Skip to main content
Erschienen in: Breast Cancer Research and Treatment 3/2010

01.10.2010 | Preclinical study

Amplification of fibroblast growth factor receptor-1 in breast cancer and the effects of brivanib alaninate

verfasst von: Christine Y. Shiang, Yuan Qi, Bailiang Wang, Vladimir Lazar, Jing Wang, W. Fraser Symmans, Gabriel N. Hortobagyi, Fabrice Andre, Lajos Pusztai

Erschienen in: Breast Cancer Research and Treatment | Ausgabe 3/2010

Einloggen, um Zugang zu erhalten

Abstract

Fibroblast growth factor receptor-1 (FGFR-1) is amplified in 10% of human breast cancers. The goal of this study was to test the correlation between FGFR-1 amplification and expression and sensitivity to brivanib, an FGFR-1 small molecule inhibitor, in breast cancer cell lines in vitro. Using CGH array and gene expression profiling, FGFR-1 DNA copy number, mRNA, and protein expression were measured in 21 cell lines and correlated with growth inhibition by brivanib. We examined FGFR-1 autophosphorylation and kinase activity, as well as phosphorylation of downstream signaling molecules in response to bFGF and brivanib exposure. CAMA, MDA-MB-361, and HCC38 cells had FGFR-1 amplification and protein overexpression. Brivanib GI50 values were significantly lower in the gene amplified (15.17 μM, n = 3) compared to normal copy number (69.09 μM, n = 11) or FGFR-1 deleted (76.14 μM, n = 7) cells (P = 0.0107). Among nonamplified cells, there was no correlation between FGFR-1 mRNA or protein expression levels and brivanib sensitivity. Two of three FGFR-1 amplified cells were sensitive to bFGF-induced growth stimulation, which was blocked by brivanib. In cells with amplified FGFR-1, brivanib decreased receptor autophosphorylation, inhibited bFGF-induced tyrosine kinase activity, and reduced phosphorylation of ERK and AKT. Breast cancer cell lines with FGFR-1 gene amplification and protein overexpression are more sensitive to growth inhibition by brivanib than nonamplified cells. These findings suggest that FGFR-1 amplification or protein overexpression in breast cancers may be an indicator for brivanib treatment, where it may have direct anti-proliferative effects in addition to its’ anti-angiogenic effects.
Anhänge
Nur mit Berechtigung zugänglich
Literatur
1.
Zurück zum Zitat Sotiriou C, Pusztai L (2009) Gene-expression signatures in breast cancer. N Engl J Med 360:790–800CrossRefPubMed Sotiriou C, Pusztai L (2009) Gene-expression signatures in breast cancer. N Engl J Med 360:790–800CrossRefPubMed
2.
Zurück zum Zitat Wood LD, Parsons DW, Jones S et al (2007) The genomic landscapes of human breast and colorectal cancers. Science 318:1079–1080CrossRef Wood LD, Parsons DW, Jones S et al (2007) The genomic landscapes of human breast and colorectal cancers. Science 318:1079–1080CrossRef
3.
Zurück zum Zitat Andre F, Job B, Dessen P et al (2009) Molecular characterization of breast cancer with high-resolution oligonucleotide comparative genomic hybridization array. Clin Cancer Res 15:441–451CrossRefPubMed Andre F, Job B, Dessen P et al (2009) Molecular characterization of breast cancer with high-resolution oligonucleotide comparative genomic hybridization array. Clin Cancer Res 15:441–451CrossRefPubMed
4.
Zurück zum Zitat Elbauomy Elsheikh S, Green AR, Lambros MB et al (2007) FGFR1 amplification in breast carcinomas: a chromogenic in situ hybridisation analysis. Breast Cancer Res 9:R23CrossRefPubMed Elbauomy Elsheikh S, Green AR, Lambros MB et al (2007) FGFR1 amplification in breast carcinomas: a chromogenic in situ hybridisation analysis. Breast Cancer Res 9:R23CrossRefPubMed
5.
Zurück zum Zitat Schwertfeger KL (2009) Fibroblast growth factors in development and cancer: insights from the mammary and prostate glands. Curr Drug Target 10:632–644 Schwertfeger KL (2009) Fibroblast growth factors in development and cancer: insights from the mammary and prostate glands. Curr Drug Target 10:632–644
6.
Zurück zum Zitat Kwek SS, Roy R, Zhou H et al (2009) Co-amplified genes at 8p12 and 11q13 in breast tumors cooperate with two major pathways in oncogenesis. Oncogene 28:1892–1903CrossRefPubMed Kwek SS, Roy R, Zhou H et al (2009) Co-amplified genes at 8p12 and 11q13 in breast tumors cooperate with two major pathways in oncogenesis. Oncogene 28:1892–1903CrossRefPubMed
7.
Zurück zum Zitat Xian W, Pappas L, Pandya D et al (2009) Fibroblast growth factor receptor 1-transformed mammary epithelial cells are dependent on RSK activity for growth and survival. Cancer Res 69:2244–2251CrossRefPubMed Xian W, Pappas L, Pandya D et al (2009) Fibroblast growth factor receptor 1-transformed mammary epithelial cells are dependent on RSK activity for growth and survival. Cancer Res 69:2244–2251CrossRefPubMed
8.
Zurück zum Zitat Eswarakumar VP, Lax I, Schlessinger J (2005) Cellular signaling by fibroblast growth factor receptors. Cytokine Growth Factor Rev 16:139–149CrossRefPubMed Eswarakumar VP, Lax I, Schlessinger J (2005) Cellular signaling by fibroblast growth factor receptors. Cytokine Growth Factor Rev 16:139–149CrossRefPubMed
9.
Zurück zum Zitat Schwertfeger KL, Xian W, Kaplan AM, Burnett SH, Cohen DA, Rosen JM (2006) A critical role for the inflammatory response in a mouse model of preneoplastic progression. Cancer Res 66:5676–5685CrossRefPubMed Schwertfeger KL, Xian W, Kaplan AM, Burnett SH, Cohen DA, Rosen JM (2006) A critical role for the inflammatory response in a mouse model of preneoplastic progression. Cancer Res 66:5676–5685CrossRefPubMed
10.
Zurück zum Zitat Reis-Filho JS, Simpson PT, Turner NC et al (2006) FGFR1 emerges as a potential therapeutic target for lobular breast carcinomas. Clin Cancer Res 12:6652–6662CrossRefPubMed Reis-Filho JS, Simpson PT, Turner NC et al (2006) FGFR1 emerges as a potential therapeutic target for lobular breast carcinomas. Clin Cancer Res 12:6652–6662CrossRefPubMed
11.
Zurück zum Zitat Cai ZW, Zhang Y, Borzilleri RM et al (2008) Discovery of brivanib alaninate ((S)-((R)-1-(4-(4-fluoro-2-methyl-1H-indol-5-yloxy)-5-methylpyrrolo[2, 1-f][1, 2, 4]triazin-6-yloxy)propan-2-yl)2-aminopropanoate), a novel prodrug of dual vascular endothelial growth factor receptor-2 and fibroblast growth factor receptor-1 kinase inhibitor (BMS-540215). J Med Chem 51:1976–1980CrossRefPubMed Cai ZW, Zhang Y, Borzilleri RM et al (2008) Discovery of brivanib alaninate ((S)-((R)-1-(4-(4-fluoro-2-methyl-1H-indol-5-yloxy)-5-methylpyrrolo[2, 1-f][1, 2, 4]triazin-6-yloxy)propan-2-yl)2-aminopropanoate), a novel prodrug of dual vascular endothelial growth factor receptor-2 and fibroblast growth factor receptor-1 kinase inhibitor (BMS-540215). J Med Chem 51:1976–1980CrossRefPubMed
12.
Zurück zum Zitat Borzilleri RM, Zheng X, Qian L et al (2005) Design, synthesis, and evaluation of orally active 4-(2, 4-difluoro-5-(methoxycarbamoyl)phenylamino)pyrrolo[2, 1-f][1, 2, 4]triazines as dual vascular endothelial growth factor receptor-2 and fibroblast growth factor receptor-1 inhibitors. J Med Chem 48:3991–4008CrossRefPubMed Borzilleri RM, Zheng X, Qian L et al (2005) Design, synthesis, and evaluation of orally active 4-(2, 4-difluoro-5-(methoxycarbamoyl)phenylamino)pyrrolo[2, 1-f][1, 2, 4]triazines as dual vascular endothelial growth factor receptor-2 and fibroblast growth factor receptor-1 inhibitors. J Med Chem 48:3991–4008CrossRefPubMed
13.
Zurück zum Zitat Bhide RS, Cai ZW, Zhang YZ et al (2006) Discovery and preclinical studies of (R)-1-(4-(4-fluoro-2-methyl-1H-indol-5-yloxy)-5-methylpyrrolo[2, 1-f][1, 2, 4]triazin-6-yloxy)propan-2-ol (BMS-540215), an in vivo active potent VEGFR-2 inhibitor. J Med Chem 49:2143–2146CrossRefPubMed Bhide RS, Cai ZW, Zhang YZ et al (2006) Discovery and preclinical studies of (R)-1-(4-(4-fluoro-2-methyl-1H-indol-5-yloxy)-5-methylpyrrolo[2, 1-f][1, 2, 4]triazin-6-yloxy)propan-2-ol (BMS-540215), an in vivo active potent VEGFR-2 inhibitor. J Med Chem 49:2143–2146CrossRefPubMed
15.
Zurück zum Zitat Huynh H, Ngo VC, Fargnoli J et al (2008) Brivanib alaninate, a dual inhibitor of vascular endothelial growth factor receptor and fibroblast growth factor receptor tyrosine kinases, induces growth inhibition in mouse models of human hepatocellular carcinoma. Clin Cancer Res 14(19):6146–6153CrossRefPubMed Huynh H, Ngo VC, Fargnoli J et al (2008) Brivanib alaninate, a dual inhibitor of vascular endothelial growth factor receptor and fibroblast growth factor receptor tyrosine kinases, induces growth inhibition in mouse models of human hepatocellular carcinoma. Clin Cancer Res 14(19):6146–6153CrossRefPubMed
16.
Zurück zum Zitat Liedtke C, Wang J, Tordai A, et al (2009) Clinical evaluation of chemotherapy response predictors developed from breast cancer cell lines. Breast Cancer Res Treat. doi:10.1007/s10549-009-0445-7 Liedtke C, Wang J, Tordai A, et al (2009) Clinical evaluation of chemotherapy response predictors developed from breast cancer cell lines. Breast Cancer Res Treat. doi:10.​1007/​s10549-009-0445-7
17.
Zurück zum Zitat Neve RM, Chin K, Fridlyand J et al (2006) A collection of breast cancer cell lines for the study of functionally distinct cancer subtypes. Cancer Cell 10:515–527CrossRefPubMed Neve RM, Chin K, Fridlyand J et al (2006) A collection of breast cancer cell lines for the study of functionally distinct cancer subtypes. Cancer Cell 10:515–527CrossRefPubMed
18.
Zurück zum Zitat Hothorn T, Bretz F, Westfall P (2008) Simultaneous inference in general parametric models. Biom J 50:346–363CrossRefPubMed Hothorn T, Bretz F, Westfall P (2008) Simultaneous inference in general parametric models. Biom J 50:346–363CrossRefPubMed
19.
Zurück zum Zitat Raven JF, Baltzis D, Wang S, et al (2008) PKR and PKR-like endoplasmic reticulum kinase induce the proteasome-dependent degradation of cyclin D1 via a mechanism requiring eukaryotic initiation factor 2α phosphorylation. J Bio Chem 283:3097–3108CrossRef Raven JF, Baltzis D, Wang S, et al (2008) PKR and PKR-like endoplasmic reticulum kinase induce the proteasome-dependent degradation of cyclin D1 via a mechanism requiring eukaryotic initiation factor 2α phosphorylation. J Bio Chem 283:3097–3108CrossRef
Metadaten
Titel
Amplification of fibroblast growth factor receptor-1 in breast cancer and the effects of brivanib alaninate
verfasst von
Christine Y. Shiang
Yuan Qi
Bailiang Wang
Vladimir Lazar
Jing Wang
W. Fraser Symmans
Gabriel N. Hortobagyi
Fabrice Andre
Lajos Pusztai
Publikationsdatum
01.10.2010
Verlag
Springer US
Erschienen in
Breast Cancer Research and Treatment / Ausgabe 3/2010
Print ISSN: 0167-6806
Elektronische ISSN: 1573-7217
DOI
https://doi.org/10.1007/s10549-009-0677-6

Weitere Artikel der Ausgabe 3/2010

Breast Cancer Research and Treatment 3/2010 Zur Ausgabe

Adjuvante Immuntherapie verlängert Leben bei RCC

25.04.2024 Nierenkarzinom Nachrichten

Nun gibt es auch Resultate zum Gesamtüberleben: Eine adjuvante Pembrolizumab-Therapie konnte in einer Phase-3-Studie das Leben von Menschen mit Nierenzellkarzinom deutlich verlängern. Die Sterberate war im Vergleich zu Placebo um 38% geringer.

Alectinib verbessert krankheitsfreies Überleben bei ALK-positivem NSCLC

25.04.2024 NSCLC Nachrichten

Das Risiko für Rezidiv oder Tod von Patienten und Patientinnen mit reseziertem ALK-positivem NSCLC ist unter einer adjuvanten Therapie mit dem Tyrosinkinase-Inhibitor Alectinib signifikant geringer als unter platinbasierter Chemotherapie.

Bei Senioren mit Prostatakarzinom auf Anämie achten!

24.04.2024 DGIM 2024 Nachrichten

Patienten, die zur Behandlung ihres Prostatakarzinoms eine Androgendeprivationstherapie erhalten, entwickeln nicht selten eine Anämie. Wer ältere Patienten internistisch mitbetreut, sollte auf diese Nebenwirkung achten.

ICI-Therapie in der Schwangerschaft wird gut toleriert

Müssen sich Schwangere einer Krebstherapie unterziehen, rufen Immuncheckpointinhibitoren offenbar nicht mehr unerwünschte Wirkungen hervor als andere Mittel gegen Krebs.

Update Onkologie

Bestellen Sie unseren Fach-Newsletter und bleiben Sie gut informiert.