化学
烟酰胺磷酸核糖转移酶
烟酰胺
结构-活动关系
生物化学
立体化学
NAD+激酶
酶
体外
作者
Mette Krogh Christensen,Kamille Dumong Erichsen,Uffe H. Olesen,Jette Tjørnelund,Peter Fristrup,Annemette Thougaard,Søren Jensby Nielsen,Maxwell Sehested,Peter Buhl Jensen,Einārs Loža,Ivars Kalvinsh,Antje Garten,Wieland Kieß,Fredrik Björkling
摘要
Existing pharmacological inhibitors for nicotinamide phosphoribosyltransferase (NAMPT) are promising therapeutics for treating cancer. By using medicinal and computational chemistry methods, the structure-activity relationship for novel classes of NAMPT inhibitors is described, and the compounds are optimized. Compounds are designed inspired by the NAMPT inhibitor APO866 and cyanoguanidine inhibitor scaffolds. In comparison with recently published derivatives, the new analogues exhibit an equally potent antiproliferative activity in vitro and comparable activity in vivo. The best performing compounds from these series showed subnanomolar antiproliferative activity toward a series of cancer cell lines (compound 15: IC50 0.025 and 0.33 nM, in A2780 (ovarian carcinoma) and MCF-7 (breast), respectively) and potent antitumor in vivo activity in well-tolerated doses in a xenograft model. In an A2780 xenograft mouse model with large tumors (500 mm(3)), compound 15 reduced the tumor volume to one-fifth of the starting volume at a dose of 3 mg/kg administered ip, bid, days 1-9. Thus, compounds found in this study compared favorably with compounds already in the clinic and warrant further investigation as promising lead molecules for the inhibition of NAMPT.
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