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Cyclic Enkephalins with a Diversely Substituted Guanidine Bridge or a Thiourea Bridge: Synthesis, Biological and Structural Evaluations

机译:具有取代的胍基桥或硫脲桥的环状脑啡肽:合成,生物学和结构评价。

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摘要

Two series of 22 and 15 atom cyclic enkephalins incorporating a diversely substituted guanidine bridge have been prepared to assess the potential effect of the bridge substitutions on their opioid activity profile. The most notable results were obtained with the shortest cyclic analogues, which showed a significant variation of their binding affinity toward mu and delta opioid receptors in relation to bridge substitution. NMR studies were performed to rationalize these data. Some small analogues were found to exist as at least one major and one minor stable forms, which could be separated by chromatography. In particular, the compounds 13 and 14 with a cyclic substituent were separated in three isomers and the basis of this multiplicity was explored by 2D NMR spectroscopy. All compounds were agonists with slight selectivity for the mu opioid receptor. Compounds 7a (thiourea bridge) and 10a (N-Me-guanidine bridge) showed nanomolar affinity toward mu receptor, the latter being the more selective for this receptor (40-fold).
机译:已经制备了两个结合有不同取代的胍桥的22和15原子环状脑啡肽,以评估桥取代对其阿片样物质活性谱的潜在影响。最短的环状类似物获得了最显着的结果,这表明它们对mu和delta类阿片受体的结合亲和力与桥取代有关有很大变化。进行NMR研究以合理化这些数据。发现一些小的类似物以至少一种主要和一种次要的稳定形式存在,可以通过色谱法分离。特别是,将具有环状取代基的化合物13和14分离为三个异构体,并通过2D NMR光谱探索了多样性的基础。所有化合物都是对μ阿片样物质受体具有轻微选择性的激动剂。化合物7a(硫脲桥)和10a(N-Me-胍桥)对mu受体表现出纳摩尔亲和力,后者对该受体的选择性更高(40倍)。

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