Abstract
To model the heterogeneity of breast cancer as observed in the clinic, we employed an ex vivo model of breast tumor tissue. This methodology maintained the histological integrity of the tumor tissue in unselected breast cancers, and importantly, the explants retained key molecular markers that are currently used to guide breast cancer treatment (e.g., ER and Her2 status). The primary tumors displayed the expected wide range of positivity for the proliferation marker Ki67, and a strong positive correlation between the Ki67 indices of the primary and corresponding explanted tumor tissues was observed. Collectively, these findings indicate that multiple facets of tumor pathophysiology are recapitulated in this ex vivo model. To interrogate the potential of this preclinical model to inform determinants of therapeutic response, we investigated the cytostatic response to the CDK4/6 inhibitor, PD-0332991. This inhibitor was highly effective at suppressing proliferation in approximately 85% of cases, irrespective of ER or HER2 status. However, 15% of cases were completely resistant to PD-0332991. Marker analyses in both the primary tumor tissue and the corresponding explant revealed that cases resistant to CDK4/6 inhibition lacked the RB-tumor suppressor. These studies provide important insights into the spectrum of breast tumors that could be treated with CDK4/6 inhibitors, and defines functional determinants of response analogous to those identified through neoadjuvant studies.
MeSH Terms
Biomarkers, Tumor/metabolism
Breast Neoplasms/metabolism,pathology,surgery
Cell Proliferation/drug effects
Cyclin-Dependent Kinase 4/antagonists & inhibitors,metabolism
Cyclin-Dependent Kinase 6/antagonists & inhibitors,metabolism
Estrogen Receptor alpha/metabolism
Female
Humans
Ki-67 Antigen/metabolism
Models, Biological
Piperazines/pharmacology
Protein Kinase Inhibitors/pharmacology
Pyridines/pharmacology
Receptor, ErbB-2/metabolism
Retinoblastoma Protein/metabolism
Tumor Cells, Cultured
Chemicals
Biomarkers, Tumor
Estrogen Receptor alpha
Ki-67 Antigen
Piperazines
Protein Kinase Inhibitors
Pyridines
Retinoblastoma Protein
Receptor, ErbB-2
Cyclin-Dependent Kinase 4
Cyclin-Dependent Kinase 6
palbociclib
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Dean Jeffry L
Department of Cancer Biology, Thomas Jefferson University, Philadelphia, PA, USA.
McClendon A Kathleen
Hickey Theresa E
Butler Lisa M
Tilley Wayne D
Witkiewicz Agnieszka K
Knudsen Erik S
References (19)
19 references, click to expand
-
Biological determinants of endocrine resistance in breast cancer.
Nat Rev Cancer. 2009 Sep;9(9):631-43
PMID: 19701242
-
Therapeutically activating RB: reestablishing cell cycle control in endocrine therapy-resistant breast cancer.
Endocr Relat Cancer. 2011 Apr 28;18(3):333-45
PMID: 21367843
-
Modelling breast cancer: one size does not fit all.
Nat Rev Cancer. 2007 Sep;7(9):659-72
PMID: 17721431
-
Molecular portraits of human breast tumours.
Nature. 2000 Aug 17;406(6797):747-52
PMID: 10963602
-
RB-pathway disruption in breast cancer: differential association with disease subtypes, disease-specific prognosis and therapeutic response.
Cell Cycle. 2010 Oct 15;9(20):4153-63
PMID: 20948315
-
Macrophages and cathepsin proteases blunt chemotherapeutic response in breast cancer.
Genes Dev. 2011 Dec 1;25(23):2465-79
PMID: 22156207
-
Gene expression patterns of breast carcinomas distinguish tumor subclasses with clinical implications.
Proc Natl Acad Sci U S A. 2001 Sep 11;98(19):10869-74
PMID: 11553815
-
The meaning of p16(ink4a) expression in tumors: functional significance, clinical associations and future developments.
Cell Cycle. 2011 Aug 1;10(15):2497-503
PMID: 21775818
-
Short term culture of breast cancer tissues to study the activity of the anticancer drug taxol in an intact tumor environment.
BMC Cancer. 2006 Apr 07;6:86
PMID: 16603054
-
Treatment of growing teratoma syndrome.
N Engl J Med. 2009 Jan 22;360(4):423-4
PMID: 19164198
-
American Society of Clinical Oncology/College Of American Pathologists guideline recommendations for immunohistochemical testing of estrogen and progesterone receptors in breast cancer.
J Clin Oncol. 2010 Jun 1;28(16):2784-95
PMID: 20404251
-
Identification of human triple-negative breast cancer subtypes and preclinical models for selection of targeted therapies.
J Clin Invest. 2011 Jul;121(7):2750-67
PMID: 21633166
-
PD 0332991, a selective cyclin D kinase 4/6 inhibitor, preferentially inhibits proliferation of luminal estrogen receptor-positive human breast cancer cell lines in vitro.
Breast Cancer Res. 2009;11(5):R77
PMID: 19874578
-
Towards a molecular basis for tamoxifen resistance in breast cancer.
Ann Oncol. 1992 Jul;3(7):503-11
PMID: 1498070
-
Association of RB/p16-pathway perturbations with DCIS recurrence: dependence on tumor versus tissue microenvironment.
Am J Pathol. 2011 Sep;179(3):1171-8
PMID: 21756866
-
Targeting the RB-pathway in cancer therapy.
Clin Cancer Res. 2010 Feb 15;16(4):1094-9
PMID: 20145169
-
Therapeutic CDK4/6 inhibition in breast cancer: key mechanisms of response and failure.
Oncogene. 2010 Jul 15;29(28):4018-32
PMID: 20473330
-
Cancer: Macrophages limit chemotherapy.
Nature. 2011 Apr 21;472(7343):303-4
PMID: 21512566
-
Tailoring to RB: tumour suppressor status and therapeutic response.
Nat Rev Cancer. 2008 Sep;8(9):714-24
PMID: 19143056