View clinical trials related to Neoplasms.
Filter by: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.
The purpose of this study is to develop methods for studying the effect of bodywork therapy on symptoms of fatigue in patients undergoing cancer chemotherapy.
The purpose of this study is to determine whether BNP7787 is effective in preventing or reducing neurotoxicity (nerve damage) caused by paclitaxel (Taxol®).
High dose chemotherapy followed by transplantation of allogeneic hematopoietic stem cell with the use of Campath-1h, a monoclonal antibody that have a synergistic effect to chemotherapy with minimal toxicity. In addition Campath-1H can improve engraftment of donor cells through its immunosuppressive properties.
The purpose of this study is to determine the response rate of patients with T-cell malignancies to combination therapy using interferon-alpha (Roferon) and Isotretinoin (Accutane).
Chemotherapy can often cause anemia in patients with cancer. Anemia is a low number of red blood cells. The symptoms of anemia may include fatigue, dizziness, headache, chest pain, and shortness of breath. Erythropoietin is a hormone made by the kidneys that signals the bone marrow to produce more red blood cells. Recombinant human erythropoietin has been produced in the laboratory and has the same effect as the hormone produced by the body. Use of recombinant human erythropoietin allows the body to produce more red blood cells, possibly eliminating or decreasing your symptoms and the need for a red blood cell transfusion. Recombinant human erythropoietin is FDA approved to treat anemia in cancer patients receiving chemotherapy. This clinical study is investigating the effectiveness of darbepoetin alfa for the treatment of anemia in patients with non-myeloid malignancies who are receiving multicycle chemotherapy. Darbepoetin alfa is a recombinant erythropoietic protein that stimulates the production of red blood cells. This medication has not been approved to treat cancer patients with anemia, however it has been approved by the FDA to treat chronic renal failure patients with anemia.
The purpose of this clinical research study is to answer the following questions using 18F-fluoromisonidazole as an imaging agent: 1. Do cells exist in human tumors that are at very low oxygen levels (hypoxic cells)? 2. If hypoxic cells exist in human tumors, do they effect the ability of radiotherapy to control human tumors? 3. Can Positron Emission Tomography (PET scanning) detect hypoxic cells in human tumors?
Intensive chemotherapy is associated with significant thrombocytopenia, often requiring platelet transfusion to maintain platelet counts. This investigational drug has demonstrated the ability to increase platelet counts. This study will test the safety and efficacy of this investigational drug in the prevention of thrombocytopenia in patients with solid tumors, lymphomas or multiple myeloma who are receiving myelosuppressive treatment regimens requiring platelet transfusion support.
The primary objective of the phase I study is to determine a safe dose for combination therapy with capecitabine and exisulind. A secondary objective is to assess pharmacokinetic interactions between the two drugs and assess the biological activity of exisulind. The primary objective of the Phase II part of this study is to assess the anti-tumor activity of this combination therapy measured by objective tumor response. Secondary end points also assessed will be toxicity of therapy, duration of response and time to progression.
The Diarrhea Prevention with an investigational drug trial, will evaluate whether adding an investigational drug to the standard treatment for advanced colorectal cancer can reduce the amount of diarrhea a patient experiences. The standard and approved treatment for patients with metastatic colorectal cancer is repeated cycles of chemotherapy consisting of a combination of irinotecan (also known as CPT-11, Camptosar), 5-fluorouracil (also known as 5FU), and leucovorin (also known as LV). Preclinical data from animal models suggest that the investigational drug may offer an effective means for preventing CPT-11/5FU/LV-induced diarrhea. It is also hypothesized that the investigational drug-mediated anti-angiogenesis could induce a favorable tumor response.