I. Kaliappan, Lilbet Mathew, Murugesan Sankaranarayanan
{"title":"生物活性胡椒中吡唑类似物的抗炎活性:合成、计算机模拟和体外评价","authors":"I. Kaliappan, Lilbet Mathew, Murugesan Sankaranarayanan","doi":"10.2174/1573408019666230303143432","DOIUrl":null,"url":null,"abstract":"\n\nAround ten novel pyrazoline and pyrazolidine derivatives were designed and synthesized by the condensation of piperine, hydrazine hydrate, phenylhydrazine, aromatic carboxylic acid, and ethanol.\n\n\n\nAround ten novel pyrazoline and pyrazolidine derivatives were designed, synthesized by the condensation of piperine, hydrazine hydrate, phenyl hydrazine, aromatic carboxylic acid and ethanol.\n\n\n\nThe synthesized compounds (2, 3, 4a-d, and 5a-d) were characterized by FTIR, 1HNMR, mass spectral, and elemental analysis. Pharmacokinetic, physicochemical, drug-likeness, and medicinal chemistry friendliness parameters were also predicted by in silico methods.\n\n\n\nIn silico docking studies and synthesized compounds, in vitro biological evaluation\n\n\n\nFurthermore, compounds were screened for in vitro anti-inflammatory activity by the HRBC membrane stabilization method using diclofenac sodium as the standard drug. The tested compounds showed moderate anti-inflammatory activity compared to the standard drug. The molecular docking studies of significantly active (4d) and least active compounds (5d) were also carried out in the active sites of an arachidonate-12-lipoxygenase target in order to study the putative binding pattern of the study compounds.\n\n\n\nThe synthesized compounds (2, 3, 4a-d and 5a-d) were characterized by FTIR, 1HNMR, Mass spectral and elemental analysis. Pharmacokinetic, physico-chemical, drug likeness and medicinal chemistry friendliness parameters were also predicted by in silico methods.\n\n\n\nAccording to the findings of this study, further lead identification as well as lead optimization techniques will be required in the near future in order to get potent analogues.\n\n\n\n- Further, the compounds were screened for in vitro anti-inflammatory activity by HRBC membrane stabilization method using Diclofenac Sodium as standard drug. The tested compounds showed moderate anti-inflammatory activity compared to the standard drug. The molecular docking studies of significantly active (4d) and least active compound (5d) was also carried out in the active sites of Arachidonate-12-lipoxygenase target in order to study the putative binding pattern of the study compounds.\n\n\n\nAccording to the findings of this study, more in-vivo research as well as lead optimization techniques will be required in the near future.\n","PeriodicalId":35405,"journal":{"name":"Current Enzyme Inhibition","volume":"1 1","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2023-03-03","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Anti-inflammatory Activity of Pyrazole Analogues Deduced from Bioactive Piperine: Synthesis, in silico, and in vitro Evaluation\",\"authors\":\"I. Kaliappan, Lilbet Mathew, Murugesan Sankaranarayanan\",\"doi\":\"10.2174/1573408019666230303143432\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"\\n\\nAround ten novel pyrazoline and pyrazolidine derivatives were designed and synthesized by the condensation of piperine, hydrazine hydrate, phenylhydrazine, aromatic carboxylic acid, and ethanol.\\n\\n\\n\\nAround ten novel pyrazoline and pyrazolidine derivatives were designed, synthesized by the condensation of piperine, hydrazine hydrate, phenyl hydrazine, aromatic carboxylic acid and ethanol.\\n\\n\\n\\nThe synthesized compounds (2, 3, 4a-d, and 5a-d) were characterized by FTIR, 1HNMR, mass spectral, and elemental analysis. Pharmacokinetic, physicochemical, drug-likeness, and medicinal chemistry friendliness parameters were also predicted by in silico methods.\\n\\n\\n\\nIn silico docking studies and synthesized compounds, in vitro biological evaluation\\n\\n\\n\\nFurthermore, compounds were screened for in vitro anti-inflammatory activity by the HRBC membrane stabilization method using diclofenac sodium as the standard drug. The tested compounds showed moderate anti-inflammatory activity compared to the standard drug. The molecular docking studies of significantly active (4d) and least active compounds (5d) were also carried out in the active sites of an arachidonate-12-lipoxygenase target in order to study the putative binding pattern of the study compounds.\\n\\n\\n\\nThe synthesized compounds (2, 3, 4a-d and 5a-d) were characterized by FTIR, 1HNMR, Mass spectral and elemental analysis. Pharmacokinetic, physico-chemical, drug likeness and medicinal chemistry friendliness parameters were also predicted by in silico methods.\\n\\n\\n\\nAccording to the findings of this study, further lead identification as well as lead optimization techniques will be required in the near future in order to get potent analogues.\\n\\n\\n\\n- Further, the compounds were screened for in vitro anti-inflammatory activity by HRBC membrane stabilization method using Diclofenac Sodium as standard drug. The tested compounds showed moderate anti-inflammatory activity compared to the standard drug. The molecular docking studies of significantly active (4d) and least active compound (5d) was also carried out in the active sites of Arachidonate-12-lipoxygenase target in order to study the putative binding pattern of the study compounds.\\n\\n\\n\\nAccording to the findings of this study, more in-vivo research as well as lead optimization techniques will be required in the near future.\\n\",\"PeriodicalId\":35405,\"journal\":{\"name\":\"Current Enzyme Inhibition\",\"volume\":\"1 1\",\"pages\":\"\"},\"PeriodicalIF\":0.0000,\"publicationDate\":\"2023-03-03\",\"publicationTypes\":\"Journal Article\",\"fieldsOfStudy\":null,\"isOpenAccess\":false,\"openAccessPdf\":\"\",\"citationCount\":\"0\",\"resultStr\":null,\"platform\":\"Semanticscholar\",\"paperid\":null,\"PeriodicalName\":\"Current Enzyme Inhibition\",\"FirstCategoryId\":\"1085\",\"ListUrlMain\":\"https://doi.org/10.2174/1573408019666230303143432\",\"RegionNum\":0,\"RegionCategory\":null,\"ArticlePicture\":[],\"TitleCN\":null,\"AbstractTextCN\":null,\"PMCID\":null,\"EPubDate\":\"\",\"PubModel\":\"\",\"JCR\":\"Q4\",\"JCRName\":\"Pharmacology, Toxicology and Pharmaceutics\",\"Score\":null,\"Total\":0}","platform":"Semanticscholar","paperid":null,"PeriodicalName":"Current Enzyme Inhibition","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.2174/1573408019666230303143432","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q4","JCRName":"Pharmacology, Toxicology and Pharmaceutics","Score":null,"Total":0}
Anti-inflammatory Activity of Pyrazole Analogues Deduced from Bioactive Piperine: Synthesis, in silico, and in vitro Evaluation
Around ten novel pyrazoline and pyrazolidine derivatives were designed and synthesized by the condensation of piperine, hydrazine hydrate, phenylhydrazine, aromatic carboxylic acid, and ethanol.
Around ten novel pyrazoline and pyrazolidine derivatives were designed, synthesized by the condensation of piperine, hydrazine hydrate, phenyl hydrazine, aromatic carboxylic acid and ethanol.
The synthesized compounds (2, 3, 4a-d, and 5a-d) were characterized by FTIR, 1HNMR, mass spectral, and elemental analysis. Pharmacokinetic, physicochemical, drug-likeness, and medicinal chemistry friendliness parameters were also predicted by in silico methods.
In silico docking studies and synthesized compounds, in vitro biological evaluation
Furthermore, compounds were screened for in vitro anti-inflammatory activity by the HRBC membrane stabilization method using diclofenac sodium as the standard drug. The tested compounds showed moderate anti-inflammatory activity compared to the standard drug. The molecular docking studies of significantly active (4d) and least active compounds (5d) were also carried out in the active sites of an arachidonate-12-lipoxygenase target in order to study the putative binding pattern of the study compounds.
The synthesized compounds (2, 3, 4a-d and 5a-d) were characterized by FTIR, 1HNMR, Mass spectral and elemental analysis. Pharmacokinetic, physico-chemical, drug likeness and medicinal chemistry friendliness parameters were also predicted by in silico methods.
According to the findings of this study, further lead identification as well as lead optimization techniques will be required in the near future in order to get potent analogues.
- Further, the compounds were screened for in vitro anti-inflammatory activity by HRBC membrane stabilization method using Diclofenac Sodium as standard drug. The tested compounds showed moderate anti-inflammatory activity compared to the standard drug. The molecular docking studies of significantly active (4d) and least active compound (5d) was also carried out in the active sites of Arachidonate-12-lipoxygenase target in order to study the putative binding pattern of the study compounds.
According to the findings of this study, more in-vivo research as well as lead optimization techniques will be required in the near future.
期刊介绍:
Current Enzyme Inhibition aims to publish all the latest and outstanding developments in enzyme inhibition studies with regards to the mechanisms of inhibitory processes of enzymes, recognition of active sites, and the discovery of agonists and antagonists, leading to the design and development of new drugs of significant therapeutic value. Each issue contains a series of timely, in-depth reviews written by leaders in the field, covering a range of enzymes that can be exploited for drug development. Current Enzyme Inhibition is an essential journal for every pharmaceutical and medicinal chemist who wishes to have up-to-date knowledge about each and every development in the study of enzyme inhibition.