号传导相关的能量代谢。在颞叶癫痫(TLE)流布中的单羧酸转运蛋白(MCT)的表达改变了乳酸进入血液中的乳酸。由此产生的实质乳酸水平的增加可能通过引起酸中毒和通过补充能量代谢来施加抗胰腺炎效应。因此,我们评估了乳酸乳酸对跨膜钾梯度,突触信号和病理网络活性在慢性癫痫人体组织中的贡献。刺激诱导和自发性场电位和细胞外钾浓度变化([k +](o))与组织Po(2)和pH在来自Tle患者的切片中,同时通过-Cyano-4-羟基氨基酸(4-)阻断MCTS(4- CIN)或D-乳酸。本质乳酸乳酸盐有助于慢性癫痫组织中的氧化能量代谢,如Po(2)的变化所揭示的乳酸乳酸摄取后。然而,与大鼠海马的结果不同,[k +](o)回收动力学和现场电位幅度不依赖于乳酸的存在。值得注意的是,抑制乳酸乳酸乳酸摄取施加在健康大鼠和慢性癫痫组织中的pH无关的抗癫痫作用,并且这种效果通过腺苷1受体活化部分介导,所述氧化剂代谢下降后。

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