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Acute administration of methylphenidate alters the prefrontal cortex neuronal activity in a dose–response characteristic

机译:哌醋甲酯的急性给药以剂量反应特征改变前额叶皮层神经元的活性

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Abstract: The prefrontal cortex (PFC) is part of the collective structures known as the motive circuit. The PFC acts to enhance higher cognitive functions as well as mediate the effects of psychostimulants. Previous literature shows the importance of PFC neuronal adaptation in response to acute and chronic psychostimulant exposure. The PFC receives input from other motive circuit structures, including the ventral tegmental area, which mediates and facilitates the rewarding effects of psychostimulant exposure. PFC neuronal and locomotor activity from freely behaving rats previously implanted with permanent semimicroelectrodes were recorded concomitantly using a telemetric (wireless) recording system. Methylphenidate (MPD) is used as a leading treatment for behavioral disorders and more recently as a cognitive enhancer. Therefore, the property of MPD dose response on PFC neuronal activity was investigated. The results indicate that MPD modulates PFC neuronal activity and behavioral activity in a dose-dependent manner. PFC neuronal responses to 0.6 mg/kg elicited mainly a decrease in PFC neuronal activity, while higher MPD doses (2.5 and 10.0 mg/kg) elicited mainly increased neuronal activity in response to MPD. The correlation between MPD effects on PFC neuronal activity and animal behavior is discussed.
机译:摘要:前额叶皮层(PFC)是称为动力回路的集体结构的一部分。 PFC的作用是增强较高的认知功能,并介导精神兴奋剂的作用。以前的文献表明,PFC神经元适应对急性和慢性精神刺激暴露的反应很重要。 PFC从其他动力电路结构(包括腹侧被盖区域)接收输入,该结构介导并促进心理刺激暴露的奖励作用。使用遥测(无线)记录系统同时记录先前植入永久性半微电极的自由行为大鼠的PFC神经元和运动活动。哌醋甲酯(MPD)被用作行为障碍的主要治疗方法,最近被用作认知增强剂。因此,研究了MPD剂量反应对PFC神经元活性的特性。结果表明,MPD以剂量依赖的方式调节PFC神经元活动和行为活动。 PFC对0.6 mg / kg的神经元反应主要引起PFC神经元活性的降低,而较高的MPD剂量(2.5和10.0 mg / kg)引起的对MPD的神经元活性的增加。讨论了MPD对PFC神经元活性和动物行为的影响。

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