Combining AZD8931, a novel EGFR/HER2/HER3 signalling inhibitor, with AZD5363 limits AKT inhibitor induced feedback and enhances antitumour efficacy in HER2-amplified breast cancer models

被引:41
作者
Crafter, Claire [1 ,2 ]
Vincent, John P. [1 ]
Tang, Eric [1 ]
Dudley, Phillippa [1 ]
James, Neil H. [1 ]
Klinowska, Teresa [1 ]
Davies, Barry R. [1 ]
机构
[1] AstraZeneca, Oncol iMED, Macclesfield SK10 4TG, Cheshire, England
[2] AstraZeneca, CRUK Cambridge Inst, Oncol iMED, Cambridge CB2 0RE, England
关键词
AZD5363; HER2-amplified breast cancer; PI3K/AKT/mTOR; combination therapy; feedback; TRASTUZUMAB RESISTANCE; ADAPTIVE RESISTANCE; CELLS; PI3K; RECEPTOR; PATHWAY; ACTIVATION; HER2; MECHANISMS; NVP-BEZ235;
D O I
10.3892/ijo.2015.3062
中图分类号
R73 [肿瘤学];
学科分类号
100214 [肿瘤学];
摘要
The phosphatidylinositol 3-kinase (PI3K)/AKT/mammalian target of rapamycin (mTOR) signalling network is frequently de-regulated in breast cancer and has been shown to mediate resistance to anti-HER2 agents. Whilst constitutive activation of this pathway is emerging as a marker of sensitivity to various PI3K pathway inhibitors, activity of these agents in the clinic may be limited by the presence of feedback loops, leading to reactivation of receptor tyrosine kinases, such as HER2/HER3. To determine whether inhibition of HER2 could increase the efficacy of AZD5363, a novel AKT inhibitor, a panel of breast cancer cells was dosed with AZD5363 in combination with AZD8931, an inhibitor of EGFR/HER2/HER3 signalling. We show that the combined treatment resulted in synergistic growth inhibition and enhanced cell death, specifically in the HER2-amplified cell lines. Investigation of the mechanism by western blot analysis revealed that the addition of AZD8931 prevented the induction of HER2/HER3 phosphorylation induced by AZD5363 and resulted in concomitant inhibition of both the PI3K/AKT/mTOR and ERK signalling pathways and induction of apoptosis. Using the HCC1954 xenograft model, which is resistant to trastuzumab, we show that the combination of AZD5363 and AZD8931 is more efficacious than either agent alone, resulting in profound tumour regressions. We conclude that the activity of AZD5363 in HER2-amplified breast cancer cells is enhanced by the addition of AZD8931 and that dual targeting of AKT and EGFR/HER2/HER3 signalling is an attractive treatment option to be explored in the clinic.
引用
收藏
页码:446 / 454
页数:9
相关论文
共 33 条
[1]
Perturbations of the AKT signaling pathway in human cancer [J].
Altomare, DA ;
Testa, JR .
ONCOGENE, 2005, 24 (50) :7455-7464
[2]
Activation of AKT kinases in cancer: Implications for therapeutic targeting [J].
Bellacosa, A ;
Kumar, CC ;
Di Cristofano, A ;
Testa, JR .
ADVANCES IN CANCER RESEARCH, VOL 94, 2005, 94 :29-+
[3]
A functional genetic approach identifies the PI3K pathway as a major determinant of trastuzumab resistance in breast cancer [J].
Berns, Katrien ;
Horlings, Hugo M. ;
Hennessy, Bryan T. ;
Madiredjo, Mandy ;
Hijmans, E. Marielle ;
Beelen, Karin ;
Linn, Sabine C. ;
Gonzalez-Angulo, Ana Maria ;
Stemke-Hale, Katherine ;
Hauptmann, Michael ;
Beijersbergen, Roderick L. ;
Mills, Gordon B. ;
de Vijver, Marc J. van ;
Bernards, Rene .
CANCER CELL, 2007, 12 (04) :395-402
[4]
Emerging insights into resistance to BRAF inhibitors in melanoma [J].
Bucheit, Amanda D. ;
Davies, Michael A. .
BIOCHEMICAL PHARMACOLOGY, 2014, 87 (03) :381-389
[5]
Feedback upregulation of HER3 (ErbB3) expression and activity attenuates antitumor effect of PI3K inhibitors [J].
Chakrabarty, Anindita ;
Sanchez, Violeta ;
Kuba, Maria G. ;
Rinehart, Cammie ;
Arteaga, Carlos L. .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2012, 109 (08) :2718-2723
[6]
Frequent Mutational Activation of the PI3K-AKT Pathway in Trastuzumab-Resistant Breast Cancer [J].
Chandarlapaty, Sarat ;
Sakr, Rita A. ;
Giri, Dilip ;
Patil, Sujata ;
Heguy, Adriana ;
Morrow, Monica ;
Modi, Shanu ;
Norton, Larry ;
Rosen, Neal ;
Hudis, Clifford ;
King, Tari A. .
CLINICAL CANCER RESEARCH, 2012, 18 (24) :6784-6791
[7]
Negative Feedback and Adaptive Resistance to the Targeted Therapy of Cancer [J].
Chandarlapaty, Sarat .
CANCER DISCOVERY, 2012, 2 (04) :311-319
[8]
AKT Inhibition Relieves Feedback Suppression of Receptor Tyrosine Kinase Expression and Activity [J].
Chandarlapaty, Sarat ;
Sawai, Ayana ;
Scaltriti, Maurizio ;
Rodrik-Outmezguine, Vanessa ;
Grbovic-Huezo, Olivera ;
Serra, Violeta ;
Majumder, Pradip K. ;
Baselga, Jose ;
Rosen, Neal .
CANCER CELL, 2011, 19 (01) :58-71
[9]
Preclinical Pharmacology of AZD5363, an Inhibitor of AKT: Pharmacodynamics, Antitumor Activity, and Correlation of Monotherapy Activity with Genetic Background [J].
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 .
MOLECULAR CANCER THERAPEUTICS, 2012, 11 (04) :873-887
[10]
Deregulation of the PI3K and KRAS signaling pathways in human cancer cells determines their response to everolimus [J].
Di Nicolantonio, Federica ;
Arena, Sabrina ;
Tabernero, Josep ;
Grosso, Stefano ;
Molinari, Francesca ;
Macarulla, Teresa ;
Russo, Mariangela ;
Cancelliere, Carlotta ;
Zecchin, Davide ;
Mazzucchelli, Luca ;
Sasazuki, Takehiko ;
Shirasawa, Senji ;
Geuna, Massimo ;
Frattini, Milo ;
Baselga, Jose ;
Gallicchio, Margherita ;
Biffo, Stefano ;
Bardelli, Alberto .
JOURNAL OF CLINICAL INVESTIGATION, 2010, 120 (08) :2858-2866