View clinical trials related to Myelodysplastic Syndromes.
Filter by:This study evaluates the efficacy of high-dose post-transplantation cyclophosphomide as graft-versus-host disease (GVHD) prophylaxis after allogeneic stem cell transplantation in patients with different risk of GVHD. The risk-adapted strategy involves using single-agent cyclophosphomide in recipients of matched bone marrow graft, and combining cyclophosphomide with tacrolimus and mycophenolate mofetil in recipients of matched peripheral blood stem cells and mismatched bone marrow.
Specific Aim 1: To determine whether endogenous metabolomics-based biomarkers obtained before IV BU administration can predict IV BU clearance. Specific Aim 2: To characterize IV BU metabolism by metabolomics. Specific Aim 3: To identify covariates influencing IV BU pharmacokinetics.
This phase II trial studies the best dose and how well liposomal cytarabine-daunorubicin CPX-351 (CPX-351) works in treating patients with newly diagnosed acute myeloid leukemia and who are at risk for not responding well to treatment. Liposomal cytarabine-daunorubicin CPX-351 combines two chemotherapy drugs that are known to help each other work better, and may work to stop the growth of cancer cells by blocking the cells from dividing.
Evaluate the safety and efficacy of oral azacitidne (CC-486) twice daily (BID) in subjects with myelodysplastic syndromes who failed to achieve an objective response post injectable hypomethylating agent (iHMA) treatment Reason for removing the combination arm: Due to difficulties with dose-finding, the durvalumab plus CC-486 combination arm was closed to enrollment. Extension: An Extension Phase (EP) has been added to allow subjects who are currently receiving oral azacitidine BID and who are demonstrating clinical benefit as assessed by the Investigator, to continue receiving oral azacitidine until the subject meets the criteria for study discontinuation.
This registry is a prospective, non-interventional, post authorisation safety study for patients diagnosed with Transfusion Dependent, IPSS low or intermediate-1-Risk Myelodysplastic Syndrome (MDS), associated to a single abnormality of the chromosome 5 [del(5q)]. The purpose of this study is to collect additional data about the safety of an oral drug (lenalidomide, Revlimid®) that may have been prescribed to relieve anemia and decrease the need of blood transfusions. However, also patients affected by the MDS del(5q) who receive other treatments different from lenalidomide can be included in this study, if they agree.
Acute Myeloid Leukemia (AML) is a diverse disease that is fatal in the majority of patients. Acute promyelocytic leukemia (APL) however, a subtype of AML accounting for 5% of all cases, is very curable. APL cells are highly sensitive to the retinoid all-trans-retinoic acid (ATRA), which effectively differentiates the leukemic clone. Over 80% of APL patients can be cured with ATRA based therapies. For patients with non-APL AML, ATRA has little effect. Consequently, 85% of these patients will succumb to their disease despite conventional approaches. Little is known about mechanisms of resistance to ATRA in non-APL AML. This knowledge gap limits the use of ATRA in a disease that already has few effective therapies. The investigators' preliminary data suggest that non-APL AML cells can be re-sensitized to ATRA when combined with lysine-specific demethylase 1 (LSD 1) inhibitors. The investigators' publication in Nature Medicine showed that LSD1 inhibition with tranylcypromine (TCP), unlocked the ATRA-driven therapeutic response in non-APL AML. Notably, treatment with ATRA and TCP markedly diminished the engraftment of primary human AML cells in murine models, indicating that the combination may target leukemia-initiating cells (LIC). The investigators' data identify LSD1 as a therapeutic target and strongly suggest that it may contribute to ATRA resistance in non-APL AML. The investigators' central hypothesis is that ATRA combined with TCP will be safe and effective in a clinical population, and that this approach will suppress LICs and restore myeloid differentiation programs in patients with non-APL AML. Testing this hypothesis with the phase I clinical trial outlined in this protocol, will establish a new treatment paradigm in AML and extend the important anti-cancer effects of ATRA to all AML subtypes.
The AML18 Trial will evaluate several relevant therapeutic questions in Acute Myeloid Leukaemia (AML), as defined by the WHO, and High Risk Myelodysplastic Syndrome. The trial is primarily designed for patients over 60 years considered fit for an intensive chemotherapeutic approach, but younger patients who may not be considered suitable for the concurrent NCRI AML Trial for younger patients may also enter. Patients for whom intensive chemotherapy is not thought suitable may enter the concurrent NCRI trial of less intensive therapy (LI1). Approximately 1600 patients will be recruited. At entry, a randomisation will compare a standard chemotherapy schedule DA (Daunorubicin/Ara-C) combined with 1 dose of Mylotarg (gemtuzumab ozogamicin, or GO) in course 1 against CPX-351. Patients who have known adverse risk cytogenetics (using Grimwade 2010 classification favourable/intermediate/adverse) at diagnosis may enter a Phase 2 evaluation of the combination of Vosaroxin plus Decitabine. Patients who achieve complete remission (CR) and who are MRD negative by flow cytometry after course one of DA will receive one further course of DA, with a randomisation to receive, either a course of DA or intermediate dose Cytarabine (IDAC) as a third course. Patients who are MRD negative by flow cytometry after course one of CPX-351 will receive up to 2 further course of CPX. Patients who fail to achieve a CR after course 1 of DA or who are MRD positive by flow cytometry or for whom MRD information is not available, are eligible to be randomised to compare DA with DA plus Cladribine (DAC) or FLAG-Ida for up to two courses of therapy. Patients who fail to achieve a CR after course 1 of CPX-351 or who are MRD positive by flow cytometry or for whom MRD information is not available are eligible to be randomised between a second course of standard dose CPX versus a repeat of the course 1 schedule. Patients receiving Vosaroxin and Decitabine are excluded from these post course 1 randomisations . Following the outcome of course 1, patients who received DA chemotherapy on course 1 will be randomised to receive further chemotherapy with the 2nd generation FLT3 inhibitor AC220. Patients randomised to AC220 will be allocated a maximum of 3 courses (short AC220) or 3 courses plus maintenance for 1 year (long AC220). Patients receiving Vosaroxin and Decitabine are excluded from this randomisation. Patients will be eligible for a non-intensive allogeneic stem cell transplant if a suitable HLA matched donor is available.
Blood cancers occur when the molecules that control normal cell growth are damaged. Many of these changes can be detected by directly examining parts of the cancer or cells in blood. Several alterations that occur repeatedly in certain types of blood cancers have already been identified, and these discoveries have led to the development of new drugs that target those alterations. More remain to be discovered. Some of these abnormalities include alterations in genes. Genes are the part of cells that contain the instructions which tell the investigators bodies how to grow and work, and determine physical characteristics such as hair and eye color. Genes are composed of DNA letters that spell out these instructions. Studies of the DNA molecules that make up the genes are called "molecular" analyses. Molecular analyses are ways of reading the DNA letters to identify errors in genes that may contribute to an increased risk of cancer or to the behavior of the cancer cells. Some changes in genes occur only in cancer cells. Others occur in the genes that are passed from parent to child. This research study will examine both kinds of genes. The best way to find these genes is to study large numbers of people. The investigators expect that as many 1000 individuals will enroll in this study. This research study is trying to help doctors and scientists understand why cancer occurs and to develop ways to better treat and prevent it. To participate in this study the participant must have cancer now, had it in the past, or are at risk of developing cancer. The participant will not undergo tests or procedures that are not required as part of their routine clinical care. The investigators will ask the participant to provide an additional sample from tissue that is obtained for their clinical care including blood, bone marrow, or tissue sample. The investigators will also ask for a gentle scrape of the inside of their cheek, mouthwash or a skin sample to obtain their germline DNA
To assess the impact of moderate hepatic impairment on cytarabine and daunorubicin pharmacokinetics and their metabolites following administration of CPX-351.
The goal of this clinical research study is to compare how 2 different drugs, decitabine and azacitidine, when given on a shorter than standard dosing schedule, may help to control MDS. The safety of each study drug given on these schedules will also be studied. This is an investigational study. Decitabine and azacitidine are both FDA approved and commercially available for use in patients with MDS. Giving these drugs on a different schedule than is standard is considered investigational. The study doctor can tell you how the study drugs are designed to work. Up to 240 participants will be enrolled in this multicenter study. Up to 157 will take part at MD Anderson.