HER2, TOP2A, and TIMP-1 and responsiveness to adjuvant anthracycline-containing chemotherapy in high-risk breast cancer patients.
暂无分享,去创建一个
Nils Brünner | N. Brünner | E. Balslev | K. Nielsen | B. Rasmussen | H. Mouridsen | M. Jensen | B. Ejlertsen | Henning T Mouridsen | Maj-Britt Jensen | A. Knoop | Bent Ejlertsen | G. Willemoe | Eva Balslev | Ann S Knoop | Kirsten V Nielsen | Birgitte B Rasmussen | Gro L Willemoe | Pernille B Hertel | P. B. Hertel
[1] Jens Overgaard,et al. retrospective analysis of topoisomerase IIa amplifications and deletions as predictive markers in primary breast cancer patients randomly assigned to cyclophosphamide, methotrexate, and fluorouracil or cyclophosphamide, epirubicin, and fluorouracil: Danish Breast Cancer Cooperative Group. , 2005, Journal of clinical oncology : official journal of the American Society of Clinical Oncology.
[2] J. Cardelli,et al. TIMP-1 overexpression promotes tumorigenesis of MDA-MB-231 breast cancer cells and alters expression of a subset of cancer promoting genes in vivo distinct from those observed in vitro , 2009, Breast Cancer Research and Treatment.
[3] A. Carrato,et al. Doxorubicin in combination with fluorouracil and cyclophosphamide (i.v. FAC regimen, day 1, 21) versus methotrexate in combination with fluorouracil and cyclophosphamide (i.v. CMF regimen, day 1, 21) as adjuvant chemotherapy for operable breast cancer: a study by the GEICAM group. , 2003, Annals of oncology : official journal of the European Society for Medical Oncology.
[4] M. Sormani,et al. HER2 status and efficacy of adjuvant anthracyclines in early breast cancer: a pooled analysis of randomized trials. , 2008, Journal of the National Cancer Institute.
[5] L. Gianni,et al. Anthracyclines: Molecular Advances and Pharmacologic Developments in Antitumor Activity and Cardiotoxicity , 2004, Pharmacological Reviews.
[6] E. Balslev,et al. Amplification of HER2 and TOP2A and deletion of TOP2A genes in breast cancer investigated by new FISH probes , 2004, Acta oncologica.
[7] N. Brünner,et al. Characterization of Anti-TIMP-1 Monoclonal Antibodies for Immunohistochemical Localization in Formalin-fixed, Paraffin-embedded Tissue , 2006, The journal of histochemistry and cytochemistry : official journal of the Histochemistry Society.
[8] H. Mouridsen,et al. The value of TOP2A gene copy number variation as a biomarker in breast cancer: Update of DBCG trial 89D , 2008, Acta oncologica.
[9] F. O'Malley,et al. HER2/neu in systemic therapy for women with breast cancer: a systematic review , 2008, Breast Cancer Research and Treatment.
[10] Bonnie F. Sloane,et al. Tissue inhibitor of metalloproteinase-1 protects human breast epithelial cells from extrinsic cell death: a potential oncogenic activity of tissue inhibitor of metalloproteinase-1. , 2005, Cancer research.
[11] R. Fridman,et al. TIMP-1 regulation of cell cycle in human breast epithelial cells via stabilization of p27KIP1 protein , 2006, Oncogene.
[12] W. Stetler-Stevenson,et al. In vitro suppression of programmed cell death of B cells by tissue inhibitor of metalloproteinases-1. , 1998, The Journal of clinical investigation.
[13] M Schemper,et al. A note on quantifying follow-up in studies of failure time. , 1996, Controlled clinical trials.
[14] J. Bergh,et al. Improved outcome from substituting methotrexate with epirubicin: results from a randomised comparison of CMF versus CEF in patients with primary breast cancer. , 2007, European journal of cancer.
[15] M. Sehested,et al. Culprit and victim -- DNA topoisomerase II. , 2002, The Lancet. Oncology.
[16] C. Desmedt,et al. A meta-analysis of phase III trials evaluating the predictive value of HER2 and topoisomerase II alpha in early breast cancer patients treated with CMF or anthracycline-based adjuvant therapy. , 2009 .
[17] W. Vach,et al. Immunohistochemical assessment of oestrogen and progesterone receptors: correlations with the DCC method and clinical outcome in primary breast cancer patients. , 2000, Breast.
[18] J. Bergh,et al. Similar efficacy for ovarian ablation compared with cyclophosphamide, methotrexate, and fluorouracil: from a randomized comparison of premenopausal patients with node-positive, hormone receptor-positive breast cancer. , 2006, Journal of clinical oncology : official journal of the American Society of Clinical Oncology.
[19] Dongsheng Tu,et al. Randomized trial comparing cyclophosphamide, epirubicin, and fluorouracil with cyclophosphamide, methotrexate, and fluorouracil in premenopausal women with node-positive breast cancer: update of National Cancer Institute of Canada Clinical Trials Group Trial MA5. , 2005, Journal of clinical oncology : official journal of the American Society of Clinical Oncology.
[20] B. Rasmussen,et al. Semi-quantitative scoring of potentially predictive markers for endocrine treatment of breast cancer: a comparison between whole sections and tissue microarrays , 2006, Journal of Clinical Pathology.
[21] J. Berger,et al. Structure and mechanism of DNA topoisomerase II , 1996, Nature.
[22] C. Osborne,et al. Randomized, controlled trial of cyclophosphamide, methotrexate, and fluorouracil versus cyclophosphamide, doxorubicin, and fluorouracil with and without tamoxifen for high-risk, node-negative breast cancer: treatment results of Intergroup Protocol INT-0102. , 2005, Journal of clinical oncology : official journal of the American Society of Clinical Oncology.
[23] N. Brünner,et al. TIMP-1 gene deficiency increases tumour cell sensitivity to chemotherapy-induced apoptosis , 2006, British Journal of Cancer.
[24] N. Brünner,et al. Primary Tumor Levels of Tissue Inhibitor of Metalloproteinases-1 Are Predictive of Resistance to Chemotherapy in Patients with Metastatic Breast Cancer , 2006, Clinical Cancer Research.
[25] N. Brünner,et al. Lack of TIMP-1 tumour cell immunoreactivity predicts effect of adjuvant anthracycline-based chemotherapy in patients (n=647) with primary breast cancer. A Danish Breast Cancer Cooperative Group Study. , 2009, European journal of cancer.
[26] M. Ewertz,et al. Tamoxifen for one year versus two years versus 6 months of Tamoxifen and 6 months of megestrol acetate: A randomized comparison in postmenopausal patients with high-risk breast cancer (DBCG 89C) , 2008, Acta oncologica.
[27] Sally Hunsberger,et al. Proposal for standardized definitions for efficacy end points in adjuvant breast cancer trials: the STEEP system. , 2007, Journal of clinical oncology : official journal of the American Society of Clinical Oncology.
[28] Y Wang,et al. Effects of chemotherapy and hormonal therapy for early breast cancer on recurrence and 15-year survival: an overview of the randomised trials , 2005, The Lancet.
[29] Christian A. Rees,et al. Molecular portraits of human breast tumours , 2000, Nature.
[30] Roman Rouzier,et al. Breast Cancer Molecular Subtypes Respond Differently to Preoperative Chemotherapy , 2005, Clinical Cancer Research.