Molecular Markers Predictive Response to Dose Dense Chemotherapy With Epirubicin and Docetaxel in Sequences for Locally Advanced Breast Cancer.
Trial Snapshot
- Phase
- Phase 2
- Status
- Active, not recruiting
- Sponsor
- University of Bergen
- Enrollment
- 100
- Locations
- 1
- Primary Endpoint
- To correlate molecular parameters to objective response to each of the 2 regimens applied.
Study Overview
Brief Summary
Molecular markers predicting response to dose dense chemotherapy with epirubicin and docetaxel in sequence for locally advanced breast cancer
Protocol summary.
Principal Investigator Hans P. Eikesdal, Professor, Dept. of Oncology, Haukeland University Hospital & Dept. of Clinical Science, University of Bergen
Project leader: Professor Per Eystein Lønning, Dept. of Oncology, Haukeland University Hospital & Dept. of Clinical Science, University of Bergen
Collaborators. Dept of Surgery - Responsible: Turid Aas, Consultant Surgeon
Participants. Dept of Oncology Stephanie Geisler, Consultant Oncologist Jurgen Geisler, Consultant Oncologist
Type of Study Phase II, Translational research
Scientific aims: Addressing factors predicting response to dose intensive epirubicin followed by docetaxel sequential therapy
Treatment regimen: epirubicin 60 mg/m2 on a 2 weekly basis x 4 followed by docetaxel 100 mg/m2 2-weekly x 4.
Patients: Breast cancer patients below 65 years of age suffering from large (>4 cm largest diameter, non-inflammatory and / or N2-N3) primary breast cancer.
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Clinical aim: Assessing responsiveness to this dose intensive regimen.
Number of patients to be enrolled: 60 - 100
Detailed Description
Aim The scientific aim of this study is to explore mechanisms of resistance to chemotherapy in breast cancer. To do so, we explore molecular parameters predicting response to chemotherapy administered prior to local therapy in large, primary breast cancers.
Background Neoadjuvant (primary medical) therapy has got wide acceptance as primary therapy in breast cancer. In addition, this treatment provides an optimal setting studying the mechanisms of drug resistance in human cancers.
Considering chemotherapy for primary breast cancer treatment, contemporary trend has been to treat these tumors more aggressively. High-dose therapy involving stem cell support is not advocated, as this has not been shown to improve long-term survival in early breast cancer. However, the attitude in general has been toward a more aggressive approach within the frame of "conventional" therapy.
Based on theoretical modeling, an alternative approach, "dose-dense" therapy, has been advocated. Recently, that concept was brought to the test in two adjuvant trials. Thus, Citron et al applying doxorubicin, paclitaxel and cyclofosfamide revealed an improved outcome for dose-dense (2-weekly) administration compared to regular 3-weekly scheduling. In contrast, the German GEPARDUO study reported doxorubicin plus cyclophosphamide and docetaxel, given in sequence on a 3-weekly basis (8 cycles), to be superior to doxorubicin and docetaxel given in concert on a 2-weekly basis for 4 cycles. However, the doses administered (doxorubicin 50 versus 60 mg/m2; docetaxel 75 versus 100 mg/m2) was unequal, meaning total drug dose exposure differed between the two treatment arms. While more data are warranted, a reasonable interpretation of available data suggest sequential administration of different compounds in a dose-density approach to be a suitable regimen provided adequate total doses are given.
Rationale for regimen Considering anthracyclines, most regimens today combine either epirubicin or doxorubicin in concert with 5-fluorouracil and cyclophosphamide. However, based on the evidence in the literature, it is not clear what the contribution of 5-FU or cyclophosphamide is to the effectiveness of such regimens, in particular not when a taxane is administered in sequence or concert. Thus, the NSABP-group has abandoned use of 5-FU from their adjuvant regimen. Considering cyclophosphamide, this compound seems to add to the carcinogenetic effect of anthracyclines enhancing the risk of secondary leukemia, while the contribution to the antitumor efficacy of the regimen remains uncertain. The taxanes are known to have significant antitumor effects in breast cancer when administered as monotherapy. Considering docetaxel, the dose generally advocated for monotherapy is 100 mg/m2, while a dose of 75mg/m2 is recommended for combined use. Thus, the potential exists that the dose for combined use may be sub-optimal in some patients.
Study Design
- Study Type
- Interventional
- Allocation
- Na
- Intervention Model
- Sequential
- Primary Purpose
- Treatment
- Masking
- None
Eligibility Criteria
- Ages
- 18 Years to 65 Years (Adult, Older Adult)
- Sex
- Female
- Accepts Healthy Volunteers
- No
Inclusion Criteria
- •Primary breast cancer >4cm in diameter and / or lymph node status N2-
- •Age 65 years or younger
- •"Limited" distant metastases allowed, but patients with massive distant metastases should be excluded
- •Willing to participate in the study
Exclusion Criteria
- •Known allergy toward any of the cytotoxic compounds to be administered (epirubicin and doxorubicin)
- •Liver enzymes > 2 times upper normal limit or bilirubin > 3 times upper normal limit
- •Other medical conditions making them unfit for dose-dense therapy
- •Cardiac insufficiency; for patients not to receive trastuzumab, decision whether to exclude such patients will be at the physicians discretion. Considering patients with HER-2 positive tumors who should have trastuzumab, exclusion criteria will be according to the NBCG (Norwegian Breast Cancer Group) general guidelines (www.NBCG.net).
Arms & Interventions
epirubicin/docetaxel sequential
Epirubicin/docetaxel sequential, i.e. one arm study with Epirubicin 4 cycles 60 mg/m2 q2w, followed by docetaxel 4 cycles, 100 mg/m2 q2w. Each course with pegfilgrastim.
Intervention: epirubicin/docetaxel sequential (Other)
Outcomes
Primary Outcomes
To correlate molecular parameters to objective response to each of the 2 regimens applied.
Time Frame: 10 years
To correlate molecular parameters to objective response to sequential dose-dense therapy with epirubicin followed by docetaxel in primary locally advanced breast cancer.
Secondary Outcomes
- To identify and explore characteristics of epithelial and mesenchymal stem cells isolated in tumor tissue and bone marrow(10 years)
- To correlate molecular parameters to relapse-free and overall survival.(10 years)
Investigators
Hans Petter Eikesdal
Professor
University of Bergen
