View clinical trials related to Triple Negative Breast Neoplasms.
Filter by:This phase II trial is studying how well giving entinostat and anastrozole together works in treating postmenopausal women with triple-negative breast cancer that can be removed by surgery. Entinostat may stop the growth of tumor cells by blocking some of the enzymes needed for cell growth. Estrogen can cause the growth of breast cancer cells. Hormone therapy using anastrozole may fight breast cancer by blocking the use of estrogen by the tumor cells. Giving entinostat together with anastrozole may be an effective treatment for breast cancer.
To access the effectiveness of High-dose Cyclophosphamide Combined Chemotherapy combined with adoptive cellular therapy with dentritic and cytokine-induced killer cells in triple negative metastatic breast cancer patients
The 10%-15% of breast carcinomas known to be 'triple negative (TN)' (not expressing HRs and not exhibiting overexpression Her2) constitutes 85% of all basal-like tumors, because it is based on three standard immunohistochemical biomarkers. In clinical routine, Docetaxel was widely indicated as first-line therapy for breast cancer patients in adjuvant or neoadjuvant settings. Oxaliplatin, trans-1-diaminocyclohexane-platinum, may offer advantages over other platinum agents. Oxaliplatin promotes formation of DNA adducts, preventing DNA replication and transcription and ultimately causing apoptosis. Oxaliplatin was more potent than cisplatin and the Oxaliplatin-based regimen was active for the patients of lung cancer, colorectal cancer and ect. TNBC patients were more sensitive to platinum-based chemotherapy regimens according to the results of some retrospective studies. There was no report about Oxaliplatin in the chemotherapy setting for breast cancer patients. The investigators hypothesized that using Oxaliplatin adding to docetaxel would be feasible and active in patients with TNLABC because in vitro findings suggest synergism between the agents. This study was designed to investigate the efficacy and toxicity of oxaliplatin-based regimen as a neoadjuvant chemotherapy setting in triple negative local advanced breast cancer patients
Previous studies in Western country show that triple-negative breast cancer has aggressive clinical and pathological features compared with non-triple negative breast cancer, including onset at a young age, advanced clinical stage, high histologic and nuclear grade and more distant recurrence. According to the characteristics of triple negative breast tumor, the TNBC patients can benefit neither from hormonal therapies nor from target therapies against Her2 receptors. The only systemic therapy currently available is chemotherapy, and prognosis remains poor. It becomes more and more important to investigate the sensitive chemotherapy regimen for triple negative patients. Cisplatin-based regimen was active for the patients of lung cancer, colorectal cancer and ect. Triple negative breast cancer patients were more sensitive to platinum-based chemotherapy regimens according to the results of some retrospective studies. The investigators hypothesized that paclitaxel combined with cisplatin is more sensitive to triple negative breast cancer compared with CEF followed by docetaxel.
RATIONALE: Monoclonal antibodies, such as bevacizumab, can block tumor growth in different ways. Some block the ability of tumor cells to grow and spread. Others find tumor cells and help kill them or carry tumor-killing substances to them. Drugs used in chemotherapy, such as docetaxel and carboplatin, work in different ways to stop the growth of tumor cells, either by killing the cells or by stopping them from dividing. Giving bevacizumab together with docetaxel and carboplatin may kill more tumor cells. PURPOSE: This phase II trial is studying how well giving bevacizumab together with docetaxel and carboplatin works in treating women with operable Stage II or stage III breast cancer.
Primary Objective: - to assess the pathological Complete Response (pCR) rate in the breast of patients treated in following combinations: SAR240550 twice-weekly + weekly paclitaxel, SAR240550 weekly+ weekly paclitaxel, and weekly paclitaxel single agent as calibrator. Secondary objectives are: - pCR rate in the breast and axilla, - Radiological/clinical objective response rate (ORR), breast conservation rate, disease free survival (DFS), and overall survival (OS), in each treatment arm, - Safety profiles of study combinations and of the single agent reference treatment, - Molecular characteristics of the tumor tissue and peripheral blood mononuclear cells (PBMC) and any correlation between the biological activity of the study treatment and the disease outcome. Based on data generated by BiPar/Sanofi, it is concluded that iniparib does not possess characteristics typical of the PARP inhibitor class. The exact mechanism has not yet been fully elucidated, however based on experiments on tumor cells performed in the laboratory, iniparib is a novel investigational anti-cancer agent that induces gamma-H2AX (a marker of DNA damage) in tumor cell lines, induces cell cycle arrest in the G2/M phase in tumor cell lines, and potentiates the cell cycle effects of DNA damaging modalities in tumor cell lines. Investigations into potential targets of iniparib and its metabolites are ongoing.
Patients are being asked to take part in this study because they have metastatic breast cancer that is triple negative (does not express estrogen receptor (ER), progesterone receptor (PR) or HER2). This means that agents such as trastuzumab (Herceptin®) and tamoxifen are not currently treatment options for their cancer. Another option for treating the patient's cancer at this point is with chemotherapy. The patient should discuss this and other options with their doctor prior to entering this study. Laboratory studies have demonstrated that ER is actually present in some triple negative breast cancers but is "silenced" (does not function properly) because methyl and histone groups are attached to it and inactivate it. Special drugs called demethylating inhibitors (such as decitabine) and histone deacetylase inhibitors (such as LBH589) can remove these methyl and histone groups and reactivate ER. This reactivated ER can then be targeted with agents like tamoxifen. The patient is being asked to join this clinical research study to find out if ER can be reactivated in their cancer using decitabine in combination with LBH589. If ER is reactivated in their cancer, we will then determine if tamoxifen can decrease the growth of the cancer.
This is a randomized, Phase II, double-blind, multicenter, placebo-controlled trial designed to preliminarily estimate the efficacy and evaluate the safety and tolerability of onartuzumab (MetMAb) + bevacizumab + paclitaxel and onartuzumab + placebo + paclitaxel versus placebo + bevacizumab + paclitaxel in participants with metastatic or locally recurrent, triple-negative breast cancer who either have not received treatment (first-line) or have progressed after one conventional cytotoxic chemotherapy regimen (second-line).
The hypothesis of this clinical research study is to discover if the study drug apatinib can shrink or slow the growth of pretreated metastatic triple-negative breast cancer.
The purpose of the study is to investigate the response rate for triple negative breast cancer patients with brain metastasis when INIPARIB is used in combination with irinotecan. Based on data generated by BiPar/Sanofi, it is concluded that iniparib does not possess characteristics typical of the PARP inhibitor class. The exact mechanism has not yet been fully elucidated, however based on experiments on tumor cells performed in the laboratory, iniparib is a novel investigational anti-cancer agent that induces gamma-H2AX (a marker of DNA damage) in tumor cell lines, induces cell cycle arrest in the G2/M phase in tumor cell lines, and potentiates the cell cycle effects of DNA damaging modalities in tumor cell lines. Investigations into potential targets of iniparib and its metabolites are ongoing.