View clinical trials related to Multiple Myeloma.
Filter by:This study wil assess somatostatin receptor (SSTR) expression via the uptake of Gallium-68 labelled DOTA-conjugated SSTR targeting peptide using PET/CT imaging in multiple myeloma lesions pre-identified on 18F-FDG PET/CT in order to evaluate the feasibility of molecular radionuclide therapy in refractory and relapsing mutiple myeloma using the Lutetium-177 radiolabelled targeting peptide.
Phase 1 open label sequential dose escalation and cohort expansion study evaluating the safety, tolerability and preliminary antitumor activity of COM902 as monotherapy and in combination with COM701 in subjects with advanced malignancies.
This phase II trial studies how well daratumumab-based therapy works in treating patients with newly diagnosed multiple myeloma with kidney failure. Daratumumab-based therapy includes daratumumab, bortezomib, dexamethasone, and thalidomide or lenalidomide. Daratumumab is a monoclonal antibody that may interfere with the ability of cancer cells to grow and spread. Bortezomib is a drug that prevents myeloma cells from getting rid of their waste products, leading to being targeted for death. Dexamethasone is a steroid that is commonly used, either alone or in combination with other drugs, to treat multiple myeloma. Lenalidomide and thalidomide may stop the growth of multiple myeloma by blocking the growth of new blood vessels necessary for tumor growth. Giving daratumumab, bortezomib, dexamethasone, and thalidomide or lenalidomide may be a good way to treat patients with newly diagnosed multiple myeloma with kidney failure.
Hybrid positron emission tomography/computed tomography (PET/CT) has now become available to detect tumors in patients with multiple myeloma. The radioactive glucose 18F-fluorodeoxyglucose (FDG) is the most widely used tracer but findings suggest that PET/CT reveal more lesions when using FCH. In this study, FDG is compared with a more recent metabolic tracer, 18F-fluorocholine (FCH), for the detection of multiple myeloma lesions at time of initial extension assessment. The principal objective of this sudy is to compare the number of suspected hypermetabolic foci of myeloma detected by 18F-fluorocholine PET and by 18F-fluorodeoxyglucose PET during the initial extension assessment.
The main purpose of this study is to collect additional safety information of ixazomib citrate (Ninlaro) when used to treat multiple myeloma in real world clinical practice in China. Participants will be treated with Ninlaro according to the normal clinical practice during this study.
This is a single-center, non-randomized and dose-escalation study to evaluate the safety and efficacy of C-CAR088 in relapsed or refractory multiple myeloma patient.
The objectives of the proposed study are to develop and evaluate protocols for ethnic/racial minority-specific research using cancer registry data. In conjunction with the Cancer Registry of Greater California (CRGC), the investigators have developed procedures to identify, recruit, and survey ethnic/racial minority patients with MM. To pilot the study, the investigators aim initially to test the feasibility of this protocol by contacting 400 eligible patients (100 African Americans, 100 Latinos, 100 Asian American/Native Hawaiian/Pacific Islander-AANHPI and 100 non-Hispanic Whites as a comparison group) to conduct a pilot survey through which will ascertain etiological and survival-related factors for MM. Ultimately, the investigators hope the findings from this pilot will yield insight into the best practices for recruiting minorities with MM and serve as the basis for larger population-based studies of MM etiology and survival. The next phase of this study is to expand the study to all 3 California Cancer Registries, including the Greater Bay Area Cancer Registry and the Los Angeles Cancer Surveillance Program and Cancer Registry of Greater California. We will increase the sample size to recruit atleast 1000 participants per racial/ethnic group. We will also request to increase the scope of the study to also continue a survivorship cohort.
This trial collects multiple tissue and blood samples, along with medical information, from cancer patients. The "Cancer Moonshot Biobank" is a longitudinal study. This means it collects and stores samples and information over time, throughout the course of a patient's cancer treatment. By looking at samples and information collected from the same people over time, researchers hope to better understand how cancer changes over time and over the course of medical treatments.
This is a single-center, non-randomized, phase 2 study in which patients will receive daratumumab (subcutaneous, SC) in combination with clarithromycin/pomalidomide/dexamethasone (D-ClaPd) until progressive disease (PD) or unacceptable toxicity. This study will test the hypothesis that in patients with previous daratumumab exposure, combination therapy of clarithromycin/pomalidomide/dexamethasone with daratumumab SC (D-ClaPd) will yield higher Very Good Partial Response (VGPR) rates in relapsed/refractory multiple myeloma patients than historical pomalidomide/dexamethasone treatment.
This study is being done to find out how older patients respond to CAR-T cell therapy and how the treatment affects their quality of life. This is a quality of life study and participating in the study does not involve receiving any treatment, other than the standard treatment for participants' disease.