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Abolished cocaine reward in mice with a cocaine-insensitive dopamine transporter

机译:可卡因不敏感的多巴胺转运蛋白可卡因对小鼠的奖励消失

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There are three known high-affinity targets for cocaine: the dopamine transporter (DAT), the serotonin transporter (SERT), and the norepinephrine transporter (NET). Decades of studies support the dopamine (DA) hypothesis that the blockade of DAT and the subsequent increase in extracellular DA primarily mediate cocaine reward and reinforcement. Contrary to expectations, DAT knockout (DAT-KO) mice and SERT or NET knockout mice still self-administer cocaine and/or display conditioned place preference (CPP) to cocaine, which led to the reevaluation of the DA hypothesis and the proposal of redundant reward pathways. To study the role of DAT in cocaine reward, we have generated a knockin mouse line carrying a functional DAT that is insensitive to cocaine. In these mice, cocaine suppressed locomotor activity, did not elevate extracellular DA in the nucleus accumbens, and did not produce reward as measured by CPP. This result suggests that blockade of DAT is necessary for cocaine reward in mice with a functional DAT. This mouse model is unique in that it is specifically designed to differentiate the role of DAT from the roles of NET and SERT in cocaine-induced biochemical and behavioral effects.
机译:可卡因有三种已知的高亲和力靶标:多巴胺转运蛋白(DAT),血清素转运蛋白(SERT)和去甲肾上腺素转运蛋白(NET)。数十年的研究支持多巴胺(DA)的假说,即DAT的封锁和随后细胞外DA的增加主要介导可卡因的奖励和强化作用。与预期相反,DAT基因敲除(DAT-KO)小鼠和SERT或NET基因敲除小鼠仍然可卡因和/或对可卡因表现出条件性位置偏爱(CPP),这导致重新评估了DA假设并提出了多余的建议奖励途径。为了研究DAT在可卡因奖励中的作用,我们产生了一种带有对可卡因不敏感的功能性DAT的敲入小鼠品系。在这些小鼠中,可卡因抑制了运动能力,没有升高伏隔核中的细胞外DA,并且也没有产生CPP所显示的奖赏。该结果表明,DAT的阻断对于具有功能性DAT的小鼠的可卡因奖赏是必需的。该小鼠模型的独特之处在于,它是专门设计用于在可卡因诱导的生化和行为效应中将DAT的作用与NET和SERT的作用区分开的。

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