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 4420 of 4498Varian Medical Systems
Low doses of radiation in the form of chest x-rays has been in the past to treat people with pneumonia. This treatment was thought to reduce inflammation and was found to be effective without side effects. However, it was an expensive treatment and was eventually replaced with less expensive treatment options like penicillin. The COVID-19 virus has emerged recently, causing high rates of pneumonia in people. The authors believe that giving a small dose of radiation to the lungs may reduce inflammation and neutralize the pneumonia caused by COVID-19. For this study, the x-ray given is called radiation therapy. Radiation therapy uses high-energy X-ray beams from a large machine to target the lungs and reduce inflammation. Usually, it is given at much higher doses to treat cancers. The purpose of this study is to find out if adding a single treatment of low-dose x-rays to the lungs might reduce the amount of inflammation in the lungs from COVID-19 infection, which could reduce the need for a ventilator or breathing tube.
Regeneris Medical
The aim of this study is to evaluate the safety and efficacy of autologous adipose-derived mesenchymal cells for treating confirmed or suspected patients with SARS-CoV-2 and compromised respiratory function requiring hospitalization. The hypothesis of the Study is autologous adipose-derived mesenchymal cells given IV to eligible patients will improve clinical outcomes of COVID 19 positive patients with severe pneumonia or ARDS by reducing or avoiding cytokine storm.
University of Manchester
A team at the University of Manchester are developing a test that tcould be helpful in detecting immunity to the Coronavirus (which causes the COVID-19 disease) in participants with inflammatory arthritis. It is based on a flu assay has already developed; the team will replace the flu antigen with a Coronavirus antigen to see if it is effective. This project aims to develop a test to see if people who have had the virus have developed immunity to it. This could help to predict who might or might not get the disease a second time, who should stay at home to be protected from potential infection or who will not develop any symptoms, even if exposed to the virus. When vaccination trials against the Coronavirus will be launched, this test could also help to see if the vaccine is effective.
Mayo Clinic
The purpose of this study is to test whether Fisetin, a senolytic drug, can assist in preventing an increase in the disease's progression and alleviate complications of coronavirus due to an excessive inflammatory reaction.
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. ...
Institute of Human Genetics, Montpellier
The study investigators hypothesize that the pneumonia arising in patients with COVID-19 is largely of immunopathological origin. The investigators will therefore seek to define the immune activation phenotype of patients in respiratory distress and to see if this immune signature is predictive of mortality. Finally, the investigators will look for overproduced inflammatory mediators to identify potential therapeutic targets.
Texas A&M University
SARS-CoV-2 spreads rapidly throughout the world. A large epidemic would seriously challenge the available hospital capacity, and this would be augmented by infection of healthcare workers (HCW). Strategies to prevent infection and disease severity of HCW are, therefore, desperately needed to safeguard continuous patient care. Bacille Calmette-Guérin (BCG) is a vaccine against tuberculosis, with protective non-specific effects against other respiratory tract infections in in vitro and in vivo studies, and reported morbidity and mortality reductions as high as 70%. Furthermore, in our preliminary analysis, areas with existing BCG vaccination programs appear to have lower incidence and mortality from COVID191. The investigators hypothesize that BCG vaccination can reduce HCW infection and disease severity during the epidemic phase of SARS-CoV-2.
ExThera Medical Corporation
Severe acute respiratory syndrome coronavirus-2 (SARS-CoV-2) has caused a global pandemic and is associated with significant morbidity and mortality. The mortality rate for COVID-19 patients admitted to an intensive care unit (ICU) who require mechanical intubation is approximately 75%. While the pathophysiology of severe COVID-19 has yet to be fully understood, it is possible that a combination of high viral loads and an overactive dysregulated inflammatory response may contribute. Therefore, the clearance of SARS-CoV-2 virus and cytokines could provide a more opportunistic environment for the innate immune system to clear the virus and establish lasting immunity. The Seraph®-100 Microbind® Affinity Blood Filter (Seraph®-100) is an extracorporeal broad-spectrum sorbent hemoperfusion filter for removing virus and cytokines from the blood. The FDA authorized an Emergency Use Authorization (EUA) for treatment of severe COVID-19 with the Seraph®-100. As part of the EUA, this registry study will collect de-identified data to assess safety and efficacy on the use of Seraph®-100 Microbind® Affinity Blood Filter in the treatment of COVID-19 patients.
Hudson Medical
Covid-19 has spread rapidly throughout the world causing widespread panic, death, and injury. While this virus is the provocateur, it is often the patient's own disproportionate immune response which deals the most devastating (and often fatal) damage. A specific part of the immune system, known as the complement, has been shown to cause such damage in other types of coronaviruses. In the SOLID-C19 study, Soliris (Eculizumab) will be used to modulate the activity of the distal complement preventing the formation of the membrane attack complex. By modulating this portion of the immune response, mortality can be halted while the patient has time to recover from the virus with supportive medical care.
St. Jude Children's Research Hospital
This is a prospective adaptive cohort study of St. Jude employees to determine the rate of SARS-CoV-2 infections that are asymptomatic and to evaluate immunological responses to SARS-CoV-2 infection. Primary Objectives - To estimate the proportion of asymptomatic infection with SARS-CoV-2 infection in a population of SARS-CoV-2-naïve adult St. Jude employees - To comprehensively map CD4 and CD8 T cell epitopes and response magnitudes to SARS-CoV-2 infection in a population of SARS-CoV-2-naïve adult St. Jude employees who acquire SARS-CoV-2 infection - To measure changes in the CD4 and CD8 response magnitude and function to SARS-CoV-2 infection and/or vaccination in a population of St. Jude employees for up to 48 months after infection and/or vaccination. Secondary Objectives - To establish seroprevalence of SARS-CoV-2-specific antibodies at baseline, and identify the rate of seroconversion to SARS-CoV-2 in a population of presumably naïve adult St. Jude employees - To identify features of T cell responses at baseline and during SARS-CoV-2 infection that are associated with protection against symptomatic or severe COVID-19 disease in a population of adult St. Jude employees - To identify risk factors for long-term protection against COVID-19 in a population of adult St. Jude employees - To evaluate changes in antibody responses to SARS-CoV-2 in a population of St. Jude employees for up to 48 months after SARS-CoV-2 infection and/or vaccination. - To evaluate the saliva antibody and cytokine response to SARS-CoV-2 infection and/or vaccination and identify characteristics that predict protection from subsequent SARS-CoV-2 infection among a population of St. Jude employees followed for up to 48 months after SARS-CoV-2 infection and/or vaccination. - To measure changes in saliva antibody responses to SARS-CoV-2 for up to 48 months after SARS-CoV-2 infection and/or vaccination. Exploratory Objectives - To establish additional immunological features including host immune or receptor polymorphisms associated with response to SARS-CoV-2 infection - To explore SARS-CoV-2 diversity and specific features in a circumscribed population - To describe the presence, characteristics, and proportion of short-term re-infection - To determine if an association between SARS-CoV-2 viral load in nasal swab specimens and COVID-19 symptoms can be identified in a population of adult St. Jude employees who acquire SARS-CoV-2 - To explore the laboratory and clinical response to SARS-CoV-2 vaccine in a population of adult St. Jude employees with and without a history of SARS-CoV-2 infection