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PMID: 22294718 已发表 · ppublish 英语

Preclinical pharmacology of AZD5363, an inhibitor of AKT: pharmacodynamics, antitumor activity, and correlation of monotherapy activity with genetic background.

Molecular cancer therapeutics ·第 11 卷 ·第 4 期 ·2012-10-16

Davies Barry R, Greenwood Hannah, Dudley Phillippa, Crafter Claire, Yu De-Hua, Zhang Jingchuan, Li Jing, Gao Beirong, Ji Qunsheng, Maynard Juliana, Ricketts Sally-Ann, Cross Darren, Cosulich Sabina, Chresta Christine C, Page Ken, Yates James, Lane Clare, Watson Rebecca, Luke Richard, Ogilvie Donald, Pass Martin

摘要

AKT is a key node in the most frequently deregulated signaling network in human cancer. AZD5363, a novel pyrrolopyrimidine-derived compound, inhibited all AKT isoforms with a potency of 10 nmol/L or less and inhibited phosphorylation of AKT substrates in cells with a potency of approximately 0.3 to 0.8 μmol/L. AZD5363 monotherapy inhibited the proliferation of 41 of 182 solid and hematologic tumor cell lines with a potency of 3 μmol/L or less. Cell lines derived from breast cancers showed the highest frequency of sensitivity. There was a significant relationship between the presence of PIK3CA and/or PTEN mutations and sensitivity to AZD5363 and between RAS mutations and resistance. Oral dosing of AZD5363 to nude mice caused dose- and time-dependent reduction of PRAS40, GSK3β, and S6 phosphorylation in BT474c xenografts (PRAS40 phosphorylation EC(50) ~ 0.1 μmol/L total plasma exposure), reversible increases in blood glucose concentrations, and dose-dependent decreases in 2[18F]fluoro-2-deoxy-D-glucose ((18)F-FDG) uptake in U87-MG xenografts. Chronic oral dosing of AZD5363 caused dose-dependent growth inhibition of xenografts derived from various tumor types, including HER2(+) breast cancer models that are resistant to trastuzumab. AZD5363 also significantly enhanced the antitumor activity of docetaxel, lapatinib, and trastuzumab in breast cancer xenografts. It is concluded that AZD5363 is a potent inhibitor of AKT with pharmacodynamic activity in vivo, has potential to treat a range of solid and hematologic tumors as monotherapy or a combinatorial agent, and has potential for personalized medicine based on the genetic status of PIK3CA, PTEN, and RAS. AZD5363 is currently in phase I clinical trials.

文献信息
期刊
Molecular cancer therapeutics
期刊简称
Mol Cancer Ther
发表日期
2012-10-16
收录日期
2012-04-11
更新日期
2012-04-11
语言
英语
国家/地区
United States
NLM ID
101132535
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