View clinical trials related to Sickle Cell Disease.
Filter by:Prolong proposes to test safety, tolerability and pharmacokinetics of SANGUINATE™ in sickle cell disease (SCD) patients. Prolong's preclinical studies showed that SANGUINATE™ was safe in a number of different animal models and toxicology studies. In this Phase I trial, Prolong will test whether it is also safe and tolerable in sickle cell patients. The study will be conducted in 15 adult (>18 years) patients.
The research proposed is a pilot study of pediatric and adolescent/young adult patients who have received the curative intervention (MSD-SCT), disease-modifying interventions (HU or CT) or SCC (control), with respect to three clinically important outcomes: quality-of-life (QOL), neurocognitive function, and reproductive potential. Comparable cohorts will be identified for each of the groups, drawing from patients treated by the SCD program of Children's Healthcare of Atlanta (CHOA). QOL measures and neuropsychiatric testing and will be administered. Reproductive endocrine function markers (laboratory studies and pubertal staging), will be collected and analyzed. A tracking system of such patients will also be developed, gathering available retrospective data and setting up a mechanism for collection of new data.
Sickle Cell Anemia is caused by an inherited hemoglobin disorder. Healthy red blood cells are discoid and can deform and move through small blood vessels to carry oxygen to all parts of the body. In sickle cell disease, as red blood cells circulate and oxygen is released in the circulatory system, the deoxygenated abnormal hemoglobin S can begin to polymerize. When this occurs, the red blood cells can become sticky and elongated. These sickled red blood cells are less flexible and will obstruct small blood vessels and block normal red blood cells from traveling through the circulatory system, which limits oxygen delivery to tissues and organs. This is known as a "sickle crisis". Patients suffering from a sickle crisis experience severe pain and are at risk of stroke, heart attack or even death. By lowering the level of oxygen pressure at which sickling occurs and opening the vasculature and rapidly delivering oxygen directly to ischemic tissues, the addition of MP4CO to existing treatment protocols may alleviate pain associated with a sickle cell crisis, abort a crisis and/or potentially reduce the duration of a crisis. This could mean less time in the hospital and an improved quality of life for patients with sickle cell anemia.
Vitamin D deficiency (VDD) is very common among African American adolescents and adults in the US, ten times higher than is seen in Caucasians. VDD is also quite common in sickle cell disease (SCD). Both VDD and SCD can cause chronic pain, compression fractures, and muscle weakness. The investigators believe VDD may contribute to poor musculoskeletal health and chronic pain seen in pediatric SCD. In this study, the investigators aim to show that children and adolescents with SCD and chronic pain have lower levels of vitamin D compared to those without chronic pain. The investigators also aim to determine the clinical characteristics in SCD patients related to their vitamin D status. About 60 subjects (7 to 21 years old) will be enrolled on this study, 30 with chronic pain and 30 without chronic pain. The investigators will assess baseline characteristics including vitamin D levels, bone turnover rates (measured by C telopeptide blood levels [CTx]), markers of inflammation and oxidative stress levels in blood, baseline hemoglobin and other laboratory parameters, presence of abnormal bones on chest x-ray, pulmonary function, opioid analgesic use, overall muscle strength, quality of life and depression. To evaluate the impact of vitamin D replacement on these baseline characteristics, the investigators will randomize subjects to receive either placebo or high dose vitamin D for 6 weeks after which time the investigators will evaluate overall vitamin D status, muscle and bone health, depression, quality of life, pain status and use of opioid pain medications, inflammation and oxidative status comparing before and after treatment with high dose vitamin D. The investigators will give-at no cost to subjects-a daily supplement that will provide the recommended daily allowance of calcium and vitamin D that contains 500mg Calcium and 200IU vitamin D to subjects throughout the study period. Subjects will be in the study for 7 months and have five to six study visits.
The purpose of this study is to evaluate the safety and tolerability of three dose levels of HQK-1001 administered once daily for 26 weeks in subjects with sickle cell disease.
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.
Background: - Chronic leg ulcers are a complication of many blood disorders such as sickle cell disease, thalassemia, and other red blood cell disorders. In these disorders, red blood cells break down earlier than normal, which researchers suspect may cause or contribute to the development of leg ulcers; however, the exact cause is unknown, and current therapies are not very effective. Researchers are interested in determining if a research cream made with sodium nitrite, a substance that is known to increase blood flow by dilating blood vessels, may speed up the healing of skin ulcers. Objectives: - To evaluate the safety and effectiveness of topical sodium nitrite cream as a treatment for chronic leg ulcers in individuals with sickle cell disease or other red blood cell disorders. Eligibility: - Individuals at least 18 years of age who have sickle cell disease or another red cell disorder and have had a leg ulcer for more than 4 weeks. Design: - Participants will be screened with a physical examination, medical history, blood tests, and an examination of the ulcer, including x-ray of the leg(s) with the ulcer and swabs from the wound. - Participants will be scheduled for a 5-day inpatient stay at the Clinical Center, with the following procedures: - Days 1 and 2: Participants will have blood draws, a wound assessment, ultrasound of the affected leg, imaging studies (magnetic resonance imaging and infrared photography), thermo-patch application to monitor temperature changes, measurements of blood flow in the skin, and questionnaires about pain and quality of life. An optional skin biopsy may also be conducted with samples taken near the skin ulcer - Day 3: Participants will have one ulcer treated with the topical cream. Frequent blood draws will be conducted before application and then regularly for up to 6 hours after application of the cream. Thirty minutes after the research cream is applied, participants will have imaging studies of the treated leg and measurements of pain levels and blood flow. - Day 4: Participants will have a blood draw and temperature recordings taken. - Day 5: Participants will have the research cream applied and the same imaging studies as before, and will be discharged for care at home. - For the following 3 weeks, participants will come to the clinical center twice a week to have the research cream applied to the leg ulcer and tests performed by the study researchers. - For the fourth and final week, participants will return for additional cream treatment sessions, imaging studies, blood draws, and other tests as directed by the study researchers. - Study participation will end in the following week (week 5). Subjects will come for a final visit one month after the end of the study.
Fludarabine is a chemotherapy drug used extensively in bone marrow transplantation. The goal of this study is to determine what causes some children to have different drug concentrations of fludarabine in their bodies and if drug levels are related to whether or not a child experiences severe side-effects during their bone marrow transplant. The hypothesis is that clinical and genetic factors cause changes in fludarabine drug levels in pediatric bone marrow transplant patients and that high levels may cause severe side-effects.
The purpose of this study is to examine how abnormal blood flow in the small vessels (microvessels) of the heart, muscle and kidney in paroxysmal nocturnal hemoglobinuria (PNH) or sickle cell disease leads to poor functioning of the heart and kidney. To test this question, the investigators will perform imaging tests (contrast ultrasound perfusion imaging) to look at the flow and function of these microvessels and compare this information to heart and kidney function. To further look at this question, patients who have PNH will be studied before and after starting a new drug (Soliris) that decreases damage to blood cells. In patients with sickle cell disease, patients will be studied at baseline (not during a pain crisis) and also during a pain crisis if one develops.
Majority of patients who are eligible for allogeneic HSCT for cure of severe sickle cell disease lack a matched family donor. This study aims for cure of sickle cell disease by performing unrelated donor (outside family) allogeneic HSCT. Donors or unrelated cord blood units will be selected from the NMDP database. It is designed to estimate the safety of a novel reduced toxicity, yet an immunosuppressive and myeloablative preparative regimen. This is meant for patients <21 years old who have severe complications from sickle cell and do not have matched sibling donors in the family to undergo stem cell transplant. Patients will undergo transplant using unrelated donor stem cells after receiving the protocol therapy. They will be followed for 1 year to monitor for engraftment of donor cells and complications like graft versus host disease (GVHD), infections and death.