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首页> 外文期刊>Neurology: Official Journal of the American Academy of Neurology >Ketone bodies do not directly alter excitatory or inhibitory hippocampal synaptic transmission (see comments)
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Ketone bodies do not directly alter excitatory or inhibitory hippocampal synaptic transmission (see comments)

机译:酮体直接改变兴奋性或不抑制海马突触传递(见注释)

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摘要

OBJECTIVE: To determine the effect of the ketone bodies beta-hydroxybutyrate (betaHB) and acetoacetate (AA) on excitatory and inhibitory neurotransmission in the mammalian CNS. BACKGROUND: The ketogenic diet is presumed to be an effective anticonvulsant regimen for some children with medically intractable seizures. However, its mechanism of action remains a mystery. According to one hypothesis, ketone bodies have anticonvulsant properties. METHODS: The authors examined the effect of betaHB and AA on excitatory and inhibitory synaptic transmission in rat hippocampal-entorhinal cortex slices and cultured hippocampal neurons. In cultured neurons, their effect was also directly assayed on postsynaptic receptor properties. Finally, their ability to prevent spontaneous seizures was determined in a hippocampal-entorhinal cortex slice model. RESULTS: betaHB and AA did not alter synaptic transmission in these models. CONCLUSIONS: The anticonvulsant properties of the ketogenic diet do not result from a direct effect of ketone bodies on the primary voltage and ligand gated ion channels mediating excitatory or inhibitory neurotransmission in the hippocampus.
机译:目的:确定酮的影响身体beta-hydroxybutyrate (betaHB)和在兴奋和抑制性乙酰乙酸盐(AA)在哺乳动物的中枢神经系统神经传递。背景:生酮饮食是假定一个有效的抗惊厥的方案儿童医学上棘手的癫痫发作。然而,它的作用机制仍然是一个谜。身体有抗惊厥的属性。作者研究了betaHB和AA的效果在兴奋和抑制性突触传播老鼠hippocampal-entorhinal皮层片和培养海马神经元。培养的神经元,它们也直接的影响化验在突触后受体的特性。最后,他们防止自发的能力癫痫是决定hippocampal-entorhinal皮质切片模型。结果:betaHB和AA没有改变突触在这些模型中传播。抗惊厥的生酮饮食的属性不结果的直接影响酮吗身体在初级电压和配位体封闭离子通道调节兴奋性或抑制性在海马体神经传递。

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