Halder Debojyoti, Jeyaprakash R S, Ghosh Balaram
Epigenetic Research Laboratory, Department of Pharmacy, Birla Institute of Technology and Science-Pilani, Hyderabad Campus, Shamirpet, Hyderabad, 500078, India.
Department of Pharmaceutical Chemistry, Manipal College of Pharmaceutical Sciences, Manipal Academy of Higher Education, Manipal, Karnataka, 576104, India.
Chem Biodivers. 2024 Sep;21(9):e202400778. doi: 10.1002/cbdv.202400778. Epub 2024 Aug 14.
Any pathogenic attack, infection, or disease can initiate inflammation. It results in significant adverse consequences like inflammatory bowel disease, rheumatoid arthritis, etc. TNFα is one of the major pro-inflammatory cytokines for the progression of inflammation-the present study designed a series of hybrid compounds consisting of the pyrazole-pyridine moiety. Virtual screening was performed utilizing the e-pharmacophore hypothesis with the co-ligand of TNFα, screening, docking, and ADMET study. Induced fit docking, DFT analysis, and molecular dynamic simulation showed that the four best molecules - Dh1- Dh4-showed crucial interaction with Tyrosine, higher dock scores, and better stability than Diclofenac. Following the synthesis of hit molecules, an in vitro albumin denaturation IC of Dh1 was found to be 118.01 μM. Further in-depth in vitro and in vivo analyses of these pyrazole-pyridine small compounds may serve as potential space for creating new anti-inflammatory leads.
任何病原体攻击、感染或疾病都可引发炎症。它会导致严重的不良后果,如炎症性肠病、类风湿性关节炎等。肿瘤坏死因子α(TNFα)是炎症进展过程中的主要促炎细胞因子之一——本研究设计了一系列由吡唑-吡啶部分组成的杂合化合物。利用电子药效团假说与TNFα的共配体进行虚拟筛选、对接和ADMET研究。诱导契合对接、密度泛函理论(DFT)分析和分子动力学模拟表明,四个最佳分子——Dh1 - Dh4——与酪氨酸表现出关键相互作用,对接分数高于双氯芬酸,稳定性更好。在合成命中分子后,发现Dh1的体外白蛋白变性IC为118.01 μM。对这些吡唑-吡啶小化合物进行进一步深入的体外和体内分析,可能为开发新的抗炎先导物提供潜在空间。