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 160 of 725Glasgow Royal Infirmary
As of 27th May 2020, approximately 5.7 million people worldwide are known to have been infected with COVID-19 coronavirus and more than 350,000 have died (1). The severity of this viral disease for an individual is associated with a widespread perturbation of immune, physiological and metabolic parameters (2, 3). These whole body changes could be considered characteristic of a systemic inflammatory response to tissue injury and it has been long recognised that a large and ongoing systemic inflammatory response is associated with the development of multiple organ failure and infective disease (4, 5). One of the cardinal signs of severe COVID-19 infection is a marked systemic inflammatory response (2). This response bears striking similarity to the systemic inflammatory response experienced by patients undergoing major elective surgical resections for cancer (6, 7). Indeed, the systemic inflammatory response and the associated metabolic stress has been most well characterised in major elective surgery, where the relationship between the magnitude of the post-operative systemic inflammatory response and the development of post-operative complications is now well recognised, as is the effect of patient comorbidity on this relationship (8, 9). Such work has informed therapeutic manoeuvres including minimally invasive surgery, pre-operative optimisation (e.g. anaesthesia, nutrition and steroids) and enhanced recovery protocols. The aim of the present study was to examine whether routinely collected clinicopathological characteristics of patients with COVID-19 on admission were informative on the immune and metabolic stress experienced by patients with COVID-19 and whether such characteristics were informative on subsequent outcome.
Romark Laboratories L.C.
Trial to Evaluate Efficacy and Safety of Nitazoxanide in the Treatment of Mild or Moderate COVID-19
Medigen Vaccine Biologics Corp.
This is a phase I prospective, open-labeled, single-center study to evaluate the safety and immunogenicity of MVC-COV1901.
Applied Science Private University
The trial was designed to assess the effect of daily dose of 300 mg omega-3 supplements for 2 months on the selected interleukins levels in uninfected people with Covid-19.
Hôpital Européen Marseille
The purpose of the study is to assess seroprevalence of COVID-19 infection in a cohort of HIV + patients and in a cohort of patients taking PrEP by emtricitabine / tenofovir.
Beaufort
This multicentre prospective study will enroll a sufficient number of patients to afford approximately 60 positives and > 40 negatives (as determined by the SOC - Comparator method) in the United States and/or Canada. One to three sites in the United States and/or Canada will participate over an approximate 12-week enrolment period. The actual enrolment period will be dependent upon prevalence of Covid-19. Once positives sample size is achieved, expected SARC-CoV-2 negative subjects will be permitted. This study is observational and will not impact the medical management of the patient. The results of the Spartan Test will be blinded to the clinical staff during the study and will not impact the medical management of the subject. Once informed consent is obtained and eligibility is confirmed, subject demographics, and patient reported COVID-19 symptoms will be recorded. For the purposes of this study, enrolment will be defined as the collection of the two study-specific nasopharyngeal (NP) samples for Spartan's Test. Each patient's active involvement in the study will last for approximately 30 minutes. To support the EUA, a minimum of 30 individual natural positive clinical specimens will be collected from patients suspected of SARS-CoV-2 infection by a healthcare provider in COVID-19 disease endemic regions in the United States. Additionally, a minimum of 30 individual negative samples will also be used to support the EUA from patients in the United States. Once subjects are consented and recruited for the study, three nasopharyngeal samples for each patient will be collected by trained operators at the clinical site. The first sample will be tested at the clinical site according to standard of care protocols currently in place for the sites' nasopharyngeal swab-based SARS-CoV-2 RT-PCR testing. The second nasopharyngeal sample will be tested at the site using the Spartan COVID-19 v2 System. The third nasopharyngeal sample will be tested using the Spartan COVID-19 v2 System only when the test conducted with the second nasopharyngeal swab does not produce a positive or negative result. The sample for the SOC test will be collected prior to the samples for the Spartan COVID-19 v2 System as per clinical regulations.
Savicell Diagnostics Ltd
The analysis method described in this protocol is a novel simple plausible immunological approach which is non-invasive, high throughput, real-time quantitative monitoring of metabolic activity (MA) profiles of fresh Peripheral Blood Mononuclear Cells (PBMC) in response to various reagents at different concentrations. The purpose of this study is to evaluate the T cells reactivity to SARS COV 2 immunogenic selected peptides by Metabolic Activity Method in convalesce and healthy individuals and to compare it with Antibody response (ELISA) and clinical information
D'Or Institute for Research and Education
A Phase I/II clinical trial for safety and efficacy evaluation of treatment with anti-SARS-CoV-2 equine immunoglobulin (F(ab')2) in hospitalized patients with COVID-19 not requiring of invasive ventilation support.
Steno Diabetes Center Copenhagen
Based on Chinese studies, cardiac injury occurs in 20-30% of hospitalized patients and contributes to 40% of deaths. There are many possible mechanisms of cardiac injury in COVID-19 patients and increased myocardial oxygen demand and decreased myocardial oxygen supply are likely contributors to increased risk of myocardial infarction and heart failure. Interventions reducing the risk of cardiac injury are needed. Ketone bodies, such as 3-hydroxybutyrate and acetoacetate, can maintain ATP production in the heart and brain during starvation. It has been suggested that ketone bodies are more efficient substrates of energy metabolism than glucose, with a lower oxygen consumption per ATP-molecule produced. In addition, the reduction in hospitalizations due to heart failure observed in type 2 diabetes patients treated with sodium-glucose cotransporter 2 inhibitors, is suggested to be partly attributable to increased levels of 3-hydroxybutyrate. Infusion with 3-hydroxybutyrate reaching a plasma level of approximately 3 mM had acute beneficial hemodynamic effects in patients with heart failure and in healthy controls in a study by Nielsen et al. Improved haemodynamics and reduced systemic oxygen consumption might be of great benefit in patients with COVID-19. The primary endpoint is left ventricular ejection fraction. Secondary endpoints are conventional echocardiography parameters, peripheral blood oxygen saturation, venous blood oxygen saturation and urine creatinine clearance. The study population are twelve previously hospitalized patients with COVID-19 The study design is a randomized placebo-controlled double-blinded crossed-over acute intervention study.
Ministry of Health and Population, Nepal
The objective of this compassionate use study is to provide access and evaluate the outcome of Remdesivir and COVID-19 convalescent plasma use in patients with COVID-19. This protocol provides a coordinated approach for distribution and guidance for safe and effective administration of Remdesivir and convalescent plasma with antibodies against SARS CoV-2 for treatment of patients with COVID-19 infection who are most likely to benefit from this investigational treatment and monitor them for the following specific objectives and outcomes: SPECIFIC OBJECTIVES 1. Provide access to convalescent plasma for hospitalized patients with severe COVID-19 infection (compassionate use, expanded access program) 2. Monitor safety of the therapy with convalescent plasma containing antibodies against SAR CoV-2 and Remdesivir for hospitalized patients with severe COVID-19 infection 3. Evaluate outcomes in patients who received convalescent COVID-19 plasma therapy alone, Remdesivir alone, and both agents. Study Design: This study will be a prospective, observational clinical study with an intention-to-treat, cross-over design. Comparison groups will be patients who received convalescent plasma vs. those who received Remdesivir. In addition, cross-over to convalescent plasma arm will be allowed for patients who continued to get worse even after receiving Remdesivir for more than 48 hours.