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Anemia, Aplastic clinical trials

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NCT ID: NCT01328587 Active, not recruiting - Clinical trials for Moderate Aplastic Anemia

Eltrombopag for Moderate Aplastic Anemia

Start date: April 1, 2011
Phase: Phase 2
Study type: Interventional

Background: - Moderate aplastic anemia is a blood disease which may require frequent blood and platelet transfusions. Sometimes patients with this disease can be treated with immunosuppressive drugs. Not all patients respond and not all patients are suitable for this treatment. - Thrombopoietin (TPO) is a protein made by the body. The bone marrow needs TPO to produce platelets. TPO may also be able to stimulate bone marrow stem cells to produce red cells and white cells. However, TPO cannot be given by mouth. This has led researchers to develop the drug eltrombopag, which acts in the same way and can be given by mouth. Eltrombopag has been shown to safely increase platelet numbers in healthy volunteers and in patients with other chronic blood diseases, including severe aplastic anemia. Researchers are interested in looking at whether eltrombopag can be given to people with moderate aplastic anemia and significantly low blood cell counts. Objectives: - To evaluate the safety and effectiveness of eltrombopag in people with moderate aplastic anemia or patients with bone marrow failure and unilineage cytopenia who need treatment for significantly low blood cell counts. Eligibility: - People at least 2 years of age who have moderate aplastic anemia or bone marrow failure and unilineage cytopenia,and significantly low blood cell counts. Design: - Patients will be screened with a physical examination, medical history, blood tests, a bone marrow biopsy, and an eye exam. - Patients will receive eltrombopag by mouth once a day. - Patients will have weekly blood tests to monitor the effectiveness of the treatment and adjust the dose in response to possible side effects. - Patients may continue to take eltrombopag if their platelet count or hemoglobin increases, their requirement for platelet or blood transfusion decreases after 16 to 20 weeks of treatment, and there have been no serious side effects. Access to the drug will continue until the study is closed. Patients will be asked to return for a follow-up visit 6 months after the last dose of medication.

NCT ID: NCT01319851 Terminated - Sickle Cell Disease Clinical Trials

Alefacept and Allogeneic Hematopoietic Stem Cell Transplantation

Start date: September 2010
Phase: N/A
Study type: Interventional

Allogeneic blood and marrow transplantation remains the only viable cure for children who suffer from many serious non-malignant hematological diseases. Transplantation, however, carries a high risk of fatal complications. Much of the risk stems from the use of high dose radiation and chemotherapy for conditioning, the treatment administered just prior to transplant that eliminates the patients' marrow and immune system, effectively preventing rejection of the donors' cells. Attempts to make blood and marrow transplantation safer for children with non-malignant diseases by using lower doses of radiation and chemotherapy have largely failed because of a high rate of graft rejection. In many such cases, it is likely that the graft is rejected because the recipient is sensitized to proteins on donor cells, including bone marrow cells, by blood transfusions. The formation of memory immune cells is a hallmark of sensitization, and these memory cells are relatively insensitive to chemotherapy and radiation. Alefacept, a drug used to treat psoriasis, on the other hand, selectively depletes these cells. The investigators are conducting a pilot study to begin to determine whether incorporating alefacept into a low dose conditioning regimen can effectively mitigate sensitization and, thereby, prevent rejection of allogeneic blood and marrow transplants for multiply transfused children with non-malignant hematological diseases.

NCT ID: NCT01310959 Recruiting - Clinical trials for Aplastic Anemia and Other Marrow Failure Syndrome

Establishing a Data Base for Aplastic Anemia and Other Marrow Failure Syndrome

Start date: January 2003
Phase: N/A
Study type: Observational

Establishing a Data Base for Aplastic Anemia and Other Marrow Failure Syndrome

NCT ID: NCT01305694 Recruiting - Aplastic Anemia Clinical Trials

Mesenchymal Stem Cells Transplantation to Patients With Relapsed/Refractory Aplastic Anemia.

MSC
Start date: February 2011
Phase: Phase 1/Phase 2
Study type: Interventional

The study is a phase I/II trial designed to establish the safety and efficacy of intravenous administration of bone marrow derived mesenchymal stem cells from related donor to patients with relapsed/refractory aplastic anemia.

NCT ID: NCT01297972 Completed - Aplastic Anemia Clinical Trials

Mesenchymal Stem Cells in the Treatment of Relapsed/Refractory Severe Acquired Aplastic Anemia

Start date: February 2011
Phase: Phase 1/Phase 2
Study type: Interventional

Mesenchymal stem cells have been tested in many autoimmune disorders with encouraging results and may be an alternative to the treatment of immune-mediated severe acquired aplastic anemia.

NCT ID: NCT01272817 Completed - Breast Cancer Clinical Trials

Nonmyeloablative Allogeneic Transplant

Mini-allo
Start date: October 2001
Phase: N/A
Study type: Interventional

Allogeneic transplant from a matched sibling for the treatment of a variety of illnesses including bone marrow failure states, leukemias, myelodysplastic or myeloproliferative syndromes, lymphoma, or myeloma using a nonmyeloablative preparative regimen.

NCT ID: NCT01267643 Terminated - Aplastic Anemia Clinical Trials

Alefacept in Patients With Relapsed/Refractory Aplastic Anemia

Start date: May 2011
Phase: Phase 1
Study type: Interventional

Aplastic Anemia (AA) is an autoimmune hematologic stem cell disease mediated by activated T-lymphocytes that leads to pancytopenia. The disease related morbidity and mortality if left untreated can approach 90%. For over 30 years, anti-thymocyte globulin (ATG) in combination with cyclosporine (CsA) remains the standard therapy. However, the treatment response with ATG is at best between 50-60% with a sizeable number of partial responses. Treatment with ATG is also associated with significant toxicity and high relapse rate that can be as high as 45%. Since the prognosis in refractory and relapsed AA remains poor, there is a need for less toxic novel immunosuppressive agents that can improve response rates and remission duration in refractory and relapsed AA. Alefacept is a human recombinant dimeric fusion protein composed of the terminal portion of leukocyte functioning antigen-3 (LFA3/CD58) and the Fc portion of human IgG1. It prevents co-stimulatory signals between antigen presenting cells and memory T cells by competitive inhibition of CD2 in T cells, induces selective apoptosis of CD4+ and CD8+ memory effector T cells by interaction between the Fc portion of IgG1 and the FcyIII in NK cells, and possibly direct ligation of CD2 molecules on T cells that subsequently result in the alteration in T cell agonist signaling. It has been used successfully in the treatment of other T cell mediated disorders particularly psoriasis and steroid refractory graft versus host disease (GVHD) with minimal side effects. In a case of liver transplant associated AA (similar to transfusion associated AA) which is fatal in most patients, Alefacept induced remission after patient did not respond to ATG and other immunosuppressants. The investigators hypothesize that the LFA3-CD2 co-stimulatory pathway play an important role in the immune pathogenesis of AA and treatment with Alefacept can help treat refractory/relapsed cases of AA.

NCT ID: NCT01241357 Completed - Clinical trials for Myelodysplastic Syndromes

High-Tc Susceptometer to Monitor Transfusional Iron Overload

Start date: March 2011
Phase: Phase 2
Study type: Observational

The proposed research project will continue the application and development of a new method (biomagnetic susceptometry) that measures magnetic fields to determine how much iron is in the liver. The amount of iron in the liver is the best indicator of the amount of iron in the whole body. Measuring the amount of iron in the body is important because either too much (iron overload) or too little iron (iron deficiency) can be harmful. At present, the most reliable way to measure the amount of iron in the liver is to remove a sample of the liver by biopsy, either by surgery or by using a needle which pierces the skin and liver. Iron stored in the liver can be magnetized to a small degree when placed in a magnetic field. In patients with iron overload, the investigators previous studies have shown that magnetic measurements of liver iron in patients with iron overload are quantitatively equivalent to biochemical determinations on tissue obtained by biopsy. In the past the investigators have developed a device to measure the amount of magnetization, which was called a SQUID (Superconducting QUantum Interference Device) susceptometer. This device was validated and in use for over 20 years. The safety, ease, rapidity and comfort of magnetic measurements make frequent, serial studies technically feasible and practically acceptable to patients. The investigators have now developed a new susceptometer, which uses very similar technology to the SQUID, but the investigators believe is more accurate and precise. This study aims to validate this new instrument. The investigators will do prospective, serial studies of the diagnosis and management of patients with iron overload, including thalassemia major (Cooley's anemia), sickle cell disease, aplastic anemia, myelodysplasia, hereditary hemochromatosis, and other disorders. Funding Source - FDA OOPD.

NCT ID: NCT01231841 Completed - Aplastic Anemia Clinical Trials

Anti-thymocyte Globulin and Cyclosporine as First-Line Therapy in Treating Patients With Severe Aplastic Anemia

Start date: March 2005
Phase: Phase 2
Study type: Interventional

RATIONALE: Immunosuppressive therapies, such as anti-thymocyte globulin and cyclosporine, may improve bone marrow function and increase blood cell counts. PURPOSE: This phase II trial is studying how well giving anti-thymocyte globulin together with cyclosporine as first-line therapy works in treating patients with severe aplastic anemia.

NCT ID: NCT01224496 Completed - Clinical trials for Myelodysplastic Syndrome (MDS)

Traditional Chinese Medicine in the Supportive Management of Anaemic and Cytopenic (Leukopenia, Thrombocytopenia) Haematological Disorders

Start date: July 2009
Phase: Phase 1/Phase 2
Study type: Interventional

The purpose of this study is to study the efficacy of Traditional Chinese Medicine (TCM) on anaemic and cytopenic haematological disorders including myelodysplastic syndrome (MDS), aplastic anaemia (AA), myelofibrosis (MF) and thalassemia intermedia who do not have or did not respond to available treatment options.