View clinical trials related to Refractory Multiple Myeloma.
Filter by:Phase 2, single-arm, open, non-randomized, multicenter study of the SINE⢠compound selinexor plus low-dose dexamethasone, in combination with bortezomib and daratumumab. 100 mg selinexor (on days 1, 8, 15 and 22), plus 40 mg dexamethasone (20 mg IV the day of daratumumab and selinexor and 20 mg oral administration the day after daratumumab and selinexor) both weekly as continuous therapy. Bortezomib will be given via subcutaneous at dose of 1.3 mg/m2 once weekly on days 1, 8, 15 and 22 during the cycles 1 to cycle 8, and on day 1 and day 15 of each cycle thereafter as continuous therapy. Daratumumab will be given via intravenous at dose of 16 mg/Kg on days 1, 8, 15 and 22 (weekly) during the cycles 1 and 2, every two weeks (on days 1 and 15) during the cycles 3 to 6 and on day 1 of each cycle thereafter as continuous therapy. Patients may continue indefinitely and there is no maximum treatment duration
Pomalidomide is an approved treatment for refractory multiple myeloma. Toxicity of pomalidomide in the pivotal MM-003 trial, was considerable, with 60% of patients experiencing drug-related G3/4 toxicity. Neutropenia (48% vs 16%) and pneumonia (13% vs 8%) were significantly more common in the pomalidomide arm. This resulted in frequent dose interruptions (67%) and dose reductions (27%). This suggests that for the majority of patients the 4 mg daily dosing schedule is too toxic, and that strategies to deliver reduced dosing of pomalidomide are of high practical relevance. The aim of this trial therefore is to establish that alternate day dosing of pomalidomide (4 mg q2d, d1-28) is non-inferior to daily dosing (4 mg d1-21 q28) in terms of efficacy of the drug with potentially less side effects.
This pilot clinical trial studies whether using high throughput drug sensitivity and genomics data is feasible in developing individualized treatment in patients with multiple myeloma or plasma cell leukemia that has come back or does not respond to treatment. High throughput screen tests many different drugs that kill multiple myeloma cells in individual chambers at the same time. Matching a drug or drug combination to a patient using high throughput screen and genetic information may improve the ability to help patients by choosing drugs that work well for their disease.
This is a phase 1, multi-center, single-arm, open-label study evaluating the safety, tolerability, and anti-myeloma activity of ACTR087 (an autologous T cell product) in combination with SEA-BCMA (a monoclonal antibody) in subjects with relapsed or refractory Multiple Myeloma.
In the currently proposed phase I/II study, the investigators aim to treat patients with relapsed and/or relapsed refractory Multiple Myeloma who have progressed on carfilzomib-based therapy with an FDA approved c-MET inhibitor, cabozantinib.
Compare carfizomib, dexamethasone, and daratumumab (KdD) to Carfilzomib and dexamethasone (Kd) in terms of progression free survival (PFS) in participants with multiple myeloma who have relapsed after 1 to 3 prior therapies.
This phase I trial studies the side effects and best dose of MDM2 Inhibitor KRT-232 when given together with carfilzomib, lenalidomide, and dexamethasone in treating patient with multiple myeloma that has come back (relapsed) or has not responded to previous treatment (refractory). KRT-232 (AMG 232) may stop the growth of cancer cells by blocking a protein called MDM2 that is needed for cell growth. Lenalidomide help shrink or slow the growth of multiple myeloma. Drugs used in chemotherapy, such as carfilzomib 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. Giving MDM2 Inhibitor KRT-232, lenalidomide, carfilzomib, and dexamethasone together may work better in treating patients with multiple myeloma.
1. Establish the MTD of Lintuzumab-Ac225 as monotherapy 2. Establish overall response rate (ORR) where ORR = CR + sCR+ VGPR+PR) 3. Confirm the safety profile of the treatment regimen 4. Estimate progression-free survival (PFS) and overall survival
This research study is studying a combination of targeted therapies known as GO-203-2C and bortezomib as a possible treatment for multiple myeloma that has either progressed or not responded to treatment.
This phase II MATCH screening and multi-sub-trial studies how well treatment that is directed by genetic testing works in patients with solid tumors, lymphomas, or multiple myelomas that may have spread from where it first started to nearby tissue, lymph nodes, or distant parts of the body (advanced) and does not respond to treatment (refractory). Patients must have progressed following at least one line of standard treatment or for which no agreed upon treatment approach exists. Genetic tests look at the unique genetic material (genes) of patients' tumor cells. Patients with genetic abnormalities (such as mutations, amplifications, or translocations) may benefit more from treatment which targets their tumor's particular genetic abnormality. Identifying these genetic abnormalities first may help doctors plan better treatment for patients with solid tumors, lymphomas, or multiple myeloma.