Kumar C B Pradeep, Raghu M S, Prathibha B S, Prashanth M K, Kanthimathi G, Kumar K Yogesh, Parashuram L, Alharthi Fahad A
Department of Chemistry, Malnad College of Engineering, Hassan 573 202, India.
Department of Chemistry, New Horizon College of Engineering, Bengaluru 560 103, India.
Bioorg Med Chem Lett. 2021 Jul 15;44:128118. doi: 10.1016/j.bmcl.2021.128118. Epub 2021 May 17.
A TaO-anchored-piperidine-4-carboxylic acid (PPCA) nanoparticle has been synthesized and characterized. It was then used as a highly effective nanocatalyst for the synthesis of quinolin-2(1H)-one derivatives through CO bond functionalization. The special advantage of this heterogeneous solid catalyst is the reusability of the catalyst for up to five cycles without any noticeable reduction in product yields. In comparison, healthy reaction profiles, wide substrate scope, excellent yields and easy workup conditions are the notable highlights of this approach. All the compounds were tested for their anticancer activity against MCF-7 (human breast), HepG2 (human liver), HCT116 (human colorectal), and PC-3 (human prostate) cancer cell lines with the MTT assay. All the compounds were shown to have moderate to good inhibitory effects on tested cancer cell lines. Besides, compounds 5b, 5c and 5d showed good selectivity against epidermal growth factor receptor-tyrosine kinase (EGFR-TK). Molecular docking results showed that active compounds showed a good affinity towards EGFR kinase (PDB ID: 6V6O) by forming two hydrogen bonds with Cys-797 and Tyr-801. All the compounds were screened for computational ADMET and Lipinski analysis.
已合成并表征了一种钽锚定哌啶-4-羧酸(PPCA)纳米颗粒。然后将其用作通过C-O键官能化合成喹啉-2(1H)-酮衍生物的高效纳米催化剂。这种多相固体催化剂的特殊优势在于其可重复使用多达五个循环,而产物产率没有任何明显降低。相比之下,良好的反应曲线、广泛的底物范围、优异的产率和简便的后处理条件是该方法的显著亮点。使用MTT法对所有化合物针对MCF-7(人乳腺癌)、HepG2(人肝癌)、HCT116(人结肠直肠癌)和PC-3(人前列腺癌)癌细胞系进行了抗癌活性测试。结果表明所有化合物对测试的癌细胞系均具有中度至良好的抑制作用。此外,化合物5b、5c和5d对表皮生长因子受体酪氨酸激酶(EGFR-TK)表现出良好的选择性。分子对接结果表明,活性化合物通过与Cys-797和Tyr-801形成两个氢键,对EGFR激酶(PDB ID:6V6O)表现出良好的亲和力。对所有化合物进行了计算ADMET和Lipinski分析筛选。