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1.
Cancer Res ; 75(12): 2489-500, 2015 Jun 15.
Article in English | MEDLINE | ID: mdl-25870145

ABSTRACT

Resistance to targeted EGFR inhibitors is likely to develop in EGFR-mutant lung cancers. Early identification of innate or acquired resistance mechanisms to these agents is essential to direct development of future therapies. We describe the detection of heterogeneous mechanisms of resistance within populations of EGFR-mutant cells (PC9 and/or NCI-H1975) with acquired resistance to current and newly developed EGFR tyrosine kinase inhibitors, including AZD9291. We report the detection of NRAS mutations, including a novel E63K mutation, and a gain of copy number of WT NRAS or WT KRAS in cell populations resistant to gefitinib, afatinib, WZ4002, or AZD9291. Compared with parental cells, a number of resistant cell populations were more sensitive to inhibition by the MEK inhibitor selumetinib (AZD6244; ARRY-142886) when treated in combination with the originating EGFR inhibitor. In vitro, a combination of AZD9291 with selumetinib prevented emergence of resistance in PC9 cells and delayed resistance in NCI-H1975 cells. In vivo, concomitant dosing of AZD9291 with selumetinib caused regression of AZD9291-resistant tumors in an EGFRm/T790M transgenic model. Our data support the use of a combination of AZD9291 with a MEK inhibitor to delay or prevent resistance to AZD9291 in EGFRm and/or EGFRm/T790M tumors. Furthermore, these findings suggest that NRAS modifications in tumor samples from patients who have progressed on current or EGFR inhibitors in development may support subsequent treatment with a combination of EGFR and MEK inhibition.


Subject(s)
Acrylamides/pharmacology , Aniline Compounds/pharmacology , ErbB Receptors/antagonists & inhibitors , Acrylamides/administration & dosage , Aniline Compounds/administration & dosage , Animals , Antineoplastic Combined Chemotherapy Protocols/pharmacology , Benzimidazoles/administration & dosage , Cell Line, Tumor , Drug Screening Assays, Antitumor , ErbB Receptors/genetics , Humans , MAP Kinase Signaling System/drug effects , Mice , Mutation , Signal Transduction , ras Proteins/genetics , ras Proteins/metabolism
2.
Cancer Discov ; 4(9): 1046-61, 2014 Sep.
Article in English | MEDLINE | ID: mdl-24893891

ABSTRACT

UNLABELLED: First-generation EGFR tyrosine kinase inhibitors (EGFR TKI) provide significant clinical benefit in patients with advanced EGFR-mutant (EGFRm(+)) non-small cell lung cancer (NSCLC). Patients ultimately develop disease progression, often driven by acquisition of a second T790M EGFR TKI resistance mutation. AZD9291 is a novel oral, potent, and selective third-generation irreversible inhibitor of both EGFRm(+) sensitizing and T790M resistance mutants that spares wild-type EGFR. This mono-anilino-pyrimidine compound is structurally distinct from other third-generation EGFR TKIs and offers a pharmacologically differentiated profile from earlier generation EGFR TKIs. Preclinically, the drug potently inhibits signaling pathways and cellular growth in both EGFRm(+) and EGFRm(+)/T790M(+) mutant cell lines in vitro, with lower activity against wild-type EGFR lines, translating into profound and sustained tumor regression in EGFR-mutant tumor xenograft and transgenic models. The treatment of 2 patients with advanced EGFRm(+) T790M(+) NSCLC is described as proof of principle. SIGNIFICANCE: We report the development of a novel structurally distinct third-generation EGFR TKI, AZD9291, that irreversibly and selectively targets both sensitizing and resistant T790M(+) mutant EGFR while harboring less activity toward wild-type EGFR. AZD9291 is showing promising responses in a phase I trial even at the first-dose level, with first published clinical proof-of-principle validation being presented.


Subject(s)
Acrylamides/therapeutic use , Aniline Compounds/therapeutic use , Antineoplastic Agents/therapeutic use , Drug Resistance, Neoplasm/genetics , ErbB Receptors/antagonists & inhibitors , ErbB Receptors/genetics , Lung Neoplasms/drug therapy , Lung Neoplasms/genetics , Mutation , Protein Kinase Inhibitors/therapeutic use , Acrylamides/chemistry , Acrylamides/pharmacology , Aniline Compounds/chemistry , Aniline Compounds/pharmacology , Animals , Antineoplastic Agents/chemistry , Antineoplastic Agents/pharmacology , Cell Line, Tumor , Cell Proliferation/drug effects , Disease Models, Animal , ErbB Receptors/chemistry , Female , Genes, erbB-2 , Humans , Lung Neoplasms/pathology , Male , Middle Aged , Models, Molecular , Molecular Conformation , Phosphorylation , Protein Binding , Protein Kinase Inhibitors/chemistry , Protein Kinase Inhibitors/pharmacology , Signal Transduction/drug effects , Treatment Outcome , Tumor Burden/drug effects , Xenograft Model Antitumor Assays
3.
Cancer Discov ; 2(10): 922-33, 2012 Oct.
Article in English | MEDLINE | ID: mdl-22956644

ABSTRACT

EGF receptor (EGFR)-mutant lung cancers eventually become resistant to treatment with EGFR tyrosine kinase inhibitors (TKI). The combination of EGFR-TKI afatinib and anti-EGFR antibody cetuximab can overcome acquired resistance in mouse models and human patients. Because afatinib is also a potent HER2 inhibitor, we investigated the role of HER2 in EGFR-mutant tumor cells. We show in vitro and in vivo that afatinib plus cetuximab significantly inhibits HER2 phosphorylation. HER2 overexpression or knockdown confers resistance or sensitivity, respectively, in all studied cell line models. FISH analysis revealed that HER2 was amplified in 12% of tumors with acquired resistance versus only 1% of untreated lung adenocarcinomas. Notably, HER2 amplification and EGFR(T790M) were mutually exclusive. Collectively, these results reveal a previously unrecognized mechanism of resistance to EGFR-TKIs and provide a rationale to assess the status and possibly target HER2 in EGFR-mutant tumors with acquired resistance to EGFR-TKIs.


Subject(s)
Adenocarcinoma/drug therapy , Adenocarcinoma/genetics , Drug Resistance, Neoplasm/genetics , ErbB Receptors/antagonists & inhibitors , ErbB Receptors/genetics , Lung Neoplasms/drug therapy , Lung Neoplasms/genetics , Receptor, ErbB-2/metabolism , Adenocarcinoma/metabolism , Adenocarcinoma of Lung , Afatinib , Animals , Antibodies, Monoclonal/pharmacology , Antibodies, Monoclonal/therapeutic use , Antibodies, Monoclonal, Humanized , Antineoplastic Agents/pharmacology , Antineoplastic Agents/therapeutic use , Cell Line, Tumor , Cetuximab , Class I Phosphatidylinositol 3-Kinases , ErbB Receptors/metabolism , Erlotinib Hydrochloride , Humans , Lung Neoplasms/metabolism , Mice , Mice, Nude , Molecular Targeted Therapy , Mutation , Phosphatidylinositol 3-Kinases/genetics , Phosphorylation/drug effects , Protein Kinase Inhibitors/pharmacology , Protein Kinase Inhibitors/therapeutic use , Quinazolines/pharmacology , Quinazolines/therapeutic use , RNA Interference , RNA, Small Interfering , Receptor, ErbB-2/antagonists & inhibitors , Receptor, ErbB-2/genetics
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