View clinical trials related to Breast Neoplasms.
Filter by:Safety and tolerability of combination of Nivolumab and Ipilimumab will be studied in patients with 3 different types of cancers in 3 parts of the study, as shown below: Part 1 - Neoadjuvant Therapy of Breast Cancer; Part 2 - Therapy of Ovarian Cancer; and Part 3 - Therapy of Gastric Cancer.
Primary Objective: • Determination of pathologic complete response (pCR) rates Secondary Objective: - Determination of cardiac toxicity as measured by: composite of LVEF, longitudinal strain and troponin. - Breast conservation rates - Overall survival Study Design - Approximately 34-74 patients with Her2 positive, Stage II-regional IV breast cancer will be enrolled. - Patients will be stratified by ER/PR status. - They will be randomized to ddACTHP vs TCHP. - Initially, 17 patients will be randomly assigned to each treatment arm. - If 3 or fewer patients have a pCR, then that arm will be terminated and no further patients will be entered on that treatment arm. - If 4 or more patients obtain a pCR, 20 additional patients (total of 37 patients) will be randomized to that treatment arm. - If 11 or more patients out of 37 have a pCR, the treatment will be of interest for further study.
CONTESSA is a multinational, multicenter, randomized, Phase 3 study of tesetaxel in patients with HER2 negative, HR positive LA/MBC previously treated with a taxane in the neoadjuvant or adjuvant setting. The primary objective of the study is to compare the efficacy of tesetaxel plus a reduced dose of capecitabine versus the approved dose of capecitabine alone based on progression-free survival (PFS) as assessed by the Independent Radiologic Review Committee (IRC). 685 patients were enrolled.
This is a randomized, 2-arm, open-label, multicenter, international phase II trial. A total of 196 patients will be included. The study will include patients with metastatic Hormone Receptor positive / Human Epidermal Growth Factor Receptor (HER2) negative breast cancer with progressive disease after endocrine treatment. Patients will be randomized (1:1) between two treatment arms: A. palbociclib + fulvestrant and b. capecitabine.
It has been well established that malignant tumors tend to have low levels of oxygen and that tumors with very low levels of oxygen are more resistant to radiotherapy and other treatments, such as chemotherapy and immunotherapy. Previous attempts to improve response to therapy by increasing the oxygen level of tissues have had disappointing results and collectively have not led to changing clinical practice. Without a method to measure oxygen levels in tumors or the ability to monitor over time whether tumors are responding to methods to increase oxygen during therapy, clinician's reluctance to use oxygen therapy in usual practice is not surprising. The hypothesis underlying this research is that repeated measurements of tissue oxygen levels can be used to optimize cancer therapy, including combined therapy, and to minimize normal tissue side effects or complications. Because studies have found that tumors vary both in their initial levels of oxygen and exhibit changing patterns during growth and treatment, we propose to monitor oxygen levels in tumors and their responsiveness to hyperoxygenation procedures. Such knowledge about oxygen levels in tumor tissues and their responsiveness to hyper-oxygenation could potentially be used to select subjects for particular types of treatment, or otherwise to adjust routine care for patients known to have hypoxic but unresponsive tumors in order to improve their outcomes. The overall objectives of this study are to establish the clinical feasibility and efficacy of using in vivo electron paramagnetic resonance (EPR) oximetry—a technique related to magnetic resonance imaging (MRI)—to obtain direct and repeated measurements of clinically useful information about tumor tissue oxygenation in specific groups of subjects with the same types of tumors, and to establish the clinical feasibility and efficacy of using inhalation of enriched oxygen to gain additional clinically useful information about responsiveness of tumors to hyper-oxygenation. Two devices are used: a paramagnetic charcoal suspension (Carlo Erba India ink) and in vivo EPR oximetry to assess oxygen levels. The ink is injected and becomes permanent in the tissue at the site of injection unless removed; thereafter, the in vivo oximetry measurements are noninvasive and can be repeated indefinitely.
This study will evaluate the pharmacodynamic (PD), safety, antitumor activity, and PK of eFT508 in female subjects who have pathologically documented, radiographically measurable, metastatic or locally advanced and unresectable TNBC and have received prior cancer therapy regimen for metastatic disease, and in male and female subjects who have histologically or cytologically confirmed advanced HCC not amenable to surgical resection and have failed systemic therapy.
This is a multicenter, open-label study in participants with triple negative breast cancer (TNBC) to study the safety, tolerability, pharmacokinetics and preliminary efficacy of SC-005. This study consists of 2 parts: Part A (dose regimen finding) followed by Part B (dose expansion).
To evaluate the effect of novel DNA demethylating agents in the treatment of metastatic TNBC
This clinical trial is studying the drug Ribociclib (LEE011) in combination with an immunotherapy drug called PDR001 (a therapy that uses the body's own immune system to control cancer) as a possible treatment for metastatic hormone-receptor-positive (HR+), HER2-negative breast cancer (in combination with fulvestrant) or metastatic epithelial ovarian cancer. The names of the medications involved in this study are: - Ribociclib (LEE011) - PDR001 - Fulvestrant
This is an open label, pharmacodynamics, intrapatient dose escalation phase 1B study.