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 320 of 720Janssen Vaccines & Prevention B.V.
The study will evaluate the efficacy of Ad26.COV2.S in the prevention of molecularly confirmed moderate to severe/critical COVID-19, as compared to placebo, in adult participants.
InCor Heart Institute
This is a prospective, randomized, single-center, open-label controlled trial, designed to compare the efficacy of two ventilation strategies (Low Tidal Volume and positive end-expiratory pressure (PEEP) based on the Acute Respiratory Distress Syndrome (ARDS) Network low PEEP-fraction of inspired oxygen inspired oxygen fraction (FIO2) Table versus Low Driving Pressure and PEEP guided by Electrical Impedance Tomography (EIT) in reducing daily lung injury score in patients with acute respiratory distress syndrome caused by COVID-19. The two strategies incorporate different prioritizations of clinical variables. The PEEP-FIO2 table strategy aims to reduce lung overdistension, even if it requires tolerating worse gas exchange. EIT-guided strategy prioritizes mechanical stress protection, avoiding alveolar overdistension and collapse.
Murielle Surquin
COVID-19 is an infectious disease caused by the last coronavirus discovered, called SARS-CoV-2. Symptoms encountered in COVID-19 are: cough, breathing difficulties (dyspnea, chest pain, etc.), pyrexia, anosmia (loss of smell) and/or dysgeusia (loss of taste), but also ENT symptoms (rhinitis type, odynophagia), headaches, asthenia, muscle pain, confusion and diarrhea. Infection with SARS-CoV-2 can also be asymptomatic. COVID-19 can be passed from person to person by respiratory droplets expelled when a person speaks, coughs or sneezes. The currently estimated incubation period ranges from 1 to 14 days, and most often this is around 5 days. According to a literature review, there is strong evidence that COVID-19 has an impact on mental health (anxiety being the most common symptom) whether in the general population, healthcare workers or vulnerable populations. The objective of this project is to assess mental health and sleep disorders within two populations: elderly patients and nursing staff.
Azienda Ospedaliera Universitaria Integrata Verona
The registry of COVID-19 patients was designed to collect epidemiolgical, demographic, clinical, anamnestic and outcome information together with serological and microbiological samples from COVID-19 patients admitted at the University Hospital of Verona (Azienda Ospedaliera Universitaria Integrata, AOUI Verona). All SARS-CoV 2 positive patients admitted and able to give an informed consent are included, irrespectively of age and gender.
Centre Hospitalier Universitaire de Nice
Metabolomics is the analysis of small molecules in a biological sample (cells, tissues or biological fluids). It can potentially detect very sensitively any change related to a pathology or exposure to a toxic agent. The analyses are fast, inexpensive and therefore applicable in routine, particularly in health care. Given the emergence of this new disease, COVID-19, there is a real need to better understand the pathophysiological mechanisms of SARS-CoV-2 infection. In this context, metabolomics could have a place and could lead to the development of interesting diagnostic or prognostic tools. The objective of this study is to identify, through the analysis of biological samples (blood and urine), whether there is a metabolomic signature in patients with COVID-19.
Institut Pasteur
This is a randomized, placebo-controlled, two center, Phase I trial in healthy adult volunteer participants consisting of two phases, an unblinded dose escalation and a double blind treatment phase to investigate the safety, tolerability and immunogenicity of a novel measles-vector based vaccine candidate against SARS-CoV-2 infection (TMV-083/V-591).
Pontificia Universidad Javeriana
Antioxidants, and particularly polyphenols, have shown protection in respiratory pathologies, which is related to the decrease in the severity of the clinical picture and suppression of inflammation. This suppression of inflammation may be related to the inhibition of NF-kB polyphenols, where its activation is related to the stimulation of 150 stimuli including cytokines (IL-1β, IL-6, THF-α, GM-CSF, MCP-1), TLRs, among others. There may be other additional mechanisms that can help control virus-induced respiratory pathologies, among which are the regulation of reactive oxygen species (ROS) associated with tissue destruction caused by the virus and a selective antiviral action can be reported. direct. The standardized P2Et extract obtained from C. spinosa, by the Immunobiology Group of the Pontificia Universidad Javeriana, is highly antioxidant, decreases lipid peroxidation and tissue damage and induces complete autophagy in stressed or tumor cells. The induction of a full autophagic flow could inhibit the replication of beta-coronaviruses like SARS-CoV-2. Furthermore, P2Et can decrease the factors involved in tissue damage by reducing IL-6 and decrease ILC2 cells of the lung in animals with lung metastases (unpublished data). These antecedents suggest that the supplementation of patients with COVID-19 with the extract P2Et, could improve their general condition and decrease the inflammatory mediators and the viral load.
Boehringer Ingelheim
The purpose of this study is to explore the efficacy of Aggrenox in patients with SARS-CoV-2 infection with symptoms consistent with COVID-19. An anticipated total of 132 participants will be randomly divided almost equally into 2 groups: one group will receive Dipyridamole ER 200mg/ Aspirin 25mg orally/enterally along with the standard of care and the other group with receive the standard of care only but no Dipyridamole ER 200mg/ Aspirin 25mg. Participants will be screened, enrolled, receive treatment, and followed for 28 days. The clinical and laboratory outcomes of all the participants enrolled in the study will be evaluated at the end of the study to explore if there is any difference in the outcomes between 2 groups.
Universiti Kebangsaan Malaysia Medical Centre
The purpose of this study is to assess the ability of regular gargling to eliminate severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) in the throat and nasopharynx. This 4 arms interventional study compares the effect of gargling using povidone-iodine, essential oils- based, tap water with control (no intervention) among Stage 1 coronavirus disease-2019 (COVID-19) patients. Findings from this study will provide new insight into the importance of gargling in the treatment and prevention of COVID-19.
Steno Diabetes Center Copenhagen
The study design is observational, exploratory study consisting of two cohorts of COVID-19 patients admitted to the ICU and the medical ward, respectively. The primary outcome focusing on the effect of plasma glucose levels on cardiac function will be evaluated by repeated assessment of cardiac function by echocardiography and measurement of plasma glucose. Furthermore, blood coagulability will be evaluated to determine the importance of diabetes status and plasma glucose changes for whole blood coagulability at time of admission to the ICU and progression in coagulability abnormalities. In the medical ward cohort, two assessments will be performed separated by no more than 12 hours. In the ICU cohort, three assessments will be performed separated by no more than 6 hours. Ideally, 60 patients with COVID-19 will be included in the ICU cohort with a 1:1 distribution between patient with and without diabetes. Ideally, 40 patients with diabetes will be included in the cohort of patients admitted to medical ward (hospitalisation cohort). The primary hypothesis is that levels of plasma glucose have clinically significant impact on left ventricular systolic function in patients with COVID-19 admitted to the ICU. The secondary hypothesis is that the impact of plasma glucose on left ventricular systolic function is associated with glycaemic control prior to admission as measured by HbA1c.