Around the world, researchers are working extremely hard to develop new treatments and interventions for COVID-19 with new clinical trials opening nearly every day. This directory provides you with information, including enrollment detail, about these trials. In some cases, researchers are able to offer expanded access (sometimes called compassionate use) to an investigational drug when a patient cannot participate in a clinical trial.
The information provided here is drawn from ClinicalTrials.gov. If you do not find a satisfactory expanded access program here, please search in our COVID Company Directory. Some companies consider expanded access requests for single patients, even if they do not show an active expanded access listing in this database. Please contact the company directly to explore the possibility of expanded access.
Emergency INDs
To learn how to apply for expanded access, please visit our Guides designed to walk healthcare providers, patients and/or caregivers through the process of applying for expanded access. Please note that given the situation with COVID-19 and the need to move as fast as possible, many physicians are requesting expanded access for emergency use. In these cases, FDA will authorize treatment by telephone and treatment can start immediately. For more details, consult FDA guidance. Emergency IND is the common route that patients are receiving convalescent plasma.
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Displaying 2530 of 2583Haukeland University Hospital
The ongoing Coronavirus Disease 2019 (COVID-19) pandemic has been intensified by no population-based immunity to the severe acute respiratory disease coronavirus 2 (SARS-CoV2) and initially lack of effective treatments or vaccines available to mitigate the pandemic. Currently, two COVID-19 vaccines are available for vaccination in Europe through conditional marketing authorisation granted by the European Medicines Agency and further vaccine will be licensed. These vaccines have shown good vaccine efficacy in phase 3 vaccine trials. We will recruit subjects who will be prioritised for vaccination with the primary aim of comparing the immune responses after COVID-19 vaccination and natural SARS-CoV-2 infection. In Western Norway we have recruited cohorts of health care workers and patients infected with SARS-CoV-2 and will extend to COVID-19 vaccinees. Demographic, clinical data and repeated blood samples will be collected to evaluate the complications and kinetics, duration and breadth of the immune responses comparing natural infection to vaccination.
Pregistry
The objective of the COVID-19 Vaccines International Pregnancy Exposure Registry (C-VIPER) is to evaluate obstetric, neonatal, and infant outcomes among women vaccinated during pregnancy with a COVID-19 vaccine. Specifically, the C-VIPER will estimate the risk of obstetric outcomes (spontaneous abortion, antenatal bleeding, gestational diabetes, gestational hypertension, intrauterine growth restriction, postpartum hemorrhage, fetal distress, uterine rupture, placenta previa, chorioamnionitis, Caesarean delivery, COVID-19), neonatal outcomes (major congenital malformations, low birth weight, neonatal death, neonatal encephalopathy, neonatal infections, neonatal acute kidney injury, preterm birth, respiratory distress in the newborn, small for gestational age, stillbirth, COVID-19), and infant outcomes (developmental milestones [motor, cognitive, language, social-emotional, and mental health skills], height, weight, failure to thrive, medical conditions during the first 12 months of life, COVID-19) among pregnant women exposed to single (homologous) or mixed (heterologous) COVID-19 vaccine brand series from 30 days prior to the first day of the last menstrual period to end of pregnancy and their offspring relative to a matched reference group who received no COVID-19 vaccines during pregnancy.
National Institute of Arthritis and Musculoskeletal and Skin Diseases (NIAMS)
Background: Viral infections such as COVID-19 may lead to flare-ups in people with systemic autoimmune diseases (SAD). These infections may also change the function of their immune system and/or cause problems with their blood vessels. Researchers want to learn how people with SAD respond to treatments or vaccines for COVID-19. Objective: To understand how COVID-19 affects inflammation, the immune system, and blood vessels in adults and children with autoimmune diseases. Eligibility: People ages 15 and older who have been diagnosed with an autoimmune disease or are a healthy volunteer Design: Participants will have a screening visit. This will include: Medical history and physical exam EKG Chest x-ray COVID-19 test. A swab will be put in the participant s nose or the back of their mouth. Blood and urine tests Participants will be placed into 1 of 4 groups: 1. Those with previously documented COVID-19 infection or COVID vaccination 2. Those with a recently known COVID-19 exposure or vaccination 3. Those with no known COVID-19 exposure or vaccination 4. Those who developed an acute COVID-19 infection Depending on their group, participants will have 1 to 5 more visits. These will occur over 12 to 18 months. Visits may include: FDG PET/CT scan. Participants will lie in a doughnut-shaped machine. The machine creates pictures of the body. For the scan, they will have a radioactive substance injected into their arm through an IV. Kidney function tests Non-invasive vascular studies test. These tests are similar to what it feels like to have blood pressure checked.
Corporacion Parc Tauli
The purpose of this study is to characterize microvascular reactivity on the forearm muscle using non-invasive near-infrared spectroscopy in critically ill COVID-19 patients, and to correlate its alterations with 28-day mortality in ICU COVID-19 patients.
University Hospital Schleswig-Holstein
COVID-19 is a novel disease caused by SARS-CoV-2 that primarily affects the lungs but also various other organs of the body already in early stages of the disease. Due to the multiple organ involvements in the acute phase, it is conceivable that - in a significant proportion of patients - longterm sequels in various organ systems might occur, thereby impacting the individual's health status and quality of life; and posing a relevant burden to the resources of the health care system Assessment of SARS-CoV-2-longterm morbidity and sequels on the population level: In order to identify and treat these sequels in a timely fashion and to get a sense of the prevalence of such SARS-CoV-2 sequels on the population level, it is important to collect follow-up data and to comprehensively re-examine a population-representative sample of SARS-CoV-2 infected individuals. Within the COVIDOM study we will conduct deep clinical and biochemical phenotyping in population-representative samples in Germany. This will allow novel insights into disease pathogenesis and chronicity of virus infections.
Aventyn, Inc.
Researchers are creating real-time epidemiology registry to evaluate the efficacy of COVID-19 subject risk assessment scores based on recording of symptoms, biomarkers, chronic illness and mental health assessments with digital technology using wearables and mobile app tools. Researchers aim to study in Phase 1, epidemiological variations in COVID-19 presentation in both PCR positive and negative subjects in the registry. Assessment of variables, predictive modeling of variables that impact severity of COVID-19 positive and negative subjects and assessment of predictors for post COVID-19 complications. In Phase 2, 2700 subjects with COVID-19 positive test will be studied in the intervention group comparing ECL-19 vs placebo with primary end point of hospital admission assessment. Treatment strategy for PCR positive COVID-19 subjects in the registry who are in Stage I of the disease process with ECL-19 drug compared to placebo in reducing hospital admissions
University Hospitals, Leicester
COVID-19 has become a global problem. There is an urgent need to improve the diagnosis and screening of patients and healthcare workers for COVID-19 in the UK. Mask based sampling is a method of detecting SARS-COV-2 (the virus responsible for COVID-19) in the breath of suspected COVID-19 patients or healthcare workers in the mask that they would wear in hospital. The investigators have previously demonstrated the utility of this method in other respiratory infections, such as tuberculosis. This project aims to investigate the utility of mask-based sampling is a tool for the diagnosis and quantification of COVID-19 in breath and the implications in a healthcare setting using three cohorts of participants. Initially we will compare the amount of COVID-19 detected by mask sampling compared with standard nasopharyngeal swab, which is the current gold standard test, in patients who present to hospital with COVID-19 symptoms. We will address the length of time COVID-19 is breathed out by people affected by the virus and the how infectious the virus is over time in a cohort of symptomatic healthcare workers who are isolating at home. This will allow us to understand how long someone stays infectious for and may have the potential to inform public health measures, for instance when healthcare workers can return to work or duration of isolation. Finally we will investigate asymptomatic carriage of COVID-19 by different healthcare workers in different areas of the hospital during a screening study. This will allow us to understand the extent of infection amongst healthcare workers and allow us to address hospital acquired transmission.
Laval University
The health crisis imposed by COVID-19 is forcing major worldwide social reorganization that will have profound consequences on our society. Currently, one-third of the world's population (~3 billion individuals) is living under some kind of isolation or quarantine measures, causing an unprecedented and rapidly evolving psychosocial crisis. The psychosocial consequences of this health crisis will persist long after restriction measures are lifted and the pandemic is over. This impact will be significant for individuals facing unique contexts or challenges (e.g., older adults, individuals living with a disability, underprivileged families) and will most likely exacerbate existing social and gender inequalities in health and human development. There is an urgent need for information on the evolution of the psychosocial dimensions of health and coping strategies used by our population and our health and social services structures. Thus, this study is designed to accelerate the availability of high-quality, real-time evidence within health and social services structures to address, support and minimize psychosocial consequences of the COVID-19 pandemic. Through constantly evolving research questions responsive to the course of the pandemic evolution, the rapid system transformations and adaptation of services, and knowledge users (KUs) needs, MAVIPAN aims to address, document, monitor, and evaluate the following: 1. Individuals and families' adjustments and mitigation strategies, especially for those considered vulnerable and in high-risk contexts. 2. Healthcare and social services workers and managers' adjustments and mitigation strategies. 3. The organization of service structures. 4. The social and economic response. To achieve these objectives, we use a mixed methods study design that combines quantitative questionnaires and qualitative interviews to deepen our understanding of elements such as the coping strategies used during the pandemic. A first measure was taken during lock-down as well as a follow-up at 3 months. Another follow-up will be made at 7 months. At least one per year follow-up will be made over the course of the study (5 years). Additional measures may be taken depending on the evolution of the pandemic and the sanitary measures put in place by the authorities.
National Institute of Neurological Disorders and Stroke (NINDS)
Background: People who get COVID-19 have a wide range of symptoms. They also recover from COVID-19 in different ways. In this study, researchers will use survey data to describe the different ways people experience and recover from COVID-19. They will also use the data to help create future studies to understand why some people do not fully recover. Objective: To learn more about the range and timing of symptoms that people have before, during, and after COVID-19 infection. Eligibility: People ages 18 and older who can give documentation of a positive COVID-19 or antibody test. Design: Participants will be screened with a telephone interview. It will take 15 minutes. They will provide their COVID-19 test results and medical records. Participants will complete a second telephone interview. It will take 30 60 minutes. They will also take online surveys every 3 months for 3 years. The interview and surveys will ask participants about their health before they got COVID-19, what happened while they had COVID-19, and what their recovery has been like. Participants will get log-in data to take the online surveys. Completing all of the surveys the first time may take up to 3 hours. Follow-up surveys will take up to 30 minutes. Participants do not have to complete the surveys in one sitting. They will be able to save their progress and finish the surveys later. Participants may be contacted to take part in other research studies.
National Institute on Aging (NIA)
Background: The higher death rate from COVID-19 in the older population is associated with low CD8 T cell counts in the blood. Researchers want to learn the status of CD8 T cells specific to SARS-CoV-2 and their changes with aging and in COVID-19. This may help to identify why COVID-19 is particularly lethal in the elderly and help to create an effective vaccine against SARS-CoV-2 in the elderly. Objective: To identify SARS-CoV-2 specific CD8 T cells in humans, and to determine their quantity and quality in people who have recovered from COVID-19. Eligibility: Maryland residents age 18 and older who have tested positive for and recovered from COVID-19. Design: Participants will be screened by phone. They must be able to provide a copy of their positive COVID-19 test result. Participants will visit the NIA/Clinical Research Unit. The visit will take about 1 hour. Laboratory tests showing a positive COVID-19 result will be verified. Participants vital signs will be checked. This will include blood pressure, temperature, pulse, and respiration. Height and weight will be measured. Participants will have a medical history and medicine review. They will complete a COVID-19 questionnaire. Participants will have blood drawn. They will give a urine sample. Participants will give a saliva sample. They will rinse their mouth with water. After about 3 minutes, they will let saliva pool in the base of their mouth and then spit into a sterile container. Participants may be asked if they would be willing to return for optional visits at about 4 months and 1 year later. They will repeat the same laboratory sampling performed at the first visit. ...