Department of Chemical Sciences, National Institute of Pharmaceutical Education and Research (NIPER), Balanagar, Hyderabad 500037, India.
Neurofarba Department, University of Florence, Via Ugo Schiff 6, Sesto Fiorentino, 50019 Florence, Italy.
Molecules. 2022 Nov 18;27(22):8028. doi: 10.3390/molecules27228028.
A novel series of twenty-five rhodamine-linked benzenesulfonamide derivatives (- and -) were synthesized and screened for their inhibitory action against four physiologically relevant human (h) carbonic anhydrase (CA) isoforms, namely hCA I, hCA II, hCA IX, and hCA XII. All the synthesized molecules showed good to excellent inhibition against all the tested isoforms in the nanomolar range due to the presence of the sulfonamide as a zinc binding group. The target compounds were developed from indol-3-ylchalcone-linked benzenesulfonamide where the indol-3-ylchalcone moiety was replaced with rhodanine-linked aldehydes or isatins to improve the inhibition. Interestingly, the molecules were slightly more selective towards hCA IX and XII compared to hCA I and II. The most potent and efficient ones against hCA I were ( 22.4 nM) and ( 35.8 nM) compared to the standard drug AAZ ( 250.0 nM), whereas in case of hCA II inhibition, the derivatives containing the isatin nucleus as a tail were preferred. Collectively, all compounds were endowed with better inhibition against hCA IX compared to AAZ ( 25.8 nM) as well as strong potency against hCA XII. Finally, these newly synthesized molecules could be taken as potential leads for the development of isoform selective hCA IX and XII inhibitors.
合成了一系列 25 个罗丹明连接的苯磺酰胺衍生物(-和-),并对其抑制作用进行了筛选,以研究它们对四种生理相关的人(h)碳酸酐酶(CA)同工型,即 hCA I、hCA II、hCA IX 和 hCA XII 的抑制作用。由于存在磺酰胺作为锌结合基团,所有合成的分子在纳摩尔范围内对所有测试的同工型都表现出良好到优异的抑制作用。这些靶化合物是从吲唑-3-基查尔酮连接的苯磺酰胺发展而来的,其中吲唑-3-基查尔酮部分被罗丹明连接的醛或色酮取代,以提高抑制作用。有趣的是,与 hCA I 和 II 相比,这些分子对 hCA IX 和 XII 略有更高的选择性。对 hCA I 最有效和最有效的化合物是(22.4 nM)和(35.8 nM),与标准药物 AAZ(250.0 nM)相比,而在抑制 hCA II 时,含有色酮核作为尾部的衍生物则更受欢迎。总的来说,与 AAZ(25.8 nM)相比,所有化合物对 hCA IX 的抑制作用都更好,对 hCA XII 的抑制作用也更强。最后,这些新合成的分子可以作为开发同工型选择性 hCA IX 和 XII 抑制剂的潜在先导化合物。