Faculty of Art and Science, Department of Chemistry, Sakarya University, Serdivan, Turkey.
Faculty of Education, Department of Maths and Science Education, Kırıkkale University, Kirikkale, Turkey.
Arch Pharm (Weinheim). 2018 Sep;351(9):e1800167. doi: 10.1002/ardp.201800167. Epub 2018 Aug 5.
We report the synthesis of bromoindenoquinolines (15a-f) by Friedlander reactions in low yields (13-50%) and the conversion of the corresponding phenyl-substituted indenoquinoline derivatives 16-21 in high yields (80-96%) by Suzuki coupling reactions. To explore the structure-activity relationship (SAR), their inhibition potentials to inhibit acetylcholinesterase (AChE), butyrylcholinesterase (BChE), and human carbonic anhydrase cyctosolic (hCA I and II) enzymes were determined. Monophenyl (16-18) indenoquinolines significantly inhibited the AChE and BChE enzymes in ranges of IC 37-57 nM and 84-93 nM, respectively, compared with their starting materials 15a-c and reference compounds (galanthamine and tacrine). On the other hand, these novel arylated indenoquinoline-based derivatives were effective inhibitors of the BChE, hCA I and II, BChE and AChE enzymes with K values in the range of 37 ± 2.04 to 88640 ± 1990 nM for AChE, 120.94 ± 37.06 to 1150.95 ± 304.48 nM for hCA I, 267.58 ± 98.05 to 1568.16 ± 438.67 nM for hCA II, and 84 ± 3.86 to 144120 ± 2910 nM for BChE. As a result, monophenyl indenoquinolines 16-18 may have promising anti-Alzheimer drug potential and 3,8-dibromoindenoquinoline amine (15f) can be novel hCA I and hCA II enzyme inhibitors.
我们报道了溴代茚并喹啉(15a-f)的合成,其通过 Friedlander 反应的产率较低(13-50%),而相应的取代苯基茚并喹啉衍生物 16-21 通过 Suzuki 偶联反应的产率较高(80-96%)。为了探索构效关系(SAR),我们测定了它们抑制乙酰胆碱酯酶(AChE)、丁酰胆碱酯酶(BChE)和人碳酸酐酶胞质同工酶(hCA I 和 II)的抑制潜力。与起始原料 15a-c 和参考化合物(加兰他敏和他克林)相比,单苯基(16-18)茚并喹啉对 AChE 和 BChE 酶的抑制作用分别在 IC 37-57 nM 和 84-93 nM 的范围内显著。另一方面,这些新型芳基化的基于茚并喹啉的衍生物是 BChE、hCA I 和 II、BChE 和 AChE 酶的有效抑制剂,其 K 值范围为 37 ± 2.04 至 88640 ± 1990 nM 用于 AChE、120.94 ± 37.06 至 1150.95 ± 304.48 nM 用于 hCA I、267.58 ± 98.05 至 1568.16 ± 438.67 nM 用于 hCA II 和 84 ± 3.86 至 144120 ± 2910 nM 用于 BChE。结果表明,单苯基茚并喹啉 16-18 可能具有有前景的抗阿尔茨海默病药物潜力,而 3,8-二溴茚并喹啉胺(15f)可以作为新型 hCA I 和 hCA II 酶抑制剂。