首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >Curcuminoid analogs with potent activity against Trypanosoma and Leishmania species.
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Curcuminoid analogs with potent activity against Trypanosoma and Leishmania species.

机译:具有针对锥虫和利什曼原虫物种的有效活性的姜黄素类似物。

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摘要

The natural curcuminoids curcumin (1), demethoxycurcumin (2) and bisdemethoxycurcumin (3) have been chemically modified to give 46 analogs and 8 pairs of 1:1 mixture of curcuminoid analogs and these parent curcuminoids and their analogs were assessed against protozoa of the Trypanosoma and Leishmania species. The parent curcuminoids exhibited low antitrypanosomal activity (EC(50) for our drug-sensitive Trypanosoma brucei brucei line (WT) of compounds 1, 2 and 3 are 2.5, 4.6 and 7.7 microM, respectively). Among 43 curcuminoid analogs and 8 pairs of 1:1 mixture of curcuminoid analogs tested, 8 pure analogs and 5 isomeric mixtures of analogs exhibited high antitrypanosomal activity in submicromolar order of magnitude. Among these highly active analogs, 1,7-bis(4-hydroxy-3-methoxyphenyl)hept-4-en-3-one (40) was the most active compound, with an EC(50) value of 0.053+/-0.007 microM; it was about 2-fold more active than the standard veterinary drug diminazene aceturate (EC(50) 0.12+/-0.01 microM). Using a previously characterized diminazene-resistant T. b. brucei (TbAT1-KO) and a derived multi-drug resistant line (B48), no cross-resistance of curcuminoids was observed to the diamidine and melaminophenyl arsenical drugs that are the current treatments. Indeed, curcuminoids carrying a conjugated keto (enone) motif, including 40, were significantly more active against T. b. brucei B48. This enone motif was found to contribute to particularly high trypanocidal activity against all Trypanosoma species and strains tested. The parent curcuminoids showed low antileishmanial activity (EC(50) values of compounds 1 and 2 for Leishmania mexicana amastigotes are 16+/-3 and 37+/-6 microM, respectively) while the control drug, pentamidine, displayed an EC(50) of 16+/-2 microM. Among the active curcuminoid analogs, four compounds exhibited EC(50) values of less than 5 microM against Leishmania major promastigotes and four against L. mexicana amastigotes. No significant difference in sensitivity to curcuminoids between L. major promastigotes and L. mexicana amastigotes was observed. The parent curcuminoids and most of their analogs were also tested for their toxicity against human embryonic kidney (HEK) cells. All the curcuminoids exhibited lower toxicity to HEK cells than to T. b. brucei bloodstream forms and only one of the tested compounds showed significantly higher activity against HEK cells than curcumin (1). The selectivity index for T. b. brucei ranged from 3-fold to 1500-fold. The selectivity index for the most active analog, the enone 40, was 453-fold.
机译:天然姜黄素姜黄素(1),去甲氧基姜黄素(2)和双去甲氧基姜黄素(3)经过化学修饰,得到46种类似物和8对1:1姜黄素类似物混合物,并评估了这些亲本姜黄素及其类似物对锥虫的原生动物和利什曼原虫种类。母体姜黄素类药物表现出较低的抗锥虫活性(我们对药物敏感的布氏锥虫布鲁氏菌系(WT)的化合物1、2和3的EC(50)分别为2.5、4.6和7.7 microM。在所测试的43种姜黄素类似物和8对姜黄素类似物的1:1混合物中,8种纯类似物和5种类似物的异构体混合物以亚微摩尔量级显示出高的抗胰蛋白酶活性。在这些高活性类似物中,1,7-双(4-羟基-3-甲氧基苯基)庚-4-烯-3-酮(40)是活性最高的化合物,EC(50)值为0.053 +/- 0.007微米;它的活性比标准兽药醋酸二咪唑(EC(50)0.12 +/- 0.01 microM)高出约2倍。使用先前表征的耐地米嗪的T. b。 Brucei(TbAT1-KO)和衍生的多药耐药品系(B48),未发现姜黄素与当前治疗的二am和三聚氰胺苯基砷类药物具有交叉耐药性。实际上,带有共轭酮(烯酮)基序(包括40个)的姜黄素对T. b的活性明显更高。布鲁西B48。发现该烯酮基序对所有测试的锥虫属物种和菌株具有特别高的锥虫杀灭活性。亲本姜黄素显示出较低的抗菌活性(化合物1和2的墨西哥利什曼原虫amastigotes的EC(50)值分别为16 +/- 3和37 +/- 6 microM),而对照药喷他idine定则显示EC(50 )为16 +/- 2 microM。在活性姜黄素类似物中,四种化合物对利什曼原虫主要前鞭毛体的EC(50)值小于5 microM,而对墨西哥乳杆菌的抗性(4)。在大型前鞭毛体乳杆菌和墨西哥墨西哥乳杆菌中,对姜黄素类药物的敏感性没有显着差异。还测试了亲本姜黄素及其大多数类似物对人胚肾(HEK)细胞的毒性。所有姜黄素类药物对HEK细胞的毒性均低于对T. b。的毒性。布鲁斯血流形式,并且仅一种测试化合物对姜黄素细胞的抗HEK活性明显高于姜黄素(1)。 T的选择性指数。 brucei从3倍到1500倍不等。活性最高的类似物烯酮40的选择性指数是453倍。

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