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 500 of 745Vladimír Džavík
With the results of this study the investigators aim to identify an effective treatment that will reduce morbidity and mortality of patients with symptomatic COVID-19 infection, which would in turn reduce the burden on the healthcare system by decreasing the need for intensive care. Objectives: The main objective of this research is to determine if once weekly treatment with the GLP-1 agonist semaglutide for 4 doses will reduce cardiac as well as non-cardiac complications of COVID-19 infection. Study Plan: The study design is prospective randomized open-label blinded-evaluation (PROBE). Eligible patients with symptomatic COVID-19 infection and an enhanced risk profile as described above, who have been admitted to hospital due to symptoms of COVID-19 infection but do not as yet require critical care will be approached to participate in this study. Provided there are no exclusion criteria and the participants agree by means of documented written informed consent, The participants the participants will be randomized to receive s.c. semaglutide 0.25 mg s.c. or control immediately after randomization and then 0.5 mg s.c. at Day 7, Day 14 and Day 21. Blood will be drawn at Day 7±2 and Day 14±2 for the cardiac troponin biomarker and safety parameters. ECG will be obtained at Day 7±2 and Day 14±2. Primary outcome will be assessed on Day 28. Primary outcome measure: A composite of (1) death from any cause or (2) mechanical ventilation (invasive or non-invasive) at 28 days. Major secondary outcome measure: (1) an elevation to >99th percentile URL upper reference limit (URL) in those with a baseline cardiac troponin level ≤99th percentile URL; or 3x elevation from baseline in those with a baseline cardiac troponin >99th percentile URL; measured at 1 week (7-days) post randomization. Other major secondary outcome measure: A composite of 1. Death from any cause, mechanical ventilation or vasopressor or ECLS support at 28 days 2. an elevation to >99th percentile URL in those with a normal baseline troponin level; or 3x elevation from baseline in those with a baseline troponin; measured at 1 and 2 weeks (7±2 and 14±2 days) post randomization.
Center for Research and Development of Health Resources and Services, National Institute of Health Research and Development (NIHRD), Indonesia
The benefit of the research is to provide information regarding the efficacy and safety of Favipiravir plus the Standard of Care (SoC) for mild-moderate COVID-19 patients to be a reference for policy recommendations regarding the use of Favipiravir as an antiviral drug for the treatment of Covid-19.
Paion UK Ltd.
The worldwide COVID-19 pandemic has led to a dramatic increase in the number of patients hospitalized in intensive care units for an acute respiratory failure in all countries. This situation has quickly led to massive shortage in masks, mechanical ventilation machines and common medications such as hypnotics. All countries over the world are currently experiencing a major shortage in basic hypnotic medications (propofol, midazolam) in the intensive care as well as in the operating theatre. The Principal Investigator proposes to perform a pilot study assessing the benefit-risk ratio of Remimazolam (a novel benzodiazepine with a short half-life) in the critical care units of Nantes University Hospital during the COVID-19 pandemic.
University Hospital, Strasbourg, France
The purpose of our prospective monocentric, randomized, controlled trial is to evaluate the effects of intravenous lidocaine on gas exchange and inflammation in acute respiratory distress syndrome (ARDS) due or not to Covid-19 pneumonia. Half of the patients will receive intravenous lidocaine and the other half will receive intravenous NaCl 0,9 % as placebo.
Clene Nanomedicine
This is a multi-site, randomized, double-blind, placebo-controlled study assessing the efficacy and safety of ZnAg liquid solution in symptomatic participants with acute COVID-19 that are not hospitalized at the time of enrollment.
Assistance Publique - Hôpitaux de Paris
The coronavirus disease (COVID-19) epidemic represents a major therapeutic challenge. The highly contagious severe acute respiratory syndrome coronavirus 2 (SARS-COV-2) and the long duration of the disease have led to a massive influx of patients admitted in health services and intensive care units. To current knowledge, there is no treatment yet that that can prevent infection from SARS-COV-2 virus, nor the disease progression to a severe form. Daily active smokers are rare among outpatients or hospitalized COVID-19 patients. Several arguments suggest that nicotine could be responsible for this protective effect thank to the nicotinic acetylcholine receptor (nAChR). Based on epidemiological data and experimental data from scientific literature, we hypothesize that nicotine could inhibit the penetration and spread of the virus and improve the management of COVID19 , particularly in hospitalized patients to prevent adverse outcomes (death, transfer to intensive care unit, care limitation, mechanical ventilation an high flow oxygen).
Debiopharm International SA
COVID-19 is a viral respiratory and systemic disease that has been rapidly spreading globally since the first cases were reported in December 2019 and has now become pandemic. The causative agent of COVID-19 was identified as a novel coronavirus named severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2, first designated as 2019-nCoV). The disease manifestations of COVID-19 can range from mild, self-resolving respiratory disease to severe pneumonia, ARDS, multiorgan failure, and ultimately death. In early reports, the mortality rate among patients admitted to hospital and with confirmed SARS-CoV-2 infection was reported to be between 4 and 15%. Although the disease can afflict all age groups, elderly patients and patients with underlying comorbidities such as high body mass index, hypertension, diabetes, cardiovascular disease, or cerebrovascular disease are at risk of developing severe disease and dying. There are currently no etiologic treatments for COVID-19, and efforts are underway to identify therapeutics that could be effective in controlling this disease.
Institut d'Investigació Biomèdica de Bellvitge
Study population: Patients with fibrotic lung sequelae after recovery from acute phase of severe COVID19 pneumonia Objectives: To evaluate the effect of pirfenidone administered for 24 weeks in patients who have pulmonary fibrotic changes after suffering severe COVID19 pneumonia, analysed by - % change in forced vital capacity (FVC) - % fibrosis in high resolution computed tomography (HRCT) of the lung
University of Maryland, Baltimore
More than 17 million people have been infected and more than 677K lives have been lost since the COVID-19 pandemic. Unfortunately, there is neither an effective treatment nor is there a vaccination for this deadly virus. The moderate to severe COVID-19 patients suffer acute lung injury and need oxygen therapy, and even ventilators, to help them breathe. When a person gets a viral infection, certain body cells (inflammatory/immune cells) get activated and release a wide range of small molecules, also known as cytokines, to help combat the virus. But it is possible for the body to overreact to the virus and release an overabundance of cytokines, forming what is known as a "cytokine storm". When a cytokine storm is formed, these cytokines cause more damage to their own cells than to the invading COVID-19 that they're trying to fight. Recently, doctors and research scientists are becoming increasingly convinced that, in some cases, this is likely what is happening in the moderate to severe COVID-19 patients. The cytokine storm may be contributing to respiratory failure, which is the leading cause of mortality for severe COVID-19 patients. Therefore, being able to control the formation of cytokine storms will also help alleviate the symptoms and aid in the recovery of severe COVID-19 patients.
University of Sao Paulo
Currently, there are few approved treatments for COVID-19, antiretroviral (remdesivir) and corticoids. With about 15% of COVID-19 patients suffering from severe disease health system will be overwhelmed. Treatments approaches to inhibit viral replication (antiretroviral and extended spectrum antiviral drugs), such as Remdesivir and Hydroxychloroquine are being used. In severe cases, by CT scans investigators are able to observe that these patients seem to be dying with fibrosis and lung vasculitis. It is hypothesised that targeting vasculitis and lung inflammation secondary to the viral infection may help patients' survival (reducing mortality) and/or decrease time in mechanical ventilators. It is proposed a 4-arm trial, converted to 2 after interim analysis (60 patients for the initial phase, sample size recalculation after initial analysis and 2 arms beyond). In initial phase, IL-6 indirect inhibitor (colchicine), in first arm; IL-17 inhibitor, an innovative target never tested (at this moment) in COVID-19 severe patients, in second study arm. Both approaches (indirect IL-6 and Il-17) are related to modulation of inflammatory immune response. Finally, in third arm, IL-2 low dose. This cytokine was identified as Treg upregulation. Treg levels decrease in hepatitis C virus (HCV) associated vasculitis and increase in vasculitis resolution. In fourth arm, control group, standard of care. Initially, for the first 60 included patients, the study will comprise 4 arms (15 patients per arm, randomization ratio 1:1:1:1). An interim effectiveness and safety analysis at this point will guide the selection of one single treatment strategy (adaptative study) to be carried on after that, comparatively with the control group. The multi-site trial planned enrollment duration of 4-6 months and for each participant will be approximately 4 weeks. This trial will bring complementary data to the global effort in COVID-19 cases resolution.