苯并咪唑
甲苯咪唑
驱虫药
药理学
恶芬达唑
药物重新定位
诺可达唑
化学
结合位点
药品
重新调整用途
生物
生物化学
芬苯达唑
细胞
有机化学
细胞骨架
生态学
作者
Muhammad Khattab,Ahmed A. Al‐Karmalawy
标识
DOI:10.4155/fmc-2020-0273
摘要
Background: Although some benzimidazole-based anthelmintic drugs are found to possess anticancer activity, their modes of binding interactions have not been reported. Methodology: In this study, we aimed to investigate the binding interactions and electronic configurations of nine benzimidazole-based anthelmintics against one of the well-known cancer targets (tubulin protein). Results: Binding affinities of docked benzimidazole drugs into colchicine-binding site were calculated where flubendazole > oxfendazole > nocodazole > mebendazole. Flubendazole was found to bind more efficiently with tubulin protein than other drugs. Quantum mechanics studies revealed that the electron density of HOMO of flubendazole and mebendazole together with their molecular electrostatic potential map are closely similar to that of nocodazole. Conclusion: Our study has ramifications for considering repurposing of flubendazole as a promising anticancer candidate.
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