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Acute Myeloid Leukemia clinical trials

View clinical trials related to Acute Myeloid Leukemia.

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NCT ID: NCT04314401 Recruiting - Multiple Myeloma Clinical Trials

National Cancer Institute "Cancer Moonshot Biobank"

Start date: November 11, 2020
Phase:
Study type: Observational

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.

NCT ID: NCT04311060 Not yet recruiting - Clinical trials for Acute Myeloid Leukemia

Genetic and Molecular Characteristics of Mexican Adults With Acute Myeloid Leukemia: a Prospective Multicentric Study.

Start date: March 22, 2020
Phase:
Study type: Observational [Patient Registry]

Newly diagnosed adults patients with Acute Myeloid Leukemia will be assessed as traditionally by the treating institution using classic clinical, demographic and cytogenetic variables. Complementary molecular tests will be performed in the patients included in the study using PCR to detect classic CBF (Core Binding Factor) rearrangements: CBFB-MYH11 [inv(16)(p13;q22), isoforms A, E and D; AML-ETO (RUNX1-RUNX1T1) (t8;21)(q22;q22). NGS (Next Generation Sequencing) to detect mutations in: FLT3-ITD and TKD, NPM1, CEBPA, RUNX1, TP53, ASXL1, IDH1, IDH2 and KIT

NCT ID: NCT04296214 Withdrawn - Clinical trials for Acute Myeloid Leukemia

Pharmacoeconomics in the Application of 5-azacitidine in the Treatment of Myelodysplastic Syndromes and Acute Myeloid Leukemia

Start date: January 1, 2020
Phase:
Study type: Observational

The investigators want to compare the global response rate of patients with myelodysplastic syndrome (MDS) and acute myeloid leukemia (AML) after six months of treatment with 5-azacitidine on two different doses. First group of 50 mg/m2 for 10 days each 28 days versus 75 mg/m2 for 7 days on 28 days cycles.

NCT ID: NCT04293562 Active, not recruiting - Clinical trials for Acute Myeloid Leukemia

A Study to Compare Standard Chemotherapy to Therapy With CPX-351 and/or Gilteritinib for Patients With Newly Diagnosed AML With or Without FLT3 Mutations

Start date: July 21, 2020
Phase: Phase 3
Study type: Interventional

This phase III trial compares standard chemotherapy to therapy with liposome-encapsulated daunorubicin-cytarabine (CPX-351) and/or gilteritinib for patients with newly diagnosed acute myeloid leukemia with or without FLT3 mutations. Drugs used in chemotherapy, such as daunorubicin, cytarabine, and gemtuzumab ozogamicin, 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. CPX-351 is made up of daunorubicin and cytarabine and is made in a way that makes the drugs stay in the bone marrow longer and could be less likely to cause heart problems than traditional anthracycline drugs, a common class of chemotherapy drug. Some acute myeloid leukemia patients have an abnormality in the structure of a gene called FLT3. Genes are pieces of DNA (molecules that carry instructions for development, functioning, growth and reproduction) inside each cell that tell the cell what to do and when to grow and divide. FLT3 plays an important role in the normal making of blood cells. This gene can have permanent changes that cause it to function abnormally by making cancer cells grow. Gilteritinib may block the abnormal function of the FLT3 gene that makes cancer cells grow. The overall goals of this study are, 1) to compare the effects, good and/or bad, of CPX-351 with daunorubicin and cytarabine on people with newly diagnosed AML to find out which is better, 2) to study the effects, good and/or bad, of adding gilteritinib to AML therapy for patients with high amounts of FLT3/ITD or other FLT3 mutations and 3) to study changes in heart function during and after treatment for AML. Giving CPX-351 and/or gilteritinib with standard chemotherapy may work better in treating patients with acute myeloid leukemia compared to standard chemotherapy alone.

NCT ID: NCT04288739 Not yet recruiting - Clinical trials for Acute Myeloid Leukemia

Immunophenotyping and Xist Gene in AML

Xist
Start date: October 2, 2020
Phase:
Study type: Observational

Acute myeloid leukemia (AML) is a heterogeneous disorder characterized by clonal expansion of myeloid progenitors (blasts) in the bone marrow and peripheral blood.Several studies have reported correlations of aberrantly expressed markers by flowcytometry with clinical outcome in AML. X-inactive specific transcript RNA was one of the first long noncoding RNAs (lncRNAs) to be discovered in the early 1990s. Xist RNA is the master regulator of XCI, the epigenetic process that equalizes the dosage of X-linked genes between female (XX) and male (XY) mammals. Yildirim et al., (2013) deleted Xist in the blood compartment of mice and demonstrated that mutant females developed a highly aggressive myeloproliferative neoplasm and myelodysplastic syndrome (mixed MPN/MDS) with 100% penetrance. Their study implies that human hematologic cancers may result from overdosage of X, either from Xist loss on Xi or from duplication of Xa. And they proposed that carcinogenesis is driven by a series of changes occurring in the HSC and further accumulated in mature hematopoietic cells. These changes are initiated by loss of Xist, which leads to progressive X reactivation, which in turn induces a cascade of unfavorable genome-wide changes that include dysregulation of genes involved in DNA replication, chromosome segregation, cell-cycle checkpoints, and hematopoiesis. A failure of HSC maturation and loss of long-term HSC in the marrow progressively shift hematopoiesis to extramedullary sites resulting in extra medullary hematopoiesis (EMH), thereby causally linking the X chromosome to cancer in mice. Thus, they concluded that Xist RNA not only is required to maintain XCI but also suppresses cancer in vivo. Indeed, the emerging role of aberrant gene dosage in diseases, whether of the X chromosome or for autosomes, brings with it the possible application of drugs that impact on epigenetic regulators in potential therapeutic strategies. To date, there are no published studies on human about Xist gene and its relationship with the immunophenotyping in AML patients. So, this will be the first study designed to explain its unexplored pathway in AML and detect its prognostic role and immunophenotypic association.

NCT ID: NCT04284787 Active, not recruiting - Clinical trials for Acute Myeloid Leukemia

BLAST MRD AML-2: BLockade of PD-1 Added to Standard Therapy to Target Measurable Residual Disease in Acute Myeloid Leukemia 2- A Randomized Phase 2 Study of Anti-PD-1 Pembrolizumab in Combination With Azacitidine and Venetoclax as Frontline Therapy in Unfit Patients With Acute Myeloid Leukemia

Start date: February 16, 2021
Phase: Phase 2
Study type: Interventional

This phase II trial studies how well azacitidine and venetoclax with or without pembrolizumab work in treating older patients with newly diagnosed acute myeloid leukemia. Chemotherapy drugs, such as azacitidine, 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. Venetoclax is in a class of medications called B-cell lymphoma-2 (BCL-2) inhibitors. It may stop the growth of cancer cells by blocking Bcl-2, a protein needed for cancer cell survival. Immunotherapy with monoclonal antibodies, such as pembrolizumab, may help the body's immune system attack the cancer, and may interfere with the ability of tumor cells to grow and spread. Giving azacitidine and venetoclax with pembrolizumab may increase the rate of deeper/better responses and reduce the chance of the leukemia coming back in patients with newly diagnosed acute myeloid leukemia compared to conventional therapy of azacitidine and venetoclax alone.

NCT ID: NCT04282668 Active, not recruiting - Clinical trials for Acute Myeloid Leukemia

A Study of TAS1440 With ATRA in Subjects With r/r AML

Start date: March 15, 2020
Phase: Phase 1
Study type: Interventional

This is a multicenter, 2-part, Phase 1 study to assess the safety, pharmacokinetics, pharmacodynamics, and preliminary clinical activity of TAS1440 administered as a single agent and in combination with all-trans retinoic acid (ATRA) in participants with acute myeloid leukemia (AML) who have relapsed or are refractory (r/r) to prior treatment. The study duration is expected to be approximately 30 months.

NCT ID: NCT04282187 Recruiting - Clinical trials for Acute Myeloid Leukemia

Decitabine With Ruxolitinib, Fedratinib or Pacritinib for the Treatment of Accelerated/Blast Phase Myeloproliferative Neoplasms

Start date: March 24, 2020
Phase: Phase 2
Study type: Interventional

This phase II trial studies how well decitabine with ruxolitinib, fedratinib, or pacritinib works before hematopoietic stem cell transplant in treating patients with accelerated/blast phase myeloproliferative neoplasms (tumors). Drugs used in chemotherapy, such as decitabine, 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. Ruxolitinib, fedratinib, and pacritinib may stop the growth of tumor cells by blocking some of the enzymes needed for cell growth. Giving chemotherapy before a donor hematopoietic stem cell transplant helps stop the growth of cells in the bone marrow, including normal blood-forming cells (stem cells) and cancer cells. When the healthy stem cells from a donor are infused into the patient they may help the patient's bone marrow make stem cells, red blood cells, white blood cells, and platelets. The donated stem cells may also replace the patient's immune cells and help destroy any remaining cancer cells. Decitabine, with ruxolitinib, fedratinib, or pacritinib may work better than multi-agent chemotherapy or no pre-transplant therapy, in treating patients with accelerated/blast phase myeloproliferative neoplasms.

NCT ID: NCT04282174 Withdrawn - Clinical trials for Acute Myeloid Leukemia

CD34+ Enriched Transplants From HLA-Compatible Patients With Hematologic Malignancies

2019-KOE-001
Start date: September 2022
Phase: Phase 2
Study type: Interventional

This is a Phase II trial testing disease-specific myeloablative conditioning regimens for preparatory cytoreduction of patients receiving allogeneic HLA-compatible related or unrelated transplants of GCSF-mobilized peripheral blood stem cells (PBSC) depleted of T-cells by positive selection of CD34+ progenitor cells using the CliniMACS system. The CliniMACS Fractionation system is a method that positively selects CD34+ progenitor cells from PBSC by immunoadsorption of cells binding on anti CD34 monoclonal antibody to paramagnetic beads, which can then be isolated by passage through a magnetized column and released by agitation of beads. Two conditioning regimens have been used successfully with an alternative similar system, isolex, which is no longer being manufactured.

NCT ID: NCT04277442 Active, not recruiting - Clinical trials for Acute Myeloid Leukemia

Testing Nivolumab in Combination With Decitabine and Venetoclax in Patients With Newly Diagnosed TP53 Gene Mutated Acute Myeloid Leukemia

Start date: March 11, 2020
Phase: Phase 1
Study type: Interventional

This trial studies the side effects of nivolumab in combination with decitabine and venetoclax and to see how well they work in treating patients with TP53-mutated acute myeloid leukemia. Immunotherapy with monoclonal antibodies, such as nivolumab, may help the body's immune system attack the cancer, and may interfere with the ability of tumor cells to grow and spread. Drugs used in chemotherapy, such as decitabine and venetoclax, 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. This study is being done to find out whether giving nivolumab, decitabine, and venetoclax is better or worse than the usual approach for TP53-mutated acute myeloid leukemia.