View clinical trials related to Breast Neoplasms.
Filter by:This randomized phase III trial studies first-line chemotherapy and trastuzumab to compare how well they work when given with or without bevacizumab in treating patients with breast cancer that overexpresses human epidermal growth factor receptor 2 (HER-2/NEU) and has spread to other areas of the body. Drugs used in chemotherapy, such as paclitaxel and carboplatin, 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. Monoclonal antibodies, such as trastuzumab and bevacizumab, may interfere with the ability of tumor cells to grow and spread. Bevacizumab may also stop the growth of breast cancer by blocking the growth of new blood vessels necessary for tumor growth. It is not yet known whether giving first-line chemotherapy together with trastuzumab is more effective with or without bevacizumab in treating patients with metastatic breast cancer that overexpresses HER-2/NEU.
The goal of this study is to help determine the biochemical mechanisms underlying previously demonstrated health benefits of prayer, and to track humoral changes in various prayer activities.
Recent research provides evidence that disrupted circadian rhythms, including hormonal patterns and sleep, are associated with increased risk of breast cancer incidence and faster progression to mortality. We have observed that a loss of normal diurnal cortisol rhythm associated with more awakenings during the night predicts early mortality with metastatic breast cancer. Other recent studies have shown that nighttime shift work is associated with higher breast cancer incidence, and in a murine model disrupting circadian cortisol cycles produced a doubling of implanted tumor growth. There is also recent evidence that abnormal clock genes are associated with cancer. However, it is not clear whether sleep disruption per se affects breast cancer progression, or whether such an effect is mediated by hormonal and immune dysregulation of this prevalent and hormone-mediated cancer. We propose to study sleep disruption as a prognostic factor in the progression of metastatic breast cancer. We will also examine sleep patterns in association with disrupted circadian rhythms of cortisol, ACTH, and melatonin as well as measures of immune function known to be salient to breast cancer progression. These are natural killer cell cytoxicity and specific cytokine, IL-6. We plan to recruit 105 women 45 years through 75 years with metastatic or recurrent breast cancer and 20 age and SES-matched controls for a two-week at home sleep study with Actiwatch and two nights of in-home EEG monitoring, followed by 28 hours of continuous blood sampling and one night of EEG sleep monitoring in our lab at Stanford. This will provide a full examination of circadian hormones associated with sleep patterns. We will relate these assessments to the subsequent course of breast cancer progression. Results of this study will provide specific evidence regarding how improved sleep management may affect the course of breast cancer. Aim 1: To study 24-hr diurnal rhythms of HPA axis hormones and melatonin in women with metastatic or recurrent breast cancer. Hypothesis 1: Women with metastatic or recurrent breast cancer will have reduced amplitude and disrupted phase of 24-hr diurnal rhythms of cortisol, ACTH, and melatonin. Aim 2: To describe sleep disruption in women with metastatic breast cancer and examine psychosocial, endocrine, and immune factors that may be associated with sleep disruption. Hypothesis 2: Women with metastatic or recurrent breast cancer will have a higher incidence of both at home and laboratory-examined sleep disruption than control women without breast cancer. Hypothesis 3: Poorer sleep quality will be associated with more pain, more emotional suppression in response to stressors, less emotional support, greater depression and anxiety, and greater perceived and traumatic stress. Hypothesis 4: Poorer sleep quality and quantity of sleep and daytime sleepiness and fatigue will be associated with abnormal circadian neuroendocrine (i.e., cortisol, ACTH, and melatonin) and immune patterns (i.e., suppressed day and night time NK activity and loss of NK rhythms; increased day time IL-6 levels and /or loss of IL-6 rhythm). Aim 3: To study the relationship between sleep disruption and survival time among metastatic and recurrent breast cancer patients. Hypothesis 5: Poorer sleep quality and quantity of sleep will predict shorter survival. Hypothesis 6: Reduced diurnal amplitude and an abnormal phase of cortisol will predict shorter survival. Explanatory Aim 4: To investigate whether sleep disruption mediates the relation of psychosocial factors to health outcomes.
The study will evaluate the safety and efficacy of the combination PLD, paclitaxel, and trastuzumab in patients with operable breast cancer. Patients will be treated with the combination for 18 weeks, followed by surgery.
The purpose of this study is to determine the progression free survival (PFS) of metastatic ER, PR and HER2/neu negative breast cancers to the combination of carboplatin and bevacizumab (Avastin®) therapy.
Subjects and Methods: 303 patients who had already had the diagnosis of breast cancer and had already been treated at the Ambulatory of Botucatu School of Medicine were selected. The measuring tool used for the level of physical activities was the International Physical Activities Questionnaire (IPAQ-short version), validated by the World Health Organization - Physical Activities and Health International Committee (1998).
RATIONALE: Studying changes in breast density and blood hormone levels in women receiving anastrozole or exemestane for breast cancer may help doctors learn more about the long-term effects of treatment and may help the study of breast cancer in the future. PURPOSE: This clinical trial is studying changes in breast density and blood hormone levels in postmenopausal women receiving anastrozole or exemestane for breast cancer.
RATIONALE: Androgens can cause the growth of breast cancer cells. Hormone therapy using dehydroepiandrosterone (DHEA) may fight breast cancer by blocking the use of androgen by the tumor cells. Letrozole may stop the adrenal glands from making androgens. Giving DHEA together with letrozole may kill more tumor cells. PURPOSE: This phase I trial is studying the side effects and best dose of DHEA when given together with letrozole in treating patients with metastatic breast cancer.
RATIONALE: Drugs used in chemotherapy, such as doxorubicin, epirubicin, and cyclophosphamide, work in different ways to stop the growth of tumor cells, either by killing the cells or by stopping them from dividing. Giving combination chemotherapy after surgery may kill any tumor cells that remain after surgery. Sometimes, after surgery, the tumor may not need more treatment until it progresses. In this case, observation may be sufficient. It is not yet known whether giving doxorubicin or epirubicin together with cyclophosphamide is more effective than observation in treating older women with invasive breast cancer. PURPOSE: This randomized phase III trial is studying doxorubicin or epirubicin and cyclophosphamide to see how well they work compared with observation in treating older women with invasive breast cancer.
This randomized phase I trial studies the side effects and best dose of defined green tea catechin extract in treating women with hormone receptor-negative stage I-III breast cancer. Green tea extract contains ingredients that may prevent or slow the growth of breast cancer.