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2,5-双(4-鸟苷基苯基)呋喃的合成及其抗原生动物活性

Synthesis and antiprotozoal activity of 2,5-bis(4-guanylphenyl)furans.

作者信息

Das B P, Boykin D W

出版信息

J Med Chem. 1977 Apr;20(4):531-6. doi: 10.1021/jm00214a014.

DOI:10.1021/jm00214a014
PMID:321783
Abstract

Eighteen substituted 2,5-bis(4-guanylphenyl)furans and related analogues, including "masked" amidines in which the guanyl function is incorporated into a heterocyclic ring, have been synthesized and their antimalarial and antitrypanosomal activity has been evaluated. None of the compounds exhibited high orders of antimalarial activity; however, 11 were very active against Trypanosoma rhodesiense in mice. Six compounds, including 2,5-bis(4-guanylphenyl)furan (4) and its 3-chloro (32), 3,4-dichloro (31), 3-methyl (25), 3,4-dimethyl (20), and 3-chloro-4-methyl (38) derivatives, produced cures in mice at submilligram dosage levels; the 3,4-dimethyl (20) analogue exhibited a prolonged curative effect providing protection for 30 days after a single dose against a challenge by T. rhodesiense. These six compounds are somewhat more active in this screen than stilbamidine, hydroxystilbamidine, and pentamidine. The "masked" amidines generally exhibited lower antitrypanosomal activity than their true guanyl counterparts. Compound 4 was synthesized from 1,4-di-p-bromophenyl-1,4-butanedione by cyclodehydrative furanization to 2,5-bis(4-bromophenyl)furan (2) which was allowed to react with Cu2(CN)2 to produce the corresponding bis-nitrile 3. The latter compound was ultimately converted by way of an imidate ester into 4. Similarly, the 3- and/or 4-substituted derivatives of 2 were employed to prepare the other members of the series.

摘要

已合成了18种取代的2,5-双(4-胍基苯基)呋喃及其相关类似物,包括胍基官能团并入杂环的“掩蔽”脒,并评估了它们的抗疟和抗锥虫活性。这些化合物均未表现出高抗疟活性;然而,其中11种对小鼠体内的罗德西亚锥虫具有很强的活性。六种化合物,包括2,5-双(4-胍基苯基)呋喃(4)及其3-氯(32)、3,4-二氯(31)、3-甲基(25)、3,4-二甲基(20)和3-氯-4-甲基(38)衍生物,在亚毫克剂量水平下可治愈小鼠;3,4-二甲基(20)类似物表现出延长的治愈效果,单次给药后对罗德西亚锥虫攻击提供30天的保护。这六种化合物在该筛选中比司巴丁、羟基司巴丁和喷他脒的活性略高。“掩蔽”脒的抗锥虫活性通常低于其真正的胍基对应物。化合物4由1,4-二对溴苯基-1,4-丁二酮通过环脱水呋喃化反应合成2,5-双(4-溴苯基)呋喃(2),然后使其与Cu2(CN)2反应生成相应的双腈3。后者最终通过亚氨酸酯转化为4。类似地,使用2的3-和/或4-取代衍生物制备该系列的其他成员。

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