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Clinical Trial Summary

This phase II trial compares the combination of selinexor, daratumumab, Velcade (bortezomib), and dexamethasone (Dara-SVD) to the usual treatment of daratumumab, lenalidomide, bortezomib, and dexamethasone (Dara-RVD) in treating patients with high-risk newly diagnosed multiple myeloma. Selinexor is in a class of medications called selective inhibitors of nuclear export (SINE). It works by blocking a protein called CRM1, which may keep cancer cells from growing and may kill them. Daratumumab is in a class of medications called monoclonal antibodies. It binds to a protein called CD38, which is found on some types of immune cells and cancer cells, including myeloma cells. Daratumumab may block CD38 and help the immune system kill cancer cells. Bortezomib blocks several molecular pathways in a cell and may cause cancer cells to die. It is a type of proteasome inhibitor and a type of dipeptidyl boronic acid. Dexamethasone is in a class of medications called corticosteroids. It is used to reduce inflammation and lower the body's immune response to help lessen the side effects of chemotherapy drugs. Lenalidomide is in a class of medications called immunomodulatory agents. It works by helping the bone marrow to produce normal blood cells and by killing abnormal cells in the bone marrow. The drugs daratumumab, lenalidomide, bortezomib, dexamethasone and selinexor are already approved by the FDA for use in myeloma. But selinexor is not used until myeloma comes back (relapses) after initial treatment. Giving selinexor in the initial treatment may be a superior type of treatment for patients with high-risk newly diagnosed multiple myeloma.


Clinical Trial Description

PRIMARY OBJECTIVE: I. To compare deep response (complete response [CR] + stringent CR [sCR]) by the end of induction cycle 4 in newly diagnosed high-risk multiple myeloma patients (HR NDxMM), in both study arms. SECONDARY OBJECTIVES: I. To assess the minimal residual disease (MRD)-negativity (10^-5). II. To assess overall response rate (ORR), very good partial response (VGPR), and partial response (PR). III. To assess progression-free survival (PFS) and duration of response (DOR). CORRELATIVE OBJECTIVE: I. To identify differential gene expression signature that predicts response to selinexor through ribonucleic acid sequencing (RNAseq) and cell-free deoxyribonucleic acid (cfDNA) studies. OUTLINE: Patients are randomized to 1 of 2 arms. ARM I (Dara-SVD): Patients receive daratumumab and hyaluronidase-fihj subcutaneously (SC) on days 1, 8, 15, & 22 for cycles 1-2, then days 1 & 15 for cycles 3-4, and selinexor orally (PO), bortezomib SC, and dexamethasone PO on days 1, 8, 15, & 22 of each cycle. Treatment repeats every 28 days for up to 4 cycles in the absence of disease progression or unacceptable toxicity. Patients also undergo positron emission tomography (PET), magnetic resonance imaging (MRI), or computed tomography (CT), and bone marrow biopsy and collection of blood samples during screening and at the end of treatment. ARM II (Dara-RVD): Patients receive daratumumab and hyaluronidase-fihj SC on days 1, 8, 15, & 22 for cycles 1-2, then days 1 & 15 for cycles 3-4, lenalidomide PO once daily (QD) on days 1-21 of each cycle, and bortezomib SC and dexamethasone PO on days 1, 8, 15, & 22 of each cycle. Treatment repeats every 28 days for up to 4 cycles in the absence of disease progression or unacceptable toxicity. Patients also undergo PET, MRI, or CT, and bone marrow biopsy and collection of blood samples during screening and at the end of treatment. After completion of study treatment, patients are followed up at 6 months and 1 and 2 years. ;


Study Design


Related Conditions & MeSH terms


NCT number NCT06169215
Study type Interventional
Source National Cancer Institute (NCI)
Contact
Status Recruiting
Phase Phase 2
Start date November 16, 2024
Completion date September 30, 2026

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