View clinical trials related to Covid19.
Filter by:In this research, it was aimed to determine the anxiety levels of parents in the Covid-19 pandemic and to examine the effects of the Solution-Focused Support Program, which is planned to be given to parents with high anxiety levels.
This open label randomized controlled multicenter phase II trial will evaluate the clinical impact of the use of HFNC vs. conventional oxygen therapy in patients with moderate and severe hypoxemic acute respiratory failure secondary to SARS-CoV-2 infection.
A randomized, parallel-group treatment, quadruple masked, two-arm study to assess the effectiveness of cod liver oil compared to placebo in the prevention of Covid-19 and airway infections in healthy adults. In this study, the investigators will investigate whether daily cod liver oil can prevent Covid-19 infections and reduce the severity of such infections. The investigators will also examine whether cod liver oil prevents other airway infections in healthy adults.
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.
The SARS-CoV-2 virus is responsible for the COVID-19 pandemic. The pandemic emerged from Wuhan Province in China in December 2019 and was declared by the WHO Director-General a Public Health Emergency of International Concern on 30 January 2020. In this study, a vaccine developed by IIBR for SARS-CoV-2 virus will be assessed for its safety and potential efficacy in volunteers. The study is comprised of two phases, a dose-escalation phase (phase I) during which subjects (18-55 years old) will be randomly allocated to receive a single administration of IIBR-100 at low, mid or high dose or saline or two administrations of IIBR-100 at low dose, or saline, 28 days apart. Based on results obtained during phase I, and cumulative phase I data review, the expansion phase (phase II) has begun, during which larger cohorts as well as elderly age subjects were initially planned to be randomly allocated to receive a single administration of IIBR-100 at low, mid or high dose or saline, or two administrations of IIBR-100 at low, mid or high dose (prime-boost) or saline, 28 days apart. Additional top-dose (prime-boost) may be implemented when immunogenicity of any prime-boost arm is considered insufficient. However, based on immunogenicity preliminary data and DSMB recommendations, only the two administrations of mid, high and top dose (prime-boost) or saline will continue in the study. The subjects will be followed for a period of up to 12 months post last vaccine administration to assess the safety and efficacy of the vaccine.
The coronavirus disease (COVID-19) epidemic represents a major therapeutic challenge. The highly contagious severe acute respiratory syndrome coronavirus 2 (SARS-COV-2) and the long duration of the disease have led to a massive influx of patients admitted in health services and intensive care units. To current knowledge, there is no treatment yet that that can prevent infection from SARS-COV-2 virus, nor the disease progression to a severe form. Daily active smokers are rare among outpatients or hospitalized COVID-19 patients. Several arguments suggest that nicotine could be responsible for this protective effect thank to the nicotinic acetylcholine receptor (nAChR). Based on epidemiological data and experimental data from scientific literature, we hypothesize that nicotine could inhibit the penetration and spread of the virus and improve the management of COVID19 , particularly in hospitalized patients to prevent adverse outcomes (death, transfer to intensive care unit, care limitation, mechanical ventilation an high flow oxygen).
The objective of the study is to identify socio-demographic factors, behaviors and practices associated with infection with SARS-CoV-2 to help determine where and how patients mostly get infected with SARS-CoV-2. It is a case-control study including : - cases identified by the nationwide system of positive SARS-CoV-2 tests (COVID-19 diagnosis information system, SIDEP) (currently limited to qRT-PCR) and invited to participate by the National Health Insurance (CNAM) which hosts the data from the nationwide test system; - controls included via Ipsos, a polling institute with access to personal data from a panel from which they will include controls matched on age (divided into 10-year categories), gender and geographic area (departement); - cases will be offered to invite a person they live with to participate in the study offering another case-control analysis inside a household. These participants will be required to report the result of the test as recommended by contact tracing guidelines to determine whether they are cases or controls. Data will be collected via a self-administered online questionnaire. Some of the participants will be called for a complementary telephone questionnaire to measure reliability of online retrieved data and explore more specific aspects of SARS-CoV-2 transmission.
This is a Phase 1 randomized study to evaluate the safety, tolerability and efficacy of nebulized Ampion in improving the clinical course and outcomes of patients hospitalized with COVID-19 infection who have respiratory distress.
The purpose of this multi center, open label, randomized, study is to obtain information on the safety and efficacy of 150 ppm Nitric Oxide given in addition to the standard of care of patients with viral pneumonia
More than 17 million people have been infected and more than 677K lives have been lost since the COVID-19 pandemic. Unfortunately, there is neither an effective treatment nor is there a vaccination for this deadly virus. The moderate to severe COVID-19 patients suffer acute lung injury and need oxygen therapy, and even ventilators, to help them breathe. When a person gets a viral infection, certain body cells (inflammatory/immune cells) get activated and release a wide range of small molecules, also known as cytokines, to help combat the virus. But it is possible for the body to overreact to the virus and release an overabundance of cytokines, forming what is known as a "cytokine storm". When a cytokine storm is formed, these cytokines cause more damage to their own cells than to the invading COVID-19 that they're trying to fight. Recently, doctors and research scientists are becoming increasingly convinced that, in some cases, this is likely what is happening in the moderate to severe COVID-19 patients. The cytokine storm may be contributing to respiratory failure, which is the leading cause of mortality for severe COVID-19 patients. Therefore, being able to control the formation of cytokine storms will also help alleviate the symptoms and aid in the recovery of severe COVID-19 patients.