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新型2-烷基亚氨基-1,3-噻唑啉的探索:T型钙通道抑制活性。

Exploration of novel 2-alkylimino-1,3-thiazolines: T-type calcium channel inhibitory activity.

作者信息

Han Minsoo, Nam Kee Dal, Shin Dongyun, Jeong Nakcheol, Hahn Hoh-Gyu

机构信息

Organic Chemistry Laboratory, Korea Institute of Science and Technology, Seoul 136-791, Korea.

出版信息

J Comb Chem. 2010 Jul 12;12(4):518-30. doi: 10.1021/cc100041m.

DOI:10.1021/cc100041m
PMID:20450201
Abstract

We have developed combinatorial libraries of new 2-alkylimino-1,3-thiazolines with four diversity points, consisting of more than 500 compounds, in a parallel synthetic fashion. The synthetic strategy was based on the construction of a large library aimed at the discovery of new compounds with T-type calcium channel inhibitory activity through structure modifications of hit compound 2. The syntheses of the compounds of Chemset A with four diversity points were accomplished by the condensation of thioureas 5 with alpha-haloketones 6{1-66} having two diversity points each. A library of phthalimidyl 1,3-thiazolines 24 was synthesized to provide Chemset B, which allowed the introduction of other diversity points through the nucleophilic character of the amino nitrogen. A sublibrary, Chemset C, was constructed from the libraries of Chemset A and Chemset B by functionalization of the C-4 position of the 1,3-thiazoline ring. The products containing ester or acid groups at the C-4 position of the 1,3-thiazoline ring were used in amide synthesis to give a new sublibrary within Chemset C. Deprotection of the phthalimidyl moiety of 24 followed by the reaction with benzoyl chloride gave the corresponding sublibrary in Chemset C. Another sublibrary which includes secondary amino derivatives was obtained by reduction of the amide moiety or reductive amination of 23 with phenyl aldehyde. The selected compounds from the generated libraries were evaluated with respect to inhibition of T-type calcium channels, where some of them have exhibited promising activity.

摘要

我们以平行合成方式开发了具有四个多样性位点的新型2-烷基亚氨基-1,3-噻唑啉组合库,该库由500多种化合物组成。合成策略基于构建一个大型库,旨在通过对先导化合物2进行结构修饰来发现具有T型钙通道抑制活性的新化合物。具有四个多样性位点的化学集A化合物的合成是通过硫脲5与各自具有两个多样性位点的α-卤代酮6{1-66}缩合完成的。合成了邻苯二甲酰亚胺基-1,3-噻唑啉库24以提供化学集B,其允许通过氨基氮的亲核特性引入其他多样性位点。化学集C子库是由化学集A和化学集B的库通过1,3-噻唑啉环C-4位的官能化构建而成。在1,3-噻唑啉环C-4位含有酯基或酸基的产物用于酰胺合成,从而在化学集C内得到一个新的子库。24的邻苯二甲酰亚胺基部分脱保护后与苯甲酰氯反应,在化学集C中得到相应的子库。通过酰胺部分的还原或23与苯甲醛的还原胺化得到了另一个包含仲氨基衍生物的子库。对生成库中所选化合物进行了T型钙通道抑制活性评估,其中一些化合物表现出了有前景的活性。

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