View clinical trials related to Sickle Cell Disease.
Filter by:Zinc is a nutritionally essential trace element found in previous studies to reduce growth retardation and improve immune function, which may also result in decreased incidence of infectious diseases including malaria, pneumonia and diarrhea. Sickle Cell Disease (SCD) patients are known to be susceptible to zinc deficiency and appear to benefit from zinc supplementation. The proposed pilot research project aims to investigate the influence of zinc supplementation on incidence of malaria infections, incidence of bacterial infections and investigate the influence of zinc supplementation on morbidity in children with SCD in western Kenya. The differences in incidence of morbidity and other secondary endpoints will be compared between the zinc group and the control group.
Sickle cell disease (SCD) is a common genetic disorder characterized by episodes of pain, yet assessments to identify type, intensity, frequency, and phase of pain among SCD adolescents is lacking. Research shows that interactive gaming technology can enhance adolescents' learning, and can be especially effective in delivering health-related messages and tools to improve their self-care. Pinpoint is an interactive gaming tablet app that will be developed with the significant input of clinical experts to assist SCD teens with better identification and self-report of their pain.
The focus of the study is the pathophysiological mechanism of allo-antibody formation after red blood cell transfusion in sickle cell disease patients.
The primary objective of the 1701-202 STRONG SCD study is to evaluate the safety and tolerability of different dose levels of IW-1701 compared with placebo when administered daily for approximately 12 weeks to patients with stable SCD. Exploratory objectives include evaluation of pharmacokinetic (PK) as well as evaluation of the effect of IW-1701 on symptoms of SCD, health-related quality of life, and biomarkers of pharmacodynamic (PD) activity.
A promising approach for the treatment of genetic diseases is called gene therapy. Gene therapy is a relatively new field of medicine that uses genetic material (mostly DNA) from the patient to treat his or her own disease. In gene therapy, the investigators introduce new genetic material in order to fix or replace the patient's disease gene, with the goal of curing the disease. The procedure is similar to a bone marrow transplant, in that the patient's malfunctioning blood stem cells are reduced or eliminated using chemotherapy, but it is different because instead of using a different person's (donor) blood stem cells for the transplant, the patient's own blood stem cells are given back after the new genetic material has been introduced into those cells. This approach has the advantage of eliminating any risk of GVHD, reducing the risk of graft rejection, and may also allow less chemotherapy to be utilized for the conditioning portion of the transplant procedure. The method used to introduce the gene into the patient's own blood stem cells is to engineer and use a modified version of a virus (called a 'vector') that efficiently inserts the "correcting" genetic material into the cells. The vector is a specialized biological medicine that has been formulated for use in human beings. The investigators have recently discovered a gene that is very important in the control of fetal hemoglobin expression. Increasing the expression of this gene in sickle cell patients could increase the amount of fetal hemoglobin while simultaneously reducing the amount of sickle hemoglobin in their blood, and therefore potentially cure the condition. In summary, the advantages of a gene therapy approach include: 1) it can be used even if the patient does not have a matched donor available; 2) it may allow a reduction in the amount of chemotherapy required to prepare the patient for the transplant; and 3) it will avoid the strong medicines often required to prevent and treat GVHD and rejection. The goal is to test whether this approach is safe, and whether using gene therapy to change the expression of this particular gene will lead to increased fetal hemoglobin production in people with sickle cell disease.
This is a study to evaluate the safety and toxicity of a treatment regimen consisting of 2 cycles of pre-transplant immunosuppressive therapy followed by myeloablative preparative regimen and allogeneic hematopoietic stem cell transplantation from a haploidentical donor in patients with sickle cell disease. The overall goal of this study is to expand the donor pool for hematopoietic stem cell transplantation in sickle cell disease using haploidentical donors, and to develop a non-toxic, myeloablative regimen, with the goal of achieving a consistent donor chimerism utilizing pre-transplant immunosuppressive therapy.
This is a prospective clinical cohort study that involves a baseline study visit followed by up to 3 annual follow-up study visits for a total follow-up of 36-48 months to evaluate the age- and sex-adjusted rate of change in kidney function, and to identify biomarkers of endothelial function, metabolomic profiles and clinical characteristics for the worsening of kidney function and for a rapid decline in kidney function. "Funding Source - FDA OOPD"
This is a Phase II, single arm, multi-center trial, designed to estimate the efficacy and toxicity of haploidentical bone marrow transplantation (BMT) in patients with sickle cell disease (SCD). Based on their age and entry criteria patients are stratified into two groups: (1) children with severe SCD; and (2) adults with severe SCD.
This project will improve the efficiency and quality of healthcare for persons with sickle cell disease, an under-served and at risk population by implementing a co-management model of care. Many patients with sickle cell disease (SCD) receive care primarily from specialty physicians and emergency departments (ED), thus resulting in a lack of primary care and a high number of ED visits and hospitalizations. The goal is to improve PCP and SCD specialist co-management. The overall purpose of this dissemination project is to evaluate utilization data, as well as patient and provider reported outcomes associated with the dissemination of a toolbox of decision support tools to PCP's and ED providers across NC and SC.
Secretory phosholipases A2 (sPLA2) are significantly elevated in the plasma of sickle cell disease patients with acute chest syndrome (ACS), and similar enzymes have been measured in exhaled breath condensate (EBC), which is collected easily and non-invasively. The investigators hypothesize that sPLA2 will be measurable in EBC samples from sickle cell patients with acute chest syndrome.