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寻找新型抗疟喹唑啉:DMAP 催化合成 4-苄氧基-和 4-芳氧基-2-三氯甲基喹唑啉及其对恶性疟原虫的体外评价。

Looking for new antiplasmodial quinazolines: DMAP-catalyzed synthesis of 4-benzyloxy- and 4-aryloxy-2-trichloromethylquinazolines and their in vitro evaluation toward Plasmodium falciparum.

机构信息

Aix-Marseille Université, CNRS, ICR UMR 7273, Laboratoire de Pharmaco-Chimie Radicalaire, Faculté de Pharmacie, 27 Boulevard Jean Moulin - CS30064, 13385 Marseille cedex 05, France.

Aix-Marseille Université, UMR MD 3, Infections Parasitaires, Transmission et Thérapeutique, Faculté de Pharmacie, 27 Boulevard Jean Moulin - CS30064, 13385 Marseille cedex 05, France.

出版信息

Eur J Med Chem. 2016 Aug 25;119:34-44. doi: 10.1016/j.ejmech.2016.04.059. Epub 2016 Apr 28.

Abstract

A DMAP catalyzed synthesis of new 4-benzyloxy- and 4-aryloxy-2-trichloromethylquinazolines was studied, in a view to react 4-chloroquinazolines with poorly nucleophilic alcohols such as benzylic alcohols, via a simple and cheap SNAr reaction approach. A fast (1 h) general operating procedure, affording good reaction yields, was achieved under microwave irradiation. Thus, a series of 35 molecules was obtained and evaluated in vitro on the K1 multi-resistant Plasmodium falciparum strain, in parallel with a cytotoxicity assessment on the human HepG2 cell line. 5 hit-molecules were identified, presenting both promising antiplasmodial activity (1.5 μM < IC50 < 2 μM) and low cytotoxicities (25 μM < CC50 < 45 μM). Apart for 2 molecules, the global series displayed a satisfying solubility in the aqueous biological media. Structure-activity relationships showed that the molecules presenting a benzyloxy moiety were less cytotoxic than the ones bearing a phenoxy moiety at position 4 of the quinazoline ring. It also appeared that the introduction of a heteroaryl moiety afforded inactive compounds. Finally, the most active and selective molecules (Selectivity Index = 22-27) were the ones presenting either an unsubstituted benzyloxy group or a phenoxy group, this last bearing a p-bromo or an o-acetyl substituent.

摘要

研究了 DMAP 催化的新型 4-苄氧基-和 4-芳氧基-2-三氯甲基喹唑啉的合成,目的是通过简单廉价的 SNAr 反应方法使 4-氯喹唑啉与亲核性差的醇(如苄醇)反应。在微波辐射下,实现了一种快速(1 h)的通用操作程序,获得了良好的反应收率。因此,获得了一系列 35 个分子,并在体外对 K1 多耐药恶性疟原虫株进行了评估,同时在人 HepG2 细胞系上进行了细胞毒性评估。鉴定出 5 个命中分子,它们既具有有前途的抗疟活性(1.5 μM < IC50 < 2 μM),又具有低细胞毒性(25 μM < CC50 < 45 μM)。除了 2 个分子外,整个系列在水生物介质中的溶解度都令人满意。构效关系表明,带有苄氧基部分的分子比在喹唑啉环 4 位带有苯氧基部分的分子的细胞毒性更小。还表明引入杂芳基部分会得到无活性的化合物。最后,最活跃和选择性最高的分子(选择性指数= 22-27)是那些带有未取代的苄氧基或苯氧基的分子,最后一个带有 p-溴或 o-乙酰取代基。

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