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 280 of 348Centre Hospitalier Universitaire Vaudois
Recent literature shows that the sensitivity of the PCR tests for the detection of SARS-CoV-2 using saliva samples is close to that using nasopharyngeal swabs. This type of sampling represents a practical advantage since it can be performed by the patient herself/himself and would thus allow to speed up the collection process. It is also less painful and could prevent the rare lesions to the nasal mucosa that can occur when using nasopharyngeal swabs. Rapid Diagnostic Tests for the detection of SARS-CoV-2 antigens have been developed using nasophayngeal swabs and have shown very high sensitivity against PCR, ranging from 93% to 98% when based on laboratory validation, 80% when based on clinical validation.This method offers the considerable advantage to inform the patient of the test result on site, and allow the provision of appropriate recommendations on the spot of testing. The studies performed so far have been conducted using nasopharyngeal samples only. There are no data with saliva yet. It is expected that the RDT would also work on the saliva. Even if slightly less sensitive due to the fact that it detects antigens and not multiplied RNA as PCR does, RDT on saliva could better serve the public health goal to test widely and quickly and have ultimately more COVID cases detected and isolated, and hence reduced transmission. To investigate the case detection rates of both PCR on saliva and nasopharynx and RDT on nasopharynx and saliva, the patient will be taken four samples, two swabs on saliva, one for RDT and one for PCR, and two swabs on nasopharynx, one for RDT and one for PCR. Patients who have at least one of the common symptoms and who consent to such a procedure will be recruited to compare the four results. The primary objective is to compare the case detection rates for SARS-CoV-2 of the four testing methods (two sampling types and two test types).
Centre Hospitalier Régional d'Orléans
The current prospective study was designed to assess the diagnostic specificity and sensitivity of a novel antigen-based rapid detection test (COVID-VIRO®) on nasopharyngeal specimens in comparison to the reference test in a real-life setting
University of Chile
Severe SARS-CoV-2 disease is characterized by a progressive hypoxemic respiratory failure. Autopsies from these patients show severe endothelial damage with extensive vascular thrombosis, microangiopathy, and occlusion of alveolar capillaries and, finally, evidence of new vessel growth through intussusceptive angiogenesis. This research aims to study endothelial damage and angiogenesis biomarkers and its association with major cardiovascular events.
Zealand University Hospital
NAME of STUDY: Surfactant levels in the lungs of COVID-19 patients BACKGROUND - Infection with SARS-CoV-2 may induce respiratory failure. - COVID-19 associated respiratory failure may require ventilatory support. - SARS-CoV-2 uses alveolar type II cells for virus replication. - Alveolar type II cells are responsible for surfactant production and lack of surfactant causes respiratory failure in preterm neonates. - Lack of surfactant may play role for respiratory failure in COVID-19 patients DESIGN Exploratory prospective study design without therapeutic intervention of any kind. Lung fluid will be donated as part of standard care procedures. HYPOTHESIS Surfactant is measurable in tracheal secretions by mid-infrared FTIR spectroscopy determined surfactant spectra. Surfactant is reduced in COVID-19 patients requiring ventilator support as compared to non- COVID-19 patients. Dysfunctional surfactant in COVID-19 patients regain its function when respiratory function improves. POPULATION Main population is patients with COVID-19 pneumonia that requires ventilatory support. OUTCOME MEASURES Primary outcome is the level of surfactant in lung fluid as obtained by tracheal suction. SAMPLE SIZE In total 30 patients will be included: twenty COVID-19 patients and 10 non-COVID-19 patients.
National Medical Research Radiological Centre of the Ministry of Health of Russia
Coronavirus disease (COVID-19) is a pandemic of unprecedented proportions with an exponential increase in incidence. Airway epithelium infection caused by coronavirus (SARS-CoV-2) triggers a cascade of difficult-to-control reactions, a so-called "cytokine storm". In contrast to the previously used method of external beam radiation therapy for patients at high risk of a cytokine storm, in present study a different dose delivery mechanism through inhalation of 99mTc-labeled carbon ultrafine aerosol obtained from a TechnegasPlus generator is used. By utilizing anthropometric phantoms the dosimetric characteristics of the applied technique and obtained the coefficients of the transition from the count rate over the area of interest to the activity contained in this area (in kBq) were studied. By observing a group of healthy volunteers after inhalation of 99mTc-labeled carbon ultrafine aerosol, the accumulated dose in the human lungs under internal irradiation of 99mTc was determined. A novel technique has been developed and the possibility of using inhaled low-dose radionuclide therapy in the complex treatment of patients with COVID-19 - associated pneumonia has been studied. As a result, a significant improvement of hematological parameters in the group of patients after inhalation of 99mTc-labeled carbon ultrafine aerosol as compared to the control group is expected.
Royal Marsden NHS Foundation Trust
Distinguishing changes on patients that have received thoracic radiotherapy and patients that are currently receiving or have recently received IO and presenting lung changes which will be identified using AI.
Igenomix
A descriptive, clinical series, single-centre, national, biomedical study to determine the presence of SARS-CoV-2 in sperm samples from positive PCR patients for COVID-19 and to evaluate the presence of the virus in the sperm samples after a negative PCR for COVID-19
Rigshospitalet, Denmark
The aim of this study is to compare the SARS-CoV-2 detection rate using either a Saliva, oropharyngeal swabs or nasopharyngeal swab method for specimen collection.
Turkish Respiratory Society
The investigators hypothese that lung involvement due to COVID-19 may cause structural changes in the lung in the long term. In this study the effects of structural changes in the lung on pulmonary function tests, exercise capacity and quality of life will be examined.
ANRS, Emerging Infectious Diseases
The Respiratory infection COVID-19, due to a new coronavirus, SARS-CoV2, appeared in December 2019 in several people who attended the wildlife market in Wuhan, Hubei Province, China. While COVID-19 has spread to nearly 200 countries and caused two millions infections, Lao PDR detected its first confirmed case very recently, on March 20, three months after the start of the outbreak in China. As of April 12th, 2020, Lao PDR has only recorded 18 confirmed cases, a very low number compared to other countries around the world. However, several key factors suggest that Lao PDR could be much more affected by COVID-19 because of the following reasons: (i) The multiple and massive trans-border movements between Lao PDR and China. (ii) The similar biogeographical and socio-ecological characteristics with South-Western China. (iii) The detection of a high diversity of Betacoronavirus sequences in several species of bats in Lao PDR. (iv) The numerous markets selling high volumes of local wildlife including bats and pangolins. LACOVISS project aim at investigating, using a ONE-HEALTH approach, this unexpected epidemiological pattern of SARS-CoV-2 in Lao PDR by bringing together an interdisciplinary team of experts in the field from IRD, the University of Caen, the Center of Infectiology Lao-Christophe Mérieux (CILM) and the National animal Health Laboratory (NAHL) in Vientiane. The study will focus on a community-based cohort of 1092 households, including 5400 study participants, followed-up between March 2015 and February 2019 for influenza-like illness investigation and causative agents detection (LACORIS project), located in the Vientiane metropolitan area. The COVID-19 progression in Lao PDR, and track SARS-CoV-2, will be followed retrospectively and prospectively, in all potential actors in SARS-CoV-2 circulation, including humans, domestic animals, and wildlife. The LACOVISS project will undoubtedly bring new insight in SARS-Cov-2 and SARS-CoV-like circulation in Lao PDR as well as valuable information on the natural history of COVID-19, and on the modalities of the spillover into humans, which are still largely unknown.