View clinical trials related to Triple Negative Breast Neoplasms.
Filter by:This is a study to determine the clinical benefit (how well the drug works), safety and tolerability of combining varlilumab and atezolizumab. Phase l of the study will enroll patients with a number of tumor types; Phase ll will enroll only patients with renal cell carcinoma (RCC).* *Note: This Study was terminated prior to initiation of Phase II
As a special type of breast cancer, the triple negative breast cancer has the characteristics of high recurrence rate (2 years after surgery), high distant metastasis rate, poor prognosis and short survival time. No matter at home or abroad, the clinical researches of the triple negative breast cancer are mainly focused on finding new drugs and new treatment strategies in order to reduce its recurrence and distant metastasis rate. The DC/CIK cell immunotherapy combined with chemotherapy in the clinical study of metastatic triple negative breast cancer has already confirmed benefit. This study is based on the theory that the optimal timing of cellular immunity is while the host tumor load is under the smallest state. Put forward the hypothesis that the DC/CIK cell immunotherapy combined with chemotherapy may improve the disease-free survival and overall surviva after the triple negative breast cancer operation. The investigators intends to use the RCT, observing the clinical significance of cellular immune adjuvant therapy of triple negative breast cancer in 340 patients with TNBC. Do the safety evaluation of cellular immunity in the adjuvant treatment of breast cancer treatment, explore the clinical strategies for breast cancer immunotherapy.
The purpose of this study is to evaluate the safety and effectiveness of carboplatin compared to the combination of carboplatin and everolimus for the treatment of advanced triple-negative breast cancer (TNBC). Study close to accrual
Intratumoral plasmid IL-12 electroporation (IT-pIL12-EP) will be administered to approximately 10 patients with triple negative breast cancer (TNBC) with cutaneous or subcutaneous disease. Patients will receive one complete cycle of therapy, consisting of local injection of plasmid IL-12 (pIL-12) followed immediately by electroporation (EP), into accessible tumor lesions. IT-pIL12-EP will be administered in Days 1, 5, and 8 of the single 28-day cycle.
This phase II trial studies how well nab-paclitaxel and atezolizumab before surgery work in treating patients with triple negative breast cancer (breast cancer cells that do not have estrogen receptors, progesterone receptors, or large amounts of human epidermal growth factor receptor 2 protein). Drugs used in chemotherapy, such as nab-paclitaxel, work in different ways to stop the growth of tumor cells, either by killing the cells, by stopping them from dividing, or by stopping them from spreading. Immunotherapy with monoclonal antibodies, such as atezolizumab, may help the body's immune system attack the cancer, and may interfere with the ability of tumor cells to grow and spread. Giving nab-paclitaxel and atezolizumab before surgery may make the tumor smaller and reduce the amount of normal tissue that needs to be removed. This drug combination before surgery may be an effective treatment for triple negative breast cancer.
A Phase II, Multi-Center, Open-Label Study of Tremelimumab Monotherapy in Patients with Advanced Solid Tumors
The purpose of this study is to test the safety and feasibility of placing and removing a small device that contains anti-cancer drugs in a breast tumor of patients who plan on having breast surgery without treatment prior or patients who plan on receiving standard preoperative chemotherapy prior to their breast surgery. This device may be able to predict what types of treatment work best against an individual's breast cancer. With this device, the investigators hope to be able to personalize treatment choices based on an individual's type of breast cancer.
This is an open-label, single-arm, multicenter, Phase 1b/2 study of eribulin mesylate in combination with pembrolizumab in participants with mTNBC previously treated with 0 (stratum 1) or 1 to 2 (stratum 2) lines of systemic anticancer therapy (cytotoxic or targeted anticancer agents) in the metastatic setting.
[Background]: Triple-negative breast cancer (TNBC) is defined by a lack of expression of both estrogen and progesterone receptor as well as human epidermal growth factor receptor 2 (HER-2). TNBC is characterized by distinct molecular, histological and unfavorable clinical features despite the high rates of response to chemotherapy. Based on the above reasons, it is important to emergently develop novel therapies and/or treatment strategies to increase treatment efficacies and the survival rate of TNBC. [Rationale]: Overexpression of epidermal growth factor receptor (EGFR/ErbB1) and EGFR mutation have been reported in TNBC and may therefore be a valid target for anti-tumor therapy in TNBC. Afatinib (BIBW 2992) is an ErbB-family blocker that irreversibly inhibits signaling from all relevant ErbB-family dimers. Afatinib has demonstrated preclinical activity in triple-negative breast cancer cell lines and xenograft models of breast cancer, and clinical activity in phase I studies. Based on the assumption that uncontrolled ErbB-signaling is directly related to an increased oncogenic potential in TNBC, the studying afatinib in the neoadjuvant treatment of TNBC patients is important and provides a novel therapy. [Aims] The primary endpoint is to evaluate the pathologic complete response of the combination of afatinib and weekly paclitaxel in TNBC patients receiving neoadjuvant treatment. The secondary endpoints are to evaluate the clinical response and safety of afatinib with and without paclitaxel, and to explore the different afatinib-affecting downstream molecular pathways as well as potential biomarkers predicting the response of afatinib with and without paclitaxel. [Patients and methods]: Patients with TNBC (clinical T2-T3, N0-N1, M0; clinical T1-3, N1-2, M0; or any T4a tumor) and received neoadjuvant treatment will included in this open, label, multi-center phase II study. Our schema is as follows: (1) Afatinib 40 mg per day for 14 days, then evaluation, every subject will go into the following phase no matter whether she had response or not (2) the following phase (the combination with afatinib and paclitaxel): Afatinib 40 mg per day, day 1 to day 21, in combination with paclitaxel 80 mg/m² on days 1, 8, 15 in a 3-weekly course. In addition to the clinical assessment, we will evaluate the potential predictive biological markers of activity of Afatinib with and without paclitaxel and dynamic changes of molecular makers ([serum and tissue samples: before treatment, 2 weeks after treatment, and operation timing]; potential molecules, such as EGFR, EGFR-signaling, FGFR, FGFR-signaling, ERK, p53, NF-κB, and etc. were evaluated through the immunohistochemical stains, mutation analysis, mRNA [RT-PCR], single nucleotide polymorphism analysis, and FISH analysis). In addition, the genetic expression profiles will be compared between afatinib-responsive and afatinib-unresponsive samples. [Expected Results]: The promising clinical activity, tolerable toxicity, and potential biomarkers of afatinib with and without paclitaxel in TNBC patients receiving neoadjuvant setting will be demonstrated. The results from this study can be used to conduct a larger trial that would allow us to confirm or validate the hypotheses generated.
This is a single center non-blinded randomized non-comparative phase II trial. The first stage of the trial consists of five arms ( with induction treatment followed by nivolumab, 1 with no induction treatment before nivolumab). For the second stage, the number of arms will be reduced based on the results obtained in the first stage.