View clinical trials related to Breast Neoplasms.
Filter by:This is a study to investigate the potential clinical benefit of G1T38 as an oral therapy in combination with fulvestrant in patients with hormone receptor-positive, HER2-negative metastatic breast cancer. The study is an open-label design, consists of 2 parts: dose-finding portion (Part 1), and expansion portion (Part 2). Both parts include 3 study phases: Screening Phase, Treatment Phase, and Survival Follow-up Phase. The Treatment Phase begins on the day of first dose with study treatment and completes at the Post-Treatment Visit. Approximately, 102 patients will be enrolled in the study.
This Breast Cancer Surveillance Consortium (BCSC) ADVANCE study is a large, observational pragmatic comparative effectiveness research study using high-quality, prospectively collected data from BCSC registries to generate evidence on how breast density should be integrated into decision making around breast cancer screening and preoperative diagnostic work-up. We will augment existing BCSC registry infrastructure with additional prospective data collection and collection of patient reported outcomes (PROs), CISNET modeling of long-term screening outcomes, and qualitative data from focus groups with women represented in two aims.
Pyrotinib is an oral tyrosine kinase inhibitor targeting both HER-1 and HER-2 receptors. This study is a randomized, multi-center, multinational, double blind, active-controlled, parallel design study of the combination of pyrotinib in combination with capecitabine versus placebo plus capecitabine in HER2+ MBC patients, who have prior received anthracyclin, taxane and trastuzumab. Patients will be randomized in a 2:1 ratio to one of the following treatment arms: Arm A: pyrotinib (400 mg once daily) + capecitabine (1000 mg/m^2 twice daily) Arm B: placebo (400 mg once daily) + capecitabine (1000 mg/m^2 twice daily) Patients will receive either arm of therapy until the occurrence of death, disease progression, unacceptable toxicity, or other specified withdrawal criterion. Patients in control group can be provide pyrotinib treatment when they progressed after the placebo plus capecitabine treatment.
This phase II trial studies how well pembrolizumab works in treating patients with hormone receptor positive inflammatory breast cancer that has not spread to other parts of the body, who are receiving hormone therapy and did not achieve a pathological complete response to chemotherapy. Immunotherapy with monoclonal antibodies, such as pembrolizumab, may help the body's immune system attack the cancer, and may interfere with the ability of tumor cells to grow and spread.
This is a multicenter, open labeled, phase 2 clinical trial, where patients are stratified to one of two treatment groups based on upfront TP53 mutation status; i.e. TP53 mutated vs. TP53 wt disease, and treated with dose-dense cyclphosphamide. Furthermore, patients included are stratified based on tumor stage; i.e. locally advanced breast cancer (M0 disease) or metastatic breast cancer (M1 disease). All participating cancer centers will prospectively include patients with breast cancer fulfilling the inclusion criteria. If patients do not respond to the experimental treatment as outlined in the protocol, treatment with dose-dense cyclophosphamide will be terminated, and further cancer treatment will continue at the treating oncologist's discretion. The response data for all patients who have received at least one chemotherapy course will be included in the final efficacy analysis. Tumor tissue, blood samples and radiology data will be collected before therapy starts, if therapy needs to be changed, and for patients with locally advanced breast cancer: at surgery. Response data will be evaluated closely during treatment, with clinical assessment of tumor size every two weeks for patients with locally advanced breast cancer and by radiology every eight weeks for patients with metastatic breast cancer. Evaluation of side effects/tolerance will be performed at every clinical visit, i.e. every two weeks for all patients included in the p53 trial.
The goal of this research study is to determine if we can obtain personalized genetic information from a subject's blood sample that is similar to that obtained from a tumor tissue sample, and if we can use that information to make treatment suggestions.
The primary objective of this study is to document lymphedema rates in patients requiring regional nodal irradiation (RNI) who receive hypofractionated radiation as compared to conventional radiation.
This study is a 2-cohort, open-label, multicenter, phase 2 study of a short course of immunotherapy consisting of sequential decitabine followed by pembrolizumab administered prior to a standard neoadjuvant chemotherapy regimen for patients with locally advanced HER2-negative breast cancer. The primary efficacy objective is to determine if the immunotherapy increases the presence and percentage of tumor and/or stromal area of infiltrating lymphocytes prior to initiation of standard neoadjuvant chemotherapy. At enrollment, patients will be assigned to one of 2 cohorts based on hormone receptor status. - Cohort A - patients with HER2-negative, hormone receptor-negative breast cancer (defined as both ER and PgR with < 10% positive staining on IHC) Note: before beginning standard neoadjuvant chemotherapy, patients in Cohort A may be reassigned to Cohort A2 to receive extended pembrolizumab as part of new standard neoadjuvant and postoperative adjuvant therapy. - Cohort B - patients with HER2-negative, hormone receptor-positive breast cancer (defined as either ER or PgR with ≥ 10% positive staining on IHC)
This is a randomized two arm phase II study to further evaluate the efficacy of fulvestrant plus enza compared to single agent fulvestrant in postmenopausal women with locally advanced AR+/ER+/Her2- BC who will have local surgery after ~4 months on treatment.
This randomized phase III trial studies how well pembrolizumab works in treating patients with triple-negative breast cancer. Immunotherapy with monoclonal antibodies, such as pembrolizumab, may help the body's immune system attack the cancer, and may interfere with the ability of tumor cells to grow and spread.