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PMID: 18430202 Published · ppublish English Journal Article

NVP-AUY922: a small molecule HSP90 inhibitor with potent antitumor activity in preclinical breast cancer models.

Breast cancer research : BCR ·Vol. 10 ·No. 2 ·2008-00-00 ·Pages R33

Jensen MR, Schoepfer J, Radimerski T, Massey A, Guy CT, Brueggen J, Quadt C, Buckler A, Cozens R, Drysdale MJ, Garcia-Echeverria C, Chène P

Abstract

Heat shock protein 90 (HSP90) is a key component of a multichaperone complex involved in the post-translational folding of a large number of client proteins, many of which play essential roles in tumorigenesis. HSP90 has emerged in recent years as a promising new target for anticancer therapies. The concentrations of the HSP90 inhibitor NVP-AUY922 required to reduce cell numbers by 50% (GI50 values) were established in a panel of breast cancer cell lines and patient-derived human breast tumors. To investigate the properties of the compound in vivo, the pharmacokinetic profile, antitumor effect, and dose regimen were established in a BT-474 breast cancer xenograft model. The effect on HSP90-p23 complexes, client protein degradation, and heat shock response was investigated in cell culture and breast cancer xenografts by immunohistochemistry, Western blot analysis, and immunoprecipitation. We show that the novel small molecule HSP90 inhibitor NVP-AUY922 potently inhibits the proliferation of human breast cancer cell lines with GI50 values in the range of 3 to 126 nM. NVP-AUY922 induced proliferative inhibition concurrent with HSP70 upregulation and client protein depletion--hallmarks of HSP90 inhibition. Intravenous acute administration of NVP-AUY922 to athymic mice (30 mg/kg) bearing subcutaneous BT-474 breast tumors resulted in drug levels in excess of 1,000 times the cellular GI50 value for about 2 days. Significant growth inhibition and good tolerability were observed when the compound was administered once per week. Therapeutic effects were concordant with changes in pharmacodynamic markers, including HSP90-p23 dissociation, decreases in ERBB2 and P-AKT, and increased HSP70 protein levels. NVP-AUY922 is a potent small molecule HSP90 inhibitor showing significant activity against breast cancer cells in cellular and in vivo settings. On the basis of its mechanism of action, preclinical activity profile, tolerability, and pharmaceutical properties, the compound recently has entered clinical phase I breast cancer trials.

MeSH Terms
Animals Antineoplastic Agents/administration & dosage,pharmacokinetics,pharmacology Blotting, Western Breast Neoplasms/drug therapy,metabolism Cell Line, Tumor Disease Models, Animal Female Gene Expression Regulation, Neoplastic/drug effects HSP70 Heat-Shock Proteins/metabolism HSP90 Heat-Shock Proteins/antagonists & inhibitors Humans Immunohistochemistry Immunoprecipitation Isoxazoles/administration & dosage,pharmacokinetics,pharmacology Mice Mice, Nude Molecular Chaperones Proto-Oncogene Proteins c-akt/metabolism Receptor, ErbB-2/metabolism Receptors, Estrogen/metabolism Resorcinols/administration & dosage,pharmacokinetics,pharmacology Transplantation, Heterologous Up-Regulation/drug effects
Chemicals
5-(2,4-dihydroxy-5-isopropylphenyl)-4-(4-morpholin-4-ylmethylphenyl)isoxazole-3-carboxylic acid ethylamide Antineoplastic Agents HSP70 Heat-Shock Proteins HSP90 Heat-Shock Proteins Isoxazoles Molecular Chaperones Receptors, Estrogen Resorcinols Erbb2 protein, mouse Receptor, ErbB-2 Proto-Oncogene Proteins c-akt
Authors & Affiliations
12 authors, click to expand affiliations / ORCID
Jensen Michael Rugaard
Novartis Institutes for BioMedical Research, Oncology Research, Klybeckstrasse 141, CH-4057 Basel, Switzerland. michael_rugaard.jensen@novartis.com
Schoepfer Joseph
Radimerski Thomas
Massey Andrew
Guy Chantale T
Brueggen Josef
Quadt Cornelia
Buckler Alan
Cozens Robert
Drysdale Martin J
Garcia-Echeverria Carlos
Chène Patrick
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Article Info
Journal
Breast cancer research : BCR
Abbr.
Breast Cancer Res
ISSN
1465-542X
Published
2008-00-00
Epub
2008-00-22
Pages
R33
Language
English
Region
England
NLM ID
100927353
PMCID
PMC2397535
Subset
IM
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