View clinical trials related to Acute Myeloid Leukemia.
Filter by:This phase II trial studies how well venetoclax, cladribine, low dose cytarabine, and azacitidine work in treating patients with acute myeloid leukemia that has previously not been treated. Drugs used in chemotherapy, such as venetoclax, cladribine, and low dose 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. Azacitidine may stop the growth of cancer cells by blocking some of the enzymes needed for cell growth. Giving venetoclax, cladribine, low dose cytarabine induction followed by cladribine, low dose cytarabine, and azacitidine consolidation may work better in treating patients with acute myeloid leukemia.
Acute myeloid leukemia (AML) relapse is often associated with a clonal evolution at the cytogenetic and molecular level and therefore represents a challenge in the treatment of AML. Targeted sequencing is now usually done at diagnosis in AML, as only a small core group of genes is frequently mutated in AML and myelodysplastic syndromes. This approach, contrary to WGS is cheaper, together with a rapid turnaround and high sequencing coverage depths allowing the detection of variant allele fractions as low as 2%. In the investigator's center, targeted analysis of AML patients is routinely realized at diagnosis and at relapse. In thses patients, five different clonal evolution patterns including cytogenetic and molecular analysis at relapse will be evaluated: (1) Stability, defined by no clonal change, (2) Gain, strictly defined by acquisition of additional variations (mutations or cytogenetic alterations), (3) Loss, strictly defined by loss of variants or regression, (4) Gain and Loss, indicating the combination of both Gain and Loss patterns, (5) Emergence, defined by the emergence of alterations that were unrelated to those found at diagnosis. Karyotype and the mutations of up to 40 AML patients benefited from targeted NGS in the clinical hematology laboratory of the Hopitaux Universitaires de Strasbourg both at the time of the diagnosis of and the relapse will be studied, together with clinical and other biological characteristics.
This study aims to treat non-elderly adult patients, who were previously untreated for acute myeloid leukemia, using venetoclax and azacitidine.
This study will test daily dosing of atovaquone at established pneumocystis jiroveci pneumonia (PJP) prophylaxis dosing in combination with standard induction chemotherapy for de novo AML. The primary objectives are to determine the frequency of omission of atovaquone doses due to standard induction chemotherapy toxicity, to quantify the steady-state plasma levels of atovaquone, and to determine the time to achievement of steady state atovaquone levels in this population.
This Phase I study is designed to assess the safety, tolerability, pharmacokinetics and anti-tumor effect of increasing doses of study drug SKI-G-801 in patients with relapsed or refractory Acute Myeloid Leukemia (AML) who are unresponsive to currently available therapies. Eligible participants will receive cycles of treatment involving IV infusion of SKI-G-801 daily for 14 days followed by 14 days off. Treatment cycles will be repeated until progressive disease or unacceptable toxicity.
This is an open label, multi-center, phase 1 study of DSP-2033 (Alvocidib) in combination with cytarabine/mitoxantrone (ACM regimen) or cytarabine/daunorubicin (A+7+3 regimen) in patients with acute myeloid leukemia (AML).
This is a window-of-opportunity trial to determine if atorvastatin given for 1 to 4 weeks at a dose of 80 milligrams per day (mg/day) is sufficient to decrease the level of conformational mutant tumor protein 53 (p53) in malignant diseases (solid tumor and relapsed Acute Myeloid Leukemia (AML)).
This study evaluates the pharmacokinetics and safety of CPX-351 in patients with moderate or severe renal impairment.
Participants with AML that have gone into remission and come back (relapsed) or gone into remission with a number of leukemia cells still in their system (refractory) will be recruited for this study. They will also be positive for FLT3-ITD mutation. Participants will receive a combined dose of quizartinib and milademetan that have not been approved by the US Food and Drug Administration yet (m). The combination of these drugs will be provided in different amounts on defined days (dosing schedules). It is expected that the combination of milademetan and quizartinib will be safe and well tolerated. It is expected that the combination may fight the leukemia better than a single drug. The study will run for approximately 3 years. There may be up to 156 participants. The study has 2 parts: - Part 1 will test 24-36 participants in approximately 15 study centers globally. Participants will receive two study drugs (milademetan and quizartinib) in different amounts on specific days. Information will be gathered to see what dosing schedule of the drug combination is best (maximum tolerated/recommended dose). - Part 2 of the study will confirm the recommended dosing schedule identified in Part 1 is effective. A larger number of participants will receive the recommended dose in approximately 15 additional sites worldwide as necessary, based on the enrollment rate, the population, and the standard of care available to them at the time of enrollment.
1. Detection of IDH2 mutations in AML patients to define it incidence and correlation with clinical characteristics, relapse-free and overall survival. 2. Identify AML patients who are potential candidates for IDH2 inhibitor treatment. 3. Monitoring minimal residual disease (MRD) following therapy to evaluate its possible role in the strategy of MRD-directed therapy in the future in patients carrying IDH2 mutations at initial diagnosis.