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 170 of 264Dhaka Medical College
The aim of this study is to evaluate the preliminary safety and performance of a low-cost locally-made Venturi-based Non-invasive Positive Pressure Ventilator (NIPPV) device for hypoxemic COVID-19 patients. The device administers Continuous Positive Airway Pressure (CPAP) therapy using the jet-mixing or Venturi effect to increase the volume flow rate of oxygenated air from a pressurized cylinder by entraining the atmospheric air. To provide CPAP therapy, this high flow of oxygenated air is delivered to the patient via a low-cost non-vented mask with a tight seal with a High-Efficiency Particulate Air (HEPA) filter connected to the exhalation limb. The tight seal and HEPA filter ensures a minimal risk of aerosol generation and thus the device can be used without a negative pressure room. The system consists of the developed Venturi-based flow-generator, a standard 22mm breathing tube, a standard Y-connector, a non-vented CPAP mask (e.g., snorkel mask, helmet), a HEPA filter, and a Positive End Expiratory Pressure (PEEP) valve. The bench-top testing of the device is done in the laboratories of BUET and was verified that the device performs within the CPAP guidelines provided by the Medicines and Healthcare products Regulatory Agency (MHRA), UK. This study aims to assess the safety of and efficacy of the device in three different steps: (1) design validation, (2) clinical feasibility and (3) pilot clinical trial for safety and efficacy evaluation. Only if the device successfully passes the parts 1 and 2, the investigators will proceed to the final clinical trial in step 3. In this final step, the investigators aim to conduct a randomized controlled trial (RCT) evaluating for non-inferiority of the CPAP intervention compared to standard HFNO treatment. The number of ventilator-free days will be used as the primary outcome for efficacy, while patient recovery, death, or need of intubation and other adverse events will be used as secondary outcomes.
Emanuela Keller
In neurocritical care, besides the standard intensive care monitoring, even more data are obtained from the very complex pathophysiological changes in brain disease. Medical staff for decision-making cannot integrate the huge amount of clinical data generated every second and visualized on different monitors, anymore. Lack of data integration and usability is a major reason that only few of the knowledge physicians use in this field is evidence based. Early warning systems, powered by predictive algorithms that detect critical states before they happen would allow the staff to intervene early and mitigate or even prevent such a critical state.
Portsmouth Hospitals NHS Trust
Point of care testing is urgently required to enable the immediate detection of SARS-CoV-2 infection to allow effective transmission prevention precautions to succeed.
Lawson Health Research Institute
The primary objectives of this pilot study protocol are to assess safety and feasibility of using the geko™ device in COVID-19. Regarding safety to patients, we will measure the rate of adverse events, primarily local site irritation or discomfort. Feasibility will be measured on the basis of recruitment; ability to enroll sufficient number of patients meeting criteria. Protocol adherence will be observed as the ability to deliver the study intervention to the patients randomized to the treatment arm within the prescribed timeline and ability to complete the course of treatment. Additionally, we plan to measure patient outcomes such as ICU admission and death. The findings of this study have the potential to decrease the complications seen in COVID-19 infections.
MEDEX
The study is an unblinded, randomized, controlled trial for use of the AirFlO2 device for patients admitted to Duke Hospital with COVID-19 and tachypnea (RR >20 breaths/min) and/or hypoxia (Oxygen saturation
Advaccine (Suzhou) Biopharmaceuticals Co., Ltd.
This is a Phase 2/3, randomized, placebo-controlled, multi-center trial to evaluate the safety, immunogenicity and efficacy of INO-4800 administered by intradermal (ID) injection followed by electroporation (EP) using CELLECTRA® 2000 device to prevent COVID-19 in participants at high risk of exposure to SARS-CoV-2. The Phase 2 segment will evaluate immunogenicity and safety in approximately 400 participants at two dose levels across three age groups. Safety and immunogenicity information from the Phase 2 segment will be used to determine the dose level for the Phase 3 efficacy segment of the study involving approximately 7116 participants.
Strados Labs, Inc.
Listening to breath sounds with the stethoscope/auscultation is used by pulmonary physicians in conjunction with pulmonary function, signs and symptoms, oxygen saturation and diagnostic testing to admit, follow and discharge patients from hospital. Of these, only auscultation routinely ceases upon discharge from Hospital. Healthcare utilization statistics have shown that for more than a decade, readmission after discharge for an exacerbation of COPD or severe asthma (or chronic heart failure) remains a major problem. The Strados System has been designed to extend the range of lung sound recording both geographically and temporally to improve the standard of care when access to continuous monitoring has been replaced by periodic or no monitoring. The primary purpose of this study is to assess the clinical utility of the Strados System in enabling periodic recording and reviewing of breath sounds in patients with chronic respiratory diseases, either in the ICU, or in less continuously monitored settings, including after inpatient discharge.
Federal University of São Paulo
The end of 2019 saw the emergence of a new human coronavirus (COVID-19) spread rapidly around the world and has a high degree of lethality. In more severe cases, patients remain in hospital inpatient units, under the care of the health team. To serve this population, it is important to use and develop potential tools to meet the demands of physical activity and improve cardiorespiratory fitness. In this sense, exposure therapies of virtual reality are promising and, although limited for this purpose, have been shown to be an adequate and equivalent alternative to traditional exercise programs. Fifty patients with confirmed diagnosis of COVID-19 will be evaluated in an inpatient unit at Hospital São Paulo, at Escola Paulista de Medicina, Universidade Federal de São Paulo (HSP - EPM/UNIFESP). After completing all the questionnaires and tests of the initial evaluation (Medical Research Council Scale, Visual Analogue Scale, BORG Scale, Brunel's Mood Scale, Satisfaction Scale and Heart Rate Variability - HRV), the individuals will be divided into two groups being Group A: Subjects with COVID-19 who will start the first day of the protocol with Virtual Reality tasks in the morning and then in the second period, in the afternoon, will perform the conventional exercises (n = 25); And Group B: Subjects with COVID-19 who will start the first day with conventional exercises in the morning and in the second period, in the afternoon, will perform activity with virtual reality (n = 25). After the application of therapies, final evaluations will be carried out. The rehabilitation protocol will be applied during all days of hospitalization. For the protocol, the Heart Rate Variability indices will be evaluated in three moments: (1) rest before the task, (2) during the intervention, (3) recovering from the intervention. The performance data during the activity in Virtual reality will also be evaluated. The results of this study will assist in assessing the response to rehabilitation therapies during hospitalization and the prognosis of these patients.
SeaStar Medical
The clinical trial will evaluate the short term and extended impact on on respiration, pulmonary function and cardiovascular function in C2Rx treatment verse Standard of Care (SOC) in critically ill adults with COVID-19 infections .
Instituto Mexicano del Seguro Social
There are several clinical studies that mention the benefits of treatment with low-dose radiation therapy to patients with COVID 19, so this study protocol will be started to determine if there is clinical improvement with treatment and low-dose radiation therapy. to all the lung.