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 506Shin Poong Pharmaceutical Co. Ltd.
This is a multi-center, randomized, Phase 2/3 study to evaluate the safety and efficacy of pyronaridine-artesunate in participants with corona virus disease 2019 (COVID-19). Pyronaridine-artesunate has been approved in Europe, Asia and Africa under brand name of Pyramax® or Artecom® as a treatment for malaria. The study will be conducted in two stages: open-label (Stage 1) and double-blind (Stage 2). Up to approximately 402 participants (20 participants in Stage 1 and 382 participants in Stage 2) are planned to be enrolled in the study and will be randomized to receive either Artecom® or matching placebo at a ratio of 1:1 in Stage 2. The dose of Artecom® will be determined by the participant's body weight, according to previously established guidelines. An independent Drug Safety Monitoring Board (DSMB) will be established to review the safety at regular intervals during the conduct of the trial. The DSMB will be subject to a Charter and will review after 20 participants have been recruited, and thereafter when 191 participants have been recruited. Ad-hoc DSMB meetings may be held at any time during the study if there are any major safety concerns. A final DSMB will be conducted when all participants have been recruited in the trial.
Derek Yellon
The coronavirus disease (COVID-19) emerged in late 2019 and has since been diagnosed in over a million persons worldwide. As this virus progresses, it causes an extreme and uncontrolled response from the patient's immune system accompanied by reduced oxygen flow to major organs, and subsequent ischaemic injury. The current treatment of COVID-19 is largely supportive without any cure or vaccine available at this time. Developing new methods to reduce this heightened inflammatory response is essential to halting progression of COVID-19 in patients and reducing the severity of damage. The cellular mechanisms seen in COVID-19 are similar to those seen in patients with sepsis. A process known as Remote Ischemic Conditioning (RIC) is an intervention which has been shown to prevent cellular injury including those associated with sepsis. Based on the evidence from studies looking at sepsis, it is anticipated the same benefit would be seen in patients diagnosed with COVID-19. RIC is a simple, non-invasive procedure where a blood pressure cuff is applied to the arm for repeated cycles of inflating and deflating (typically 3-5 cycles of 5 minutes each). This process activates pro-survival mechanisms in the body to protect vital organs and improve the immune system. Therefore, we believe it represents an exciting strategy to protect organs against reduced blood flow and extreme immune response, as seen in COVID-19 infections. This study has already been fully approved
Liverpool School of Tropical Medicine
It is unknown whether malaria or malaria treatment affects COVID-19 severity, immune responses to SARS-CoV-2 virus, or viral loads and/or duration of shedding and therewith the onwards spread of SARS-COV-2. An observational cohort study will be conducted in 708 newly diagnosed COVID-19 patient of all ages in western Kenya and Burkina-Faso. They will be enrolled in hospitals with COVID-19 testing facilities from a source population screened for SARS-CoV-2 (N~4,720). Approximately 142 of the 708 COVID-19 patients are expected to be co-infected with malaria. They will be enrolled in the nested malaria treatment trial and randomized to receive 3-days of artemether-lumefantrine (the current standard of care) or pyronaridine-artesunate, a highly effective antimalarial with known antiviral properties against SARS-CoV-2 in-vitro, that is newly registered and being rolled out in Africa. Disease progression will be assessed and nasal swabs and blood samples will be taken during home/clinic visits on days 1, 3, 7, 14, 21, 28, and 42. Patients self-isolating will be phoned daily in between scheduled visits for the first 14 days to assess signs and symptoms. Hospitalisation, self-isolation and home-based care will follow national guidelines. The WHO clinical progression scale and FLU-PRO plus scales will be used to compare disease progression between COVID-19 patients with and without malaria, and by malaria. Other endpoints include seroconversion/reversion rates, chemokine/cytokine responses, T and B cell responses, viral load and duration of viral carriage. Infection prevention and control (IPC), including the use of personal protection equipment (PPE), and measures for patient transport will follow national guidelines in each country. Written informed consent/assent will be sought. The study is anticipated to start in January 2021 and last for approximately 18 months.
Heidelberg University
The spectrum of coronavirus disease 2019 (COVID-19) ranges from asymptomatic infection to acute respiratory distress syndrome ("ARDS") and patient death. Severely affected patients may develop a cytokine storm-like clinical syndrome with high mortality. Laboratory tests in these patients show an excessive and uncontrolled immune response with consecutive multi-organ failure. In addition, there is evidence for the development of prothrombotic autoantibodies as an epiphenomenon of "Severe Acute Respiratory Syndrome Coronavirus 2" (SARS-CoV-2) infection. Therapeutic plasma exchange ("TPE") is being discussed as a therapeutic alternative in patients with severe, refractory COVID-19. The idea is that plasma exchange eliminates both endogenous and exogenous inducers of an exuberant inflammatory response as well as prothrombotic factors, thus breaking the secondary vicious circle of SARS-CoV-2 infection. In general, TPE is a safe procedure with known efficacy in other severe viral diseases as well as in cytokine storm-like diseases and ARDS of other geneses. Moreover, initial data, mostly derived from case studies, demonstrate promising therapeutic efficacy of TPE in severe COVID-19 courses with previously lacking treatment options. To further evaluate the therapeutic efficacy of TPE in severe COVID-19, a prospective randomized controlled trial of TPE in severe SARS-CoV-2 infection is being conducted at our center. Patients will be randomized to a control group (standard therapy according to center standards) and a therapy/intervention group (standard therapy + TPE).
Sheba Medical Center
The study aim to test proof of concept of CBD treatment for efficacy and safety in patients suffering with mild COVID-19 infection. The CBD will be delivered via oil droplets not containing THC, compared to placebo.
Pontificia Universidad Javeriana
The pandemic caused by SARS-CoV-2 is a global emergency present in 6 continents including 66 countries, incurring a shortage of effective and safe therapeutic alternatives that can contribute to reducing the risk of contamination, as well as helping to reduce the viral load of the positive patient. This requires a coordinated, effective and immediate action on the part of governments, companies, academic entities and even at the individual level. In the search for new therapeutic and prevention alternatives, the application of hypochlorous acid (HClO) to the nasal mucosa is proposed, a broad-spectrum and fast-acting antimicrobial solution, whose safety has been proven in preclinical trials. The efficacy of HClO has been tested against enveloped and non-enveloped viruses, reducing virus particles without affecting human cells. This solution could contribute to reducing the viral load and the risk of contamination of patients and professionals. This could have an impact on controlling the COVID-19 pandemic.
Diagnósticos da América S/A (DASA)
This is a Phase 2/3, randomized, multicenter, double-blind, dose-response study to evaluate the safety, immunogenicity, and efficacy of UB 612 in 2 age groups, adults 18 to 59 and ≥60 years of age with or without comorbidities.
Oslo University Hospital
Neurologic, neuropsychological and neuropsychiatric symptoms, signs and diagnoses are increasingly being reported in COVID-19 patients. However, the extent and implications of such "NeuroCOVID" involvement, as well as blood and MRI biomarkers for neurological and psychiatric COVID-19-affection and treatments, warrants further studies. The investigator will perform a national study with clinical and biomarker assessments of NeuroCOVID in approximately 150 Norwegian patients, recruited from ongoing COVID-studies in Norway as well as from neurological departments in Norway. The investigator will define the burden of neurological, psychological and psychiatric complications of COVID-19 disease and identify clinical characteristics and biomarkers for both short- and long-term neurological treatment and rehabilitation. Blood samples for biomarker analyses, brain MRI, clinical neurological, neurophysiological and neuropsychological assessments will be performed at 6 and 12 moths after acute disease,
University of Nottingham
With the recent worldwide outbreak of the COVID-19 infection and the huge impact it has had upon lives in the UK, it is key to increase knowledge on the impact of the virus on the body. Certain aspects of the virus' characteristics are also poorly understood: The reason behind the variation in response between individuals, and the long-term impacts of infection upon the body. It is already known from previous research that muscle-health plays an important role in health, with other illnesses known to have an impact upon muscle health. A large number of studies have investigated the relationship between muscle and health, with an increasing focus upon the impact upon the mitochondria within the muscle cells. Mitochondria are the energy-producing component of a cell and are vital not just for the muscle-cells but for the body as a whole. The researchers hope that by investigating the impact of COVID-19 infection upon human skeletal muscle, the question of why individuals have different responses to the infection and the mechanism of the longer-term impact of infection can be answered. This added knowledge will then, hopefully, be able to guide therapy targets in the future.
University of Louisville
We hypothesize that recovered COVID-19 patients suffer long term cardiovascular and pulmonary complications, which can be detected by point of care ultrasound. The goal is to comprehensively delineate the long term cardiovascular and pulmonary ultrasound findings in recovered COVID-19 patients, identify risks factors for prolonged heart/lung injury, evaluate long term effects of applied treatment, and assess late medication/vaccine side effects in COVID-19 patients.