Objective Sulfanilamide,sulfadiazine,and dapsone were the first sulfonamides to be used to treat malaria by disrupting the folate biosynthesis process,which is essential for parasite survival.Therefore,we aimed to syn...Objective Sulfanilamide,sulfadiazine,and dapsone were the first sulfonamides to be used to treat malaria by disrupting the folate biosynthesis process,which is essential for parasite survival.Therefore,we aimed to synthesize novel N-(2-arylaminophenyl)-2,3-diphenylquinoxaline-6-sulfonamide derivatives through a rational drug design approach.Methods All compounds were synthesized by the conventional method,and the products were characterized by spectral analysis(1 H NMR and mass spectrometry).The progression of the reaction was monitored using thin-layer chromatography(TLC).All the derivatives were analyzed for their effective binding mode in the allosteric site of the plasmodium cysteine protease falcipain-2.Antibacterial and antifungal activities were determined using the broth dilution method.Results S6(N-(2-thiazol-4 yl)-acetyl-aminophenyl)-2,3-diphenylquinoxaline-6-sulfonamide and S9(N-(1 H-benzo[d]imidazol-2-yl)aminophenyl)-2,3-diphenylquinoxaline-6-sulfonamide formed five hydrogen bonds;S8(N-(2-1 H-imidazol-2 yl)aminophenyl)-2,3-diphenylquinoxaline-6-sulfonamide and S10(N-(1 H-benzo[d]imidazol-5-yl)aminophenyl)-2,3-diphenylquinoxaline-6-sulfonamide formed four hydrogen bonds with the allosteric site of the enzyme.Considering the docking scores and formation of hydrogen bonds with the target enzyme,the novel derivatives were processed for wet lab synthesis.All the newly synthesized derivatives were subjected to in vitro antimalarial,antifungal,and antibacterial activities.All the derivatives exhibited sufficient sensitivity to the Plasmodium falciparum strain compared to the standards.Moreover,compounds S9 and S10 showed the most potent dual antimicrobial and antimalarial activities.They also exhibited powerful molecular interactions in molecular docking studies.Conclusion Based on the above results,it was concluded that N-(2-arylaminophenyl)-2,3-diphenylquinoxaline-6-sulfonamide derivatives have excellent biological potential to act as antimalarial,antifungal,and antibacterial agents.展开更多
Several novel sulfonamide-derivatives were designed and studied their physicochemical properties to develop novel kinase inhibitors. Therefore, molecular docking was performed for the designed compounds against epider...Several novel sulfonamide-derivatives were designed and studied their physicochemical properties to develop novel kinase inhibitors. Therefore, molecular docking was performed for the designed compounds against epidermal growth factor receptor (PDB ID: 2ITY) to identify new drug candidates for treating cancer. Binding free energy was calculated by Molegro virtual docker (MVD) to select the most promising hits. The corresponding docking score values into EGFR of 4b gave the best energy docking —128.819 Kcal/mol. The identified hits can serve as starting points for further chemical synthesis and optimization to develop new potent anticancer agents.展开更多
AIM: Cyclooxygenase-2 (COX-2) has been suggested to be associated with carcinogenesis. We sought to investigate the effect of the selective COX-2 inhibitor, Nimesulide on proliferation and apoptosis of SMMC-7721 human...AIM: Cyclooxygenase-2 (COX-2) has been suggested to be associated with carcinogenesis. We sought to investigate the effect of the selective COX-2 inhibitor, Nimesulide on proliferation and apoptosis of SMMC-7721 human hepatoma cells.METHODS: This study was carried out on the culture of hepatic carcinoma SMMC-7721 cell line. Various concentrations of Nimesulide (0, 200 micromol/L, 300 micromol/L, 400 micromol/L) were added and incubated. Cell proliferation was detected with MTT colorimetric assay, cell apoptosis by electron microscopy, flow cytometry and TUNEL.RESULTS: Nimesulide could significantly inhibit SMMC-7721 cells proliferation dose-dependent and in a dependent manner compared with that of the control group. The duration lowest inhibition rate produced by Nimesulide in SMMC-7721 cells was 19.06%, the highest inhibition rate was 58.49%. After incubation with Nimesulide for 72 h, the most highest apoptosis rate and apoptosis index of SMMC-7721 cells comparing with those of the control were 21.20%+/-1.62% vs 2.24%+/-0.26% and 21.23+/-1.78 vs 2.01+/-0.23 (P【0.05). CONCLUSION:The selective COX-2 inhibitor, Nimesulide can inhibit the proliferation of SMMC-7721 cells and increase apoptosis rate and apoptosis index of SMMC-7721 cells. The apoptosis rate and the apoptosis index are dose-dependent. Under electron microscope SMMC-7721 cells incubated with 300 micromol and 400 micromol Nimesulide show apoptotic characteristics. With the clarification of the mechanism of selective COX-2 inhibitors, These COX-2 selective inhibitors can become the choice of prevention and treatment of cancers.展开更多
8-氟-5-羟基-[1,2,4]三唑并[1,5-c]嘧啶-2-磺酰胺(9)为重要的医药、农药等中间体,其合成方法暂无文献报道。以2,4-二氯-5-氟嘧啶为原料,经醚化、肼解、环合、重排、磺酰胺化、脱甲基化等反应合成了9,总收率27.2%,其结构经1 H NMR,13 C ...8-氟-5-羟基-[1,2,4]三唑并[1,5-c]嘧啶-2-磺酰胺(9)为重要的医药、农药等中间体,其合成方法暂无文献报道。以2,4-二氯-5-氟嘧啶为原料,经醚化、肼解、环合、重排、磺酰胺化、脱甲基化等反应合成了9,总收率27.2%,其结构经1 H NMR,13 C NMR和MS(ESI)确证。展开更多
以间氯苯胺为原料,通过乙酰化、氯磺化、磺酰胺化及碱性水解四步反应,位置选择性地合成了4-氨基-2-氯苯磺酰胺,所得中间体和目标分子的结构经熔点及1 H NMR确定,某些分子的结构经13 C NMR,HRMS进一步验证.添加二氯亚砜既提高了氯磺化反...以间氯苯胺为原料,通过乙酰化、氯磺化、磺酰胺化及碱性水解四步反应,位置选择性地合成了4-氨基-2-氯苯磺酰胺,所得中间体和目标分子的结构经熔点及1 H NMR确定,某些分子的结构经13 C NMR,HRMS进一步验证.添加二氯亚砜既提高了氯磺化反应的收率,也促成了固体产品的生成;放大合成每步反应收率中等(高于60%)至优良(高于90%),后处理方法简单,可以大批量合成,是可行的工业生产方法.展开更多
基金funding support from the National Natural Science Foundation of China(No.82074251)the Hunan Natural Science Foundation of China(No.2018JJ2413)the Hunan Provincial Health and Health Commission Project(No.c2018032)。
文摘Objective Sulfanilamide,sulfadiazine,and dapsone were the first sulfonamides to be used to treat malaria by disrupting the folate biosynthesis process,which is essential for parasite survival.Therefore,we aimed to synthesize novel N-(2-arylaminophenyl)-2,3-diphenylquinoxaline-6-sulfonamide derivatives through a rational drug design approach.Methods All compounds were synthesized by the conventional method,and the products were characterized by spectral analysis(1 H NMR and mass spectrometry).The progression of the reaction was monitored using thin-layer chromatography(TLC).All the derivatives were analyzed for their effective binding mode in the allosteric site of the plasmodium cysteine protease falcipain-2.Antibacterial and antifungal activities were determined using the broth dilution method.Results S6(N-(2-thiazol-4 yl)-acetyl-aminophenyl)-2,3-diphenylquinoxaline-6-sulfonamide and S9(N-(1 H-benzo[d]imidazol-2-yl)aminophenyl)-2,3-diphenylquinoxaline-6-sulfonamide formed five hydrogen bonds;S8(N-(2-1 H-imidazol-2 yl)aminophenyl)-2,3-diphenylquinoxaline-6-sulfonamide and S10(N-(1 H-benzo[d]imidazol-5-yl)aminophenyl)-2,3-diphenylquinoxaline-6-sulfonamide formed four hydrogen bonds with the allosteric site of the enzyme.Considering the docking scores and formation of hydrogen bonds with the target enzyme,the novel derivatives were processed for wet lab synthesis.All the newly synthesized derivatives were subjected to in vitro antimalarial,antifungal,and antibacterial activities.All the derivatives exhibited sufficient sensitivity to the Plasmodium falciparum strain compared to the standards.Moreover,compounds S9 and S10 showed the most potent dual antimicrobial and antimalarial activities.They also exhibited powerful molecular interactions in molecular docking studies.Conclusion Based on the above results,it was concluded that N-(2-arylaminophenyl)-2,3-diphenylquinoxaline-6-sulfonamide derivatives have excellent biological potential to act as antimalarial,antifungal,and antibacterial agents.
文摘Several novel sulfonamide-derivatives were designed and studied their physicochemical properties to develop novel kinase inhibitors. Therefore, molecular docking was performed for the designed compounds against epidermal growth factor receptor (PDB ID: 2ITY) to identify new drug candidates for treating cancer. Binding free energy was calculated by Molegro virtual docker (MVD) to select the most promising hits. The corresponding docking score values into EGFR of 4b gave the best energy docking —128.819 Kcal/mol. The identified hits can serve as starting points for further chemical synthesis and optimization to develop new potent anticancer agents.
文摘AIM: Cyclooxygenase-2 (COX-2) has been suggested to be associated with carcinogenesis. We sought to investigate the effect of the selective COX-2 inhibitor, Nimesulide on proliferation and apoptosis of SMMC-7721 human hepatoma cells.METHODS: This study was carried out on the culture of hepatic carcinoma SMMC-7721 cell line. Various concentrations of Nimesulide (0, 200 micromol/L, 300 micromol/L, 400 micromol/L) were added and incubated. Cell proliferation was detected with MTT colorimetric assay, cell apoptosis by electron microscopy, flow cytometry and TUNEL.RESULTS: Nimesulide could significantly inhibit SMMC-7721 cells proliferation dose-dependent and in a dependent manner compared with that of the control group. The duration lowest inhibition rate produced by Nimesulide in SMMC-7721 cells was 19.06%, the highest inhibition rate was 58.49%. After incubation with Nimesulide for 72 h, the most highest apoptosis rate and apoptosis index of SMMC-7721 cells comparing with those of the control were 21.20%+/-1.62% vs 2.24%+/-0.26% and 21.23+/-1.78 vs 2.01+/-0.23 (P【0.05). CONCLUSION:The selective COX-2 inhibitor, Nimesulide can inhibit the proliferation of SMMC-7721 cells and increase apoptosis rate and apoptosis index of SMMC-7721 cells. The apoptosis rate and the apoptosis index are dose-dependent. Under electron microscope SMMC-7721 cells incubated with 300 micromol and 400 micromol Nimesulide show apoptotic characteristics. With the clarification of the mechanism of selective COX-2 inhibitors, These COX-2 selective inhibitors can become the choice of prevention and treatment of cancers.
文摘8-氟-5-羟基-[1,2,4]三唑并[1,5-c]嘧啶-2-磺酰胺(9)为重要的医药、农药等中间体,其合成方法暂无文献报道。以2,4-二氯-5-氟嘧啶为原料,经醚化、肼解、环合、重排、磺酰胺化、脱甲基化等反应合成了9,总收率27.2%,其结构经1 H NMR,13 C NMR和MS(ESI)确证。
文摘以间氯苯胺为原料,通过乙酰化、氯磺化、磺酰胺化及碱性水解四步反应,位置选择性地合成了4-氨基-2-氯苯磺酰胺,所得中间体和目标分子的结构经熔点及1 H NMR确定,某些分子的结构经13 C NMR,HRMS进一步验证.添加二氯亚砜既提高了氯磺化反应的收率,也促成了固体产品的生成;放大合成每步反应收率中等(高于60%)至优良(高于90%),后处理方法简单,可以大批量合成,是可行的工业生产方法.