View clinical trials related to Acute Myeloid Leukemia.
Filter by:The human microbiome is composed of unique groups of microorganisms occupying distinct habitats distributed throughout the human body. The Human Microbiome Project recently evaluated the bacterial composition of the microbiome in 18 (for women) and 15 (for men) body sites. Much initial attention in the field of microbiome research has focused on the bacterial contribution to a "healthy" microbiome. However, it is clear that other microorganisms, including fungi and viruses, are also distributed throughout the human body and serve as functional components of the microbiome. The populations of microorganisms residing within the oral and nasal cavities make important contributions to human health and disease. These contributions may be especially important in immunosuppressed patients, including those patients receiving myelosuppressive chemotherapy or undergoing hematopoietic stem cell transplantation. In these patients, organisms typically considered as commensals can become pathogenic, either locally or systemically. This observational study is primarily undertaken to evaluate the oral and nasal microbiota and to define the population of fungal organisms residing within the oral and nasal cavities in pediatric oncology patients before and after receiving protocol-directed chemotherapy and associated supportive care.
The purpose of this clinical trial is to study genetically engineered NK92 cell therapy in treating patients with CD33 positive acute myeloid leukemias that is relapsed (after stem cell transplantation or intensive chemotherapy) or refractory to further chemotherapy.
Diagnosis: Acute myeloid leukemia refractory to intensive induction chemotherapy; Age ≥ 60 years, no upper age limit; Study drug: low-dose azacitidine, pioglitazone, ATRA; Safety Run-In Phase; randomized Phase II, open-label - Safety Run-In Phase: Based on a 3 + 3 modified design, the tolerable dose of ATRA for the randomized phase II is defined. - Phase II: Experimental Arm: low-dose azacitidine, pioglitazone, ATRA; Standard Arm: standard-dose azacitidine; in both arms patients can receive further cycles (with no limit to the number given) as long as clinically appropriate
In this multi-center, randomized, open-label, prospective clinical trial, a total of 60 relapsed/refractory AML patients will be randomized into 2 groups. In the experimental arm, patients receive IAC regimen. In the control arm, patients receive other physician-directed regimen. The primary end point is complete remission rate.
Acute myeloid leukemia with t(8;21) /AML1-ETO-positive (AE AML) is a heterogeneous disease entailing different prognoses. There were significant differences in the therapeutic effect between different subgroups of AE AML. Therefore, risk stratification-directed therapy is very necessary for AE AML.
The purpose of this study is to explore the effect of G-CSF combination with GM-CSF on prevention and treatment of infection in children with malignant tumor.
In this study, DNA sequencing, computational biology modeling, and ex vivo drug sensitivity assays will be utilized to define clinically relevant gene mutations and identify potential therapeutics for patients with acute myeloid leukemia (AML).
The purpose of the study is to determine whether Fludarabine in combination with cytarabine is more effective than high-dose cytarabine in post-remission therapy for patients with core-binding factor acute myeloid leukemia
The primary objective of the Phase Ib study is to determine the dose-limiting toxicity (DLT) and maximal tolerated dose (MTD) of BP1001 in combination with dasatinib in patients with with Philadelphia Chromosome Positive (Ph+) Chronic Myelogenous Leukemia (CML) including chronic phase patients who have failed initial tyrosine kinase inhibitor (TKI) therapy, accelerated or blast phase, Ph+ Acute Myeloid Leukemia (AML) or High-risk Ph+ Myelodysplastic Syndrome (MDS). The primary objective of the Phase IIa study is to assess the efficacy of the combination of BP1001 and dasatinib in patients with Ph+ CML, Ph+AML, or high-risk Ph+ MDS.
Multicenter, randomized, open-label, parallel-group study of guadecitabine vs treatment choice (TC). Participants will be randomly assigned in a 1:1 ratio to either guadecitabine or TC. TC options include the 8 high or low intensity, locally available regimens below; or Best supportive Care (BSC) alone: - High intensity (intermediate or high dose cytarabine [HiDAC]; mitoxantrone, etoposide, and cytarabine [MEC]; or fludarabine, cytarabine, granulocyte colony stimulating factor [G-CSF], +/- idarubicin [FLAG/FLAG-Ida]). - Low intensity (low dose cytarabine [LDAC], decitabine, or azacitidine). - BSC.