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Breast Neoplasms clinical trials

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NCT ID: NCT03650894 Active, not recruiting - Breast Cancer Clinical Trials

Nivolumab, Ipilimumab, and Bicalutamide in Human Epidermal Growth Factor (HER) 2 Negative Breast Cancer Patients

Start date: April 3, 2019
Phase: Phase 2
Study type: Interventional

The goal of this protocol is to evaluate the safety and efficacy of an alternative systemic combination approach that omits or delays the use of chemotherapy in metastatic disease, while improving efficacy and durability of response. The approach combines two potentially effective and previously studied strategies: androgen receptor blockade and immune checkpoint therapy.

NCT ID: NCT03641755 Active, not recruiting - Breast Cancer Clinical Trials

Olaparib + Sapacitabine in BRCA Mutant Breast Cancer

Start date: October 1, 2018
Phase: Phase 1
Study type: Interventional

This research study is studying a combination of drugs as a possible treatment for breast cancer with a BRCA mutation. The interventions involved in this study are: - Sapacitabine (CYC682) - Olaparib (Lynparza™)

NCT ID: NCT03639948 Active, not recruiting - Clinical trials for Triple-negative Breast Cancer

Neoadjuvant Phase II Study of Pembrolizumab And Carboplatin Plus Docetaxel in Triple Negative Breast Cancer

NeoPACT
Start date: September 4, 2018
Phase: Phase 2
Study type: Interventional

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.

NCT ID: NCT03637738 Active, not recruiting - Menopausal Patients Clinical Trials

Medico Economic Study, Comparing Intrabeam® on Surgical Resection Bed to Conventional Surgery + EBRT, in Breast Cancer

RIOP-SEIN
Start date: June 2012
Phase: N/A
Study type: Interventional

Current breast cancer treatment is based on surgery, radiation, chemotherapy and hormonotherapy. Conservative surgery or mastectomy are followed by complementary externe radiotherapy. This adjuvant external breast radiotherapy (EBRT) is heavy, spread over more than 6 weeks with : - 25 sessions and delivery of a unit dose of 2 Gy to obtain a total dose of 50 Gy (5 sessions per week in general); - 16 Gy overimpression (boost) dose located in the tumour bed, in 5 to 8 fractions, in situations at high risk of recurrence. In addition, EBRT is responsible for many adverse effects, some of which can lead to lasting or permanent sequelae. Many focused partial breast irradiation techniques have been developed in recent years with the objective of reducing the duration and morbidity of overall breast irradiation. Among these techniques, intraoperative breast radiotherapy (IBRT) is recommended in cancers diagnosed at early stages for which tumorectomy is expected and which present a low risk of recurrence. The main advantages of IBRTare : - Improvement of the quality of life due to a single session of radiotherapy associated with surgical ; - Increased precision to deliver the necessary dose in tumour tissue; - Preservation of surrounding healthy tissue ; - Reduction in the overall cost of treatment through shorter hospital stays and the absence of medical transport for conventional radiotherapy sessions. RIOP SEIN is a project supported by Institut National du Cancer (INCa) , which consists of a medico-economic evaluation of IBRT, with Intrabeam® system on surgical resection bed relative to conventional surgery + EBRT in postmenopausal patients operated by conservative surgery for Low risk breast cancer

NCT ID: NCT03635632 Active, not recruiting - Uveal Melanoma Clinical Trials

C7R-GD2.CART Cells for Patients With Relapsed or Refractory Neuroblastoma and Other GD2 Positive Cancers (GAIL-N)

Start date: April 23, 2019
Phase: Phase 1
Study type: Interventional

This study is for patients with neuroblastoma, sarcoma, uveal melanoma, breast cancer, or another cancer that expresses a substance on the cancer cells called GD2. The cancer has either come back after treatment or did not respond to treatment. Because there is no standard treatment at this time, patients are asked to volunteer in a gene transfer research study using special immune cells called T cells. T cells are a type of white blood cell that helps the body fight infection. The body has different ways of fighting infection and disease. No single way seems perfect for fighting cancers. This research study combines two different ways of fighting cancer: antibodies and T cells. Both antibodies and T cells have been used to treat patients with cancers. They have shown promise but have not been strong enough to cure most patients. We have found from previous research that we can put a new gene into T cells that will make them recognize cancer cells and kill them. In our last clinical trial we made a gene called a chimeric antigen receptor (CAR) from an antibody that recognizes GD2, a substance found on almost all neuroblastoma cells (GD2-CAR). We put this gene into the patients' own T cells and gave them back to 11 neuroblastoma patients. We saw that the cells did grow for a while, but started to disappear from the blood after 2 weeks. We think that if T cells are able to last longer they may have a better chance of killing GD2 positive tumor cells. Therefore, in this study we will add a new gene to the GD2 T cells that can cause the cells to live longer. T cells need substances called cytokines to survive and the cells may not get enough cytokines after infusion. We have added the gene C7R that gives the cells a constant supply of cytokine and helps them to survive for a longer period of time. In other studies using T cells, investigators found that giving chemotherapy before the T cell infusion can improve the amount of time the T cells stay in the body and therefore the effect the T cells can have. This is called lymphodepletion and we think that it will allow the T cells to expand and stay longer in the body, and potentially kill cancer cells more effectively. The GD2-C7R T cells are an investigational product not approved by the Food and Drug Administration. The purpose of this study is to find the largest safe dose of GD2-C7R T cells, and also to evaluate how long they can be detected in the blood and what affect they have on cancer.

NCT ID: NCT03633331 Active, not recruiting - HER2/Neu Negative Clinical Trials

Palbociclib and Letrozole or Fulvestrant in Treating Patients With Estrogen Receptor Positive, HER2 Negative Metastatic Breast Cancer

Start date: August 15, 2018
Phase: Phase 2
Study type: Interventional

This phase II trial studies the side effects and how well palbociclib and letrozole or fulvestrant works in treating patients aged 70 years and older with estrogen receptor positive, HER2 negative breast cancer that has spread to other places in the body. Palbociclib may stop the growth of tumor cells by blocking some of the enzymes needed for cell growth. Drugs used in chemotherapy, such as letrozole or fulvestrant, work in different ways to stop the growth of tumor cells, either by killing the cells, by stopping them from dividing, or by stopping them from spreading. Giving palbociclib and letrozole or fulvestrant may work better in treating patients with breast cancer. The trial will explore factors other than chronologic age that can affect toxicity rates as identified using a cancer-specific geriatric assessment.

NCT ID: NCT03632941 Active, not recruiting - Breast Cancer Clinical Trials

A Study to Evaluate Concurrent VRP-HER2 Vaccination and Pembrolizumab for Patients With Breast Cancer

Start date: March 1, 2019
Phase: Phase 2
Study type: Interventional

In this phase II study, study subjects will receive the VRP-HER2 immunizations plus pembrolizumab. There will be an initial Safety Arm during which subjects will receive the VRP-HER2 immunizations plus pembrolizumab. If there is no dose limiting toxicity in the Safety Arm, then subjects will be randomized into 3 arms. They will undergo a biopsy of their tumor and peripheral blood draw for immune cell analyses and be assigned to the applicable arm of the study. Arm A will consist of the the VRP-HER2 immunizations; Arm B will consist of pembrolizumab; Arm C will consist of the VRP-HER2 immunizations plus pembrolizumab.

NCT ID: NCT03627988 Active, not recruiting - Clinical trials for Breast Cancer Invasive

Prospective, Multicentric Study Evaluating the Surgical Treatment by Mastectomy With Immediate Prosthetic Breast Reconstruction in Patients With Breast Cancer and Receiving Adjuvant Therapy by TomoTherapy +/-Chemotherapy.

MARTA
Start date: June 7, 2019
Phase: Phase 2
Study type: Interventional

Prospective, multicentric, non-randomized phase II study evaluating the surgical treatment by mastectomy with immediate prosthetic breast reconstruction in patients with breast cancer and receiving adjuvant therapy by TomoTherapy +/-Chemotherapy. Patients with non-inflammatory and non-metastatic invasive mammary carcinoma will be included in this study. The study procedure will be a surgical treatment by mastectomy with immediate prosthetic breast reconstruction followed by an adjuvant therapy: TomoTherapy +/-Chemotherapy (radiation therapy alone or preceded by chemotherapy). The nature of the chemotherapy treatment will be decided according to the standards of each center. The patients will be followed for the study up to 36 months after the surgical procedure.

NCT ID: NCT03625635 Active, not recruiting - Breast Cancer Clinical Trials

Effect of a Clinical Nutrition Intervention Program in Breast Cancer Patients During Antineoplastic Treatment

Start date: September 14, 2015
Phase: N/A
Study type: Interventional

The aim of this study is to evaluate the effect of a 6-mo individualized and specialized food-based nutrition intervention program in breast cancer patients' body composition, metabolism and antioxidant activity associated with micronutrients, during antineoplastic treatment. It is a quasi-experimental prospective follow-up study of women with primary diagnosis of invasive breast cancer in Sonora, Mexico. Conducted between September 2015 through July 2018. The Ethics and Research Committees of The Oncology State Centre and the Food and Development Research Centre, have approved the study's protocol and procedures. At baseline, all participants must sign an informed consent form and answer an oral interview, including self-reported questionnaires, for their nutrition record. At the beginning and 6-mo after, participants will be weighed during the morning in a digital scale and height will be measured using a digital stadiometer. Body mass index (BMI) will be calculated and classified according to the World Health Organization criteria. Waist and hip circumferences will be measured with a metal tape, according to the protocol of the International Society for the Advancement of Kinanthropometry (ISAK), by a certified anthropometrist. Body composition components will be measured in a dual-energy x-ray absorptiometry (Hologic Corporation 4500 Waltham, MA) by total body, L1-L4, and femur neck scans. Blood samples will be drawn by a certified phlebotomist using sterile equipment and aseptic techniques. Breast cancer patients' total energy expenditure will be estimated using an algorithm for Mexican population. Diet plans and recommendations will be based on the individual's nutritional status, dietary habits, symptoms and treatment side-effects, socioeconomic and cultural preferences; as well as the WCRF/AICR guidelines adapting 1.5g/kg/d of dietary protein to avoid sarcopenic obesity and considering a caloric restriction (500-1000 kcal/d), when required. The individualized nutrition intervention program will be based on the macronutrient meal-equivalent menu method, and standard food servings will be based on the Mexican Food Equivalent System. To guarantee that the obtained content for each macronutrient (g/day) meets the theoretical calculations, protein ±1g/d, total fat ±1g/d, carbohydrates ±2g/d and energy ±15 kcal/d variations will be accepted. Breast cancer patients follow-up will be every 2-weeks and a different diet menu will be provided in each session by a specialized dietitian, unto 6-mo are completed, and initial measurements will be repeated. The differences in body composition determinants will be analyzed using paired Student's t-test analysis for each variable. A two-tailed P-value of 0.05 or less will be considered significant. Retinol, tocopherol and carotenoids determination will be performed using HPLC. Serum will be thawed and retinol will be extracted using chloroform:methanol (3:1) and hexane, extracted layers will be combined and then evaporated to dryness under a soft stream of nitrogen. Samples will be re-suspended in ethanol before injecting onto the HPLC using a YMC C-30 column (30 cm length, 4.6 mm internal diameter, 3 µm particle size and 100 mm pore size). The HPLC system is an Agilent 1200 with UV-Vis and PDA detectors. Commercial standards and internal standards will be used to assess concentration and extraction efficiency, respectively. Additionally, the investigators will use a standard NIST serum (National Institute of Standards and Technology; Gaithersburg, Maryland USA). The cut-off point for vitamin A deficient status will be set at < 1.05 μmol /L. The plasma antioxidant capacity will be determined by the trolox-equivalent antioxidant capacity test (TEAC) and oxygen radical absorbance capacity assay (ORAC). For both assays, results will be expressed as millimoles of Trolox equivalents per liter. The effect and their interaction on the response variables will be determined by ANOVA. Tukey's test will be used for the comparison of the means. Values of p<0.05 will be accepted as statistically significant. Human inflammatory cytokines and chemokines will be analyzed by using a panel of 12 pro-inflammatory cytokines as a conventional ELISA protocol all at once under uniform conditions. The cytokines and chemokines represented by this array will be IL1A, IL1B, IL2, IL4, IL6, IL8, IL10, IL12, IL17A, IFNg, TNFa, and GM-CSF. Plasma activities of both enzymes, glutathione peroxidase (GPx) and superoxide dismutase (SOD) will be determined in baseline samples and after 6-mo, by using an ELISA (enzyme-linked immunosorbent assay) based upon a sandwich assay principle and can be used to detect levels of SOD as low as 0.066 ng/mL and 1.56 ng/mL for GPx.

NCT ID: NCT03624543 Active, not recruiting - Breast Cancer Clinical Trials

CFI-400945 in Patients With Advanced/Metastatic Breast Cancer

Start date: February 14, 2019
Phase: Phase 2
Study type: Interventional

The standard or usual treatment for this disease is to undergo chemotherapy to slow the spread of the disease and relieve some symptoms of cancer. Patients will have already had at least one chemotherapy treatment for their disease at this stage.