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Synthesis of pH Dependent Pyrazole, Imidazole, and Isoindolone Dipyrrinone Fluorophores using a Claisen-Schmidt Condensation Approach
Published on: June 10, 2021
Synthesis and potential antineoplastic activity of dehydroabietylamine imidazole derivatives
Fengyi Zhao1,2, Wen Lu2, Fan Su3
1College of Forestry , Nanjing Forestry University , Nanjing 210037 , PR China .
Abstract:
To seek more efficient and lower toxicity anticancer compounds, several imidazole combining dehydroabietylamine derivatives including organic salts (L -L ) and amides (L -L ) were synthesized. Their antineoplastic activity against HeLa (cervix), MCF-7 (breast), A549 (lung) and HepG2 (liver) cells and HUVECs (umbilical vein, normal cells) in vitro were evaluated by MTT assay. The results unequivocally showed that nearly all compounds had better antineoplastic activity and lower toxicity than dehydroabietylamine (L ). For MCF-7 cells, L (0.75 μM) and L (2.17 μM) had higher anti-MCF-7 activity than L and DOX. For A549 cells, L (1.85 μM) and L (4.37 μM) had higher anti-A549 activity than L ; in particular, the IC50 value of L was much lower than that of DOX. Among these investigated compounds, L and L had lower IC50 values (0.75 μM and 2.17 μM) against MCF-7 cells and lower toxicity, which suggested that they may be potential future anticancer drugs. In addition, L and L could suppress cancer cell proliferation by inducing apoptosis. L -L could bind with DNA through intercalation.
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