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Myelodysplastic Syndromes clinical trials

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NCT ID: NCT02238925 Completed - Clinical trials for Acute Myeloid Leukemia (AML)

An Open Label Phase II Pharmacokinetic and Pharmacodynamic Assessment of the Potential for QTc Prolongation Following First Induction Treatment With CPX-351 (Cytarabine:Daunorubicin) Liposome Injection in Acute Leukemias and MDS Patients

Start date: July 2014
Phase: Phase 2
Study type: Interventional

The purpose of this study is to assess the effects of CPX-351 on cardiac repolarization, assess plasma drug levels, asses serum copper levels, and assess drug levels in urine. Efficacy and Safety will be assessed in all patients enrolled to the study.

NCT ID: NCT02233504 Completed - Clinical trials for High Risk MDS or AML Patients

Pilot Study to Assess Hematologic Response in Patients With Acute Myeloid Leukemia or High Risk Myelodysplastic Syndromes Undergoing Monotherapy With Exjade (Deferasirox)

Start date: August 2014
Phase: Early Phase 1
Study type: Interventional

The purpose of this trial is to examine the hematologic response rate of Exjade® in patients with AML and high risk MDS and chronic iron overload from blood transfusions. Deferasirox has been developed as an iron-chelating agent, and unlike deferoxamine, a previously developed iron chelator, deferasirox has the advantage of oral administration.

NCT ID: NCT02231853 Terminated - Clinical trials for Chronic Lymphocytic Leukemia

Phase I/II Trial of Early Infusion of Rapidly-generated Multivirus Specific T Cells (MVST) to Prevent Post Transplant Viral Infections

Start date: September 3, 2014
Phase: Phase 1
Study type: Interventional

Allogeneic hematopoetic stem cell transplantation (SCT) is frequently complicated by life threatening viral reactivation. Conventional antiviral therapy is suboptimal for cytomegalovirus (CMV), adenovirus (AdV) and Epstein-Barr virus (EBV) and nonexistent for BK virus (BKV). An alternative approach to prevent viral reactivation is to infuse virus-specific cytotoxic T cells (CTL) prepared from the donor early after SCT. Such multivirus-specific CTL cells (MVST) have been successfully used in a number of centers to prevent or treat CMV, Ad and EBV. Activity of BKV-reactive cells has not been studied. Multi virus-specific T cells (MVST) are donor lymphocytes that are highly enriched for viral antigens and expanded in vitro before infusion into the transplant recipient. Viral reactivation is a particular problem inT cell depleted SCT. Median time to CMV reactivation is estimated as 28 days post T-depleted transplant, but infusion of MVST within the immediate post-SCT period has not been previously studied. This protocol will be the first of a planned series of cellular therapies to be layered on our existing T lymphocyte depleted transplant platform protocol 13-H-0144. The aim of this study is to determine the safety and efficacy of very early infusion of MVST directed against the four most common viruses causing complications after T-depleted SCT. GMP-grade allogeneic MVST from the stem cell donor will be generated using monocyte-derived donor dendritic cells (DCs) pulsed with overlapping peptide libraries of immunodominant antigens from CMV, EBV, Ad, and BKV and expanded in IL-7 and IL-15 followed by IL-2 for 10-14 days. A fraction of the routine donor leukapheresis for lymphocytes obtained prior to stem cell mobilization will be used to generate the MVST cells. MVST passing release criteria will be cryopreserved ready for infusion post SCT. Eligible subjects on NHLBI protocol 13-H-0144 will receive a single early infusion of MVST within 30 days (target day +14, range 0-30 days) post SCT. Phase I safety monitoring will continue for 6 weeks. Viral reactivation (CMV, EBV, Ad, BK) will be monitored by PCR by serial blood sampling. The only antiviral prophylaxis given will be acyclovir to prevent herpes simplex and varicella zoster reactivation. Subjects with rising PCR exceeding threshold for treatment, or those with clinically overt viral disease will receive conventional antiviral treatment. Patients developing acute GVHD will receive standard treatment with systemic steroids. These patients are eligible for reinfusion of MVST when steroids are tapered. The clinical trial is designed as a single institution, open label, non-randomized Phase I/II trial of MVST in transplant recipients, designed as 3-cohort dose escalation Phase I followed by a 20 subject extension Phase II at the maximum tolerated dose of cells. Safety will be monitored continuously for a period of 6 weeks post T cell transfer. The primary safety endpoint will be the occurrence of dose limiting toxicity, defined as the occurrence of Grade IV GVHD or any other SAE that is deemed to be at least probably or definitely related to the investigational product. The primary efficacy endpoint for the phase II will be the proportion of CMV reactivation requiring treatment at day 100 post transplant. Secondary endpoints are technical feasibility of MSVT manufacture, patterns of virus reactivation by PCR, and clinical disease from EBV, Ad, BK, day 100 non-relapse mortality.

NCT ID: NCT02228525 Completed - Clinical trials for Myelodysplastic Syndromes

Selective Inhibitor of Nuclear Export (SINE) Selinexor (KPT-330) in Patients With Myelodysplastic Syndromes

Start date: August 27, 2014
Phase: Phase 2
Study type: Interventional

The purpose of this study is to see if selinexor will improve the blood counts and bone marrow function in people with your type of MDS.

NCT ID: NCT02226497 Terminated - Clinical trials for Acute Myeloid Leukemia

Telemonitoring Device in Managing Outpatient Care of Patients With Myelodysplastic Syndrome or Acute Myeloid Leukemia After Intensive Chemotherapy

Start date: January 9, 2015
Phase: N/A
Study type: Interventional

This randomized pilot clinical trial studies a home telemonitoring device in managing the care of patients with myelodysplastic syndrome or acute myeloid leukemia after they are discharged from the hospital following chemotherapy. After treatment and hospital discharge, patients typically need extensive care to deal with the side effects of chemotherapy, keep up with medications, and obtain medical assistance. A home telemonitoring device would allow patients to monitor vital signs, symptoms, and use of medications, communicate with healthcare providers, and access educational material. A telemonitoring device may allow patients to be managed more effectively than standard outpatient care after being discharged from the hospital.

NCT ID: NCT02223052 Completed - Breast Cancer Clinical Trials

Bioequivalence & Food Effect Study in Patients With Solid Tumor or Hematologic Malignancies

Start date: October 27, 2014
Phase: Phase 1
Study type: Interventional

This is a Phase 1, open-label, multicenter, randomized, 2-stage crossover study consisting of 2 phases: Stage I - Pharmacokinetics (Bioequivalence), with an Extension Stage II - Pharmacokinetics (Food Effect) with an Extension This study will enroll approximately 60 subjects in stage I and 60 subjects in stage II with hematologic or solid tumor malignancies, excluding gastrointestinal tumors and tumors that have originated or metastasized to the liver for which no standard treatment exists or have progressed or recurred following prior therapy. Subjects must not be eligible for therapy of higher curative potential where an alternative treatment has been shown to prolong survival in an analogous population. Approximately 23 sites in the US and 2 in Canada will participate in this study.

NCT ID: NCT02221310 Completed - Clinical trials for Myelodysplastic Syndrome

Immunochemotherapy and AlloSCT in Patients With High Risk CD33+ AML/MDS

Start date: December 7, 2011
Phase: Phase 2
Study type: Interventional

Targeted immune therapy with gemtuzumab ozogamicin (Mylotarg) in combination with chemotherapy followed by allogeneic stem cell transplantation will be given to patients with high risk acute myelogenous leukemia (AML) or myelodysplastic syndrome (MDS).

NCT ID: NCT02220985 Active, not recruiting - Clinical trials for Refractory Acute Myeloid Leukemia

Selective Depletion of CD45RA+ T Cells From Allogeneic Peripheral Blood Stem Cell Grafts From HLA-Matched Related and Unrelated Donors in Preventing GVHD

Start date: February 3, 2015
Phase: Phase 2
Study type: Interventional

This phase II trial is for patients with acute lymphocytic leukemia, acute myeloid leukemia, myelodysplastic syndrome or chronic myeloid leukemia who have been referred for a peripheral blood stem cell transplantation to treat their cancer. In these transplants, chemotherapy and total-body radiotherapy ('conditioning') are used to kill residual leukemia cells and the patient's normal blood cells, especially immune cells that could reject the donor cells. Following the chemo/radiotherapy, blood stem cells from the donor are infused. These stem cells will grow and eventually replace the patient's original blood system, including red cells that carry oxygen to our tissues, platelets that stop bleeding from damaged vessels, and multiple types of immune-system white blood cells that fight infections. Mature donor immune cells, especially a type of immune cell called T lymphocytes (or T cells) are transferred along with these blood-forming stem cells. T cells are a major part of the curative power of transplantation because they can attack leukemia cells that have survived the chemo/radiation therapy and also help to fight infections after transplantation. However, donor T cells can also attack a patient's healthy tissues in an often-dangerous condition known as Graft-Versus-Host-Disease (GVHD). Drugs that suppress immune cells are used to decrease the severity of GVHD; however, they are incompletely effective and prolonged immunosuppression used to prevent and treat GVHD significantly increases the risk of serious infections. Removing all donor T cells from the transplant graft can prevent GVHD, but doing so also profoundly delays infection-fighting immune reconstitution and eliminates the possibility that donor immune cells will kill residual leukemia cells. Work in animal models found that depleting a type of T cell, called naïve T cells or T cells that have never responded to an infection, can diminish GVHD while at least in part preserving some of the benefits of donor T cells including resistance to infection and the ability to kill leukemia cells. This clinical trial studies how well the selective removal of naïve T cells works in preventing GVHD after peripheral blood stem cell transplants. This study will include patients conditioned with high or medium intensity chemo/radiotherapy who can receive donor grafts from related or unrelated donors.

NCT ID: NCT02212561 Completed - Clinical trials for Acute Myeloid Leukemia (AML)

Selinexor With Fludarabine and Cytarabine for Treatment of Refractory or Relapsed Leukemia or Myelodysplastic Syndrome

Start date: August 2014
Phase: Phase 1
Study type: Interventional

The purpose of this study is to test the safety of selinexor (KPT-330) and to find the highest dose of selinexor (KPT-330) that can be given safely when it is combined with two chemotherapy drugs (fludarabine and cytarabine). This study will be done in two parts: Phase I and Phase II. The goal of Phase I is to find the highest tolerable dose of selinexor (KPT-330) that we can give to patients with leukemia or MDS, when it is combined with fludarabine and cytarabine. The goal of the subsequent Phase II portion of the study (insert NCT ID of SELHEM-2) is to give the highest dose of selinexor (KPT-330) in combination with fludarabine/cytarabine that was found in Phase I to be safe for children with leukemia or MDS. The investigators will examine the effect of this combination treatment. PRIMARY OBJECTIVE: - Determine a tolerable combination of selinexor, fludarabine, and cytarabine in pediatric patients with relapsed or refractory hematologic malignancies included acute myeloid leukemia (AML), acute lymphoblastic leukemia (ALL), mixed phenotype acute leukemia (MPAL) and myelodysplastic syndrome (MDS). SECONDARY OBJECTIVES: - To characterize the pharmacokinetics of selinexor, when administered in tablet form, after the first dose and at steady-state, as well as in combination with fludarabine and cytarabine - To estimate the overall response rate of selinexor given with fludarabine and cytarabine in patients with relapsed or refractory hematologic malignancies

NCT ID: NCT02211755 Recruiting - Neoplasms Clinical Trials

Trial of the Combination of Bortezomib and Clofarabine in Adults With Relapsed Solid Tumors

Start date: October 6, 2014
Phase: Phase 1
Study type: Interventional

Background: - Researchers want to develop better ways to treat cancer. In this study, they will give people with cancer two drugs. These drugs have been used on their own to treat some blood cell cancers. Objectives: - To test the safety and efficacy of the drug combination of bortezomib and clofarabine. Eligibility: - Adults age 18 and over with advanced cancer that has progressed after receiving standard treatment or that has no effective therapy. Design: - Participants will be screened with medical history, physical exam, and scans to measure their tumors. They will also have heart, blood, and urine tests. All of these may be done by their regular doctors. - Participants will get the study drugs in 21-day cyles. They will stay at the clinic for week 1 of every cycle, then have 2 weeks off. <TAB>- Bortezomib will be injected under the skin on days 1 and 4. <TAB>- Clofarabine will be injected in a vein for days 1-5. - During cycle 1 only, participants will go to the clinic or their doctor to have a physical exam and blood tests at the start of the second and third week. - Participants will have clinical evaluations throughout the study, including before receiving treatment and then before the start of each cycle. - Participants may stay in the study as long as they are tolerating the drugs and their tumor is not getting worse. - Participants will have follow-up for 30 days after the last dose of study drugs. - The first part of this study tests the safety of different doses of clofarabine and bortezomib. - The second part of this study involves a separate group of participants who will undergo mandatory research biopsies to learn more about the effects of clofarabine and bortezomib on cancer cells.