Amita K. Vyas, Kaushik S. Lunagariya, Dharmesh K. Katariya, Pooja M. Bhanderi, Priyank M. Shah, Anjalee R. Khoyanee, Vijay M. Khedkar, Ranjan C. Khunt
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引用次数: 0
摘要
在正在进行的研究中,开发出了一种高效的单步多组分反应合成新四氮唑支架的方法。Ugi 多组分工艺是在一个阶段内将四种独立组分连接起来的最有前途的方法之一,在药物发现领域有着广泛的应用。在这项研究中,四唑的合成采用了 Ugi 多组分技术,包括异氰酸酯、TMS-N3、不同的芳基胺、芳香醛与活性药剂的缩合。通过红外光谱、核磁共振和质谱等各种光谱技术对最终产品进行表征。筛选出的四唑衍生物对 NCI-60 细胞系具有抗癌活性,这些细胞系被分为 9 个不同的亚细胞系,其中化合物 5b 和 5e 对不同的细胞系具有更强的抗癌活性。为了深入了解这种抗肿瘤活性的机理,对关键靶标 CDK2 进行了分子对接分析。结合亲和力的结果与抗癌活性相一致,并能为了解支配结合亲和力的各种热力学相互作用提供有价值的见解。
Synergistic Insights: Synthesis, Characterization, Biological Evaluation, and Molecular Docking Studies of TMS-N3 UGI–Adduct
In the context of ongoing research, an efficient single-step multicomponent reaction synthesis for new tetrazole scaffolds has been developed. The Ugi multicomponent process is one of the most promising approaches for the connection of four separate components in a single phase and finds immense application in drug discovery. In this study, tetrazoles were synthesized using the Ugi-Multi Component technique, which involved the condensation of isocyanides, TMS-N3, different aryl amines, aromatic aldehydes with active pharmacophores. Final products were characterized by various spectroscopic techniques viz. IR, NMR, and Mass spectrometry. Tetrazole derivatives were screened for their anticancer activity against the NCI-60 cell lines grouped in 9 different subpanels among which compounds 5b and 5e have been found to be more potent against different cell lines. In order to get mechanistic insights into this antitumor activity, molecular docking analysis against critical target CDK2 was performed. The results of binding affinity were in harmony with the anticancer activity and could provide valuable insights into the various thermodynamic interactions governing the binding affinity.
期刊介绍:
Russian Journal of Organic Chemistry is an international peer reviewed journal that covers all aspects of modern organic chemistry including organic synthesis, theoretical organic chemistry, structure and mechanism, and the application of organometallic compounds in organic synthesis.