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Breast Neoplasms clinical trials

View clinical trials related to Breast Neoplasms.

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NCT ID: NCT02753595 Terminated - Clinical trials for Metastatic Breast Cancer

Study of Eribulin Mesylate in Combination With PEGylated Recombinant Human Hyaluronidase (PEGPH20) Versus Eribulin Mesylate Alone in Subjects With Human Epidermal Growth Factor Receptor 2 (HER2)-Negative, High-Hyaluronan (HA) Metastatic Breast Cancer (MBC)

Start date: July 13, 2016
Phase: Phase 1/Phase 2
Study type: Interventional

The primary objective for the study is as follows: For the Phase 1b - to determine safety tolerability and recommended Phase 2 dose (RP2D) of eribulin mesylate in combination with PEGylated recombinant human hyaluronidase (PEGPH20) in participants with Human Epidermal Growth Factor Receptor (HER2)-negative metastatic breast cancer (MBC) previously treated with up to two lines of systemic anticancer therapy in the metastatic setting. For the Phase 2 - to evaluate objective response rate (ORR) of eribulin mesylate in combination with PEGPH20 in participants with HER2-negative, High-Hyaluronan (HA)-high, MBC previously treated with up to 2 lines of systemic anticancer therapy in the metastatic setting.

NCT ID: NCT02734615 Terminated - Clinical trials for Advanced or Metastatic ER+ Breast Cancer

Phase I/Ib Trial of LSZ102 Single Agent or LSZ102 + LEE011 or LSZ102 + BYL719 in ER+ Breast Cancers

Start date: June 14, 2016
Phase: Phase 1
Study type: Interventional

To characterize the safety and tolerability, identify recommended doses and regimens for future studies, pharmacokinetics (PK), pharmacodynamics (PD) and anti-tumor activity of LSZ102 as a single agent and in combination with either LEE011 or BYL719 in adult patients with locally advanced or metastatic ER+ breast cancer who have progressed after endocrine therapy.

NCT ID: NCT02730091 Terminated - Breast Cancer Clinical Trials

A Open Study of Metronomic Oral Vinorelbine in Combination With Aromatase Inhibitors for the Treatment of Postmenopausal Women With Hormone Receptor Positive,HER2-negative, Advanced Breast Cancer Who Received no Prior Therapy for Advanced Disease

VICTORIANE
Start date: February 24, 2016
Phase: Phase 3
Study type: Interventional

This study is designed to evaluate the clinical effects of the addition of metronomic oral vinorelbine to letrozole and anastrozole. The study will compare the efficacy and tolerability of oral metronomic vinorelbine administered in combination with letrozole or anastrozole, as treatment for hormone receptor-positive advanced or metastatic breast cancer without resistance to Aromatase Inhibitors (AI).

NCT ID: NCT02720185 Terminated - Breast Neoplasms Clinical Trials

Window of Opportunity Trial of Dasatinib in Operable Triple Negative Breast Cancers With nEGFR

Start date: May 3, 2017
Phase: Phase 2
Study type: Interventional

Primary Objective: To determine if dasatinib, an inhibitor of the Src family kinases, can prevent the nuclear translocation of the epidermal growth factor receptor (EGFR) in Stage I-III, nuclear EGFR positive, triple negative breast cancers (TNBC). Secondary Objectives: 1. To examine the safety and tolerability of dasatinib in patients with operable TNBC 2. To explore potential intracellular mechanisms which impact dasatinib effect on cellular localization of EGFR in operable TNBC. 3. To examine the pathologic complete response (pCR) rates to standard neoadjuvant chemotherapy in nEGFR+ TNBC 4. To examine breast cancer recurrence rates and patterns of metastatic recurrent in nEGFR+ TNBC

NCT ID: NCT02712437 Terminated - Breast Cancer Clinical Trials

Prospective Study Evaluating the Use of PROSPECT to Reduce Insomnia in Patients With Early Stage Breast Cancer

Start date: March 16, 2016
Phase: N/A
Study type: Interventional

Women with early stage breast cancer may experience difficulty falling asleep or staying asleep. If this occurs for more than 4 weeks, these participants may have chronic insomnia. Chronic insomnia can lead to difficulty coping with stress, changes in mood, increased use of medications for sleep and an overall decrease in quality of life. The investigators have developed an internet-based website that is designed to help people manage symptoms typically experienced by breast cancer survivors, including insomnia, fatigue, pain and overall poor quality of life. The investigators want to learn whether this type of treatment can reduce chronic insomnia and improve the way subjects feel using both questionnaires and a special form of a wrist watch. This information may help the investigators better manage sleep difficulties in subjects who experience these symptoms after diagnosis of their breast cancer.

NCT ID: NCT02708511 Terminated - Breast Carcinoma Clinical Trials

Copper Cu 64-DOTA-B-Fab PET/CT in Imaging Patients With Ovarian and Breast Cancer

Start date: August 2016
Phase: Phase 1
Study type: Interventional

This pilot clinical trial studies copper Cu 64-DOTA-B-Fab positron emission tomography (PET)/computed tomography (CT) in imaging patients with ovarian and breast cancer. Cancer antigen (CA)6 is an antigen (substance) found on the surface of several types of cancer cells such as cancer of the ovary and breast. Diagnostic procedures, such as copper Cu 64-DOTA-B-Fab PET/CT, may help identify CA6 positive tumors and allow doctors to plan better treatment.

NCT ID: NCT02706392 Terminated - Clinical trials for Malignant Solid Neoplasm

Genetically Modified T-Cell Therapy in Treating Patients With Advanced ROR1+ Malignancies

Start date: March 16, 2016
Phase: Phase 1
Study type: Interventional

This phase I trial studies the side effects and best dose of genetically modified T-cell therapy in treating patients with receptor tyrosine kinase-like orphan receptor 1 positive (ROR1+) chronic lymphocytic leukemia (CLL), mantle cell lymphoma (MCL), acute lymphoblastic leukemia (ALL), stage IV non-small cell lung cancer (NSCLC), or triple negative breast cancer (TNBC) that has spread to other places in the body and usually cannot be cured or controlled with treatment (advanced). Genetically modified therapies, such as ROR1 specific chimeric antigen receptor (CAR) T-cells, are taken from a patient's blood, modified in the laboratory so they specifically may kill cancer cells with a protein called ROR1 on their surfaces, and safely given back to the patient after conventional therapy. The "genetically modified" T-cells have genes added in the laboratory to make them recognize ROR1.

NCT ID: NCT02704312 Terminated - Breast Cancer Clinical Trials

Dosimetric Comparison of Doses in Both Positions (Prone and Decubitus) for Patient With Breast Cancer

PROCUBITUS
Start date: November 30, 2015
Phase: N/A
Study type: Interventional

Compare dosimeters in both positions (prone and decubitus) for each patient

NCT ID: NCT02700776 Terminated - Healthy Volunteers Clinical Trials

1380GCC: Prospective Study of GP-88 Blood Test in Healthy Women With Baseline Gail Model Risk Assessment Undergoing Screening for Breast Cancer

1380GCC
Start date: April 2014
Phase:
Study type: Observational

The purpose of this study is find out if a protein level in the blood (called PC Cell Derived Growth Factor or glycoprotein 88 [GP88]), combined with standard mammography screening, can help detect breast cancer better than mammography screening alone. Earlier research has shown that a certain glycoprotein 88 (GP88) is higher in women with breast cancer. In this study, investigators will measure the level of GP88 in the blood of healthy women who are having mammography screening for breast cancer. The investigator plans to correlate the results of the mammogram with the GP-88 level.

NCT ID: NCT02696759 Terminated - Breast Cancer Clinical Trials

Gut Microbiome & Gastrointestinal Toxicities as Determinants of Response to Neoadjuvant Chemo for Advanced Breast Cancer

Start date: July 2016
Phase: N/A
Study type: Interventional

The purpose of this research is to test whether bacteria that normally live in the intestines play a role in fighting cancer. It is believed that the development and behavior of these immune cells may be influenced by bacteria and other microorganisms living in the gut. In turn, the activities of these immune cells could work with anti-cancer therapies to make them more, or less, effective.