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.
Search Tips
To search this directory, simply type a drug name, condition, company name, location, or other term of your choice into the search bar and click SEARCH. For broadest results, type the terms without quotation marks; to narrow your search to an exact match, put your terms in quotation marks (e.g., “acute respiratory distress syndrome” or “ARDS”). You may opt to further streamline your search by using the Status of the study and Intervention Type options. Simply click one or more of those boxes to refine your search.
Displaying 230 of 241Centre Hospitalier Universitaire de Saint Etienne
Current data in the literature demonstrate that the immune response to CoV-2-SARS is much more complex than initially assumed. In fact, beyond the humoral response, including the existence of neutralizing CAs, the adaptive lymphocyte T-type immune response also appears to play an important role in controlling the infection and reducing the severity of the disease. At this stage, the analysis of this T response is still rudimentary and underdeveloped, but it seems crucial to be able to analyze it effectively in COVID-19 patients, which could help predict the evolution of the infection. It is also currently difficult to know the evolution of this response over time and especially after the resolution of the infection. To this end, we will analyze the T lymphocyte response (ELISPOT and QUANTIFERON) based on the secretion of IFN (Th1) and IL-4 (Th2) by CoV-2-SARS specific T cells from COVID-19 patients. We will compare the T response to the quality of the systemic and mucosal humoral response. Finally, we will evaluate in parallel two new biomarkers of the severity of COVID-19: plasma calprotectin and the presence of antibodies to type 1 IFN antibodies.
Washington University School of Medicine
This is a substudy of NCT04333732. The goal of this sub-study is to identify and characterize biomarkers of trained immunity by measuring, in vitro, immune responses to heterologous products, especially viral associated products, in the MMR vaccinated compared placebo groups. All participants are randomly assigned to MMR or placebo injection at baseline, followed by SARS-CoV-2 specific vaccination. Blood is drawn around 60 to 90 days after the last SARS-CoV-2 specific vaccine injection.
University Hospital, Ghent
Co-Sér: Serological Analysis and Viral Neutralization in People With a Documented COVID-19 Infection
In light of the current coronavirus disease 2019 (COVID-19) pandemic, the investigators want to better study the immunological characteristics of Severe Acute Respiratory Syndrome-Coronavirus 2 (SARS-CoV2) infections in adults. The investigators invite volunteers to participate in a clinical study to better understand what happens after an infection with SARS-CoV2. By collecting and analysing blood samples of people that were infected, the investigators want to evaluate whether or not the participants had an adaptive immune response with the producting of immunoglobulin. The investigators will evaluate the quality of the antibodies and their neutralising capacity. In a selected patient group with strong antibody response, the investigators will try to reproduce them in the lab after the collection of a larger blood sample (max 72 mL) of, in case of insufficient B-cells, a leucapheresis (after consent of the patient). These antibodies can be used in clinical trials to evaluate whether the investigators can cure patients faster or prevent disease by the utilisation of these antibodies. Aside from the aforementioned information the investigators will also collect clinical data such as: demographic information, medical history, routine lab results, radiographic imaging and medication use. After the completion of the study, the samples will be stored for 30 years with consent of the participants.
Chinese University of Hong Kong
Safe and effective severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) vaccines may reduce the transmission of and achieve population immunity against the COVID-19 pandemic, which accounted for more than 3.75million deaths worldwide. With World Health Organization's (WHO) effort on ensuring equitable access to COVID-19 vaccines, vaccination rate may increase in the near future. On the other hand, vaccination hesitancy has emerged as a major hindrance on the global vaccination campaigns in certain areas due to safety concerns, social factors, and public health policies. For instance, a recent survey conducted in Hong Kong showed a low vaccine acceptance rate of 37%. Long-term safety concerns and post-vaccination events relayed by the social media maybe reasons for vaccination hesitancy. Among which, cerebrovascular accidents (CVA) after vaccination were one of the most frequently reported post-vaccination events. These reports ranged from ischemic strokes in elderly patients with multiple cardiovascular co-morbidities, to hemorrhage strokes in otherwise "young-and-fit" adults. While many of these events were investigated by the COVID-19 immunization expert committee, an important premise to address the apprehension of CVA after vaccination is the provision of evidence-based information of the impact of COVID-19 vaccines on brain health. In this prospective, longitudinal, observational study, we aim to elucidate the relationship between COVID-19 vaccines and cerebrovascular health in healthy citizens in a population-based cohort.
Centre Hospitalier Princesse Grace
Investigators aimed to better understand the pathophysiology of SARS-CoV-2 pneumonia in non-critically ill hospitalized patients secondarily presenting with clinical deterioration and increase in oxygen requirement
Sher-E-Bangla Medical College
An outbreak of the novel coronavirus nCoV-19 (SARS-CoV-2), responsible for the coronavirus disease-19 (COVID-19), was first detected in Hubei province, Wuhan, China, on December 31, 2019. It has rapidly spread globally with approximately 157,343,044 confirmed cases and 3,278,510 deaths till 7th May, 2021 [1]. World Health Organization (WHO) declared COVID- 19 pandemic on 11th March 2020. The world is facing the second wave of Coronavirus Disease 2019 (COVID-19) pandemic which is the most troublesome challenge to public health. The second wave is running and nobody knows where we are in the course of this disease. It becomes a significant challenge for the public health, science, and medical sectors [2]. According to the World Health Organization, about 80% of infections are mild or asymptomatic, 15% result in moderate to severe symptoms (requiring oxygen) and about 5% are critical infections, which require ventilation. We are learning something new every day. Our understanding of the pandemic is growing and changing daily. The world is focusing on the short term - flattening the curve, treating the sick and discovering a vaccine. But there is more to this pandemic than the short term. We know a lot about the transmission and clinical feature of COVID-19, but relatively little about what happens after someone recovers. Much is still unknown about how COVID-19 will affect people over time. There's still much to be learned from those who have recovered from COVID-19.
University of New Mexico
The long-term goal of the study is to mitigate the spread of the pandemic in miners, a population of high-risk, rural essential workers who are susceptible and vulnerable to COVID-19, partly based on exposure to particulate air pollution, and who are predominantly racial/ethnic minorities in New Mexico (NM) (3, 11). The study objective is to provide proof-of-principle for frequent point-of-care molecular testing as a workplace surveillance tool to monitor and prevent the spread of SARS-CoV-2 infection in this unique population. The central hypothesis is that frequent workplace molecular surveillance is an effective method to reduce SARS-CoV-2 infection and discover novel host risk factors for the virus. The site of molecular surveillance (intervention site) will be a surface coal mine in McKinley County, NM, located just outside the Eastern Agency of the Navajo Nation, comprised of 66% minority miners. This site offers a unique opportunity for a community-based study of SARS-CoV-2 infection in this population. Miners at the intervention site will provide nasal swabs before beginning their work shift on alternate days that will be analyzed with a 'screening' molecular test (12). This test is ideal because it is low cost, simple, portable, point-of-care, rapid, and can be performed by minimally trained professionals in low-infrastructure settings. The control site is a similar coal mine in Campbell County, Wyoming (WY). Both mines, operated by the same company, have similar engineering, administrative, and personal protective measures in place. The rationale for this study is to establish the suitability of longitudinal molecular surveillance to prevent and control SARS-CoV-2 infection in this unique population by completing the following specific aims.
I.M. Sechenov First Moscow State Medical University
Non-invasive ventilation can allow to avoid intubation and improve outcomes in moderate-to-severe COVID-19-associated acute respiratory distress-syndrome (ARDS). Data on NIV parameters adjustment based on expanded respiratory and gas exchange monitoring in COVID-19 associated ARDS is limited. Appropriate adjustment of the inspiratory positive airway pressure (IPAP) set as a point of the balance between minimal work of breathing (minimum point of W.Patrick scale for assessment of the accessory respiratory muscles and minimum diaphragm thickening fraction) and minimum tidal volume, and respiratory rate can decrease NIV failure in moderate-to-severe COVID-ARDS. The objective of the study is to evaluate the ability of non-invasive ventilation guided with expanded respiratory monitoring to decrease the intubation rate in in moderate-to-severe COVID-ARDS.
Nanomix
Prospective samples will be collected to evaluate the agreement between a EUA RT-PCR test as the comparator method against the Nanomix eLab® system.
University Hospital, Ioannina
This is an observational data and recording study. The aim of our study is to investigate the effect of SARS-COV2 infection on patients' sense of smell and taste, through quality control measurements using optic analogue scale (VAS) in hospitalized and in home-quarantined patients.