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Lateral Habenula contribution in Nicotine addiction : focus on Dopamine, GABA and Serotonin Interactions

机译:Habenula在尼古丁成瘾中的侧向贡献:专注于多巴胺,GABA和5-羟色胺的相互作用

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摘要

Compelling evidence has shown a pivotal role of dopaminergic function in drug addiction. Recently, the Habenula (Hb) has attracted a great deal of attention as another target for nicotine in the brain because of its role in regulating dopamine (DA), gamma-aminobutyric acid (GABA) and serotonin (5-HT) systems. Nicotine acts binding to acetylcholine receptors that are widely distributed in the brain. Interestingly, the receptor subtypes that mediate nicotine withdrawal responses are highly expressed in the Hb. Moreover, the block of habenular nicotinic receptors in animals chronically treated with nicotine enhances withdrawal responses once nicotine is discontinued. Furthermore, it has been shown how a high dose of nicotine can cause massive degeneration almost exclusively in the medial habenula (MHb) and its output tract, the fasciculus retroflexus. Thus, symptoms associated with nicotine withdrawal may be caused by dysfunctions of the Hb output. Therefore, Hb might be of fundamental importance in the expression of nicotine reinforcing properties and withdrawal. Here, we will focus on the role of the lateral habenula (LHb) on nicotine modulation of DA function and we will evaluate LHb interaction with the rostromedial tegmental nucleus (RMTg), a GABAergic area, and the serotonergic raphé nuclei. Furthermore, as LHb has high density expression of 5-HT2C receptors, these subtypes might be important in the control of its neuronal activity and output to the midbrain monoaminergic and GABAergic systems.
机译:有力的证据表明,多巴胺能功能在成瘾中起着关键作用。近年来,哈贝努拉(Hb)作为大脑中尼古丁的另一个靶点已受到广泛关注,因为它在调节多巴胺(DA),γ-氨基丁酸(GABA)和5-羟色胺(5-HT)系统中的作用。尼古丁的作用是与广泛分布于大脑中的乙酰胆碱受体结合。有趣的是,介导尼古丁戒断反应的受体亚型在Hb中高度表达。此外,一旦停用尼古丁,长期接受尼古丁治疗的动物中的哈贝尼克烟碱受体阻滞增强了戒断反应。此外,已经显示出高剂量的尼古丁如何几乎完全导致内侧哈贝努拉(MHb)及其输出束逆反射筋膜引起大量变性。因此,与尼古丁戒断有关的症状可能是由血红蛋白输出功能障碍引起的。因此,Hb在尼古丁增强特性和戒断的表达中可能具有根本的重要性。在这里,我们将重点研究外侧哈贝努拉(LHb)在尼古丁调节DA功能上的作用,并评估LHb与结节性被膜核(RMTg),GABA能区和血清素能拉菲核的相互作用。此外,由于LHb具有高密度表达的5-HT2C受体,这些亚型可能在控制其神经元活性以及向中脑单胺能和GABA能系统输出中起重要作用。

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