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α6β2* and α4β2* Nicotinic Receptors Both Regulate Dopamine Signaling with Increased Nigrostriatal Damage: Relevance to Parkinsons Disease

机译:α6β2*和α4β2*烟碱受体均调节多巴胺信号传导增加尼古拉斯汀纹状体损伤:与帕金森氏病的相关性

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摘要

Nicotinic receptors (nAChRs) are important modulators of dopaminergic transmission in striatum, a region critical to Parkinson's disease. The nAChRs mainly involved are the α6β2* and α4β2* subtypes. Lesion studies show that the α6β2* receptor is decreased to a much greater extent with nigrostriatal damage than the α4β2* subtype raising the question whether this latter nAChR population is more important with increased nigrostriatal damage. To address this, we investigated the effect of varying nigrostriatal damage on α6β2* and α4β2* receptor-modulated dopamine signaling using cyclic voltammetry. This approach offers the advantage that changes in dopamine release can be observed under different neuronal firing conditions. Total single-pulse-evoked dopamine release decreased in direct proportion to declines in the dopamine transporter and dopamine uptake. We next used α-conotoxinMII and mecamylamine to understand the role of the α4β2* and α6β2* subtypes in release. Single-pulse–stimulated α6β2* and α4β2* receptor dopamine release decreased to a similar extent with increasing nigrostriatal damage, indicating that both subtypes contribute to the control of dopaminergic transmission with lesioning. Total burst-stimulated dopamine release also decreased proportionately with nigrostriatal damage. However, the role of the α4β2* and α6β2* nAChRs varied with different degrees of lesioning, suggesting that the two subtypes play a unique function with burst firing, with a somewhat more prominent and possibly more selective role for the α6β2* subtype. These data have important therapeutic implications because they suggest that drugs directed to both α4β2* and α6β2* nAChRs may be useful in the treatment of neurological disorders such as Parkinson's disease.
机译:烟碱受体(nAChRs)是纹状体中多巴胺能传递的重要调节剂,纹状体是帕金森氏病的关键区域。主要涉及的nAChR是α6β2*和α4β2*亚型。病变研究表明,黑质纹状体损伤比α4β2*亚型的α6β2*受体减少程度要大得多,这提出了后一种nAChR群体对黑质纹状体损害增加是否更重要的问题。为了解决这个问题,我们使用循环伏安法研究了改变黑质纹状体损伤对α6β2*和α4β2*受体调节的多巴胺信号传导的影响。这种方法的优点是可以在不同的神经元放电条件下观察到多巴胺释放的变化。单脉冲诱发的多巴胺总释放量与多巴胺转运蛋白和多巴胺摄取的下降成正比下降。接下来,我们使用α-芋螺毒素MII和美卡明胺来了解α4β2*和α6β2*亚型在释放中的作用。单脉冲刺激的α6β2*和α4β2*受体多巴胺的释放随着黑质纹状体损害的增加而下降的程度相似,表明这两种亚型都有助于通过损伤来控制多巴胺能传递。总爆发刺激的多巴胺释放也与黑纹状体损害成比例地降低。然而,α4β2*和α6β2* nAChRs的作用随损伤程度的不同而变化,这表明这两种亚型在爆发性放电中起独特的作用,对α6β2*亚型的作用更为突出,可能更具选择性。这些数据具有重要的治疗意义,因为它们表明针对α4β2*和α6β2* nAChRs的药物可能可用于治疗神经系统疾病,如帕金森氏病。

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