View clinical trials related to Triple Negative Breast Neoplasms.
Filter by:Objectives Phase 1b Primary Objectives: To evaluate the safety and tolerability of X4P-001 combined with toriplimab in patients with locally advanced or metastatic TNBC Secondary Objectives: 1. To characterize the pharmacokinetics (PK) profile of X4P-001 alone or combined with toriplimab 2. To characterize the antitumor activity of X4P-001 in combination with toriplimab in patients with locally advanced or metastatic TNBC(according to RECIST 1.1) 3. To characterize the overall survival of X4P-001 in combination with toriplimab in patients with locally advanced or metastatic TNBC 4. To characterize the immunogenicity of toriplimab when administrated in combination with X4P-001
The primary objectives of this study are as follows: Phase 1 (sequential dose-escalation): to evaluate the safety and tolerability of sacituzumab govitecan-hziy (SG) as a single agent and to determine the recommended Phase 2 dose (RP2D) of SG in Japanese participants with advance solid tumors. Phase 2: Evaluate the safety and efficacy of SG in Japanese participants with metastatic triple-negative breast cancer (mTNBC), hormone receptor-positive (HR+)/human epidermal growth factor receptor 2-negative (HER2-) metastatic breast cancer (mBC), and metastatic urothelial cancer (mUC).
This study is a genetic analysis of aberrations in circulating tumor DNA (ctDNA) in patients in Asian countries. This study protocol is divided into parts describing several subanalyses that differ in terms of cancer types, analytical methods, participating countries, and participating institutions.
The hypothesis of this study is to discover if the capecitabine plus Anlotinib can shrink or slow the growth of pretreated advanced TNBC. It is a single-arm phase II clinical study of capecitabine combined with antinib in the treatment of recurrent or metastatic triple-negative breast cancer
The purpose of this study is to evaluate the efficacy and safety of Camrelizumab plus chemotherapy as neoadjuvant therapy and Camrelizumab as adjuvant therapy in participants who have triple negative breast cancer (TNBC).
This is a Phase 1/2, multi-center, open-label, dose-escalation and expansion study to evaluate safety and tolerability, PK, pharmacodynamic, and early signal of anti-tumor activity of MDNA11 alone or in combination with a checkpoint inhibitor in patients with advanced solid tumors.
This is a phase 1/2, open-label, multi-center, first-in-human, two-stage (Part 1: dose escalation and Part 2: dose expansion) study evaluating multiple doses and schedules of intravenously (IV) administered HMBD-002, with or without pembrolizumab, in patients with advanced solid tumors (i.e., locally advanced and unresectable, or metastatic).
This is a multi-centre Phase I dose finding and proof-of-concept study of the combination of ASTX660 together with Pembrolizumab with expansion cohorts testing preliminary efficacy in immune-refractory cancers, triple negative breast cancer (TNBC), cervical cancer, and glioblastoma. In contrast to the existing studies combining first-generation cIAP1/2 selective Smac mimetics with immune check point inhibitors, the ASTEROID Phase I clinical trial will be the first trial utilising triple cIAP1/2 and XIAP blockade by ASTX660 as a strategy to maximise immunogenic cell death and the generation of an efficient adaptive immune response. ASTX660 is not simply being used to repeat the data already being acquired with other first generation Smac mimetics. In contrast, we will investigate more in depth the mechanisms by which ASTX660 elicits its therapeutic effects both on tumour and on the host immune system. This will be critical to determine the best strategy to pursue in future later stage tumour specific trials of IAP antagonists in combination with immunotherapy, and to ensure appropriate molecular stratification biomarkers for the greatest benefit to patients.
This phase I trial tests the safety, side effects, and best dose of CF33-hNIS-antiPDL1 in treating patients with triple negative breast cancer that has spread to other places in the body (metastatic). CF33-hNIS-antiPDL1 is an oncolytic virus. This is a virus that is designed to infect tumor cells and break them down.
Immunotherapy (IO), such as treatment with anti-PD-1, PD-L1, or CTLA-4 inhibitors, is a rapidly expanding treatment for multiple metastatic cancers with improved survival for certain cancers. However, the optimal duration of immunotherapies is currently unknown. Our hypothesis is that a reduced dose intensity of IO could be as effective as the current standard treatment in term of prevention of the disease progression. If proved right, this study will have a positive medico-economic impact by reduction of the costs associated with the treatment and the toxicity, and an increase of the patients' quality of life.