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首页> 外文期刊>Progress in Neuro-Psychopharmacology & Biological Psychiatry: An International Research, Review and News Journal >Motivation, risk-taking and sensation seeking behavior in propofol anesthesia exposed peripubertal rats
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Motivation, risk-taking and sensation seeking behavior in propofol anesthesia exposed peripubertal rats

机译:丙糊糊麻醉暴露的杂草大鼠的刺激,风险和感觉寻求行为

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摘要

Adolescent neurodevelopment confer vulnerability to the actions of treatments that produce adaptations in neurocircuitry underlying motivation, impulsivity and reward. Considering wide usage of a sedative-hypnotic agent propofol in clinical practice, we examined whether propofol is a challenging treatment for peripubertal brain. Motivation/hedonic behavior (sucrose preference test), approach/avoidance behavior (elevated plus maze test) and response to dissociative drug phencyclidine (PCP) were studied in peripubertal rats (the rodent model of periadolescence) after propofol anesthesia exposure (PAE). Neurodegeneration (Fluoro-Jade staining) and the expression of proteins (Western blot) involved in excitatory synaptic transmission and activity-dependent synaptic stabilization in the medial prefrontal cortex (mPFC) and striatum (components of motivation/reward circuitry; process both appetitive and aversive events) were examined as well. In peripubertal rats PAE produced 1) transient brain-region specific changes in the expression of N-methyl-D-aspartate (NMDA) receptor subunits NR2A and NR2B, PSD-95 and N-cadherin, without neurotoxicity, 2) hyperlocomotor response to PCP, 3) no changes in preference for palatable 1% sucrose solution and a decrease in food eaten, 4) preference for 20% sucrose solution without changes in food eaten, 5) stretch-attended postures and open arms entries in the elevated plus maze test. Overall, these novel findings show that PAE leaves transient synaptic trace recognized as early form of synaptic plasticity related to passive drug exposure in the brain systems implicated in motivation/reward, increases drug-responsiveness, favors risk-taking and preference of novel/intense stimuli repairing otherwise present motivational deficiency. These findings accentuate multifaceted response to propofol in peripuberty and the importance of environmental stability for the most favorable neurobehavioral recovery.
机译:青少年神经发光促进脆弱性对治疗的作用,这些作用产生了在神经古织妇土的潜在动机,冲动和奖励中的适应。考虑到广泛催眠药类异丙酚在临床实践中,我们检查了异丙酚是否是针对植物脑的挑战性。在异丙酚麻醉暴露(PAE)之后,研究了在Peripubertal大鼠(Pae)后的植物培养大鼠(Periadolercess of Periadoless of Periadoless of Periafoless of Periadoless of Prop)(PADE)中研究了接近/避免行为(蔗糖偏好测试)和对解离药物泳池(PCP)的反应。神经变性(氟玉染色)和蛋白质(蛋白质印迹)的表达参与内侧前额叶皮质(MPFC)和纹状体中的兴奋性突触传递和活性依赖性突触稳定性(动机/奖励电路的组件;过程都是快乐和厌恶事件也被检查了。在Peripubertal大鼠PAE中产生1)瞬态脑区域的N-甲基-D-天冬氨酸(NMDA)受体亚单位表达的特异性变化NR2A和NR2B,PSD-95和N-Cadherin,没有神经毒性,2)对PCP的反应3)不偏好于可口1%蔗糖溶液的偏好变化和食物的减少,4)偏好于20%蔗糖溶液,无需食用的食物的变化,5)拉伸型姿势和升高的Plus Maze试验中的开放式臂入口。总体而言,这些新颖的研究结果表明,PAE叶瞬态突触痕迹被认为是与被动药物暴露有关的突触塑性,与动机/奖励有关的脑系统中有关,增加了药物反应性,有利于冒险的风险和新颖/激烈刺激的偏好修复其他目前的励志缺乏。这些调查结果强调了对Peripuberty的异丙酚的多方面的反应以及环境稳定性对最有利的神经兽性恢复的重要性。

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