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一类新型喹唑啉磺酰胺,可作为克氏锥虫α-碳酸酐酶的有效抑制剂。

A new class of quinazoline-sulfonamides acting as efficient inhibitors against the α-carbonic anhydrase from Trypanosoma cruzi.

作者信息

Alafeefy Ahmed M, Ceruso Mariangela, Al-Jaber Nabila A, Parkkila Seppo, Vermelho Alane Beatriz, Supuran Claudiu T

机构信息

Department of Pharmaceutical Chemistry, College of Pharmacy, Salman bin Abdulaziz University , Al-Kharj , Saudi Arabia .

出版信息

J Enzyme Inhib Med Chem. 2015;30(4):581-5. doi: 10.3109/14756366.2014.956309. Epub 2014 Nov 6.

Abstract

The protozoan parasite Trypanosoma cruzi is the agent responsible for trypanosomiasis (Chagas disease) in humans and other animals. It has been recently reported that this pathogen encodes for an α-class carbonic anhydrase (CA, EC 4.2.1.1), denominated TcCA, which was shown to be crucial for its life cycle. Inhibition studies of a class of 4-oxoquinazoline containing a benzensulfonamide moiety and their 4-thioxo bioisosteres against the protozoan enzyme TcCA are described here. Most of 4-oxoquinazoline sulfonamides showed nanomolar TcCA inhibition activity with K(I)s in the same order of magnitude of acetazolamide (AAZ), whereas their thioxo bioisosters showed moderate anti-Trypanosoma CA potency with K(I)s in the micromolar range. The discovery of compounds incorporating a 4-oxoquinazoline ring as a low-nanomolar TcCA inhibitor is quite promising and it may be useful for developing anti-Trypanosoma agents with a novel mechanism of action compared to the clinically used drugs (such as benznidazole, nifurtimox) for which significant resistance and serious adverse effects due to their high-toxicity appeared.

摘要

原生动物寄生虫克氏锥虫是人类和其他动物锥虫病(恰加斯病)的病原体。最近有报道称,这种病原体编码一种α类碳酸酐酶(CA,EC 4.2.1.1),命名为TcCA,已证明它对其生命周期至关重要。本文描述了一类含有苯磺酰胺部分的4-氧代喹唑啉及其4-硫代生物电子等排体对原生动物酶TcCA的抑制研究。大多数4-氧代喹唑啉磺酰胺显示出纳摩尔级的TcCA抑制活性,其抑制常数(KI)与乙酰唑胺(AAZ)处于同一数量级,而它们的硫代生物电子等排体显示出中等的抗锥虫CA效力,KI在微摩尔范围内。发现含有4-氧代喹唑啉环的化合物作为低纳摩尔级TcCA抑制剂很有前景,与临床上使用的药物(如苯硝唑、硝呋替莫)相比,它可能有助于开发具有新作用机制的抗锥虫药物,因为临床上使用的药物出现了显著的耐药性且因其高毒性产生了严重的不良反应。

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