中枢神经系统疾病的临床和实验神经药理学研究进展。

IF 1.3 Q4 PHARMACOLOGY & PHARMACY
Susan C McKarns
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引用次数: 0

摘要

在过去的十年里,神经生物学药物发现领域随着受体超家族的变构调节剂的发现而发生了巨大的变化。有限数量的神经递质可引起广泛的生理反应。这篇综述提供了受体的生理特征和响应神经受体激活而产生的信号通路的最新进展,从而可以解释这种大量的神经递质反应。神经系统中的受体主要根据结构可分为四类:g蛋白偶联受体、配体门控受体、酶联受体和核受体。特别强调中枢神经系统,即脑,脊髓和视神经,我们识别神经受体,它们的内源性激动剂,拮抗剂,神经系统内的表达位点,当前的神经药理学临床应用,以及新药发现的潜力。新的分子方法和我们对神经系统发育、功能和紊乱过程中神经元通信的知识的进步,以及将现有药物重新用于新适应症的机会,继续突出了改善人类健康的令人兴奋的机会。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Review of Neuroreceptors for Clinical and Experimental Neuropharmacology in Central Nervous System Disorders.

The neurobiology drug discovery landscape has transformed over the past decade or so by the discovery of allosteric modulators of receptor superfamilies. A wide range of physiological reactions can occur in response to a limited number of neurotransmitters. This review provides an update on physiological features of the receptors and the signaling pathways that are generated in response to neuroreceptor activation that allow the explanation of this vast array of neurotransmitter responses. Primarily based upon structure, receptors in the nervous system can be classified into four groups: Gprotein coupled receptors, ligand-gated receptors, enzyme-linked receptors, and nuclear receptors. With a particular emphasis on the central nervous system, i.e., brain, spinal cord, and optic nerves, we identify the neuroreceptors, their endogenous agonists, antagonists, sites of expression within the nervous system, current neuropharmacological clinical use, and potential for new drug discovery. New molecular approaches and advances in our knowledge of neuronal communication in processes involved in development, functioning and disorders of the nervous system combined with opportunities to re-purpose existing drugs for new indications continue to highlight the exciting opportunities to improve human health.

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来源期刊
CiteScore
4.80
自引率
9.10%
发文量
55
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