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六氢嘧啶并[4,5-d]嘧啶-4(1H)-酮衍生物的绿色一锅合成方案:分子对接、ADMET、抗癌和抗菌研究。

A green one-pot synthetic protocol of hexahydropyrimido[4,5-d]pyrimidin-4(1H)-one derivatives: molecular docking, ADMET, anticancer and antimicrobial studies.

机构信息

Department of Chemistry, B.V. Shah (Vadi-Vihar) Science College, C.U. Shah University, Wadhwan City, Gujarat, 363001, India.

Department of Chemistry, School of Science, RK University, Rajkot, Gujarat, 360020, India.

出版信息

Mol Divers. 2024 Feb;28(1):183-195. doi: 10.1007/s11030-023-10712-9. Epub 2023 Aug 11.

DOI:10.1007/s11030-023-10712-9
PMID:37566199
Abstract

Ten hexahydropyrimido[4,5-d]pyrimidine derivatives have been synthesized by using a green and time-efficient microwave method. The synthesized motifs were evaluated for their anticancer activity, antimicrobial activity, molecular docking, drug likeliness and ADMET studies. Comparatively, the hetero-aromatic pyrazole substituted compound 4a exhibited the highest anticancer activity [Mean growth percent: 35.57], while EDG [-N(CH)] substituted compound 4i indicated very good activity [Mean growth percent: 60.92] against various cell lines. From the computational studies, Compound 4a passed the drug-likeness and ADME properties, fewer toxic properties, and potent inhibitory potential against the RIPK2 with significant binding affinity. In-silico molecular docking revealed that the compound 4a has significant binding energy (- 9.8 kcal/mol) and dissociation constant (0.54 µM) properties. Additionally, synthesized motifs were evaluated for antimicrobial activity by MIC referencing the standards. According to the SAR evaluations, the compounds 4f (4-NO), 4g (3-NO), and 4h (2-Cl) that include EWGs substituted aldehydes performed well as antimicrobials against selected bacterial and fungal strains. Thus, the synthesized pyrimido[4,5-d]pyrimidine with the heterocyclic and EWGs substituents could act as a potential candidate after further structural optimization for anticancer and antimicrobial drug discovery, respectively.

摘要

已经通过一种绿色且高效的微波方法合成了十个六氢嘧啶并[4,5-d]嘧啶衍生物。合成的主题化合物已被评估其抗癌活性、抗菌活性、分子对接、药物相似性和 ADMET 研究。相比之下,杂芳基吡唑取代化合物 4a 表现出最高的抗癌活性[平均生长百分比:35.57%],而 EDG[-N(CH)]取代化合物 4i 对各种细胞系显示出非常好的活性[平均生长百分比:60.92%]。从计算研究来看,化合物 4a 通过了药物相似性和 ADME 特性、较少的毒性特性以及对 RIPK2 具有显著结合亲和力的潜在抑制潜力。计算机分子对接表明,化合物 4a 具有显著的结合能(-9.8 kcal/mol)和离解常数(0.54 μM)特性。此外,根据 SAR 评估,包含给电子取代基的醛的合成基序 4f(4-NO)、4g(3-NO)和 4h(2-Cl)在抗菌活性方面表现良好,对选定的细菌和真菌菌株具有抗菌作用。因此,在进一步进行结构优化以用于抗癌和抗菌药物发现之后,具有杂环和给电子取代基的合成嘧啶并[4,5-d]嘧啶可以作为潜在的候选药物。

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