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Synthesis and biological evaluation of lovastatin-derived aliphatic hydroxamates that induce reactive oxygen species
Ruo-Kai Lin1, Yuh-Feng Lin2, Ming-Jen Hsu3
1Graduate Institute of Pharmacognosy, Taipei Medical University, 250 Wu-Xing Street, Taipei 110, Taiwan; Professional Master Program in Pharmaceutics and Biotechnology, 250 Wu-Xing Street, Taipei Medical University, Taipei 110, Taiwan; Ph.D. Program for the Clinical Drug Discovery from Botanical Herbs, Taipei Medical University, 250 Wu-Xing Street, Taipei 110, Taiwan.
Abstract:
Some hydroxamate compounds induce cancer cell death by intracellular reactive oxygen species (ROS). This study introduced the hydroxamate core into lovastatin, a fungus metabolite clinically used for the treatment of hypercholesterolemia. The resulting compounds were evaluated for the activity for inducing ROS production. Most compounds exhibited higher activity than original lovastatin. Of these compounds, compound 3c had the most potent activity. Test of cytotoxicity in a panel of human cancer cell lines indicated compound 3c had activities superior to cisplatin in prostate cancer PC-3 cells and breast cancer T47D cells. In contrast, it in amounts up to 40μM had a much lower cytotoxic effect on normal human IMR-90 cells. Further profiling of cell cycle progression, cell apoptosis, and DNA damage activated checkpoint signaling pathway revealed the important role of compound 3c-mediated cytotoxicity in ROS generation.
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