Department of Chemistry, Faculty of Art and Sciences, Amasya University, 05100, Amasya, Turkey.
Department of Biology, Faculty of Art and Sciences, Amasya University, 05100, Amasya, Turkey.
Sci Rep. 2023 Jan 30;13(1):1676. doi: 10.1038/s41598-023-27777-z.
Spiro[benzo[h]quinoline-7,3'-indoline]diones and spiro[indoline-3,4'-pyrazolo[3,4-b]quinoline]diones were efficiently synthesized via one-pot multi-component reactions under ultrasound-promoted conditions. Spiro[benzo[h]quinoline-7,3'-indoline]dione derivatives were successfully developed by the reaction of isatins, naphthalene-1-amine and 1,3-dicarbonyl compounds. The spiro[indoline-3,4'-pyrazolo[3,4-b]quinoline]dione derivatives were prepared by the reaction of isatins, 5-amino-1-methyl-3-pheylpyrazole, and 1,3-dicarbonyl compounds by using ( ±)-camphor-10-sulfonic acid as a catalyst in HO/EtOH (3:1 v/v) solvent mixture. The antibacterial activity of the synthesized compounds was evaluated against, Enterococcus faecalis, Staphylococcus aureus and Candida albicans. Compounds 4b, 4h, and 6h showed the strongest antimicrobial activity toward both bacteria. The MIC values of these compounds ranged from 375-3000 µg/mL. The effect of these compounds (4b, 4h, 6h) as a function of applied dose and time was investigated by a kinetic study, and the interaction with these antimicrobial results was simulated by a molecular docking study. We also used the docking approach with Covid-19 since secondary bacterial infections. Docking showed that indoline-quinoline hybrid compounds 4b and 4h exerted the strongest docking binding value against the active sites of 6LU7. In addition, the synthesized compounds had a moderate to good free radical scavenging activity.
螺[苯并[h]喹啉-7,3'-吲哚]二酮和螺[吲哚-3,4'-吡唑并[3,4-b]喹啉]二酮通过超声促进条件下的一锅多组分反应高效合成。螺[苯并[h]喹啉-7,3'-吲哚]二酮衍生物是通过反应物靛红、萘-1-胺和 1,3-二羰基化合物反应得到的。螺[吲哚-3,4'-吡唑并[3,4-b]喹啉]二酮衍生物是通过反应物靛红、5-氨基-1-甲基-3-苯基吡唑和 1,3-二羰基化合物在(±)-樟脑-10-磺酸作为催化剂的 HO/EtOH(3:1 v/v)溶剂混合物中制备的。合成化合物的抗菌活性通过对粪肠球菌、金黄色葡萄球菌和白色念珠菌的抑制活性来评价。化合物 4b、4h 和 6h 对两种细菌的抗菌活性最强。这些化合物的 MIC 值范围为 375-3000μg/mL。通过动力学研究考察了这些化合物(4b、4h、6h)作为剂量和时间函数的作用,通过分子对接研究模拟了与这些抗菌结果的相互作用。我们还使用对接方法研究了与新冠病毒相关的继发性细菌感染。对接表明,吲哚-喹啉杂化化合物 4b 和 4h 对 6LU7 的活性部位表现出最强的对接结合值。此外,所合成的化合物具有中等至良好的自由基清除活性。