
Search Clinical Trials
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Stargardt-like Macular Dystrophy (STDG3) Secondary to Mutations in ELOVL4
National Eye Institute (NEI)
Stargardt-Like Macular Dystrophy
Background:
STDG3 is an inherited eye disease. Currently there is no treatment for STDG3. Past
studies of STDG3 have largely looked at members of large families at a single time point.
Researchers want to learn more about the disease at an individual level.
Objective:
To understand the natural h1 expand
Background: STDG3 is an inherited eye disease. Currently there is no treatment for STDG3. Past studies of STDG3 have largely looked at members of large families at a single time point. Researchers want to learn more about the disease at an individual level. Objective: To understand the natural history of changes in the retina that occur in people with STDG3. Eligibility: People ages 10 and older with STDG3 due to a variant in the ELOVL4 gene. Design: Participants will have 6 visits. First they will have a screening visit, followed by a baseline visit. Then they will have a visit 6 months later. Then they will have a visit 1, 2, and 3 years after the first visit. Visits will last 4 to 8 hours. Visits will include the following: Medical history and physical exam. Complete eye exam. Participants' eye pressure and ability to see letters on a vision chart will be tested. Their pupils will be dilated with eye drops. Pictures will be taken of the retina and the inside of the eye. Questions about participants' family history, especially the presence of eye disease. Visual field test. Participants will be seated in front of a large dome and asked to press a button when they see a light within the dome. Electroretinogram. Participants will sit in the dark with their eyes patched for 30 minutes. Then they will wear special contact lenses and watch flashing lights. Optical coherence tomography. Cross-sectional pictures will be taken of participants' retinas. Fundus autofluorescence. Blue light will be shone into participants eyes to assess the health of the retina.... Type: Observational Start Date: Apr 2022 |
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Care of the Prostate Cancer Patient and Prospective Procurement of Prostate Cancer Tissue
National Cancer Institute (NCI)
Prostate Cancer
Background:
Prostate cancer is the most common noncutaneous cancer among men in the U.S. Researchers
want to study blood, tissue, and fluid samples of people with prostate cancer. This will
help them understand any changes in cells and genes. These changes might lead to the
development and progres1 expand
Background: Prostate cancer is the most common noncutaneous cancer among men in the U.S. Researchers want to study blood, tissue, and fluid samples of people with prostate cancer. This will help them understand any changes in cells and genes. These changes might lead to the development and progression of prostate cancer. Researchers think the study could lead to new treatments. Objective: To understand the changes in cells and genes that lead to the development and progression of prostate cancer. This could lead to new treatments. Eligibility: Men ages 18 and older who have or are suspected to have prostate cancer Design: Participants will be screened with physical exam and medical history. Participants will send tissue blocks of their tumor, if possible. If not, they will provide unstained slides of tumor tissue. Participants may provide samples of blood, urine, saliva, and prostate secretions. Participants may have imaging tests. They will lie in a machine that takes pictures of their body. These tests include: MRI of the prostate CT of the abdomen and pelvis Chest x-ray Participants may need a biopsy or surgery for treatment of their cancer. If so, researchers will collect tissue. Participants may answer questions about their prostate cancer and quality of life. Participants may have follow-up visits or other treatments. They may have follow-up phone calls every few months. ... Type: Observational Start Date: Dec 2015 |
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Pathogenesis and Genetics of Microphthalmia, Anophthalmia and Uveal Coloboma (MAC)
National Eye Institute (NEI)
Coloboma
Anophthalmia
Microphthalmia
Background:
- Uveal coloboma is a condition where the eye does not form normally. It occurs early in
the fetus s development during pregnancy. It can lead to different kinds of eye problems,
including blindness. Uveal coloboma is part of a spectrum of developmental eye conditions
that include anop1 expand
Background: - Uveal coloboma is a condition where the eye does not form normally. It occurs early in the fetus s development during pregnancy. It can lead to different kinds of eye problems, including blindness. Uveal coloboma is part of a spectrum of developmental eye conditions that include anophthalmia and microphthalmia, typically referred to as "MAC". Several genes have been linked to MAC, but the cause of most causes are hard to find. Researchers want to study the genes of people who have MAC and genes from their close, unaffected relatives (such as parents and siblings). Objectives: - To study the genes associated with MAC. Eligibility: - Individuals at least 1 years of age who either have MAC or are an unaffected relative (such as a parent or sibling). Design: - Participants will have a physical exam and medical history. They will also have a full eye exam. - Participants with MAC may have other exams, such as imaging studies and hearing assessments. - All participants will also provide blood, cheek swab or saliva or DNA samples for genetic testing. Type: Observational Start Date: Jan 2013 |
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Botulinum Toxin for the Treatment of Involuntary Movement Disorders
National Institute of Neurological Disorders and Stroke (NINDS)
Movement Disorders
BTX has been used since the 1980s in support of the research mission of NINDS. Initial
studies were focused on expanding the applicability of BTX treatment to movement
disorders and exploring new indications. We evaluated the efficacy of an alternative
serotype, type F. Under other protocols, we co1 expand
BTX has been used since the 1980s in support of the research mission of NINDS. Initial studies were focused on expanding the applicability of BTX treatment to movement disorders and exploring new indications. We evaluated the efficacy of an alternative serotype, type F. Under other protocols, we continue to study the physiology of movement disorders and BTX response. The application of BTX therapy to movement disorders requires an understanding of BTX preparation and handling. The treatment must be tailored to the disorder under treatment and to its expression in the individual patient. Users must know the specific techniques of injection, including the use of EMG and ultrasound guidance. This protocol allows us to train physicians in all aspects of the use of BTX. It also provides us with a cohort of patients, receiving a standard method of treatment and with a stable response to BTX injection, for participation in other protocols on movement disorders and on the responses to BTX injection. Type: Observational Start Date: Oct 1989 |
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Advanced Functional and Structural MRI Techniques for Neuropharmacological Imaging
National Institute on Drug Abuse (NIDA)
Drug Abuse
Nicotine Dependence
Background:
- Functional and structural magnetic resonance imaging (MRI) techniques have allowed
researchers to map and study how the brain works when at rest and when engaged in
specific tasks. MRI scans have provided more information about how drugs affect the
brain, and about how drug addiction1 expand
Background: - Functional and structural magnetic resonance imaging (MRI) techniques have allowed researchers to map and study how the brain works when at rest and when engaged in specific tasks. MRI scans have provided more information about how drugs affect the brain, and about how drug addiction changes the brain and influences behavior, mood, and thinking processes. To better understand the underlying mechanism of drug addiction and to develop strategies for more effective treatment, researchers are interested in developing new MRI techniques to study the effects of addiction on the brain. Objectives: - To develop new functional and structural MRI techniques, and to evaluate their potential use in brain imaging studies related to addiction. Eligibility: - Individuals between 18 and 80 years of age. - Participants may be smokers or nonsmokers, and may use drugs or not use drugs. Design: - During the initial screening, participants will complete questionnaires about family and personal history, drug use, and other information as required by the researchers. Participants who will be asked to complete tasks during the MRI scan will be shown how to perform these tasks before the scanning session. - Before each study session, participants may be asked to complete some or all of the following: questions about their drug use during the last week, a breathalyzer test, a urine drug-use assessment, a urine pregnancy test, or a measure of carbon monoxide. Participants will also provide blood samples before the start of the scan. - For each scanning session, participants will have an MRI scan that will last approximately 2 hours. - MRI scans may include specific tasks to be performed during the scan, or an experiment that studies the brain's response to carbon dioxide.... Type: Interventional Start Date: Oct 2003 |
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Genetics of Inherited Eye Disease
National Eye Institute (NEI)
Genetic Eye Disease
Background:
Research has identified some of the genes involved in inherited eye diseases. But for
many of these diseases, the genes are not yet known. Researchers want to try to find
these genes. They also hope to learn more about how symptoms differ in people with
similar gene changes.
Objective1 expand
Background: Research has identified some of the genes involved in inherited eye diseases. But for many of these diseases, the genes are not yet known. Researchers want to try to find these genes. They also hope to learn more about how symptoms differ in people with similar gene changes. Objective: To learn more about genes involved in eye diseases. Eligibility: People who have a known or suspected inherited eye disease, and their relatives. Design: - All participants will have a medical history, physical exam, and eye exam. They will have blood taken. - Participants with an eye disease may have eye cell samples taken using a swab or biopsy procedure. - Participants may have a skin biopsy. A 3mm piece of skin will be removed. - Participants may provide samples of tears, urine, saliva, stool, hair, or inner cheek cells. - Participants may have a retina test. They may also have a test that uses light to measure retina thickness. - Participants may have an eye movement test. Electrodes will be placed on the skin next to both eyes. - Participants may have a fluorescein angiography. A dye will be given through an intravenous line in the arm. A camera will take pictures of the dye as it flows through the eyes blood vessels. - Participants may have microperimetry. They will sit at a computer screen and press a button when they see a light. - Participants may have an eye movement test. They will wear contact lenses or goggles and watch a series of spots on a computer screen. - Participants may complete a color vision test. - Participants will provide a specimen for genetic testing. - Participants may have a MRI. - Participants may complete questionnaires. Type: Observational Start Date: Jun 2015 |
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Screening Protocol for Genetic Diseases of Lymphocyte Homeostasis and Programmed Cell Death
National Institute of Allergy and Infectious Diseases (NIAID)
Primary Immune Deficiency
This study will determine the biochemical and genetic causes of inherited immune diseases
affecting lymphocyte homeostasis. Lymphocytes are a type of white blood cell that fights
infections. Normally, the body keeps a precise balance in which lymphocyte growth is
matched by lymphocyte death. People1 expand
This study will determine the biochemical and genetic causes of inherited immune diseases affecting lymphocyte homeostasis. Lymphocytes are a type of white blood cell that fights infections. Normally, the body keeps a precise balance in which lymphocyte growth is matched by lymphocyte death. People with constantly enlarged lymph nodes or spleen, along with autoimmune disease, immunodeficiency, lymphoma, or other immune problems affecting lymphocytes may have an abnormality of the immune system in the cell growth and cell death processes that regulate lymphocyte homeostasis. Patients who have, or are suspected of having, an inherited lymphocyte homeostasis or programmed cell death susceptibility syndrome may be eligible for this study. Relatives of patients are also included. Participants' (patients and relatives) medical records are reviewed and blood samples are drawn for studies to identify genes involved in immune disorders. Tissues that have been removed from patients for medical reasons, such as biopsied tissues, may be examined for tissue and DNA studies. Relatives are studied to determine if some of them may have a very mild form of lymphocyte homeostasis disorder. Patients who have an immune problem that the researchers wish to study further will be invited to donate additional blood samples at irregular intervals (at least once a year) and to provide an update of their medical records at the same time. Type: Observational Start Date: Feb 2007 |
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FGFR4 Chimeric Antigen Receptor (CAR) T Cells in Children and Young Adults With Recurrent or Refrac1
National Cancer Institute (NCI)
Rhabdomyosarcoma
Background:
Rhabdomyosarcoma (RMS) is a cancer of soft tissues. It is the most common soft tissue
sarcoma seen in children. RMS cancer cells have a protein called FGFR4 on their surface.
Researchers want to try a new kind of treatment for RMS: They will collect a person s own
T cells, a type of im1 expand
Background: Rhabdomyosarcoma (RMS) is a cancer of soft tissues. It is the most common soft tissue sarcoma seen in children. RMS cancer cells have a protein called FGFR4 on their surface. Researchers want to try a new kind of treatment for RMS: They will collect a person s own T cells, a type of immune cell; then they will change the T cells so they are better able to target the FGFR4 protein and attack RMS tumor cells. The modified T cells are chimeric antigen receptor (CAR) T cells. The treatment in this study is called FGFR4-CAR T cells. Objective: To test FGFR4-CAR T cells in children and young adults with RMS. Eligibility: People aged 3 to 39 years with RMS. The RMS must have failed to respond or returned after at least 2 rounds of standard treatment. Design: Participants will be screened. They will have physical exam, imaging scans, blood tests, and tests of their heart. They may have a tissue sample taken from their tumor. They will undergo apheresis: Blood will be taken from the body through a catheter. The blood will pass through a machine that separates out the T cells, and the remaining blood will be returned to the body. The collected T cells will be taken to a lab to create FGFR4-CAR T cells. Once the FGFR4-CART cells are ready, participants can receive these T cells. For 4 days they will receive drugs to prepare their body for the FGFR4-CAR T cells. After this, the modified T cells will be infused into a vein. Participants will be then monitored closely to watch for any side effects from the CART cells and be followed to see what effect the CART cells have on their tumors. They will have follow-up visits for up to 5 years. Long-term follow-up will be another 10 years. Type: Interventional Start Date: Sep 2025 |
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Natural History of Acquired and Inherited Bone Marrow Failure Syndromes
National Heart, Lung, and Blood Institute (NHLBI)
Severe Aplastic Anemia
Telomere Biology Disorders
Inherited Bone Marrow Failure Syndromes
Background:
Bone marrow failure diseases are rare. Much is known about the diseases at the time of
diagnosis, but long-term data about the effects of the diseases and treatments are
lacking. Researchers want to better understand long-term outcomes in people with these
diseases.
Objective:
To fol1 expand
Background: Bone marrow failure diseases are rare. Much is known about the diseases at the time of diagnosis, but long-term data about the effects of the diseases and treatments are lacking. Researchers want to better understand long-term outcomes in people with these diseases. Objective: To follow people diagnosed with acquired or inherited bone marrow failure disease and study the long-term effects of the disease and its treatments on organ function. Eligibility: People aged 2 years and older who have been diagnosed with acquired or inherited bone marrow failure or Telomere Biology Disorder. First degree family members may also be able to take part in the study. Design: Participants will be screened with a medical history, physical exam, and blood tests. They may have a bone marrow biopsy and aspiration. For this, a large needle will be inserted in the hip through a small cut. Marrow will be drawn from the bone. A small piece of bone may be removed. Participants may also be screened with some of the following: Cheek swab or hair follicle sample Skin biopsy Urine or saliva sample Evaluation by disease specialists (e.g., lung, liver, heart) Imaging scan of the chest Liver ultrasounds Six-Minute Walk Test Lung function test Participants will be put into groups based on their disease. They will have visits every 1 to 3 years. At visits, they may repeat some screening tests. They may fill out yearly surveys about their medicines, transfusions, pregnancy, bleeding, and so on. They may have other specialized procedures, such as imaging scans and ultrasounds. Participation will last for up to 20 years. Type: Observational Start Date: Oct 2021 |
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Rapid Analysis and Response Evaluation of Combination Anti-Neoplastic Agents in Rare Tumors (RARE C1
National Cancer Institute (NCI)
Neoplasms
Background:
People with rare cancers often have limited treatment options. The biology of rare
cancers is not well understood. Researchers want to find better treatments for these
cancers. They want to test 2 drugs that, taken separately, have helped people with
non-rare cancers. They want to see1 expand
Background: People with rare cancers often have limited treatment options. The biology of rare cancers is not well understood. Researchers want to find better treatments for these cancers. They want to test 2 drugs that, taken separately, have helped people with non-rare cancers. They want to see if these drugs together can make rare cancers shrink or stop growing. Objective: To learn if nilotinib and paclitaxel will benefit people with rare cancers. Eligibility: People age 18 and older who have a rare, advanced cancer that has progressed after receiving standard treatment, or for which no effective therapy exists. Design: Participants will be screened with medical history and physical exam. They will have blood and urine tests. They will have a pregnancy test if needed. They will have an electrocardiogram to check their heart. They will have imaging scans to measure their tumors. Participants will repeat the screening tests during the study. Participants will receive nilotinib and paclitaxel. The drugs are given in 28-day cycles. Nilotinib is a capsule taken by mouth twice a day. Paclitaxel will be given intravenously by peripheral line or central line once a week for the first 3 weeks of each cycle. Participants will keep a medicine diary. They will track when they take the study drugs and any side effects they may have. Participants may have optional tumor biopsies. Participants can stay on the study until their disease gets worse or they have intolerable side effects. Participants will have a follow-up phone call about 30 days after taking the last dose of study drugs. Type: Interventional Start Date: Aug 2020 |
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Prospective Evaluation of Next Generation CT Reconstruction (NextGenIR)
National Heart, Lung, and Blood Institute (NHLBI)
Healthy Subjects
Background:
- Computed Tomography (CT) is a scan that makes detailed pictures of the body. It uses
radiation to do that. In 2011, about 85.3 million CT scans were done in the United
States. But there is growing concern about the health effects of radiation. There are new
and different ways to make1 expand
Background: - Computed Tomography (CT) is a scan that makes detailed pictures of the body. It uses radiation to do that. In 2011, about 85.3 million CT scans were done in the United States. But there is growing concern about the health effects of radiation. There are new and different ways to make CT pictures that use less radiation. Researchers want to learn whether these new methods create images that are similar to images from a traditional CT. Objective: - To learn if new CT imaging methods with less radiation make images that are similar to traditional ways. Eligibility: - Adults 18 years of age and older who are scheduled for a CT of the chest, abdomen and pelvis with contrast. Design: - Researchers will review participants medical records to see if they can be in this study. - Participants may have blood drawn from an arm vein by a needle stick. The blood will be used to make sure they can be in this study and that it is safe for them to have contrast. - During the participants CT scan appointment, one extra scan will be done using low radiation methods. - During a CT scan, the participant lies on a table. A large x-ray machine takes pictures of the body. Type: Observational Start Date: Sep 2014 |
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Viral Infections in Healthy and Immunocompromised Hosts
National Institute of Allergy and Infectious Diseases (NIAID)
Anogenital Herpes
COVID-19
Herpes Labialis
Background:
- Viral infections are an important cause of illness and death in hospitalized patients
as well as outpatients. New strains of viruses may appear and infect both healthy people
and those with weak immune systems. A better understanding of these new virus strains
(such as SARS-CoV-2, th1 expand
Background: - Viral infections are an important cause of illness and death in hospitalized patients as well as outpatients. New strains of viruses may appear and infect both healthy people and those with weak immune systems. A better understanding of these new virus strains (such as SARS-CoV-2, the virus that causes COVID-19) may help to control and prevent these infections. In particular, some viral infections that are less problematic in healthy persons can be life threatening in persons with weak immune systems, and viruses may be able to evolve more rapidly in persons with weak immune systems and therefore develop resistance to existing treatments. Researchers are interested in collecting samples and information from otherwise healthy persons or persons with weak immune systems to study the effects of viruses and their development. Objectives: - To collect samples and data from individuals who have been exposed to or have contracted viral infections. Eligibility: - Individuals of all ages who have been diagnosed with a viral infection are suspected to have a viral infection, or have been in close contact with someone with a suspected or actual viral infection that is of interest to investigators in the Laboratory of Infectious Diseases. - Healthy persons and persons with weak immune systems (immunocompromised individuals) are eligible to participate. Design: - Participants will be pre-screened to determine if they meet the eligibility criteria for the trial. - If eligible, evaluation may include a medical chart review, a history and physical examination, review of clinical reports from outside hospitals and laboratories, and review of tissue biopsies. - Study procedures may include collection of blood, urine, saliva, nasal fluid sampling, throat swabs, stool, and genital swabs. For participants who have specimens collected as part of their medical care (e.g. wound swabs, spinal tap, bronchoscopy, liver biopsy etc.), researchers may use leftover specimens from the clinical laboratory for testing. - Specimens may be collected up to 4 times per week during the first 2 weeks after enrollment, and then as many as 2 times per week for up to 2 years. Some participants may be asked to continue providing specimens if there is concern for relapse or recurrence of the infection. - Treatment is not offered under this study. Type: Observational Start Date: Mar 2011 |
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Hormone Replacement Therapy in Adolescents With Premature Ovarian Insufficiency
Eunice Kennedy Shriver National Institute of Child Health and Human Development (NICHD)
Premature Ovarian Insufficiency
Background:
Premature ovarian insufficiency (POI) is a condition in which women under the age of 40
years have absent or irregular menstrual cycles. POI can cause infertility, signs of
menopause, osteoporosis, and other symptoms. Hormone replacement therapy (HRT) is a
treatment that gives women ex1 expand
Background: Premature ovarian insufficiency (POI) is a condition in which women under the age of 40 years have absent or irregular menstrual cycles. POI can cause infertility, signs of menopause, osteoporosis, and other symptoms. Hormone replacement therapy (HRT) is a treatment that gives women extra hormones, such as estrogen and progesterone. HRT works well in adult women. Researchers want to find the most effective doses and regimens for adolescents. Objective: To monitor the effects of HRT on adolescents with POI. Eligibility: Female adolescents aged 11 to 19 years diagnosed with POI. Healthy volunteers are also needed. Design: All participants will have clinic visits every 6 months for 2 years. Each visit may last 2 days. Each visit may include: Blood and urine tests. A test of their heart function. A test to measure the stiffness of their blood vessels. Participants will lie flat with a blood pressure cuff on a leg and a meter on the neck while the cuff inflates. A test of their grip strength. Participants will squeeze a handheld device as hard as they can. Two scans to measure bone density. For one, participants will lie on a table while a scanner passes along their body. For the other, participants will sit in a chair and insert their forearm, then their lower leg, into a scanner. A test to measure skin pigmentation. Participants' skin will be touched lightly with a device. An optional visual exam of the vagina. Some vaginal fluid may also be collected with a cotton swab/cytobrush. Participants with POI will receive HRT. They will be given estrogen patches and progesterone pills. Type: Interventional Start Date: Jul 2025 |
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Defining Neurobiological Links Between Substance Use and Mental Illness
National Institute on Drug Abuse (NIDA)
Major Depressive Disorder
Substance Use Disorder
Normal Physiology
Background:
Nicotine dependence leads to about 480,000 deaths every year in the United States. People
with major depressive disorder (MDD) are twice as likely to use nicotine compared to the
general population. They have greater withdrawal symptoms and are more likely to relapse
after quitting com1 expand
Background: Nicotine dependence leads to about 480,000 deaths every year in the United States. People with major depressive disorder (MDD) are twice as likely to use nicotine compared to the general population. They have greater withdrawal symptoms and are more likely to relapse after quitting compared with smokers without MDD. More research is needed on how nicotine affects brain function in those with MDD. Objective: To understand how nicotine affects symptoms of depression and related brain function. Eligibility: People aged 18 to 60 years, at the time of consent, with and without MDD who do not smoke cigarettes or use other nicotine products. Design: Participants will have 2 or 3 study visits over 1 year. Participants will have 2 MRI scans no less than 4 days apart. Each scan visit will last 5 to 7 hours. At each scan, they will have urine and breath tests to screen for recent use of alcohol, nicotine, and illegal drugs. Before each scan, they will take 1 of 2 medications: nicotine or placebo. Participants will receive each medication once. They will not know which medication they are receiving at each scan. For each MRI scan, they will lie on a table that slides into a cylinder. Sometimes they will be asked to lie still. Sometimes they will complete tasks on a computer. Tasks may include identifying colors or playing games to win money. Each scan will take about 2 hours. Participants will answer questions about their thoughts, feelings, and behaviors before and after each scan. They will have a blood test after each scan. Type: Interventional Start Date: Feb 2023 |
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Longitudinal Studies of Patient With FPDMM
National Human Genome Research Institute (NHGRI)
Inherited Hematological Diseases
Rare Diseases
FPDMM
Background:
Genes tell the body and its cells how to work. Familial platelet disease (FPD) or FPD
with associated malignancies (FPDMM) is caused by a variant in the gene RUNX1. People
with this disease may have problems with their blood and bleed for a long time when they
are injured. Researchers1 expand
Background: Genes tell the body and its cells how to work. Familial platelet disease (FPD) or FPD with associated malignancies (FPDMM) is caused by a variant in the gene RUNX1. People with this disease may have problems with their blood and bleed for a long time when they are injured. Researchers want to learn more about RUNX1 variants and FPD. Objective: To learn more about FPD in people with RUNX1 variants to lead to better diagnosis, monitoring, and treatment. Eligibility: People any age with a suspected or confirmed RUNX1 variant People who have a family member with the variant Design: All participants will be screened with a phone call and a blood, saliva, or cheek cell sample. Participants with a suspected or confirmed variant will have 1 visit. It will last about 2 days. They will then have visits at least once a year. Visits will include: - Medical history and physical exam - Blood tests or saliva sample - Possible skin biopsy: A small piece of the participant s skin will be removed. - Bone marrow aspiration or biopsy: The participant s bone marrow will be removed by needle from a large bone such as the hip bone. - Possible apheresis: Blood will be removed from the body and certain blood cells will be taken out. The rest of the blood is returned to the body. Between visits, participants with a suspected or confirmed variant will keep a diary of disease symptoms and signs. Samples from all participants may be used for genetic testing Type: Observational Start Date: Mar 2019 |
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Cybersickness Prevention and Mitigation in Virtual Reality for Healthy Volunteers
National Human Genome Research Institute (NHGRI)
Healthy Volunteers
Virtual Reality
Background:
People use virtual reality (VR) technology to play games, socialize, work, or receive
medical care. Some people have "cybersickness" after using VR. Cybersickness is similar
to motion sickness. Symptoms include eye strain, nausea, dizziness, or headache. The
symptoms are usually mild a1 expand
Background: People use virtual reality (VR) technology to play games, socialize, work, or receive medical care. Some people have "cybersickness" after using VR. Cybersickness is similar to motion sickness. Symptoms include eye strain, nausea, dizziness, or headache. The symptoms are usually mild and go away after the person stops using VR. New software called Motion Reset is being designed to reduce symptoms of cybersickness during VR use. Objective: To see if Motion Reset software can reduce cybersickness in people using VR. Eligibility: Healthy adults aged 18 to 60 years. Design: Participants will have 1 clinic visit that will last about 1 hour. They will answer questions about how they are feeling. They will learn how to use the VR headset and the handheld game controllers. The study will be broken into 2 parts. For the first part, participants will be assigned to 1 of 3 groups: Group 1 will participate in a VR experience designed to prevent cybersickness. They will view screens and move around while they press buttons on a controller. Group 2 will participate in a VR experience that is not designed to prevent cybersickness. They will view screens and move around while they press buttons on a controller. Group 3 will have no VR experience. Participants will complete 2 questionnaires about their experiences in the first part of the study. For the second part, all participants will spend up to 20 minutes playing a commercial VR game called Jurassic World Aftermath. Every few minutes, they will be asked if they are experiencing discomfort. After playing the game, participants will complete 12 questionnaires about their experience.... Type: Interventional Start Date: Sep 2025 |
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Neural and Psychological Mechanisms of Pain Perception
National Center for Complementary and Integrative Health (NCCIH)
Pain
Normal Physiology
Healthy Volunteers
Background:
- Painful stimuli cause changes in a network of brain regions called the "Pain Matrix."
But most of these regions respond to many other stimuli, not just pain. Researchers want
to understand how different factors influence pain. They want to test what happens when
people expect differe1 expand
Background: - Painful stimuli cause changes in a network of brain regions called the "Pain Matrix." But most of these regions respond to many other stimuli, not just pain. Researchers want to understand how different factors influence pain. They want to test what happens when people expect different levels of pain and receive treatments that can modify pain. They want to see if these factors influence decisions about pain and how the body responds to it. They also want to compare pain with responses like taste and vision. Objectives: - To better understand how pain and emotions are processed and influenced by psychological factors. Eligibility: - Healthy volunteers ages 18-50. Design: - This study requires 1 to 2 clinic visits that last 1 to 3 hours. - Participants will be screened with medical history and physical exam. - Some participants will have one or more magnetic resonance imaging (MRI) scans of their brain. For MRI, participants will lie on a table that slides in and out of a cylinder. The scanner makes loud knocking noises. They will get earplugs. - Participants' heart activity will be recorded with electrocardiogram. Their pulse, sweating, and breathing will be monitored. - Some participants will take a taste test. Others may perform simple tasks. Others may receive pain in their arm, leg, or hand. The pain will come from heat or electric shocks. Others may judge pain using a topical pain-relieving cream. Some of these tests may be given during MRI. - Participants will fill out questionnaires. - The study will last 3 years. Type: Interventional Start Date: Jun 2015 |
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The NIH MINI Study: Metabolism, Infection, and Immunity in Inborn Errors of Metabolism
National Human Genome Research Institute (NHGRI)
Oxidative Phosphorylation Deficiencies
Electron Transport Chain Disorders, Mitochondrial
Mitochondrial Disorders
Leigh Disease
The Metabolism, Infection and Immunity (MINI) Study is a longitudinal natural history
study at the National Institutes of Health (NIH) that aims to define the relationship
between infection, immunity and clinical decline in individuals with mitochondrial
disease. Mitochondrial diseases are a group1 expand
The Metabolism, Infection and Immunity (MINI) Study is a longitudinal natural history study at the National Institutes of Health (NIH) that aims to define the relationship between infection, immunity and clinical decline in individuals with mitochondrial disease. Mitochondrial diseases are a group of disorders caused by problems with the cell s ability to produce energy. Infection in individuals with mitochondrial disease can lead to worsening clinical symptoms, particularly neurologic symptoms. Goals: The main goal of our study is to understand the relationship between infection and clinical decline in patients with mitochondrial disease. Mitochondrial diseases can affect many different parts of the body, including the immune system and its ability to respond to infection. Therefore, we perform a comprehensive evaluation of participants including a detailed immunologic assessment. We are not testing any new medicine or procedure to treat or cure IEM or mitochondrial diseases. However, by understanding the relationship between infection and mitochondrial disease, we hope to develop treatments in the future. At the NIH, we are interested in research. Although we do provide advice and care for people enrolled in our study, we are not able to take over the long-term care of participants. To enroll in our study, you (your child) must already have a confirmed diagnosis of a mitochondrial disease. We are not able to provide a "first time" diagnosis or regular metabolic care. What is involved? Once you contact our team members, you will be asked to provide medical records to determine eligibility. Our team will review the records and notify you if you (your child is) eligible to join the study. -Onsite participation: You (your child) will be invited to visit the National Institutes of Health in Bethesda, Maryland. This first visit will typically last 3-5 days. Depending on the level of participation, additional visits may be requested. Our team members will work with you and your child to coordinate the supports needed during your stay at NIH. Study participants may be seen in the clinic, day hospital or inpatient setting. When you (your child) arrive at the NIH we will have an informed consent discussion to confirm willingness to participate, answer questions and review the risks and benefits of the study. You (your child) will meet with a physician who will ask about medical and family history and do a physical exam (like in any doctor's office). We will ask all study participants to allow us to collect urine, draw blood, swab your (your child s) nose, and perform a detailed assessment. We may suggest additional evaluations or specialty consults for some participants based on clinical manifestations, age and level of independence. We will explain these studies to you (your child). They may include items such as- imaging studies, DEXA or MRI scan, energy expenditure or metabolic testing, developmental neuropsychological logical testing, physiatry, ophthalmology, or other consults. In some cases, we may request a skin biopsy (if one has not been done). You will receive the results of your (your child's) clinical testing and notes from any clinical consultations. -Remote participation: If you (your child) are unable to travel, you (your child) may be enrolled remotely for records review, questionnaires, and telethealth exams. Blood or other samples collection may be requested in coordination with local providers or lab testing companies... Type: Observational Start Date: Dec 2012 |
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Natural History Study of Monoclonal B Cell Lymphocytosis (MBL), Chronic Lymphocytic Leukemia/Small1
National Heart, Lung, and Blood Institute (NHLBI)
Waldenstrom Macroglobulinemia
Lymphoplasmacytic Lymphoma
Monoclonal B-Cell Lymphocytosis
Small Lymphocytic Lymphoma
CLL (Chronic Lymphocytic Leukemia)
Background
The development of new technologies now allow scientists to investigate the molecular
basis and clinical manifestations of monoclonal B cell lymphocytosis (MBL), chronic
lymphocytic leukemia(CLL)/small lymphocytic lymphoma (SLL), lymphoplasmacytic lymphoma
(LPL)/Waldenstrom macroglobuli1 expand
Background The development of new technologies now allow scientists to investigate the molecular basis and clinical manifestations of monoclonal B cell lymphocytosis (MBL), chronic lymphocytic leukemia(CLL)/small lymphocytic lymphoma (SLL), lymphoplasmacytic lymphoma (LPL)/Waldenstrom macroglobulinemia (WM), and splenic marginal zone lymphoma (SMZL). Applying these methods in a natural history study can help identify processes involved in disease progression, and possibly lead to the discovery or validation of treatment targets. Objectives Study the history of MBL/CLL/SLL/LPL/WM/SMZL in patients prior to and after treatment. Characterize clinical, biologic and molecular events of disease stability and progression of patients enrolled on this protocol. Eligibility: - Diagnosis of CLL/SLL and on treatment/previously treated/nearing treatment - Diagnosis of LPL/WM - As of February 5, 2025, patients with MBL and SMZL will no longer be enrolled. - Age greater than or equal to 18 years. - ECOG performance status of 0-2. Design Patients are typically followed every 6 to 24 months in the clinic and have blood drawn. Patients may be asked to undergo additional testing, including bone marrow biopsy and aspiration, lymph node biopsy, positron emission tomography, and CT and MRI scans. Some of these tests (e.g., blood draw) may be required to monitor CLL/SLL and LPL/WM. Other tests (e.g., lymph node biopsy) may not be clinically indicated, but patients may be asked to undergo these procedures for research purposes. No treatment will be administered on this study. If a patients requires treatment for their cancer, available NIH clinical trials and alternative treatment options will be discussed with the patient. Type: Observational Start Date: May 2008 |
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Use of Cysteamine in the Treatment of Cystinosis
National Human Genome Research Institute (NHGRI)
Cystinosis
Cystinosis is an inherited disease resulting in poor growth and kidney failure. There is
no known cure for cystinosis, although kidney transplantation may help the renal failure
and prolong survival. Both the kidney damage and growth failure are thought to be due to
the accumulation of the amino ac1 expand
Cystinosis is an inherited disease resulting in poor growth and kidney failure. There is no known cure for cystinosis, although kidney transplantation may help the renal failure and prolong survival. Both the kidney damage and growth failure are thought to be due to the accumulation of the amino acid cystine within the cells of the body. The cystine storage later damages other organs besides the kidneys, including the thyroid gland, pancreas, eyes, and muscle. The drug cysteamine (Cystagon; ProCysBi) is an oral medication given to patients with cystinosis prior to kidney transplantation. The drug works by reducing the level of cystine in the white blood cells and muscle tissue. The drug may also decrease levels of cystine in the kidneys and other tissues. This study has several goals: 1. Long-term surveillance of cysteamine treated patients. 2. Detection of new non-kidney complications of cystinosis. 3. Maintenance of a patient population for genetic testing (mutational analysis) of the cystinosis gene.<TAB> Type: Observational Start Date: Jan 1979 |
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Study of Inherited Neurological Disorders
National Institute of Neurological Disorders and Stroke (NINDS)
Motor Neuron Disease
Muscular Disease
Muscular Dystrophy
Peripheral Nervous System Disease
This study is designed to learn more about the natural history of inherited neurological
disorders and the role of heredity in their development. It will examine the genetics,
symptoms, disease progression, treatment, and psychological and behavioral impact of
diseases in the following categories:1 expand
This study is designed to learn more about the natural history of inherited neurological disorders and the role of heredity in their development. It will examine the genetics, symptoms, disease progression, treatment, and psychological and behavioral impact of diseases in the following categories: hereditary peripheral neuropathies; hereditary myopathies; muscular dystrophies; hereditary motor neuron disorders; mitochondrial myopathies; hereditary neurocognitive disorders; inherited neurological disorders without known diagnosis; and others. Many of these diseases, which affect the brain, spinal cord, muscles, and nerves, are rare and poorly understood. Children and adults of all ages with various inherited neurological disorders may be eligible for this study. Participants will undergo a detailed medical and family history, and a family tree will be drawn. They will also have a physical and neurological examination that may include blood test and urine tests, an EEG (brain wave recordings), psychological tests, and speech and language and rehabilitation evaluations. A blood sample or skin biopsy may be taken for genetic testing. Depending on the individual patient's symptoms, imaging tests such as X-rays, CT or MRI scans and muscle and nerve testing may also be done. Information from this study may provide a better understanding of the genetic underpinnings of these disorders, contributing to improved diagnosis, treatment, and genetic counseling, and perhaps leading to additional studies in these areas. Type: Observational Start Date: Feb 2000 |
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Evaluation of Patients With Liver Disease
National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK)
Hepatitis D
Hepatitis C
Hepatitis B
Liver Disease
The proposed study aims to evaluate, investigate, and follow-up patients suffering from
acute and chronic liver disease. The study will focus on understanding diseases affecting
the liver.
Patients participating in the study will first undergo a routine check-up as an
outpatient. They will be aske1 expand
The proposed study aims to evaluate, investigate, and follow-up patients suffering from acute and chronic liver disease. The study will focus on understanding diseases affecting the liver. Patients participating in the study will first undergo a routine check-up as an outpatient. They will be asked to provide blood and urine samples for laboratory testing and will undergo an ultrasound of the liver. Ultrasound examinations use sound waves to determine the size and texture of the liver. After the initial visit subjects will be requested to follow-up once a year at the outpatient department for a similar check-up. Additional tests may be requested throughout the study to provide information for other research studies and individual consent will be requested. These tests may include liver biopsies, skin biopsies, and / or specialized blood, plasma, and lymphocyte examinations. Subjects that qualify for medications presently being studied may be offered the opportunity to benefit from experimental therapy. Type: Observational Start Date: May 1992 |
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Fungal Infection Susceptibility
National Institute of Allergy and Infectious Diseases (NIAID)
Cryptococcal Infection
Cryptococcal Pneumonia
Pulmonary Cryptococcosis
Cryptococcal Meningitis
Cryptococcosis
The protocol will be carried out in accordance with International Council for
Harmonisation of Technical Requirements for Pharmaceuticals for Human Use (ICH) Good
Clinical Practice (GCP) and the following United States Code of Federal Regulations (CFR)
applicable to clinical studies: 45 CFR Part 461 expand
The protocol will be carried out in accordance with International Council for Harmonisation of Technical Requirements for Pharmaceuticals for Human Use (ICH) Good Clinical Practice (GCP) and the following United States Code of Federal Regulations (CFR) applicable to clinical studies: 45 CFR Part 46, 21 CFR Part 50, 21 CFR Part 56, 21 CFR Part 312, and/or 21 CFR Part 812. NIH-funded investigators and study site staff who are responsible for the conduct, management, or oversight of NIH-funded studies have completed Human Subjects Protection and ICH GCP Training. The protocol, informed consent form(s), recruitment materials, and all participant materials will be submitted to the Institutional Review Board (IRB) for review and approval. Approval of both the protocol and the consent form must be obtained before any participant is enrolled. Any amendment to the protocol will require review and approval by the IRB before the changes are implemented to the study. In addition, all changes to the consent form will be approved by the IRB; an IRB determination will be made regarding whether a new consent needs to be obtained from participants who provided consent, using a previously approved consent form. Type: Observational Start Date: Apr 1993 |
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Neuropharmacologic Imaging and Biomarker Assessments of Response to Acute and Repeated-Dosed Ketami1
National Institute of Mental Health (NIMH)
Healthy Volunteer
Major Depressive Disorder
Depression
Background:
Most medications that treat depression take weeks or months to work. Researchers want to
develop fast-acting treatments. One dose of ketamine has a rapid antidepressant effect.
For most people, this lasts a week or less. Repeated doses of ketamine may help maintain
this effect.
Object1 expand
Background: Most medications that treat depression take weeks or months to work. Researchers want to develop fast-acting treatments. One dose of ketamine has a rapid antidepressant effect. For most people, this lasts a week or less. Repeated doses of ketamine may help maintain this effect. Objective: Main Study: To study the effects of ketamine in treating depression. Ketamine Metabolites Substudy: To study how ketamine effects brain chemistry. To study how ketamine effects the brain. This is done by looking at metabolites, which are created when a drug is broken down. Eligibility: Main Study: People ages 18-65 with major depressive disorder and healthy volunteers Ketamine Metabolites Substudy: Healthy volunteers ages 18-65 Design: Main Study: Participants will be screened in another study, with: - Medical and psychiatric history - Psychiatric and physical exam - Blood, urine, and heart tests Participants will be inpatients at NIH for 4 phases totaling 14-20 weeks. Phase I (2-7 weeks): - Gradually stop current medications - MRI: Participants lie and perform tasks in a machine that takes pictures of the body. - Mood and thinking tests - Blood and urine tests - Sleep test: Monitors on the skin record brain waves, breathing, heart rate, and movement during sleep. - Transcranial magnetic stimulation: A coil on the scalp gives an electrical current that affects brain activity. - Stress tests: Electrodes on the skin measure reactions to loud noises or electric shocks. Phase I tests are repeated in Phases II and III and in the final visit. Phase II (4-5 weeks): - 4 weekly IV infusions of ketamine or a placebo during an MRI or MEG. For the MEG, a cone over the head records brain activity. Phase III (optional): - 8 infusions of ketamine over 4 weeks Phase IV (optional): - Symptoms monitoring for 4 weeks - Participants will have a final visit. They will be offered standard treatment at NIH for up to 2 months. Ketamine Metabolites Substudy: Participants will be screened in another study, with: - Medical and psychiatric history - Psychiatric and physical exam - Blood, urine, and heart tests Participants will be inpatients at NIH for 4 days. Study Procedures: Mood and thinking tests Blood and urine tests 1 infusion of ketamine Spinal tap and spinal catheter: Used to get samples of cerebrospinal fluid (CSF). This is a fluid that moves around and within the brain and spinal cord. Studying CSF will help us learn how ketamine effects brain chemistry ... Type: Interventional Start Date: May 2017 |
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Allogeneic Hematopoietic Stem Cell Transplant for GATA2 Mutations
National Cancer Institute (NCI)
GATA2
Immunodeficiency
MDS
Background:
- GATA2 deficiency is a disease caused by mutations in the GATA2 gene. It can cause
different types of leukemia and other diseases. Researchers want to see if a stem cell
transplant can be used to treat this condition. A stem cell transplant will give stem
cells from a matching donor (1 expand
Background: - GATA2 deficiency is a disease caused by mutations in the GATA2 gene. It can cause different types of leukemia and other diseases. Researchers want to see if a stem cell transplant can be used to treat this condition. A stem cell transplant will give stem cells from a matching donor (related or unrelated) to a recipient. It will allow the donor stem cells to produce healthy bone marrow and blood cells that will attack the recipient s cancer cells. Objectives: - To see if stem cell transplants are successful at treating GATA2 mutations and related conditions. Eligibility: - Recipients who are between 6 and 70 years of age and have GATA2 deficiency. Design: - All participants will be screened with a physical exam and medical history. Blood samples will be collected. Recipients will have imaging studies and other tests. - Recipients will have chemotherapy or radiation to prepare for the transplant. On the day of the transplant, they will receive the donated stem cells. - Recipients will stay in the hospital until their condition is stable after transplant. - Frequent blood tests and scans will be required for the first 6 months after the transplant, followed by less frequent visits over time. Type: Interventional Start Date: Jul 2013 |