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在乙醇暴露和戒断期间,丘脑 T 型钙通道表达和功能被打乱。

Disrupted thalamic T-type Ca2+ channel expression and function during ethanol exposure and withdrawal.

机构信息

Department of Neurobiology and Anatomy, Wake Forest University School of Medicine, Medical Center Blvd., Winston Salem, NC 27157, USA.

出版信息

J Neurophysiol. 2011 Feb;105(2):528-40. doi: 10.1152/jn.00424.2010. Epub 2010 Dec 8.

Abstract

Chronic ethanol exposure produces profound disruptions in both brain rhythms and diurnal behaviors. The thalamus has been identified as a neural pacemaker of both normal and abnormal rhythms with low-threshold, transient (T-type) Ca(2+) channels participating in this activity. We therefore examined T-type channel gene expression and physiology in the thalamus of C57Bl/6 mice during a 4-wk schedule of chronic intermittent ethanol exposures in a vapor chamber. We found that chronic ethanol disrupts the normal daily variations of both thalamic T-type channel mRNA levels and alters thalamic T-type channel gating properties. The changes measured in channel expression and function were associated with an increase in low-threshold bursts of action potentials during acute withdrawal periods. Additionally, the observed molecular and physiological alterations in the channel properties in wild-type mice occurred in parallel with a progressive disruption in the normal daily variations in theta (4-9 Hz) power recorded in the cortical electroencephalogram. Theta rhythms remained disrupted during a subsequent week of withdrawal but were restored with the T-type channel blocker ethosuximide. Our results demonstrate that a key ion channel underlying the generation of thalamic rhythms is altered during chronic ethanol exposure and withdrawal and may be a novel target in the management of abnormal network activity due to chronic alcoholism.

摘要

慢性乙醇暴露会严重破坏大脑节律和昼夜行为。丘脑已被确定为正常和异常节律的神经起搏器,其中低阈值、瞬态(T 型)Ca(2+)通道参与这种活动。因此,我们在蒸气室中对 C57Bl/6 小鼠进行为期 4 周的慢性间歇性乙醇暴露后,研究了丘脑 T 型通道基因表达和生理学。我们发现,慢性乙醇破坏了丘脑 T 型通道 mRNA 水平的正常昼夜变化,并改变了丘脑 T 型通道门控特性。在急性戒断期间,动作电位的低阈值爆发增加,与测量到的通道表达和功能变化相关。此外,在野生型小鼠中观察到的通道特性的分子和生理改变与皮质脑电图中记录的θ(4-9 Hz)功率的正常昼夜变化的逐渐破坏平行发生。在随后的一周戒断期间,θ 节律仍然受到破坏,但用 T 型通道阻滞剂 ethosuximide 恢复。我们的结果表明,在慢性乙醇暴露和戒断期间,产生丘脑节律的关键离子通道发生改变,可能是治疗慢性酒精中毒引起的异常网络活动的新靶点。

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