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Gene Expression Changes in GABAA Receptors and Cognition Following Chronic Ketamine Administration in Mice

机译:小鼠长期服用氯胺酮后GABAA受体的基因表达变化和认知

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摘要

Ketamine is a well-known anesthetic agent and a drug of abuse. Despite its widespread use and abuse, little is known about its long-term effects on the central nervous system. The present study was designed to evaluate the effect of long-term (1- and 3-month) ketamine administration on learning and memory and associated gene expression levels in the brain. The Morris water maze was used to assess spatial memory and gene expression changes were assayed using Affymetrix Genechips; a focus on the expression of GABAA receptors that mediate a tonic inhibition in the brain, was confirmed by quantitative real-time PCR and western blot. Compared with saline controls, there was a decline in learning and memory performance in the ketamine-treated mice. Genechip results showed that 110 genes were up-regulated and 136 genes were down-regulated. An ontology analysis revealed the most significant effects of ketamine were on GABAA receptors. In particular, there was a significant up-regulation of both mRNA and protein levels of the alpha 5 subunit (Gabra5) of the GABAA receptors in the prefrontal cortex. In conclusion, chronic exposure to ketamine impairs working memory in mice, which may be explained at least partly by up-regulation of Gabra5 subunits in the prefrontal cortex.
机译:氯胺酮是众所周知的麻醉剂和滥用药物。尽管其广泛使用和滥用,但对其对中枢神经系统的长期影响知之甚少。本研究旨在评估长期(1个月和3个月)氯胺酮对大脑学习和记忆及相关基因表达水平的影响。使用莫里斯水迷宫评估空间记忆,并使用Affymetrix Genechips分析基因表达变化。定量实时PCR和Western印迹证实了对介导大脑强直抑制作用的GABA A受体表达的关注。与盐水对照组相比,氯胺酮治疗的小鼠的学习和记忆能力下降。基因芯片结果显示110个基因被上调而136个基因被下调。本体分析表明,氯胺酮对GABAA受体的影响最大。特别是前额叶皮层中GABAA受体的α5亚基(Gabra5)的mRNA和蛋白水平均显着上调。总之,长期暴露于氯胺酮会损害小鼠的工作记忆,这至少可以部分由额叶前皮质中Gabra5亚基的上调来解释。

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