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首页> 外文期刊>The Journal of Pharmacology and Experimental Therapeutics: Official Publication of the American Society for Pharmacology and Experimental Therapeutics >Acute cocaine differentially alters accumbens and striatal dopamine clearance in low and high cocaine locomotor responders: behavioral and electrochemical recordings in freely moving rats.
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Acute cocaine differentially alters accumbens and striatal dopamine clearance in low and high cocaine locomotor responders: behavioral and electrochemical recordings in freely moving rats.

机译:急性可卡因有差异地改变了可卡因低和高运动反应者的伏隔和纹状体多巴胺清除率:自由移动大鼠的行为和电化学记录。

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摘要

Behavioral responses of rodents to cocaine are characterized by marked individual variability. Here, outbred male Sprague-Dawley rats were profiled based on concomitant recording of behavioral and electrochemical responses. Rats were categorized as either low or high cocaine responders (LCRs or HCRs, respectively) based on their differential locomotor responsiveness to an acute, low-dose injection of cocaine (10 mg/kg i.p.). LCRs and HCRs also differed in other cocaine-induced behaviors. The role of the dopamine transporter (DAT) in mediating the behavioral differences in cocaine responsiveness in LCRs and HCRs was investigated by high-speed chronoamperometric recording of exogenous dopamine (DA) clearance signals in nucleus accumbens (NAc) and dorsal striatum (dSTR). Higher volumes of DA were required in NAc of HCRs, than of LCRs, to produce equivalent peak DA signal amplitude (A(max)) responses. In HCRs, systemic cocaine administration evoked an immediate and prolonged 2-fold augmentation in A(max) in both brain regions, coincident with locomotor activation. The cocaine-induced decrease in the efficiency of DA clearance (k) in NAc of HCRs was more immediate and prolonged than in dSTR, where the transient decrease coincided with maximal stereotypic behavior. In contrast, in LCRs, A(max) was not altered by cocaine, and decay rate constant (k) was transiently attenuated only in dSTR. Correlation analyses of individual responses revealed that cocaine-induced changes in DA clearance signal parameters accounted for 20 to 40% of the variation in behavioral responsiveness to cocaine. Overall, our findings emphasize the importance of characterizing individual responses to understand more fully the range of functional consequences resulting from DAT inhibition.
机译:啮齿动物对可卡因的行为反应以明显的个体变异性为特征。在这里,基于行为和电化学反应的伴随记录,对近交雄性Sprague-Dawley大鼠进行了分析。根据大鼠对急性,低剂量可卡因注射(10 mg / kg i.p.)的运动反应不同,将其分为低或高可卡因反应者(分别为LCR或HCR)。 LCR和HCR在可卡因诱导的其他行为上也有所不同。多巴胺转运蛋白(DAT)在介导LCR和HCR中可卡因反应行为差异的作用通过高速伏安法记录伏伏核(NAc)和背侧纹状体(NASTR)中的外源多巴胺(DA)清除信号进行了研究。 HCR的NAc中所需的DA数量要比LCR更大,以产生等效的峰值DA信号幅度(A(max))响应。在HCRs中,全身可卡因的使用引起了两个大脑区域A(max)的立即和长期2倍增加,这与运动激活同时发生。可卡因诱导的HCR的NAc中DA清除效率(k)的降低比dSTR更直接,更持久,在dSTR中,瞬态降低与最大的刻板行为一致。相反,在LCR中,可卡因不会改变A(max),衰减速率常数(k)仅在dSTR中会短暂衰减。个体反应的相关性分析显示,可卡因诱导的DA清除信号参数变化占行为对可卡因反应性变化的20%至40%。总的来说,我们的发现强调了表征个体反应的重要性,以更充分地理解DAT抑制所导致的功能性后果。

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