View clinical trials related to Leukemia.
Filter by:This is a first-in-human dose escalation/dose expansion study to evaluate the safety and identify the best dose of modified immune cells, PRGN-3006 (autologous chimeric antigen receptor (CAR) T cells), in adult patients with relapsed or refractory acute myeloid leukemia (AML), Minimal Residual Disease (MRD) positive acute myeloid leukemia or higher risk myelodysplastic syndrome (MDS). Autologous CAR T cells are modified immune cells that have been engineered in the laboratory to specifically target a protein found on tumor cells and kill them.
Phase III, multicenter, randomized study with two arms (1:1 ratio) enrolling patients with AML relapsed/refractory after 2, 3, or 4 prior induction regimens: Experimental arm: DFP-10917 14-day continuous intravenous (IV) infusion at a dose of 6 mg/m²/day followed by a 14-day resting period per 28-day cycles. Control arm: Non-Intensive Reinduction (LoDAC, Azacitidine, Decitabine, Venetoclax Combination Regimens) or Intensive Reinduction (High and Intermediate Dose Cytarabine Regimens), depending on the patient's prior induction treatment.
The purpose of this study is to explore safety, tolerability, including the maximum tolerated dose and the recommended Phase II dose (RP2D), and antitumor activity of NMS-03592088 in adult patients with relapsed or refractory Acute Myeloid Leukemia (AML) or Chronic Myelomonocytic Leukemia (CMML).
This research trial studies characterization of T-cell repertoire through next-generation sequencing in patients with acute myeloid leukemia undergoing stem cell transplant. Characterizing T-cell repertoire may help to understand if immune system plays a significant role in high risk patients with acute myeloid leukemia.
Refractory and relapsed (R/R) acute lymphoblastic leukemia (ALL) patients with active disease always have a dismal outcome. Chimeric antigen receptor (CAR) T-cell therapy targeting to Cluster of Differentiation Antigen 19 (CD19) has been proved as a potent approach to attain remission in B-cell R/R patients. Therefore, the investigators conduct a trial to evaluate the the efficacy and safety of locally producing CAR T cells targeting CD19, and to analyze the outcome of enrolled B-cell ALL patients with active disease or persistent residual disease.
This phase III trial studies how well blinatumomab works in combination with chemotherapy in treating patients with newly diagnosed, standard risk B-lymphoblastic leukemia or B-lymphoblastic lymphoma with or without Down syndrome. Monoclonal antibodies, such as blinatumomab, may induce changes in the body's immune system and may interfere with the ability of cancer cells to grow and spread. Chemotherapy drugs, such as vincristine, dexamethasone, prednisone, prednisolone, pegaspargase, methotrexate, cytarabine, mercaptopurine, doxorubicin, cyclophosphamide, and thioguanine, 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. Leucovorin decreases the toxic effects of methotrexate. Giving monoclonal antibody therapy with chemotherapy may kill more cancer cells. Giving blinatumomab and combination chemotherapy may work better than combination chemotherapy alone in treating patients with B-ALL. This trial also assigns patients into different chemotherapy treatment regimens based on risk (the chance of cancer returning after treatment). Treating patients with chemotherapy based on risk may help doctors decide which patients can best benefit from which chemotherapy treatment regimens.
This trial is a limited multi-center, Phase II study to evaluate inotuzumab ozogamicin (Besponsa) in pediatric patients with MRD positive CD22-positive B-lymphoblastic leukemia (B-ALL). Some patients with newly diagnosed ALL maintain low levels of MRD, despite achieving complete remission with less than 5% blasts in the bone marrow. Others experience re-emergence of low level MRD or increasing levels of MRD on therapy or post-transplant. New approaches are needed to achieve undetectable MRD in these high-risk patients. Inotuzumab ozogamicin is an antibody-drug conjugate composed of a humanized IgG subtype 4 monoclonal CD22-targeted antibody linked to calicheamicin, a potent anti-tumor antibiotic. CD22 is expressed in more than 90% of patients with B-cell ALL, making it an attractive target in this patient population. Inotuzumab ozogamicin has demonstrated exceptional activity in adults with relapsed or refractory B-ALL. Primary Objective - Assess the efficacy of inotuzumab ozogamicin in patients with MRD positive CD22+ B-ALL with 0.1 - 4.99% blasts in bone marrow. Secondary Objectives - Study the safety of inotuzumab ozogamicin when used in patients with MRD - positive CD22+ B-ALL with < 5 % blasts in bone marrow. - Estimate the incidence, severity, and outcome of hepatotoxicity and sinusoidal obstruction syndrome/veno-occlusive disease (SOS/VOD) in patients during inotuzumab ozogamicin and following subsequent treatment, including hematopoietic stem cell transplant (HSCT).
Acute myeloid leukemia (AML) is a clonal disease caused by genetic mutations in Hematopoietic stem progenitor cells. Unfortunately, advanced age (>60 years old) is considered to be one of the most important adverse prognostic factors for AML, and older patients are unable to tolerate high-dose chemotherapy, due to various complications and organ dysfunction. Based on the results of the previous research, we will carry out the pretreatment regimen of decitabine + cytarabine in elderly patients with AML who have achieved disease treatment through induction therapy, and continue the transplantation program of unrelated-blood cord blood. By assessing the patient's DFS,OS,RFS and safety to determine whether the regimen is suitable for the consolidation treatment of elderly acute myeloid leukemia, further clarify the efficacy of this regimen compared with traditional consolidation therapy, and initially confirm the effect of combined with unrelated cord blood transplantation in the treatment of acute myeloid leukemia.
The pilot study collects the experience of previously successful treatment of infants, children and young adults, with ALL from a number of well-renowned study groups into a new platform protocol, which is both a comprehensive system for stratification and treatment of ALL in this age-group as well as the basis for several randomised trials included in the study-design. The pilot study is implemented as a master protocol without study specific interventions, thus as an observational study. The pilot study is for countries/study-groups who intend to join ALLTogether1 (including experimental interventions). For these countries the pilot study is crucial to optimise diagnostics, registration systems, collaborations with vendors, logistics and data-checks before starting the main study. The study only includes "standard of care" treatment included in the master protocol.
This is a single arm, open-label, early phase Ⅰ study, to determine the safety and efficacy of CD19-TriCAR-T and CD19-TriCAR-SILK cell therapy in Children CD19+ Leukemia Non-Hodgkin lymphoma treatment.