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 690 of 945University of Oklahoma
This open label clinical trial is to evaluate two different doses of dexamethasone on the health outcome using World Health Organization ordinal scale at day 28 in hospitalized patients with COVID-19.
Cytocom, Inc.
This is a randomized, single blind, study. Males and females meeting inclusion criteria who have symptoms of mild COVID-19 and in whom a positive PCR result for SARS-CoV-2 is obtained may be enrolled to the study treatment within 72 hours of the positive PCR result. Eligible patients are those considered to be at high risk for COVID-19 disease progression. This includes patients ≥ 65 years of age or with any one or more of certain medical conditions including: cancer, COPD, cardiovascular disease, immunocompromised state resulting from solid organ transplant, obesity, sickle cell disease, history of smoking, and diabetes.
Ology Bioservices
Clinical study of Humira (adalimumab) or placebo in subjects with mild-moderate COVID-19
Kitasato University
Treatment of mild COVID-19 is basically performed at an outpatient clinic, then when the symptom and clinical findings exacerbate to a moderate level, patients are admitted. There is no standard treatment for mild cases. This study will investigate whether ivermectin administration suppresses the replication of SARS-CoV-2 in mild to moderate COVID-19 by investigating the negative rate of SARS-CoV-2 PCR by a randomized controlled trial. Subjects are assigned to two groups, the placebo group, and the ivermectin group. The target number of each treatment arm is 120, a total of 240 cases. A single oral administration of 200 ㎍/kg of ivermectin or an ivermectin-free placebo will be administered on an empty stomach. Time to negativization of SARS-CoV-2 PCR as the primary endpoint with additional efficacy and safety of the process will be investigated.
Regeneron Pharmaceuticals
Primary Objective: Evaluate the efficacy of itepekimab compared with placebo on the annualized rate of acute moderate-or-severe COPD exacerbations in former smokers with moderate-to-severe COPD Secondary Objectives: - Evaluate the efficacy of itepekimab compared with placebo on pulmonary function in former smokers with moderate-to-severe COPD - Evaluate the efficacy of itepekimab compared with placebo on occurrence of acute exacerbation of COPD (AECOPD) in former smokers with moderate-to-severe COPD - Evaluate the efficacy of itepekimab compared with placebo on severe AECOPD in former smokers with moderate-to-severe COPD - Evaluate the efficacy of itepekimab compared with placebo on corticosteroid-treated AECOPD in former smokers with moderate-to-severe COPD - Evaluate the efficacy of itepekimab compared with placebo on respiratory symptoms in former smokers with moderate-to-severe COPD - Evaluate the efficacy of itepekimab compared with placebo on Forced Expiratory Volume in 1 second (FEV1) slope in former smokers with moderate-to-severe COPD - Evaluate the efficacy of itepekimab compared with placebo on health-related quality of life (HRQoL) as assessed by St. George's Respiratory Questionnaire (SGRQ) in former smokers with moderate-to-severe COPD - Evaluate the safety and tolerability of itepekimab in former smokers with moderate-to-severe COPD - Evaluate the pharmacokinetic (PK) profile of itepekimab in former smokers with moderate-to-severe COPD - Evaluate immunogenicity to itepekimab in former smokers with moderate-to-severe COPD
AbCellera Biologics Inc.
The purpose of this study is to find out whether bamlanivimab is able to stop COVID-19 from getting worse. Participants with mild-to-moderate COVID-19 will receive bamlanivimab via an injection into a vein. These participants will be matched to similar COVID-19 patients who received other treatment at a local medical center. All participants will be followed to learn how their disease responds. Participation could last about 3 months and includes two required visits to the study site, with the remainder of assessments performed by phone or by medical record review.
Shin 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.
Catalysis SL
This is a two-arm, randomized, open label, two-center, controlled study to evaluate the safety and efficacy of Viusid plus Asbrip in patients with mild and moderate symptoms of respiratory illness caused by Coronavirus 2019 infection.
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
Jessa Hospital
The SARS-CoV-2 pandemic causes a major burden on patient and staff admitted/working on the intensive care unit (ICU). Short, and especially long admission on the ICU causes major reductions in skeletal muscle mass (3-4% a day) and strength. Since it is now possible to reduce mortality on the ICU, short and long-term morbidity should be considered another principal endpoint after SARS-CoV-2 infection. Cachexia is defined as 'a complex metabolic syndrome associated with underlying illness and characterized by loss of muscle mass'. Its clinical features are weight loss, low albumin, anorexia, increased muscle protein breakdown and inflammation. There is strong evidence that cachexia develops rapidly in patients hospitalized for SARS-CoV-2 infection, especially on the ICU. Several mechanisms are believed to induce cachexia in SARS-CoV-2. Firstly, the virus can interact with muscle cells, by binding to the angiotensin converting enzyme 2 (ACE-2). In vitro studies have shown the virus can cause myofibrillar fragmentation into individual sarcomeres, in addition to loss of nuclear DNA in cardiomyocytes. Similar results were found during autopsies. On a cellular level, nothing is known about the effects of SARS-CoV-2 infection on skeletal muscle cells. However, up to 19.4% of patients present with myalgia and elevated levels of creatine kinases (>200U/l), suggesting skeletal muscle injury. Moreover, patients with SARS-CoV-2 infection are shown to have elevated levels of C-reactive protein and other inflammatory cytokines which can all affect skeletal muscles. The above mentioned factors are not the only mediators by which skeletal muscle mass might be affected in SARS-CoV-2. There are other known factors to affect skeletal muscle mass on the ICU, i.e. immobilization and mechanical ventilation, dietary intake (anorexia) and inflammatory cytokines. SARS-CoV-2 infection in combination with bed rest and mechanical ventilation can lead to severe muscle wasting and functional decline resulting in long-term morbidity. Until know there are no studies investigating acute skeletal muscle wasting in patients infected with SARS-CoV-2 and admitted to the ICU. As a result, there is a need of more in-depth understanding the effects of SARS-CoV-2 infection on muscle wasting. An optimal characterization of these effects may lead to improvement in morbidity and even mortality in the short and long term by the establishment of evidence-based rehabilitation programs for these patients.