View clinical trials related to Leukemia.
Filter by:In phase 2 and phase 3 studies, inotuzumab has shown evidence of single agent anti-leukemic activity and proved to be particularly effective in providing a deep response, with an acceptable safety profile. Since 2014 anti-CD22 has been available for compassionate use in Italy. In this non-interventional retrospective study, toxicity, effectiveness and costs assessment data will be collected from patients with ALL, to improve the knowledge about anti-CD22 treatment in clinical practice. Collecting data of patients and analyzing a large unbiased patient-set of patients receiving anti-CD22 immunoconjugates could enlarge our knowledge on therapies engaging CD22
This is a single center, open-label phase 1/2 study to evaluate the safety and efficacy of targeted CD19 chimeric antigen receptor engineered T cell immunotherapy (CART) in the treatment of CD19 positive relapsed or refractory acute myeloid leukemia.
This phase I trial studies best dose and side effects of liposome-encapsulated daunorubicin-cytarabine (CPX-351) and how well it works in treating patients with high risk myelodysplastic syndrome or chronic myelomonocytic leukemia that has come back or has not responded to treatment. Drugs used in chemotherapy, such as liposome-encapsulated daunorubicin-cytarabine, 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.
Clinical study to evaluate safety and pharmacokinetics (primary objectives) and efficacy (secondary objective) of ET190L1-ARTEMIS™2 T-cells in patients with Cluster of Differentiation (CD) 19+ B cell Leukemia and Lymphoma
This project is strategy aiming to improve the survival of patients with chronic myelogenous leukemia in advanced phase and myeloid blast crisis. The basis of this strategy is to add the demethylating agent 5-Azacitidine to the tyrosine kinase inhibitor ponatinib and evaluate its activity in 2 cohorts of patients with either chronic myelogenous leukemia in advanced phase or myeloid blast crisis.
The aim is to validate an in vitro diagnosis medical device to predict grade II to IV aGVHD after a cell graft
The Royal Marsden NHS Foundation Trust is committed to improving patient experience; this research is being undertaken to try to develop a novel treatment for patients with Acute Myeloid Leukaemia (AML). Researchers aim to develop a new therapy which uses a patient's own immune cells called T cells to treat AML. In this study, numbers and properties of T cells which can be collected from the blood of patients with AML at various points throughout their treatment will be investigated. Blood samples will be collected at the same time as the patient's bone marrow test. If patients need further bone marrow tests during their course of treatment to assess the status of disease, the research team would ask that additional samples are taken at the same time as the bone marrow and blood will be collected at the same time as the routine blood draw. Following collection of blood samples, they will be used to purify a population of blood cells called Gamma Delta T cells which have been shown to have a potential role in control of cancers. In addition the researchers plan to determine whether it is possible to put a novel receptor called a chimeric antigen receptor (CAR) to potentially directly target leukaemia cells. Currently this is only an exploratory study and none of the samples collected will be used for treatment and is only to assess whether or not this strategy is feasible. This may however lead on to studies in the future looking at the safety and effectiveness of this strategy. This hopefully will lead in the future to improvements in treatment and outcome for patients with AML. If patients need further bone marrow tests during their course of treatment to assess the status of disease, the research team would ask that additional samples are taken at the same time as the bone marrow and blood will be collected at the same time as the routine blood draw. Following collection of blood samples, they will be used to purify a population of blood cells called Gamma Delta T cells which have been shown to have a potential role in control of cancers. In addition the researchers plan to determine whether it is possible to put a novel receptor called a chimeric antigen receptor (CAR) to potentially directly target leukaemia cells. Currently this is only an exploratory study and none of the samples collected will be used for treatment and is only to assess whether or not this strategy is feasible. This may however lead on to studies in the future looking at the safety and effectiveness of this strategy. This hopefully will lead in the future to improvements in treatment and outcome for patients with AML.
A Phase I Pharmacologic Study of CYC140, a polo-like kinase 1 inhibitor, in Patients with Advanced Leukemias or Myelodysplastic Syndromes
Evaluation the safety and efficacy of cord blood-derived CAR-T cells in patients with relapsed/refractory B cell leukemia/lymphoma whose disease relapsed after autologous CAR-T cells therapy or who fail to preparation for autologous CAR-T cells
This study will be a secondary use of data, focusing on patients treated with combination therapy Obi-Clb, R-Clb or R-B, in a non-interventional, open label, national, multicenter setting. Retrospective analysis of data coming from registry database CLLEAR (www.leukemia-cell.org )that capture data on clinical and treatment practices in CLL. Data will be retrospectively analyzed.