View clinical trials related to Acute Lung Injury.
Filter by:Oropharynx is the main source of pathogen microorganisms for the ventilator - associated pneumoniae. As known bacteriophages can eliminate different pathogen microorganisms or reduce a degree of a pathogen's colonization. The research team is considering that oropharyngeal decontamination with bacteriophages can prevent the developing of the ventilator - associated pneumoniae. There will be three groups in this investigation: placebo, antiseptic drug (Octenisept) and bacteriophage (Sexthaphag).
This is a multi-center, double-blinded study of COVID-19 infected patients requiring inpatient hospital admission randomized 1:1 to daily Losartan or placebo for 7 days or hospital discharge.
Novel Corona Virus (SARS-CoV-2) is known to cause Respiratory Failure, which is the hallmark of Acute COVID-19, as defined by the new NIH/FDA classification. Approximately 50% of those who develop Critical COVID-19 die, despite intensive care and mechanical ventilation. Patients with Critical COVID-19 and respiratory failure, currently treated with high flow nasal oxygen, non-invasive ventilation or mechanical ventilation will be treated with ZYESAMI (aviptadil), a synthetic form of Human Vasoactive Intestinal Polypeptide (VIP) plus maximal intensive care vs. placebo + maximal intensive care. Patients will be randomized to intravenous Aviptadil will receive escalating doses from 50 -150 pmol/kg/hr over 12 hours.
This is a multi-center, double-blinded study of COVID-19 infected patients randomized 1:1 to daily losartan or placebo for 10 days or treatment failure (hospital admission).
Study Objective: 1. To test if post-exposure prophylaxis with hydroxychloroquine can prevent symptomatic COVID-19 disease after known exposure to the SARS-CoV-2 coronavirus. 2. To test if early preemptive hydroxychloroquine therapy can prevent disease progression in persons with known symptomatic COVID-19 disease, decreasing hospitalizations and symptom severity.
This project aims to develop software models describing how critically ill patients respond to changes in their treatment whilst admitted to an Intensive Care Unit (ICU). We will use high performance computers to fit software models to the physiological and treatment data of patients receiving mechanical ventilation.
Prospective multi-center phase 2b randomized placebo-controlled double-blinded interventional platform trial of two different pharmacologic therapies (intravenous Vitamin C or intravenous Acetaminophen) for patients with sepsis-induced hypotension or respiratory failure.
The main objective of the study is to assess the feasibility, safety, and tolerability of the administration of HCR040, a drug whose active substance is HC016, allogeneic adipose-derived adult mesenchymal stem cells expanded and pulsed with H2O2, in patients with acute respiratory distress syndrome.
The aim of the this study is to assess the short term physiological effects of 3 ventilation strategies for adult patients with ARDS admitted to intensive care unit. Two of those strategies are based on electrical impedance tomography (EIT) monitoring.
Prospective, physiological study to systematically assess the effects of high positive end-expiratory pressure (PEEP) with and without inspiratory synchronization in patients with moderate to severe acute respiratory distress syndrome (ARDS) exhibiting intense inspiratory effort while on assisted ventilation.