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首页> 外文期刊>Neuropharmacology >Altered hippocampal synaptic function in transgenic mice with increased astrocyte expression of CCL2 after withdrawal from chronic alcohol
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Altered hippocampal synaptic function in transgenic mice with increased astrocyte expression of CCL2 after withdrawal from chronic alcohol

机译:转基因小鼠中改变了转基因小鼠的海马突触函数,随着慢性醇戒断后CCl2的星形胶质细胞表达增加

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CNS actions of the chemokine CCL2 are thought to play a role in a variety of conditions that can have detrimental consequences to CNS function, including alcohol use disorders. We used transgenic mice that express elevated levels of CCL2 in the CNS (CCL2-tg) and their non-transgenic (non-tg) littermate control mice to investigate long-term consequences of CCL2/alcohol/withdrawal interactions on hippocampal synaptic function, including excitatory synaptic transmission, somatic excitability, and synaptic plasticity. Two alcohol exposure paradigms were tested, a two-bottle choice alcohol (ethanol) drinking protocol (2BC drinking) and a chronic intermittent alcohol (ethanol) (CIE/2BC) protocol. Electrophysiological measurements of hippocampal function were made ex vivo, starting similar to 0.6 months after termination of alcohol exposure. Both alcohol exposure/withdrawal paradigms resulted in CCL2-dependent interactions that altered the effects of alcohol on synaptic function. The synaptic alterations differed for the two alcohol exposure paradigms. The 2BC drinking/withdrawal treatment had no apparent long-term consequences on synaptic responses and long-term potentiation (LTP) in hippocampal slices from non-tg mice, whereas synaptic transmission was reduced but LTP was enhanced in hippocampal slices from CCL2-tg mice. In contrast, the CIE/2BC/withdrawal treatment enhanced synaptic transmission but reduced LTP in the non-tg hippocampus, whereas there were no apparent long-term consequences to synaptic transmission and LTP in hippocampus from CCL2-tg mice, although somatic excitability was enhanced. These results support the idea that alcohol-induced CCL2 production can modulate the effects of alcohol exposure/withdrawal on synaptic function and indicate that CCL2/alcohol interactions can vary depending on the alcohol exposure/withdrawal protocol used. (C) 2018 Elsevier Ltd. All rights reserved.
机译:趋化因子CCL2的CNS作用被认为在各种条件下发挥作用,这可能对CNS功能有不利影响,包括酒精使用障碍。我们使用的转基因小鼠在CNS(CCL2-TG)和它们的非转基因(非TG)凋落小鼠中表达升高的CCL2水平,以研究CCL2 /醇/戒断相互作用对海马突触功能的长期后果,包括兴奋性突触传递,体细胞兴奋性和突触可塑性。测试了两种酒精暴露范式,双瓶选择酒精(乙醇)饮用方案(2BC饮用)和慢性间歇性醇(乙醇)(CIE / 2BC)方案。在终止酒精暴露后开始,从体内进行海马功能的电生理测量。酒精暴露/戒断范式均导致CCL2依赖性相互作用改变了醇对突触功能的影响。两个酒精曝光范式不同的突触改变。 2BC饮用/戒断治疗对来自非TG小鼠的海马切片中的突触反应和长期增强(LTP)没有明显的长期后果,而突触传递降低,但来自CCL2-TG小鼠的海马切片增强了LTP 。相反,CIE / 2BC /戒断治疗增强了突触透射,但在非TG海马中减少了LTP,而来自CCL2-TG小鼠的海马突触透射和LTP没有明显的长期后果,尽管体细胞兴奋性增强。这些结果支持醇诱导的CCl2生产可以调节酒精暴露/戒断对突触功能的影响,并表明CCl2 /醇相互作用可以根据使用的酒精暴露/戒断方案而变化。 (c)2018年elestvier有限公司保留所有权利。

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