Raheem Sumaya, Khan Rasool, Pan Xiandao, Ullah Rahim, Ahsan Halim Sobia, Khan Ajmal, Al-Harrasi Ahmed
Institute of Chemical Sciences, University of Peshawar, Peshawar 25120, Pakistan.
Institute of Chemical Sciences, University of Peshawar, Peshawar 25120, Pakistan.
Bioorg Chem. 2022 Oct;127:105974. doi: 10.1016/j.bioorg.2022.105974. Epub 2022 Jun 18.
A series of alkyl/aryl/aralkylamines or amino acids appended tetrahydro-2H-1,3,5-thiadiazine-2-thiones (4a-i, 5a-g, 6 and 7) were synthesized via one pot domino synthesis. The synthesis involved reacting alkyl/aryl/aralkylamines or amino acids with carbon disulfide employing basic aqueous medium and further cyclization with formaldehyde and alkyl/aryl/aralkylamines or amino acids. In addition, the carboxy-functionalized 1,3,5-thiadiazine-2-thione 6 was further subjected to esterification. All the structures were confirmed through spectral techniques i.e IR, H NMR, C NMR, and MS analysis. Furthermore, the newly synthesized compounds were biologically assessed via in vitro COX-2 and 5-LOX assays, in vivo anti-nociceptive and anti-inflammatory activities. Among the screened compounds, 6, 5f, and 7 exhibited highest inhibitory potency against COX-2 with IC values of 11.96, 13.54, and 13.93 μM, respectively. Moreover, compounds 6 and 7 exhibited excellent inhibitory potential against 5-LOX with IC values of 14.01 and 14.13 μM. The in-vivo anti-inflammatory bioassay studies showed that compounds 6, 7 and 5f dramatically reduced the paw edema size at 1 h and 3 h time intervals. In the anti-nociceptive activity, compound 6 showed pain protection comparative to Tramadol in all tested time intervals. In addition, studies of molecular docking revealed the compounds binding modes in the allosteric site of COX-2 and active site of 5-LOX, where these compounds exhibited higher binding scores and good binding interactions.
通过一锅法多米诺合成反应,合成了一系列带有烷基/芳基/芳烷基胺或氨基酸的四氢-2H-1,3,5-噻二嗪-2-硫酮(4a-i、5a-g、6和7)。该合成反应包括在碱性水性介质中使烷基/芳基/芳烷基胺或氨基酸与二硫化碳反应,然后再与甲醛和烷基/芳基/芳烷基胺或氨基酸进行环化反应。此外,对羧基官能化的1,3,5-噻二嗪-2-硫酮6进一步进行了酯化反应。所有结构均通过光谱技术即红外光谱、氢核磁共振谱、碳核磁共振谱和质谱分析得以确认。此外,通过体外COX-2和5-LOX测定、体内抗伤害感受和抗炎活性对新合成的化合物进行了生物学评估。在筛选出的化合物中,6、5f和7对COX-2表现出最高的抑制效力,IC值分别为11.96、13.54和13.93 μM。此外,化合物6和7对5-LOX表现出优异的抑制潜力,IC值分别为14.01和14.13 μM。体内抗炎生物测定研究表明,化合物6、7和5f在1小时和3小时间隔时显著减小了爪部水肿大小。在抗伤害感受活性方面,化合物6在所有测试时间间隔内均显示出与曲马多相当的疼痛保护作用。此外,分子对接研究揭示了这些化合物在COX-2变构位点和5-LOX活性位点的结合模式,这些化合物在这些位点表现出更高的结合分数和良好的结合相互作用。