View clinical trials related to Triple Negative Breast Cancer.
Filter by:This is a phase 1b, open-Label clinical trial to determine the safety and tolerability and to establish a preliminary recommended Phase 2 dose (RP2D) of TTAC-0001 administered in combination with pembrolizumab in patients with metastatic triple-negative breast cancer.
This is a Phase 1 open label sequential dose escalation and cohort expansion study evaluating the safety, tolerability and preliminary clinical activity of COM701 as monotherapy and in combination with nivolumab.
This is a first-in-human, phase I clinical research study with TT-00420, an investigational, oral, multi-target, dual mechanism kinase inhibitor targeting both mitosis and tumor micro-environment, for the treatment of triple negative breast cancer (TNBC) and other advanced solid tumors. The study consists of a dose escalation part followed by a MTD expansion part.
The standard treatment for women with stage I, II, and III triple-negative breast cancer (TNBC) includes chemotherapy and surgery, with or without radiation therapy. However, because TNBC is usually more aggressive, harder to treat, and more likely to come back, it is associated with poor long-term outcomes (survival rates) when compared to other types of breast cancer. Therefore, researchers are studying how new drugs and treatment combinations can improve the outcome of patients with TNBC. This study will test effectiveness of immune therapy (Pembrolizumab is an "immunotherapy" that is expected to work with the body's immune system to help fight cancer) in combination with chemotherapy given before surgery.
The purpose of this study is to find out how effective the combination of crizotinib and fulvestrant is in shrinking lobular breast cancer tumours. The investigators will also be assessing the side effects of the combination of crizotinib tablets and fulvestrant injections. The side effects and the doses of crizotinib and fulvestrant have already been evaluated in large clinical trials, but this is the first time these two drugs will be combined together.
The combination of chemotherapy with PD-1 immune checkpoint blockade agents demonstrated promising results especially in the neo-adjuvant and early metastatic setting in TNBC. However, a substantial proportion of patients do not derive benefit from this approach. CD73 is an adenosine-generating enzyme overexpressed in several cancers and associated with poor prognosis and reduced anti-tumor immunity in TNBC. Monoclonal antibodies directed against CD73 could help to reprogram the tumor microenvironement by decreasing the adenosine mediated immunosuppression, particularly as a synergistic immunotherapeutic combination with immune checkpoint blockade. The SYNERGY trial investigates the role of an anti-CD73 (MEDI9447) in a randomized phase II trial evaluating the efficacy and safety of the combination of chemotherapy (paclitaxel + carboplatin) with immunotherapy (durvalumab [anti-PD-L1] +/- MEDI9447 [anti-CD73]) in previously untreated locally recurrent inoperable or metastatic TNBC. A large translational research program is planned including baseline and dynamic biomarkers
This is a Phase 2, Multi-Cohort, Open-Label, Multi-Center Study. Cohort 1 will be a single-arm study of intratumoral tavokinogene telseplasmid (TAVO) plus electroporation (EP) in combination with pembrolizumab therapy. Cohort 2 will be a single-arm study of intratumoral TAVO-EP plus pembrolizumab along with treatment of an approved chemotherapy per standard of care (either nab-paclitaxel (Abraxane®) or gemcitabine (Gemzar®) plus carboplatin (Paraplatin®)) in participants with TNBC and no prior systemic therapy in the advanced or metastatic setting will be enrolled in this study.
This pilot study will provide preliminary data regarding the role of PIS in predicting the benefit of immune checkpoint inhibition with or without chemotherapy for high risk patients with TNBC and residual disease after effective neoadjuvant chemotherapy.
This phase II trial studies how well autologous tumor infiltrating lymphocytes LN-145 (LN-145) or LN-145-S1 works in treating patients with ovarian cancer, triple negative breast cancer (TNBC), anaplastic thyroid cancer, osteosarcoma, or other bone and soft tissue sarcomas that do not respond to treatment (refractory) or that has come back (relapsed). LN-145 is made by collecting and growing specialized white blood cells (called T-cells) that are collected from the patient's tumor. LN-145-S1 is made using a modified process that chooses a specific portion of the T-cells. The T cells may specifically recognize, target, and kill the tumor cells.
This is a phase 1b/2 study to evaluate the safety and efficacy of metronomic combination therapy in subjects with TNBC who have progressed on or after previous SoC chemotherapy. Phase 2 will be based on Simon's two-stage optimal design.