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GABA(A) agonists and partial agonists: THIP (Gaboxadol) as a non-opioid analgesic and a novel type of hypnotic.

机译:GABA(A)激动剂和部分激动剂:THIP(加波沙朵)是一种非阿片类镇痛药,是一种新型的催眠药。

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The GABA(A) receptor system is implicated in a number of central nervous system (CNS) disorders, making GABA(A) receptor ligands interesting as potential therapeutic agents. Only a few different classes of structures are currently known as ligands for the GABA recognition site on the hetero-pentameric GABA(A) receptor complex, reflecting the very strict structural requirements for GABA(A) receptor recognition and activation. A large number of the compounds showing agonist activity at the GABA(A) receptor site are structurally derived from the GABA(A) agonists muscimol, THIP (Gaboxadol), or isoguvacine, which we developed at the initial stage of the project. Using recombinant GABA(A) receptors, functional selectivity has been shown for a number of compounds, including THIP, showing subunit-dependent potency and maximal response. The pharmacological and clinical activities of THIP probably reflect its potent effects at extrasynaptic GABA(A) receptors insensitive to benzodiazepines and containing alpha(4)beta(3)delta subunits. The results of ongoing clinical studies on the effect of the partial GABA(A) agonist THIP on human sleep pattern show that the functional consequences of a directly acting agonist are distinctly different from those seen after administration of GABA(A) receptor modulators, such as benzodiazepines. In the light of the interest in partial GABA(A) receptor agonists as potential therapeutics, structure-activity studies of a number of analogues of 4-PIOL, a low-efficacy partial GABA(A) agonist derived from THIP, have been performed. In this connection, a series of GABA(A) ligands has been developed showing pharmacological profiles ranging from low-efficacy partial GABA(A) agonist activity to selective antagonist effect.
机译:GABA(A)受体系统与许多中枢神经系统(CNS)疾病有关,使GABA(A)受体配体成为潜在的治疗剂。目前只有几种不同类型的结构被称为杂五聚体GABA(A)受体复合物上GABA识别位点的配体,反映了对GABA(A)受体识别和激活的非常严格的结构要求。在GABA(A)受体位点表现出激动剂活性的大量化合物从结构上衍生自我们在项目初期就开发的GABA(A)激动剂麝香酚,THIP(加波沙朵)或异胍卡因。使用重组GABA(A)受体,已显示出对许多化合物(包括THIP)的功能选择性,显示出亚基依赖性效价和最大响应。 THIP的药理和临床活性可能反映了它对不敏感于苯并二氮杂并含有alpha(4)beta(3)delta亚基的突触外GABA(A)受体的有效作用。正在进行的有关部分GABA(A)激动剂THIP对人睡眠模式影响的临床研究结果表明,直接作用的激动剂的功能后果与施用GABA(A)受体调节剂后所见的明显不同。苯二氮卓类。鉴于对部分GABA(A)受体激动剂作为潜在治疗剂的兴趣,已对4-PIOL(一种源自THIP的低效部分GABA(A)激动剂)的类似物进行了结构活性研究。在这方面,已开发出一系列GABA(A)配体,其药理学特征从低效的部分GABA(A)激动剂活性到选择性拮抗作用不等。

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