尼古丁成瘾的神经生理学。

John A Dani, Daniel Jenson, John I Broussard, Mariella De Biasi
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引用次数: 50

摘要

吸烟是一个主要的健康问题,而尼古丁是主要的上瘾成分。尼古丁与尼古丁乙酰胆碱受体(nAChR)结合产生初始效应。nAChRs亚型由五个亚基组成,这些亚基可以以多种组合形式形成,具有不同的功能和药理学特征。不同的心理药理学效应对尼古丁成瘾的整个过程有贡献,但两种一般的神经系统在烟草使用的开始和维持中起着关键作用。中皮质边缘回路包括起源于腹侧被盖区并投射到伏隔核的多巴胺能通路,被认为是在尼古丁成瘾开始时加强行为的关键。在这个神经系统中,β2、α4和α6是nAChR中最重要的亚基,是尼古丁奖赏和尼古丁自我给药的基础。另一方面,通过反曲束连接的上皮束束复合体和束间核是调节尼古丁剂量和戒断症状的关键因素。在这种情况下,α5和β4 nAChR亚基与其他亚基结合起关键作用。在这两种神经系统中,特定的nAChR亚型在整个尼古丁成瘾过程中起作用。
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Neurophysiology of Nicotine Addiction.

Tobacco use is a major health problem, and nicotine is the main addictive component. Nicotine binds to nicotinic acetylcholine receptors (nAChR) to produce its initial effects. The nAChRs subtypes are composed of five subunits that can form in numerous combinations with varied functional and pharmacological characteristics. Diverse psychopharmacological effects contribute to the overall process of nicotine addiction, but two general neural systems are emerging as critical for the initiation and maintenance of tobacco use. Mesocorticolimbic circuitry that includes the dopaminergic pathway originating in the ventral tegmental area and projecting to the nucleus accumbens is recognized as vital for reinforcing behaviors during the initiation of nicotine addiction. In this neural system β2, α4, and α6 are the most important nAChR subunits underlying the rewarding aspects of nicotine and nicotine self-administration. On the other hand, the epithalamic habenular complex and the interpeduncular nucleus, which are connected via the fasciculus retroflexus, are critical contributors regulating nicotine dosing and withdrawal symptoms. In this case, the α5 and β4 nAChR subunits have critical roles in combination with other subunits. In both of these neural systems, particular nAChR subtypes have roles that contribute to the overall nicotine addiction process.

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