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 260 of 299University of British Columbia
Emergent experimental and anecdotal evidence has indicated that critically ill COVID-19 patients demonstrate two patient sub-types (called phenotypes). In one group the disease progresses slowly and patients have a low potential of developing mild respiratory failure, but in the other group, an exaggerated immune response (hyper-inflammation/cytokine storm) may be linked to the onset of precipitous respiratory failure, termed acute respiratory distress syndrome. This syndrome is responsible for a large portion of COVID-19 associated mortality. Thus, determining links between hyper-inflammation and acute respiratory distress syndrome in COVID-19 patients is of immediate importance. Blood samples will undergo a number of analyses to help us to understand as much as possible about COVID-19. We will also study any differences in physiologic and cytokine levels before and after patients are treated with immunomodulatory therapies as part of clinical care in COVID-19 patients.
Jessa Hospital
Rationale In a very short time corona virus disease 2019 (COVID-19) has become a pandemic with high morbidity and mortality. The main cause of death is respiratory failure including acute respiratory distress syndrome, however the exact mechanisms and other underlying pathology is currently not yet known. In the current setting of the COVID-19 pandemic complete autopsies seem too risky due to the risk of SARS CoV-2 transmission. Yet, as so little is known, additional histopathological, microbiological and virologic study of tissue of deceased COVID-19 patients will provide important clinical and pathophysiological information. Minimal invasive autopsy combined with postmortem imaging seems therefore an optimal method combining safety on the one hand yet proving significant information on the other. This study aims to determine the cause of death and attributable conditions in deceased COVID-19 patients. This will be performed using post-mortem CT-scanning plus CT-guided MIA to obtain tissue for further histological, microbiological and pathological diagnostics. In addition, the pathophysiology of COVID-19 will be examined by further tissue analysis.
Memorial Sloan Kettering Cancer Center
The study researchers think that a medication called N-acetylcysteine can help fight the COVID-19 virus by boosting a type of cell in your immune system that attacks infections. By helping your immune system fight the virus, the researchers think that the infection will get better, which could allow the patient to be moved out of the critical care unit or go off a ventilator, or prevent them from moving into a critical care unit or going on a ventilator. The US Food and Drug Administration (FDA) has approved N-acetylcysteine to treat the liver side effects resulting from an overdose of the anti-inflammatory medication Tylenol® (acetaminophen). N-acetylcysteine is also used to loosen the thick mucus in the lungs of people with cystic fibrosis or chronic obstructive pulmonary disease (COPD). This study is the first to test N-acetylcysteine in people with severe COVID-19 infections.
Mansoura University
We will study genetic factors causing severe disease due to infection with SARS-COV-2 which may help to find targeted therapy
Nemours
This is a prospective cohort study of pregnant patients at an urban academic center diagnosed with perinatal COVID-19 infection, followed up to 6 weeks postpartum.
Medical University Innsbruck
Wider research context: Since the recognition of SARS-CoV-2 outbreak in 2019, there are now over 126 million COVID-19 cases worldwide with more than 2.7 million deaths. Reports on neurological manifestations vary in prevalence rates (6-84%) and range from mild (headache, hyposmia, myalgia) to severe (encephalopathy, strokes, seizures). Little is known about long-term neurological outcomes of COVID-19 patients. The investigators propose a structured protocol to capture persistent and delayed neurological manifestations, neurocognitive deficits and quality of life (QoL) 3 and 12 months after COVID-19. Objectives: The investigators hypothesize that neurological manifestations and neuropsychological/cognitive deficits can be detected after COVID-19, substantially impact on patients' QoL and can be correlated with structural neuroimaging findings. Main objectives are to assess firstly long-term prevalence rates and natural history of neurological manifestations, secondly neuropsychological/cognitive deficits after COVID-19, thirdly the impact of COVID-19 on measures of mental health, QoL and functional outcome, fourthly to correlate neurological manifestations and distinct neurocognitive deficits with structural MRI abnormalities, and Fifthly to compare these results to age- and sex matched controls hospitalized with pneumonia (Cpneum) and to healthy controls for MRI-data (Chealthy). Approach: The investigators aim to enrol at least 225 patients with COVID-19, in addition to 50 Cpneum and 80 Chealthy. COVID-19 patients will include (group Oóne) outpatients presenting to the hospital, (group two) in-patients not requiring ICU admission, and (group three) patients admitted to the ICU. The investigators will not include asymptomatic patients, patients not presenting to the hospital, and those who do not consent to participate. The standardized protocol includes a firstly a structured neurological examination, secondly olfactory testing, thirdly assessment of QoL, mental health and functional outcome at 3 and 12 months, and fourthly screening for cognitive deficits (at 3 months) and a structured neuropsychological testing (at 12 months) in COVID-19 patients and controls. In a subset of at least 120 COVID-19 patients and 50 controls (Cpneum) high field MRI will be performed at 3 and 12 months. Innovation: The investigators aim to quantify COVID-19 related and specific neurological manifestations and their impact on the individual health condition. The novelty lies in the prospective design, the longitudinal follow-up including and the inclusion of a control group which allows us to explore the natural history of COVID-19 related neurological manifestations. Preliminary analysis of our ongoing 3-month follow-up suggests persistent neurological manifestations and a significant impact of COVID-19 on mental health, cognition and QoL. The investigators believe that our study results likely influence the long-term care of COVID-19 patients and help to identify those, who need further neuro-rehabilitative support
University of Ottawa
In March 2020, the World Health Organization (WHO) declared the novel coronavirus (COVID-19) a global pandemic. Ontario has confirmed more than 547,000 cases of COVID-19 since testing began. For many of these patients, symptoms resolve within 4 weeks of onset. However, it is becoming apparent that a significant number of individuals are experiencing symptoms that persist long after the acute infection, known as Long COVID. These individuals have a wide constellation of presenting symptoms, often varying from initial presentation. For this study, we will be enrolling individuals receiving care at The Ottawa Hospital for Long COVID. This study aims to determine the following four things: 1) will adding electronic case management improve quality of life three months after coming to hospital with Long COVID; 2) is the electronic case management platform cost effective; 3) is there any factors that predict outcomes at 3 months; 4) to determine how a personalized rehabilitation program supported by a digital platform could be implemented for individuals with Long COVID. We will enroll individuals from The Ottawa Hospital who will then be randomly assigned to receive either usual care or usual care plus electronic case management, through a platform called NexJ Connected Wellness. Participants will also complete questionnaires every 4 weeks for 3 months. We will be looking at quality of life, mental and physical health, cognitive symptoms, fatigue and pain.
Instituto Brasileiro de Osteopatia
Background: Fatigue is among the most common symptoms of the long-term effects of coronavirus (long COVID). This study aims to compare the effectiveness of osteopathic manipulative treatment (OMT) combined with physiotherapy treatment (PT) compared to PT alone on fatigue and functional limitations after two months post randomization in adults with long COVID. Methods: This is a study protocol for a two-arm, assessor-blinded, pragmatic randomized controlled superiority trial. Seventy-six participants will be randomly allocated to OMT+PT or PT. The PT includes usual care interventions including motor and respiratory exercises targeting cardiorespiratory and skeletal muscle functions. The OMT entails direct, indirect, visceral, and cranial techniques. Patients will be evaluated before and after a 2-month intervention program, and at 3-month follow-up session. Primary objectives comprise fatigue and functional limitations at 2-month post randomization as assessed by the fatigue severity scale and the Post-COVID Functional State scale. Secondary objectives comprise fatigue and functional limitations at 3 months, and the perceived change post-treatment as assessed by the Perceived Change Scale (PCS-patient).
ResApp Health Limited
Decentralized clinical study designed to collect further cough sounds, self-reported symptoms, and medical treatment questionnaires from participants enrolled on the COVID-Cough Study ("Study 1"). The aim of this further data collection study ("Study 2") is to: 1. develop an understanding of changes in cough sounds associated with COVID-19 and how they alter during the disease; 2. develop an understanding of other causes of COVID-19-like symptoms and their associated cough sound patterns; and 3. gain a broader understanding of the clinical outcomes of individuals who present for COVID-19 testing.
Hôpital Européen Marseille
The COVID-19 pandemic is caused by the severe acute respiratory syndrome coronavirus 2 (SARS CoV-2), an emerging coronavirus, which has already infected 192 million people with a case fatality rate close to 2%. About 5% of patients infected with SARS CoV-2 have a critical form with organ failure. Among critical patients admitted to intensive care, about 70% of them will require ventilatory assistance by invasive mechanical ventilation (MV) with a mortality rate of 35% and a median MV duration of 12 days. The most severe lung damage resulting from SARS CoV-2 infection is the acute respiratory distress syndrome (ARDS). The virus infects alveolar epithelial cells and capillary endothelial cells leading to an activation of endothelium, hypercoagulability and thrombosis of pulmonary capillaries. This results in abnormal ventilation / perfusion ratios and profound hypoxemia. To date, the therapeutic management of severe SARS CoV-2 pneumonia lay on the early use of corticosteroids and Interleukin-6 (IL-6) receptor antagonist, which both reduce the need of MV and mortality. The risk factors of death in Intensive Care Unit (ICU) are: advanced age, severe obesity, coronary heart disease, active cancer, severe hypoxemia, and hepatic and renal failure on admission. Among MV patients, the death rate is doubled in those with both reduced thoracopulmonary compliance and elevated D-dimer levels. Patients with severe alveolar damage are at risk of progressing towards irreversible pulmonary fibrosis, the incidence of which still remain unknown. The diagnosis of pulmonary fibrosis is based on histology but there are some non-invasive alternative methods (serum or bronchoalveolar biomarkers, chest CT scan). We aim to assess the incidence of pulmonary fibrosis in patients with severe SARS CoV-2 related pneumonia. We will investigate the prognostic impact of fibrosis on mortality and the number of days alive free from MV at Day 90. Finally, we aim to identify risk factors of fibrosis.