View clinical trials related to Leukemia.
Filter by:The purpose of this pilot study is to investigate whether some patients who were started on a 2G-TKI as first-line treatment can be safely switched to imatinib, a first-generation TKI, while maintaining or even deepening the molecular response as a cost-effective treatment. Eligible patients will be switched to imatinib 400mg daily, with regular molecular monitoring.
The investigators focused on patients with refractory acute leukemia or MDS and designed a phase 1 trial of escalated cladribine doses in the Cla-Flu-Bu RTC regimen using PK-guided myeloablative busulfan doses. This scheme allows combining different optimization of RTC experienced over years (Flu-Bu RTC, PK-guided myeloablative busulfan doses, a second purine analog cladribine) to approach a specific platform to treat refractory diseases.
Ongoing laboratory work into the pathology of Leukaemia:
The purpose of this clinical trial is to assess the feasibility, safety and efficacy of multi-CAR T cell therapy targeting different AML surface antigens in patients with relapsed or refractory acute myeloid leukemia (AML). Another goal of the study is to learn more about the function of the multi-CAR T cells and their persistency in the patients.
This research study is studying a novel type of CLL vaccine as a possible treatment for chronic lymphocytic leukemia (CLL) The names of the study interventions involved in this study are: - Personalized NeoAntigen Vaccine - Poly-ICLC - Cyclophosphamide - Pembrolizumab
Our goal is to demonstrate that 50mg of dasatinib is as effective as the full dose to induce molecular response as first line therapy in CML.
This phase Ib/II trial studies the best dose and side effects of venetoclax and how well it works when given with combination chemotherapy in treating patients with newly diagnosed acute myeloid leukemia or acute myeloid leukemia that has come back or does not respond to treatment. Venetoclax may stop the growth of cancer cells by blocking some of the enzymes needed for cell growth. Drugs used in chemotherapy, such as fludarabine, cytarabine, filgrastim and idarubicin, work in different ways to stop the growth of tumor cells, either by killing the cells, by stopping them from dividing, or by stopping them from spreading. Giving venetoclax together with combination chemotherapy may work better in treating patients with acute myeloid leukemia.
A significant number of patients with hematologic malignancies need a hematopoietic stem cell transplant (HSCT) to be cured. Only about 50% of these patients have a fully matched donor, the remaining patients will require an HSCT from a mismatched related or unrelated donor. Almost 60% of these mismatched donor HSCTs will result in graft-versus-host disease (GvHD), which can cause significant morbidity and increased non-relapse mortality. GvHD is caused by the donor effector T cells present in the HSC graft that recognize and react against the mismatched patient's tissues. Researchers and physicians at Lucile Packard Children's Hospital, Stanford are working to prevent GvHD after HSCT with a new clinical trial. The objective of this clinical program is to develop a cell therapy to prevent GvHD and induce graft tolerance in patients receiving mismatched unmanipulated donor HSCT. The cell therapy consists of a cell preparation from the same donor of the HSCT (T-allo10) containing T regulatory type 1 (Tr1) cells able to suppress allogenic (host-specific) responses, thus decreasing the incidence of GvHD. This is the first trial of its kind in pediatric patients and is only available at Lucile Packard Children's Hospital, Stanford. The purpose of this phase 1 study is to determine the safety and tolerability of a cell therapy, T-allo10, to prevent GvHD in patients receiving mismatched related or mismatched unrelated unmanipulated donor HSCT for hematologic malignancies.
A prospective, multicenter national observational study for patients diagnosed as chronic lymphocytic leukemia across 25 centers in Turkey
Autologous T cells engineered to express an anti-CD19 chimeric antigen receptor (CAR) will be infused back to patients with refractory /relapsed B cell malignancies, including lymphoma and leukemia. The patients will be monitored after infusion of anti-CD19 CAR-transduced T cells for safety,adverse events, persistence of anti-CD19 CAR-transduced T cells and treatment efficacy.