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神经系统疾病中的α-7烟碱受体:从功能到治疗前景

Alpha-7 Nicotinic Receptors in Nervous System Disorders: From Function to Therapeutic Perspectives.

作者信息

De Jaco Antonella, Bernardini Laura, Rosati Jessica, Tata Ada Maria

机构信息

Department of Biology and Biotechnologies C. Darwin, Research Center of Neurobiology Daniel Bovet, "Sapienza" University of Rome, Rome, Italy.

Cytogenetics Laboratory.

出版信息

Cent Nerv Syst Agents Med Chem. 2017;17(2):100-108. doi: 10.2174/1871524916666160729111446.

Abstract

BACKGROUND

The α7 nicotinic receptor consists of identical subunits and is one of the most abundant acetylcholine receptors in the mammalian central nervous system. However its expression is also found in the peripheral nervous system as well as in the immune system and various peripheral tissues. Nicotinic Receptors: They are involved in the regulation of several activities ranging from excitatory neurotransmission, the modulation of the release of several neurotransmitters, regulation of neurite outgrowth, and even neuronal survival/death. Its expression is found in brain areas that underlie learning and memory, suggesting their involvement in regulating cognitive functions. The α7-nicotinic receptor has a strategic role during development in regulating molecular pathways activated during neurogenesis. Because of its pleiotropic effects, receptor dysfunction or dysregulated expression is found in pathophysiological conditions of the nervous system including neurodegenerative diseases and neurodevelopmental disorders.

CONCLUSION

Here we review the physiological and pathological roles of alpha-7 nicotinic receptor in different nervous system disorders and the current therapeutic strategies developed to target selectively this receptor for potentiating or reducing its functions.

摘要

背景

α7烟碱型受体由相同的亚基组成,是哺乳动物中枢神经系统中最丰富的乙酰胆碱受体之一。然而,其表达也存在于外周神经系统、免疫系统及各种外周组织中。烟碱型受体:它们参与多种活动的调节,范围从兴奋性神经传递、多种神经递质释放的调节、神经突生长的调节,甚至神经元的存活/死亡。在学习和记忆相关的脑区发现了其表达,提示它们参与认知功能的调节。α7烟碱型受体在神经发生过程中调节激活的分子途径的发育过程中具有重要作用。由于其多效性作用,在包括神经退行性疾病和神经发育障碍在内的神经系统病理生理状况中发现了受体功能障碍或表达失调。

结论

在此,我们综述α7烟碱型受体在不同神经系统疾病中的生理和病理作用,以及目前为选择性靶向该受体以增强或降低其功能而开发的治疗策略。

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