View clinical trials related to Refractory Multiple Myeloma.
Filter by:This phase I trial studies the side effects and best dose of selinexor and carfilzomib when given together with dexamethasone in treating patients with multiple myeloma that has returned or does not respond to treatment. Drugs used in chemotherapy, such as selinexor and dexamethasone, work in different ways to stop the growth of cancer cells, either by killing the cells, by stopping them from dividing, or by stopping them from spreading. Carfilzomib may stop the growth of cancer cells by blocking some of the enzymes needed for cell growth. Giving selinexor, carfilzomib, and dexamethasone may be a better treatment for multiple myeloma.
This is a Phase 1 clinical trial to evaluate a new combination of drugs for the treatment of relapsed or refractory (drug-resistant) multiple myeloma. The drugs being studied are: - Pomalidomide (POMALYST®) is a drug that affects the immune system (an immunomodulatory drug) that has been approved by the United States (US) Food and Drug Administration (FDA) for the treatment of multiple myeloma. - Marizomib is an investigational drug being developed by Triphase that is being studied for the treatment of multiple myeloma. Investigational drugs are drugs that have not yet been approved by health authorities, such as the FDA, for general use but have been approved for use in specific clinical studies. Marizomib inhibits a cellular machine called the proteasome, which destroys unnecessary or damaged proteins. Other proteasome inhibitors have been shown to be effective in the treatment of multiple myeloma. - Dexamethasone is a corticosteroid drug that affects the immune system (an immunomodulatory drug) that has been approved by the FDA for the treatment of multiple myeloma. This is the first study to evaluate the three-drug combination of pomalidomide (POM), marizomib (MRZ), and dexamethasone (LD-DEX) in humans. Pomalidomide, alone or in combination with dexamethasone, is approved by the FDA for the treatment of relapsed or refractory multiple myeloma. The primary objective of this study is to determine the best drug dosing levels for this three-drug combination, including the highest safe doses and/or the recommended doses for future clinical studies of this drug combination. The secondary purposes of this study are to determine the safety of this drug combination and its effectiveness in treating relapsed or refractory multiple myeloma. The study will include examination of levels of all three drugs in the blood during various time points during treatment.
This phase I trial studies the side effects and best dose of wild-type reovirus when combined with carfilzomib and dexamethasone in treating patients with multiple myeloma that has come back following treatment (relapsed) or does not respond to treatment (refractory). Chemotherapy drugs, such as dexamethasone and carfilzomib, work in different ways to stop the growth of cancer cells, either by killing the cells, by stopping them from dividing, or by stopping them from spreading. A virus called wild-type reovirus may be able to kill cancer cells without damaging normal cells and seems to work best when given with chemotherapy. Giving wild-type reovirus with chemotherapy may be a more effective treatment than chemotherapy alone.
This clinical trial studies peripheral blood hemapoietic stem cell mobilization with the combination of bortezomib and G-CSF (filgrastim) in multiple myeloma and non-Hodgkin lymphoma patients.
This phase II trial studies how well carfilzomib works in treating patients with multiple myeloma in first relapse or refractory to first-line therapy. Carfilzomib may stop the growth of cancer cells by blocking some of the enzymes needed for cell growth.
This phase I trial studies the side effects and best dose of lenalidomide after donor stem cell transplant and bortezomib in treating patients with high-risk multiple myeloma. Giving low doses of chemotherapy and total-body irradiation before a donor stem cell transplant helps stop the growth of cancer cells. It may also the patient's immune system from rejecting the donor's stem cells. The donated stem cells may replace the patient's immune cells and help destroy any remaining cancer cells (graft-versus-tumor effect). Sometimes the transplanted cells from a donor can also make an immune response against the body's normal cells. Giving a bortezomib at the time of transplant may stop this from happening. Biological therapies, such as lenalidomide, may stimulate the immune system in different ways and stop cancer cells from growing. Giving lenalidomide after donor stem cell transplant may be an effective treatment for multiple myeloma.
This phase II trial studies how well carfilzomib and dexamethasone work in treating patients with multiple myeloma who previously underwent a stem cell transplant. Carfilzomib may stop the growth of cancer cells by blocking some of the enzymes needed for cell growth. Immunosuppressive therapy, such as dexamethasone, may improve bone marrow function and increase blood cell counts. Giving carfilzomib together with dexamethasone may be an effective treatment for multiple myeloma.
The purpose of this study is to determine the safety and activity of the investigational drug known as carfilzomib in the treatment of multiple myeloma (MM) when it is given at doses above the usual dose after the standard dosing has become ineffective. The other purpose of this study is to understand what causes the multiple myeloma to become resistant to carfilzomib and whether this can be overcome in the laboratory.
This phase II trial studies how well romiplostim works in increasing low platelet counts in patients with multiple myeloma receiving chemotherapy. Romiplostim may cause the body to make platelets after chemotherapy
This phase I trial is studying the side effects and best dose of methoxyamine when given together with fludarabine phosphate in treating patients with relapsed or refractory hematologic malignancies. Drugs used in chemotherapy, such as methoxyamine and fludarabine phosphate, work in different ways to stop the growth of cancer cells, either by killing the cells or by stopping them from dividing. Giving methoxyamine together with fludarabine phosphate may kill more cancer cells.