1609402-34-7Relevant academic research and scientific papers
SUBSTITUTED HYDROPHOBIC BENZENE SULFONAMIDE THIAZOLE COMPOUNDS FOR USE IN TREATING CANCER
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, (2017/02/24)
The present invention relates to compound of general formula (I) R1 is selected from H, aryl and alkyl, R2 is selected from H, alkyl, aryl and CO-R6; R3 is selected from H, halogen, alkyl, alkenyl, alkynyl, aryl, NHR7, NR7R8, OR7 and SR7; R4 is selected from(C6-C12) alkyl, (C2-C12) alkenyl, (C2-C12) alkynyl and (C6-C10) aryl, R5 represents H, R6, aryl, OH, OR6, O-aryl, SH, SR6, S-aryl, CN, NO2, CF3, COOR6, SO2NR6R7, CONR6R7, NH2, NHR6, NH-aryl, NR6R7, NHCOR6 or aminoacyl; R6 is alkyl optionally substituted with halogen, OH, SH, NH2, O-alkyl, S-alkyl, NH- alkyl or NH-di(alkyl); R7 and R8 identical or different are H or alkyl optionally substituted with halogen, OH, SH, NH2, O-alkyl, S-alkyl, NH-alkyl or NH-di (alkyl), their pharmaceutically acceptable salts and/or isomers, tautomers, solvates or isotopic variations thereof. The compounds are useful for the treatment of cancers.
Discovery and Optimization of N-(4-(3-Aminophenyl)thiazol-2-yl)acetamide as a Novel Scaffold Active against Sensitive and Resistant Cancer Cells
Millet, Antoine,Plaisant, Magali,Ronco, Cyril,Cerezo, Micha?l,Abbe, Patricia,Jaune, Emilie,Cavazza, Elisa,Rocchi, Stéphane,Benhida, Rachid
, p. 8276 - 8292 (2016/10/03)
Cancer is the second cause of deaths worldwide and is forecasted to affect more that 22 million people in 2020. Despite dramatic improvement in its care over the last two decades, the treatment of resistant forms of cancer is still an unmet challenge. Thus, innovative and efficient treatments are still needed. In this context, we report herein the synthesis and the evaluation of a new class of bioactive molecules belonging to the N-(4-(3-aminophenyl(thiazol-2-yl)acetamide family. Structure-activity relationships could be driven and resulted in the discovery of lead compound 6b. The latter display high in vitro potency against both sensitive and resistant cancer cell lines on three models: melanoma, pancreatic cancer, and chronic myeloid leukemia (CML). 6b leads to cell death by concomitant induction of apoptosis and autophagy, shows good pharmacokinetic properties, and demonstrates a significant reduction of tumor growth in vivo on A375 xenograft model in mice.
