首页> 美国卫生研究院文献>Journal of Enzyme Inhibition and Medicinal Chemistry >4-Anilinoquinazoline-based benzenesulfonamides as nanomolar inhibitors of carbonic anhydrase isoforms I II IX and XII: design synthesis in-vitro and in-silico biological studies
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4-Anilinoquinazoline-based benzenesulfonamides as nanomolar inhibitors of carbonic anhydrase isoforms I II IX and XII: design synthesis in-vitro and in-silico biological studies

机译:4-苯喹唑啉基苯磺酰胺作为碳酸酐酶亚型 I、II、IX 和 XII 的纳摩尔抑制剂:设计、合成、体外和计算机生物学研究

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摘要

Human carbonic anhydrase inhibitors (hCAIs) are a key therapeutic class with a multitude of novel applications such as anticonvulsants, topically acting antiglaucoma, and anticancer drugs. Herein, a new series of 4-anilinoquinazoline-based benzenesulfonamides were designed, synthesised, and biologically assessed as potential hCAIs. The target compounds are based on the well-tolerated kinase scaffold (4-anilinoquinazoline). Compounds 3a (89.4 nM), 4e (91.2 nM), and 4f (60.9 nM) exhibited 2.8, 2.7, and 4 folds higher potency against hCA I when compared to the standard (AAZ, V), respectively. A single digit nanomolar activity was elicited by compounds 3a (8.7 nM), 4a (2.4 nM), and 4e (4.6 nM) with 1.4, 5, and 2.6 folds of potency compared to AAZ (12.1 nM) against isoform hCA II, respectively. Structure-activity relationship (SAR) and molecular docking studies validated our design approach that revealed highly potent hCAIs.
机译:人碳酸酐酶抑制剂 (hCAI) 是一种关键的治疗类别,具有多种新应用,例如抗惊厥药、局部作用抗青光眼和抗癌药物。在此,设计、合成了一系列新的 4-苯胺喹唑啉基苯磺酰胺,并作为潜在的 hCAIs 进行了生物学评估。目标化合物基于耐受性良好的激酶支架 (4-苯胺喹唑啉)。与标准品 (AAZ, V) 相比,化合物 3a (89.4 nM)、4e (91.2 nM) 和 4f (60.9 nM) 对 hCA I 的效力分别高 2.8、2.7 和 4 倍。化合物 3a (8.7 nM)、4a (2.4 nM) 和 4e (4.6 nM) 引发个位数纳摩尔活性,与 AAZ (12.1 nM) 相比,对亚型 hCA II 的效力分别为 1.4、5 和 2.6 倍。构效关系 (SAR) 和分子对接研究验证了我们的设计方法,该方法揭示了高效的 hCAIs。

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