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Respiratory Distress Syndrome clinical trials

View clinical trials related to Respiratory Distress Syndrome.

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NCT ID: NCT04388826 Completed - Clinical trials for Respiratory Distress Syndrome, Adult

COVID-19 Treatment of Severe Acute Respiratory Syndrome With Veru-111

Start date: June 18, 2020
Phase: Phase 2
Study type: Interventional

To demonstrate the efficacy of VERU-111 in the treatment of SARS-Cov-2 Infection by assessing its effect on the proportion of subjects that are alive without respiratory failure at Day 22. Respiratory failure is defined as non-invasive ventilation or high-flow oxygen, intubation and mechanical ventilation, or ventilation with additional organ support (e.g., pressors, RRT, ECMO).

NCT ID: NCT04388813 Completed - COVID-19 Clinical Trials

Predictors of Severe COVID-19 Outcomes

PRESCO
Start date: May 28, 2020
Phase:
Study type: Observational

This is a longitudinal, multi-center, observational study collecting diverse biological measurements and clinical and epidemiological data for the purpose of enabling a greater understanding of the onset of severe outcomes, primarily acute respiratory distress syndrome (ARDS) and/or mortality, in patients presenting to the hospital with suspicion or diagnosis of COVID-19. We seek to understand whether there are early signatures that predict progression to ARDS, mortality, and/or other comorbid conditions. The duration of the study participation is approximately 3 months.

NCT ID: NCT04386720 Completed - Clinical trials for Acute Respiratory Distress Syndrome

Measurement of Airway Opening Pressure (AOP) in Patients With Acute Respiratory Distress Syndrom and With or Without Covid 19.

POVA-TIE
Start date: May 25, 2020
Phase:
Study type: Observational

Mechanical ventilation in ARDS requires protective ventilation and PEEP. Airway closer has to be overcome to reduce lung heterogeneity, AOP is measured globally with a ventilator PV curve without PEEP. EIT derived PV curve is another method that could determine heterogeneity of AOP between both lung. This study aims to determine whether AOP measured with EIT derived PV curve is similar to AOP on the ventilator PV curve and see if AOP is different between lungs. If airway closer is higher on one lung, global AOP on the ventilator PV curve probably estimates the other lung.

NCT ID: NCT04384445 Completed - COVID-19 Clinical Trials

Zofin (Organicell Flow) for Patients With COVID-19

Start date: September 8, 2020
Phase: Phase 1/Phase 2
Study type: Interventional

The purpose of this research study is to evaluate the safety and potential efficacy of Intravenous Infusion of Zofin for treatment of moderate to severe Acute Respiratory Syndrome (SARS) related to COVID-19 infection vs Placebo.

NCT ID: NCT04382391 Terminated - Respiratory Failure Clinical Trials

Study Assessing Vagus Nerve Stimulation in CoViD-19 Respiratory Symptoms

SAVIORII
Start date: May 15, 2020
Phase: N/A
Study type: Interventional

The study is a prospective, randomized, controlled investigation designed for comparison of two groups for the reduction of respiratory distress in a CoViD-19 population, using gammaCore Sapphire (nVNS) plus standard of care (active) vs. standard of care alone (SoC), the control group. The gammaCore® (nVNS) treatments will be used acutely and prophylactically. The aims of this study are to summarize and compare the incidence of clinical events and pro-inflammatory cytokine levels in patients randomized to use of gammaCore Sapphire plus standard of care vs standard of care alone in patients hospitalized for CoViD-19. Secondary objectives are demonstrate the safety of gammaCore Sapphire use in patients hospitalized for CoViD-19.

NCT ID: NCT04381338 Completed - Critical Illness Clinical Trials

Rehabilitation for People With COVID-19 in ICU

COVID_REHAB
Start date: February 28, 2020
Phase: N/A
Study type: Interventional

COVID-19 DISEASE Coronavirus disease 2019 (COVID-19) is a respiratory tract infection caused by a newly emergent coronavirus, severe acute respiratory syndrome from COVID-19, that was first recognized in Wuhan, China, in December 2019. While most people with COVID-19 develop mild or uncomplicated illness, approximately 14% develop severe disease requiring hospitalization and oxygen support and 5% require admission to an intensive care unit. In severe cases, COVID-19 can be complicated by acute respiratory disease syndrome (ARDS) requiring prolonged mechanical ventilation, sepsis and septic shock, multiorgan failure, including acute kidney, liver and cardiac injury. ARDS REHABILITATION Critically ill people who undergo prolonged mechanical ventilation often develop weakness, with severe symmetrical weakness of and deconditioning of the proximal musculature and of the respiratory muscles (critical illness neuropathy/myopathy).These individuals also develop significant functional impairment and reduced health-related quality of life (HRQL) up to 2 and 5 years after discharge. ARDS survivors may complain of depression, anxiety, memory disturbances, and difficulty with concentration often unchanged at 2 and 5 years. Less than half of all ARDS survivors return to work within the first year following discharge, two-thirds at two years, and more than 70% at five years. Early physiotherapy (PT) of people with ARDS has recently been suggested as a complementary therapeutic tool to improve early and late outcomes. The aims of PT programs should be to reduce complications of immobilization and ventilator-dependency, to improve residual function, to prevent new hospitalisations, and to improve health status and HRQL. Physiotherapy in critical patients is claimed also to prevent and contribute to treat respiratory complications such as secretion retention, atelectasis, and pneumonia. Early mobilization and maintenance of muscle strength may reduce the risk of difficult weaning, limited mobility, and ventilator dependency. Lastly, pulmonary rehabilitation in ICU in mechanically ventilated subjects may reduce length of stay in ICU up to 4.5 day, shorten mechanical ventilation of 2.3 days and weaning by 1.7 days. The aim of this study is to investigate how early pulmonary and motor rehabilitation impacts on length of hospital admission (ICU and acute ward) and early and late outcomes inpatients that develop ARDS due to COVID-19.

NCT ID: NCT04378920 Completed - Clinical trials for Acute Respiratory Distress Syndrome

A Study of Liposomal Trans Crocetin, LEAF-4L6715, in Patients With Acute Respiratory Distress Syndrome Due to COVID-19, Sepsis or Other Causes

Start date: April 14, 2020
Phase: Phase 1/Phase 2
Study type: Interventional

This is an open label phase II study of treatment with LEAF-4L6715 in patients who experience severe acute respiratory distress syndrome (ARDS) due to COVID-19, Sepsis or other Causes. The purpose of this study is to evaluate the improvement in PaO2/FiO2 by more than 25% in patients treated with LEAF-4L6715.

NCT ID: NCT04378244 Withdrawn - COVID-19 Clinical Trials

CORONA: A Study Using DeltaRex-G Gene Therapy for Symptomatic COVID-19

CORONA
Start date: December 12, 2022
Phase: Phase 1/Phase 2
Study type: Interventional

COVID-19 is an infectious disease caused by severe acute respiratory syndrome coronavirus 2. COVID-19 causes life threatening complications known as Cytokine Release Syndrome or Cytokine Storm and Acute Respiratory Distress Syndrome. These complications are the main causes of death in this global pandemic. Over 1000 clinical trials are on-going worldwide to diagnose, treat, and improve the aggressive clinical course of COVID-19. The investigators propose the first, and so far, only gene therapy solution that has the potential to address this urgent unmet medical need. Rationale 1. There are striking similarities between the damaged lung environment of COVID-19 induced ARDS and the tumor microenvironment (exposed collagen from tissue destruction by invading tumor or by the virus-induced immune response, and presence of activated proliferative cells (cancer cells and tumor associated fibroblasts or activated T cells, macrophages and pulmonary fibroblasts in COVID-19); 2. DeltaRex-G is a disease-seeking retrovector encoding a cytocidal dominant negative human cyclin G1 as genetic payload). When injected intravenously, the DeltaRex-G nanoparticles has a navigational system that targets exposed collagenous proteins (XC proteins) in injured tissues (e.g. inflamed lung, kidney, etc.), thus increasing the effective drug concentration at the sites of injury, in the vicinity of activated/proliferative T cells evoked by COVID-19. Our hypothesis is that DeltaRex-G then enters the rapidly dividing T cells and kills them by arresting the G1cell division cycle, hence, reducing cytokine release and ARDS; 3. Intravenous DeltaRex-G has minimal systemic toxicity due to its navigational system (targeting properties) that limits the biodistribution of DeltaRex-G only to areas of injury where exposed collagenous (XC) proteins are abnormally found; and 4. DeltaRex-G is currently available in FDA approved "Right to Try" or Expanded Access Program for Stage 4 cancers for an intermediate size population. To gain this approval, FDA requires DeltaRex-G to have demonstrated safety and efficacy in early clinical trials.

NCT ID: NCT04375735 Completed - COVID-19 Clinical Trials

London's Exogenous Surfactant Study for COVID19

LESSCOVID
Start date: November 23, 2020
Phase: Phase 1/Phase 2
Study type: Interventional

The research team is investigating administering exogenous surfactant in COVID-19 patients with ARDS. The overall goal is to improve the outcome (mortality) of mechanically ventilated COVID-19 patients. Although the investigators anticipate that clinical outcomes may improve in the small group of patients receiving exogenous surfactant therapy in this small, single center study, the primary goal is to first determine feasibility and safety.

NCT ID: NCT04373200 Completed - Clinical trials for Acute Respiratory Distress Syndrome

Human Ab Response & immunoMONItoring of COVID-19 Patients

HARMONICOV
Start date: May 25, 2020
Phase: N/A
Study type: Interventional

Prospective, mono centric study on COVID-19 patients with or without acute respiratory distress syndrome (ARDS) to analyse the dynamics of the immune response and to search for biomarkers of evolution