Pharmaceutical Sciences and Technology Program, Faculty of Pharmaceutical Sciences, Chulalongkorn University, Bangkok 10330, Thailand.
Department of Pharmacognosy and Pharmaceutical Botany, Faculty of Pharmaceutical Sciences, Chulalongkorn University, Bangkok 10330, Thailand.
Molecules. 2022 Apr 29;27(9):2841. doi: 10.3390/molecules27092841.
, or black pepper, produces piperine, an alkaloid that has diverse pharmacological activities. In this study, -aryl amide piperine analogs were prepared by semi-synthesis involving the saponification of piperine () to yield piperic acid () followed by esterification to obtain compounds , , and . The compounds were examined for their antitrypanosomal, antimalarial, and anti-SARS-CoV-2 main protease activities. The new 2,5-dimethoxy-substituted phenyl piperamide exhibited the most robust biological activities with no cytotoxicity against mammalian cell lines, Vero and Vero E6, as compared to the other compounds in this series. Its half-maximal inhibitory concentration (IC) for antitrypanosomal activity against was 15.46 ± 3.09 μM, and its antimalarial activity against the 3D7 strain of was 24.55 ± 1.91 μM, which were fourfold and fivefold more potent, respectively, than the activities of piperine. Interestingly, compound inhibited the activity of 3C-like main protease (3CL) toward anti-SARS-CoV-2 activity at the IC of 106.9 ± 1.2 μM, which was threefold more potent than the activity of rutin. Docking and molecular dynamic simulation indicated that the potential binding of in the 3CL active site had the improved binding interaction and stability. Therefore, new aryl amide analogs of piperine should be investigated further as a promising anti-infective agent against human African trypanosomiasis, malaria, and COVID-19.
胡椒,或黑胡椒,产生胡椒碱,一种具有多种药理学活性的生物碱。在这项研究中,通过半合成制备了 -芳基酰胺胡椒碱类似物,涉及胡椒碱()的皂化生成胡椒酸(),然后酯化得到化合物、和。测试了这些化合物的抗锥虫、抗疟原虫和抗 SARS-CoV-2 主要蛋白酶活性。与该系列中的其他化合物相比,新的 2,5-二甲氧基取代苯基哌酰胺表现出最强大的生物学活性,对哺乳动物细胞系 Vero 和 Vero E6 没有细胞毒性。其对 具有抗锥虫活性的半数最大抑制浓度(IC)为 15.46 ± 3.09 μM,对 3D7 株的抗疟原虫活性为 24.55 ± 1.91 μM,分别比胡椒碱的活性强四倍和五倍。有趣的是,化合物对 3CL 样主蛋白酶(3CL)的抑制活性在抗 SARS-CoV-2 活性的 IC 为 106.9 ± 1.2 μM,比芦丁的活性强三倍。对接和分子动力学模拟表明,在 3CL 活性部位中,的潜在结合具有改善的结合相互作用和稳定性。因此,胡椒碱的新型芳基酰胺类似物应作为抗人类非洲锥虫病、疟疾和 COVID-19 的有前途的抗感染药物进一步研究。