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3-氨基咪唑并[1,2-α]吡啶化合物的合成及生物活性

Synthesis and biological activities of 3-aminoimidazo[1,2-α]pyridine compounds.

作者信息

Al-Qadi Isra, Hanania Michel, Warad Ismail, Al-Hajj Nisreen, Hazzam Rand, Salama Yousef, Raheem Saki, Al-Maharik Nawaf

机构信息

Department of Chemistry, Faculty of Science, An-Najah National University, Nablus, 00970, Palestine.

Department of Chemistry, Faculty of Applied Sciences, Technology and Engineering, Bethlehem University, Bethlehem, 00970, Palestine.

出版信息

BMC Chem. 2025 Feb 22;19(1):48. doi: 10.1186/s13065-025-01412-6.

Abstract

Despite their importance in cancer treatment, anticancer compounds face significant challenges due to drug resistance and low specificity, creating an urgent need for the discovery of more effective alternative. Herein, we report the synthesis of eleven 3-aminoimidazole[1,2-α]pyridine compounds (9-19) employing the one-pot Groebke-Blackburn-Bienayme three-component reaction (GBB-3CR). The cytotoxicity of the synthesised compounds was evaluated against three cancer cell lines (MCF-7, HT-29, B16F10) and a normal cell (MEF). Considering effectiveness and safety, the results demonstrated that among the eleven synthesised compounds, only compounds 12 and 14 exhibited high inhibitory activity against cancer cell lines. Compound 12 with a nitro group at the C-2 position and a p-chlorophenyl group at C-3 position, showed the highest inhibitory activity against HT-29, with an IC of 4.15 ± 2.93 µM. Additionally, compound 14, with a tolyl moiety at the C-2 position and a p-chlorophenyl amine at C-3 position, can also be considered a promising bioactive product against B16F10, with an IC of 21.75 ± 0.81 µM. Further research on these compounds may yield more potent candidates for the development of new anticancer agents.

摘要

尽管抗癌化合物在癌症治疗中具有重要意义,但由于耐药性和低特异性,它们面临着重大挑战,因此迫切需要发现更有效的替代品。在此,我们报道了采用一锅法格罗布克-布莱克本-比奈梅三组分反应(GBB-3CR)合成了11种3-氨基咪唑[1,2-α]吡啶化合物(9-19)。评估了合成化合物对三种癌细胞系(MCF-7、HT-29、B16F10)和一种正常细胞(MEF)的细胞毒性。综合有效性和安全性,结果表明,在这11种合成化合物中,只有化合物12和14对癌细胞系表现出高抑制活性。在C-2位带有硝基且在C-3位带有对氯苯基的化合物12,对HT-29表现出最高的抑制活性,IC50为4.15±2.93μM。此外,在C-2位带有甲苯基且在C-3位带有对氯苯胺的化合物14,也可被视为一种有前景的针对B16F10的生物活性产物,IC50为21.75±0.81μM。对这些化合物的进一步研究可能会产生更有效的新型抗癌药物候选物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f0c1/11847391/93469f59d346/13065_2025_1412_Fig1_HTML.jpg

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