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 1020 of 1496University Hospitals Coventry and Warwickshire NHS Trust
To evaluate whether time-to-improvement is significantly better in IMU-838 plus Oseltamivir (IONIC Intervention) and standard care vs. Oseltamivir and standard care in adult subjects with coronavirus disease (COVID-19)
Assistance Publique - Hôpitaux de Paris
Women who were able to benefit from psychiatric follow-up during the quarantine by tele-consultation have a lower risk of anxious and depressive symptoms than those who did not receive follow-up.
Universidade Metodista de Piracicaba
To evaluate pulmonary changes and the results of a cardiopulmonary rehabilitation protocol (CPRP) in patients after SARS-VOC-2 infection. Clinical trial type study to be conducted between 2020 and 2024 involving clinical-functional cardiopulmonary imaging and blood transcriptome profile: before CPRP (T1), 2 months after CPRP (T2) and 1 year later (T3). Expected results: a) clinical, image and transcriptome changes; b) clinical-functional improvement after CPRP.
Olive View-UCLA Education & Research Institute
COVID-19 is a disease caused by the virus, SARS-CoV-2. Patients with this viral infection are at risk for developing pneumonia and acute respiratory distress syndrome (ARDS). Approximately 20% to 30% of hospitalized patients with COVID-19 and pneumonia require intensive care for respiratory support. Clinically, ARDS presents with severe hypoxemia evolving over several days to a week in combination with bilateral pulmonary infiltrates on chest X-ray. Widespread alveolar epithelial cell and pulmonary capillary endothelial injury can lead to severe impairment in gas exchange. In one report of 1,099 patients hospitalized with COVID-19, ARDS occurred in 15.6% of patients with severe pneumonia. In a smaller case series of 138 hospitalized patients, ARDS occurred in 19.6% of patients and in 61.1% of patients admitted to an intensive care unit (ICU). To date, no effective treatment has been established to treat COVID-19 or to prevent progression of ARDS. It is thought that a heightened immune response with an unbalanced release of inflammatory mediators in the airway is a major cause of morbidity and mortality associated with the disease. It is therefore reasonable to postulate that improved outcomes may be obtained in patients with a balanced immune response with adequate viral control and appropriate counter-regulatory immune responses whereas a poor outcome may be expected in patients with inadequate viral control or a heightened immune response or what is referred to as a "cytokine storm". Thus, modulating the pulmonary immune response without suppressing the immune system would be a viable strategy for patients with COVID-19. The current literature supports the role of neuromodulation, particularly vagal nerve stimulation (VNS), in modulating the immune response. Modulating the pro-inflammatory pathway through VNS has been demonstrated to decrease inflammatory mediators and improve outcomes in several animal models and in humans. Percutaneous electrical nerve field stimulation (PENFS) provides a novel, non-invasive method of VNS through a non-implantable device applied to the external ear. Already, the FDA has cleared this technology for reducing symptoms of opioid withdrawal in patients with opioid use disorder. Symptoms of opioid withdrawal can be decreased by approximately 90% after 1 hour of stimulation. Similarly, the IB-Stim device has been shown to improve symptom in children with abdominal-pain-related functional GI disorders and recently received market approval by the FDA for that indication. Unpublished studies have demonstrated marked decrease in inflammation with PENFS compared to sham stimulation in a model of TNBS colitis. While the efficacy of PENFS in modulating the progression of pulmonary disease in patients with COVID-19 is unknown, several proposed mechanisms for regulation of the immune response through VNS have already been demonstrated. We propose to perform an open label, randomized study to evaluate the efficacy of PENFS for the treatment of respiratory symptoms in patients with COVID-19.
University Hospital, Strasbourg, France
North-east area of France was hit in February 2020 by the new coronavirus disease, more severely than other French regions. Factors affecting the evolution of the disease and its severity have been quickly identified, among them figuring different kinds of immune deficiency. Even if nowadays HIV infection is usually well controlled by ARV drugs, those patients with uncontrolled viral load and/or low CD4 cell counts, remain at higher risk of severe COVID infection. In this context, the primary objective of our study is aimed at evaluating the prevalence of SARS-CoV-2 antibodies in a cohort of HIV-infected patients followed-up in an HIV-infection care center. Secondary objectives are: evaluating whether the antibodies are protective or not, the kinetic of these antibodies, and HIV associated factors with the presence of antibodies.
Cairo University
Keeping in mind the rising number of cases in Egypt and the strain they put on hospital infrastructure, the idea of home isolation and follow up for COVID 19 positive cases has been adopted in many countries and was approved by World Health Organization (WHO) and Egyptian Ministry of health (MOH). Telehealth can help to mitigate this risk by minimizing the amount of face-to-face interactions. The WHO mentioned telemedicine among essential services in "strengthening the Health Systems Response to COVID-19" policy. The aim in this study is to study the effectiveness of telemedicine in managing mild COVID cases regarding isolation measures, symptoms, medications adherence, and reporting of red flags and side effects.
M.D. Anderson Cancer Center
This study investigates a new diagnostic test in detecting SARS-CoV-2, the virus that causes the disease COVID-19. This may help to improve testing for COVID-19.
Sykehuset Telemark
Through SARS-CoV-2 IgG testing of PCR positive and negative cases the study will follow the COVID-19 immune response by monitoring the SARS-CoV-2 IgG antibody levels over a period of two years. Further, risk factors will be identified by the use of the test-negative design including population controls, allowing comparison of participants with positive and negative tests, and with population controls (triangulation). Special emphasis will be on high risk groups in general and on different occupational, environmental and socio-economic groups in particular. Finally, severity of illness, deaths and the use of health care during will be assessed using national register data from Telemark and Agder.
Hadassah Medical Organization
This is a multi-center, open-label study evaluating the safety of Allocetra-OTS, in 5 subjects with severe COVID-19 and respiratory dysfunction. Subjects, who will be identified as suffering from COVID-19, will be recruited. After signing an informed consent by the patient and, within 24+6 hours following the time of eligibility (time 0), on Day 1, eligible recipient subjects will receive single intravenous (IV) administration of investigational product as described below. Subjects will be hospitalized for COVID-19, and later as medically indicated. Following investigational product (IP) administration (Day 1), subjects will be followed for efficacy and safety assessments through 28 days.
Hospital Reg. Lic. Adolfo Lopez Mateos
Within the epidemic context of phase 3 in Mexico, the implementation of new treatments that have been shown to be beneficial for patients in other countries is an urgent need. Methylene blue (MB, the oxidized form, blue color) has been used in many different clinical medicine areas, ranging from malaria to orthopedics. Methylene blue absorbs energy directly from a light source and then transfers this energy to molecules of oxygen creating singlet oxygen (O2), which is the first electronic excited state of molecular oxygen (O2). Singlet oxygen is extremely electrophilic; thus, it can directly oxidize electron-rich double bonds in biological molecules and macromolecules. For this reason, methylene blue has been used as a photosensitizer in the treatment of cancer and the protection of serum from viral agents. Methylene blue can be reactivated using energy from a light source in the body until processed out through the kidneys.