吲唑
康布雷他汀
细胞毒性
顺铂
化学
赫拉
药理学
药品
细胞毒性T细胞
体外
生物
立体化学
医学
生物化学
化疗
微管蛋白
内科学
细胞生物学
微管
作者
Jaime Pérez-Villanueva,Félix Matadamas-Martínez,Rafael Castillo,Vadim Pérez-Koldenkova,Martha Leyte-Lugo,Karen Rodríguez-Villar,Francisco Cortés-Benítez,Ana Perla Macías-Jiménez,Ignacio González-Sánchez,Ariana Romero-Velásquez,Juan Francisco Palacios-Espinosa,Olivia Soria-Arteche
摘要
Cancer is the second leading cause of death, after cardiovascular diseases. Different strategies have been developed to treat cancer; however, chemotherapy with cytotoxic agents is still the most widely used treatment approach. Nevertheless, drug resistance to available chemotherapeutic agents is still a serious problem, and the development of new active compounds remains a constant need. Taking advantage of the molecular hybridization approach, in the present work we designed, synthesized, and tested the cytotoxic activity of two hybrid compounds and seven derivatives based on the structure of combretastatin A-4 and 2,3-diphenyl-2H-indazole. Practical modifications of reported synthetic protocols for 2-pheny-2H-indazole and 2,3-dipheny-2H-indazole derivatives under microwave irradiation were implemented. The cytotoxicity assays showed that our designed hybrid compounds possess strong activity, especially compound 5, which resulted even better than the reference drug cisplatin against HeLa and SK-LU-1 cells (IC50 of 0.16 and 6.63 µM, respectively), and it had similar potency to the reference drug imatinib against K562 cells. Additionally, in silico and in vitro studies strongly suggest tubulin as the molecular target for hybrid compound 5.
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