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Ketogenic diet sensitizes glucose control of hippocampalexcitability

机译:生酮饮食可提高海马葡萄糖控制的敏感性兴奋性

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摘要

A high-fat low-carbohydrate ketogenic diet (KD) is an effective treatment for refractory epilepsy, yet myriad metabolic effects in vivo have not been reconciled clearly with neuronal effects. A KD limits blood glucose and produces ketone bodies from β-oxidation of lipids. Studies have explored changes in ketone bodies and/or glucose in the effects of the KD, and glucose is increasingly implicated in neurological conditions. To examine the interaction between altered glucose and the neural effects of a KD, we fed rats and mice a KD and restricted glucose in vitro while examining the seizure-prone CA3 region of acute hippocampal slices. Slices from KD-fed animals were sensitive to small physiological changes in glucose, and showed reduced excitability and seizure propensity. Similar to clinical observations, reduced excitability depended on maintaining reduced glucose. Enhanced glucose sensitivity and reduced excitability were absent in slices obtained from KD-fed mice lacking adenosine A1 receptors (A1Rs); in slices from normal animals effects of the KD could be reversed with blockers of pannexin-1 channels, A1Rs, or KATP channels. Overall, these studies reveal that a KD sensitizes glucose-based regulation of excitability via purinergic mechanisms in the hippocampus and thus link key metabolic and direct neural effects of the KD.
机译:高脂低碳水化合物生酮饮食(KD)是治疗难治性癫痫的有效方法,但体内的多种代谢作用与神经元作用尚无明确的一致性。 KD限制血糖,并通过脂质的β-氧化作用产生酮体。研究已经探究了酮体和/或葡萄糖在KD效应中的变化,并且葡萄糖越来越多地涉及神经系统疾病。为了检查葡萄糖变化与KD的神经效应之间的相互作用,我们在体外给大鼠和小鼠喂了KD和限制性葡萄糖,同时检查了急性海马切片的癫痫发作易CA3区。用KD喂养的动物的切片对葡萄糖的微小生理变化敏感,并显示出降低的兴奋性和癫痫发作倾向。与临床观察类似,兴奋性降低取决于维持葡萄糖降低。从缺少腺苷A1受体(A1Rs)的KD喂养小鼠获得的切片中,葡萄糖敏感性增强,兴奋性降低。在正常动物的切片中,KD的作用可以通过pannexin-1通道,A1Rs或KATP通道的阻滞剂逆转。总体而言,这些研究表明,KD通过海马中的嘌呤能机制使葡萄糖对兴奋性的调节敏感,从而将KD的关键代谢和直接神经作用联系起来。

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