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Double dissociation of the anterior and posterior dorsomedial caudate-putamen in the acquisition and expression of associative learning with the nicotine stimulus

机译:尼古丁刺激与联想学习的习得和表达中的背和背背状尾状-putamen的双重解离

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摘要

Tobacco use is the leading cause of preventable deaths worldwide. This habit is not only debilitating to individual users but also to those around them (second-hand smoking). Nicotine is the main addictive component of tobacco products and is a moderate stimulant and a mild reinforcer. Importantly, besides its unconditional effects, nicotine also has conditioned stimulus effects that may contribute to the tenacity of the smoking habit. Because the neurobiological substrates underlying these processes are virtually unexplored, the present study investigated the functional involvement of the dorsomedial caudate putamen (dmCPu) in learning processes with nicotine as an interoceptive stimulus. Rats were trained using the discriminated goal-tracking task where nicotine injections (0.4 mg/kg; SC), on some days, were paired with intermittent (36 per session) sucrose deliveries; sucrose was not available on interspersed saline days. Pre-training excitotoxic or post-training transient lesions of anterior or posterior dmCPu were used to elucidate the role of these areas in acquisition or expression of associative learning with nicotine stimulus. Pre-training lesion of p-dmCPu inhibited acquisition while post-training lesions of p-dmCPu attenuated the expression of associative learning with the nicotine stimulus. On the other hand, post-training lesions of a-dmCPu evoked nicotine-like responding following saline treatment indicating the role of this area in disinhibition of learned motor behaviors. These results, for the first time, show functionally distinct involvement of a- and p-dmCPu in various stages of associative learning using nicotine stimulus and provide an initial account of neural plasticity underlying these learning processes.
机译:吸烟是全球可预防的死亡的主要原因。这种习惯不仅使个人使用者感到虚弱,而且使周围的使用者(二手烟)变得虚弱。尼古丁是烟草产品的主要成瘾成分,是一种中度兴奋剂和温和的增强剂。重要的是,尼古丁除了具有无条件的作用外,还具有有条件的刺激作用,可能有助于吸烟习惯的坚韧性。由于这些过程背后的神经生物学底物实际上尚未被开发,因此本研究调查了以尼古丁为感受器刺激的学习过程中尾状尾壳核壳蛋白(dmCPu)的功能参与。使用区分的目标跟踪任务训练大鼠,在该任务中,尼古丁注射液(0.4 mg / kg; SC)在某些天与间歇性(每节36次)蔗糖输送配对;在散布的盐水日中没有蔗糖。训练前或后的dmCPu的兴奋性毒性或训练后短暂性损伤用于阐明这些区域在获得或表达与尼古丁刺激相关的学习中的作用。训练前的p-dmCPu损伤抑制了获取,而训练后的p-dmCPu损伤则减弱了与尼古丁刺激相关的学习表达。另一方面,a-dmCPu的训练后损伤在盐水处理后会引起尼古丁样反应,这表明该区域在抑制学习的运动行为中的作用。这些结果首次显示,在使用烟碱刺激的联想学习的各个阶段,α-和d-dmCPu在功能上明显不同,并初步说明了这些学习过程背后的神经可塑性。

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