View clinical trials related to Thalassemia.
Filter by:The evaluation of efficacy is performed by laboratory monitoring of bone density and resorption markers and clinical monitoring of bone density improvement. This is a prospective, randomized, parallel group, single blind study of one year treatment with zoledronic acid every 6 months as compared to one year treatment with zoledronic acid every 3 months and to placebo every 3 months in patients with hemoglobin syndromes and risk of skeletal complications.
Beta thalassemia major is a serious genetic disease of the blood. Treatments are limited, and although a bone marrow transplant from a compatible donor can be curative, only a limited percentage of individuals with this disease have a matched donor available. A long-term goal of study researchers is to develop a gene transfer process as a method of curing beta thalassemia major. Gene transfer involves obtaining blood stem cells from an individual, adding a normal globin gene to the stem cells, and putting the cells back into the individual. Before gene transfer methods can be attempted in individuals with beta thalassemia major, a safe method of obtaining blood stem cells needs to be developed. The purpose of this study is to investigate the safety and feasibility of collecting peripheral blood stem cells (PBSC) from individuals with beta thalassemia major. Research participants will be given G-CSF (filgrastim) for several days to increase the number of stem cells in the blood, a process called "mobilization." After mobilization, participants will undergo a procedure called apheresis to remove the white blood cells. Researchers in the laboratory will purify the stem cells from the mixture and test methods of putting a normal globin gene into the stem cells. Half of the participants will receive hydroxyurea (HU) prior to G-CSF mobilization. HU is used in splenectomized patients to attempt to reduce the risk of clotting during mobilization. In non-splenectomized patients, HU is given in an attempt to decrease the size of the spleen.
A 1-year randomized Phase II core trial was conducted to investigate the efficacy of deferasirox in regularly transfused patients with β-thalassemia and other rare chronic anemia 2 years of age and older. Patients who successfully completed the main trial may continue in the extension trial to receive chelation therapy with deferasirox for up to 3 years. Extension was prolonged to 4 years. The objective of this study is to assess the long-term safety and efficacy of deferasirox in these patient groups.
This is an open-label, non-randomized, multi-center trial designed to provide expanded access of deferasirox to patients with congenital disorders of red blood cells and chronic iron overload from blood transfusions who cannot adequately be treated with locally approved iron chelators.
This study tests the clinical outcomes of one of two preparative regimens (determined by available donor source) in patients with non-malignant hemoglobinopathies. The researchers hypothesize that these regimens will have a positive effect on post transplant engraftment and the incidence of graft-versus-host-disease. Regimen A2 has replaced Regimen A in this study. Two patients were treated on Regimen A but did not have evidence of initial engraftment thus triggering the stopping rule for that arm of this study.
To allow patients treated with deferasirox in the core study to continue iron chelation therapy for 2 years or until the drug became locally commercially available. To evaluate the long-term safety and efficacy of deferasirox by measuring treatment success, change in liver iron content (LIC) and change in serum ferritin levels. Safety was mainly assessed by incidence of adverse events (AEs)and clinically significant lab parameters.
A 1-year randomized Phase III core trial (NCT00061750) using deferoxamine as the comparator was conducted to investigate the efficacy of deferasirox in regularly transfused patients with β-thalassemia 2 years of age and older. Patients who successfully completed this main trial may continue in this extension trial to receive chelation therapy with deferasirox for an additional 4 years. The objective of this study is to assess the efficacy and long-term safety of deferasirox in regularly transfused patients with β-thalassemia 2 years of age and older.
Because patients with beta-thalassemia are unable to actively eliminate iron from the body, toxic and eventually lethal levels of iron can accumulate as a result of repeated blood transfusions. This study will evaluate the efficacy, safety and tolerability of deferasirox.
Patients with genetic diseases can have widely differing severities. We are looking for genetic factors which influence the severity of beta thalassemia.
Alpha thalassemia causes mild anemia and is found in many ethnic groups. Usually it is found in regions where malaria is endemic. We have found that alpha thalassemia is common in Ashkenazim, whose countries of origin are in temperate climates. We are analyzing the alpha globin genes of individuals of many ethnic groups and will compare to try to define the origin of thalassemia in these individuals of European extraction.