View clinical trials related to Carcinoma, Ovarian Epithelial.
Filter by:RATIONALE: Screening tests may help doctors detect ovarian cancer early when the survival is much more encouraging. It is not yet known whether a CA125-based or ultrasound strategy is more effective in detecting ovarian cancer early thereby impacting on the mortality from the disease in postmenopausal women from the general population. PURPOSE: Randomized clinical trial to assess the impact of screening using a multimodal strategy using CA125 interpreted by the Risk of Ovarian Cancer Algorithm (ROCA) followed by transvaginal ultrasound as a second line test versus transvaginal ultrasound on mortality from the disease in postmenopausal women from the general population.
Phase II trial to study the effectiveness of irofulven in treating patients who have recurrent or persistent ovarian epithelial cancer or primary peritoneal cancer. Drugs used in chemotherapy use different ways to stop tumor cells from dividing so they stop growing or die.
This study will evaluate women who are at increased genetic risk of developing ovarian cancer because they or a close relative have a mutation in the BRCA1 or BRCA2 gene (the genes that cause most of the genetic forms of ovarian cancer) or because they have a very strong family history of breast and/or ovarian cancer. The study has two aspects. There will be two groups of subjects in this study. One group of women who will have their ovaries and fallopian tubes surgically removed as a prophylactic (preventive) measure against developing ovarian/fallopian tube cancer. These women will be studied to determine whether the surgery does, in fact, decrease the risk of ovarian or tubal cancer and whether it decreases the risk of breast and other cancers. The tissue removed at surgery will also be investigated to see whether a new way of examining the ovaries after they are removed provides better information about cancer-related tissue changes. A second group of subjects will be women who choose not to have preventive surgery. These women will be followed closely to see if screening with multiple CA-125 blood testing over time (see below) can detect ovarian or tubal cancers in their early stages. Both groups of women will undergo examination of the process by which women decide upon various options for lowering their ovarian cancer risk and a detailed assessment of how their choice impacts their quality of life. It will look at how those who opt for ovariectomy feel after their surgery and how those who choose screening feel during the time of screening. All participants will undergo the following procedures: - Medical history, physical examination, and blood drawing upon entering the study, including blood samples for future ovarian cancer research. - Screening mammogram, CA-125 blood test, and transvaginal ultrasound upon entering the study, with yearly repeat mammograms for all participants and yearly transvaginal ultrasound exams for women in the screening arm of the study. CA-125 is a protein found in the blood whose levels are elevated in most women with ovarian cancer. Transvaginal ultrasound is a way of taking pictures of the ovaries using sound waves. If the results of these tests are not normal, additional tests may be required to learn the reason for the abnormality. - Questionnaires about personal, medical and family history, ovarian cancer risk factors, medication use, medical choices, and quality of life on entering the study, with repeat quality of life and medication use questionnaires every 6 months during the study period. - Blood samples for follow-up visits and for CA-125 testing every 3 months as a screen for ovarian/fallopian tube cancers. Some blood from these samples will be saved for future ovarian cancer research. - Semi-annual report during the duration of the study regarding health and quality of life changes that occur over the prior 6-month period. Researchers will use the pattern and rate of change of CA-125 levels over time in women in the screening group to decide if more tests are needed to test for ovarian cancer. Women in the surgery portion will undergo surgical removal of their ovaries and fallopian tubes. The removed tissues will be studied using new methods to examine the cells more closely than usual, and a portion of the tissues will be stored for future research on ovarian cancer. This study is being conducted in collaboration with the Gynecologic Oncology Group (GOG), and is designated GOG Protocol 0199. Subjects may join the study at any participating GOG institution (http://www.gog.org).
Randomized phase III trial to compare the effectiveness of tamoxifen with that of thalidomide in treating women who have recurrent ovarian epithelial cancer, fallopian tube cancer, or primary peritoneal cancer. Estrogen can stimulate the growth of some types of cancer cells. Hormone therapy using tamoxifen may fight cancer by blocking the uptake of estrogen. Thalidomide may stop the growth of cancer by stopping blood flow to the tumor. It is not yet known whether thalidomide is more effective than tamoxifen in treating ovarian epithelial cancer, fallopian tube cancer, or primary peritoneal cancer.
Individuals and families with known or suspected syndromes that include breast, ovarian or genetically-related cancers are enrolled in this family study, which is a syndrome-specific sub-set of the long-standing DCEG Human Genetics Program umbrella family studies protocol (78-C-0039). Cancer outcomes are documented through review of medical, vital, and pathology records. Selected individuals and family members are asked to complete questionnaires to assess etiologic risk factors and to undergo clinical evaluations specifically tailored to the relevant familial syndrome. Study participants are monitored prospectively for the development of outcomes of interest, typically by means of periodic mail or telephone contact. In selected instances, subjects may return to the Clinical Center periodically for study-specific follow-up examinations. Study participants are asked to donate biologic specimens to be used in the laboratory search for cancer etiology and mechanisms of carcinogenesis. DNA and serial serum samples will be collected. Tumor tissue will be obtained whenever feasible. Clinical genetic testing for tumor susceptibility gene(s) mutations and risk notification will be offered consistent with ASCO guidelines when reasonable individual cancer risk estimates can be delivered, and only to those participants who choose to know their individual genetic status after appropriate education and counseling. The testing will be conducted exclusively in Clinical Laboratory Improvement Amendments (CLIA)-licensed laboratories. Clinical genetic testing and risk notification are entirely optional and do not affect subject eligibility for other aspects of the protocol. A separate consent procedure and consent form will be used for genetic testing and risk notification. This protocol, developed in response to recommendations developed by the Clinical Center IRB, is intended to: 1. Provide a mechanism under which the Clinical Genetics Branch can honor the commitment made to the members of over 60 hereditary breast/ovarian cancer families which have been participated in various Human Genetics Program research studies conducted over the past 3 decades to provide genetic counseling, clinical germline mutation testing, and consultative services now that several of the major breast/ovarian cancer susceptibility genes have been identified; 2. Provide a mechanism through which new families with various familial syndromes associated with an increased risk of breast and ovarian cancer can be studied, as research interests in these syndromes evolve over time; and 3. Create a resource of well-characterized, carefully documented high-risk families to facilitate the development of new etiologic and translational research studies in the future. While we do not offer specific anti-cancer therapy as part of this protocol, we provide assistance to ensure that study participants who require treatment for problems that develop during the course of the study are referred to appropriate health providers. We remain available to provide advice and consultation related to the management of the familial cancer syndrome to study participants and their health care providers.
RATIONALE: Biological therapies such as erlotinib may interfere with the growth of tumor cells and slow the growth of the tumor. Drugs used in chemotherapy use different ways to stop tumor cells from dividing so they stop growing or die. Combining erlotinib with carboplatin may kill more tumor cells. PURPOSE: Phase II trial to study the effectiveness of combining erlotinib and carboplatin in treating patients who have recurrent ovarian, fallopian tube, or primary peritoneal cancer.
RATIONALE: Drugs used in chemotherapy use different ways to stop tumor cells from dividing so they stop growing or die. Combining more than one drug and giving the drugs in different combinations may kill more tumor cells. It is not yet known which combination chemotherapy regimen is more effective in treating ovarian epithelial, primary peritoneal, or fallopian tube cancer. PURPOSE: Randomized phase III trial to compare the effectiveness of different combination chemotherapy regimens in treating patients who have stage IIB, stage III, or stage IV ovarian epithelial cancer , primary peritoneal cancer, or fallopian tube cancer.
Phase II trial to study the effectiveness of ixabepilone in treating patients who have recurrent or persistent ovarian epithelial or primary peritoneal cancer that has not responded to previous chemotherapy. Drugs used in chemotherapy work in different ways to stop tumor cells from dividing so they stop growing or die.
Phase II trial to study the effectiveness of bortezomib in treating patients who have persistent or recurrent ovarian epithelial cancer or primary peritoneal cancer. Bortezomib may stop the growth of cancer cells by blocking the enzymes necessary for their growth.
This phase II trial is to see if bevacizumab works in treating patients who have persistent or recurrent ovarian epithelial cancer or primary peritoneal cancer. Monoclonal antibodies, such as bevacizumab, can block cancer growth in different ways. Some block the ability of cancer cells to grow and spread. Others find cancer cells and help kill them or deliver cancer-killing substances to them.