Curcumin is known for its anticancer properties, but its clinical application is limited due to its poor bioavailability and chemical stability. In this study we report the curcumin derivative, ST03 (1,2-bis[(3E,5E)-3,5-bis[(2-chlorophenyl)methylene]-4-oxo-1-piperidyl]ethane-1,2-dione) exhibits â¼ 14 fold better bioavailability compared to curcumin and is detectable in plasma up to 12Â h. ST03 induces ROS, activates the intrinsic apoptotic pathway as evident by disruption of mitochondrial membrane potential, and induction of proapoptotic proteins in ovarian cancer lines PA1 and A2780. ST03 also blocked the migration of ovarian cancer cells. ST03 exerted its antitumor effect in-vivo in the EAC mouse model by activating the intrinsic apoptotic pathway. Our findings demonstrate ST03, a curcumin derivative, with better bioavailability and stability with no discernable toxicity in vivo to be a promising drug candidate for anticancer therapies.
Curcumin derivative 1, 2-bis [(3E, 5E)-3, 5-bis [(2-chlorophenyl) methylene]-4-oxo-1-piperidyl] ethane-1, 2-dione (ST03) induces mitochondria mediated apoptosis in ovarian cancer cells and inhibits tumor progression in EAC mouse model.
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作者:Koroth Jinsha, Mahadeva Raghunandan, Ravindran Febina, Parashar Tanvi R, Teja Vinay, Karki Subhas S, Choudhary Bibha
| 期刊: | Translational Oncology | 影响因子: | 4.100 |
| 时间: | 2022 | 起止号: | 2022 Jan;15(1):101280 |
| doi: | 10.1016/j.tranon.2021.101280 | ||
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