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Respiratory Distress Syndrome clinical trials

View clinical trials related to Respiratory Distress Syndrome.

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NCT ID: NCT05083117 Withdrawn - Clinical trials for COVID-19 Acute Respiratory Distress Syndrome

Safety and Efficacy of Inhaled XW001 For Hospitalized COVID-19 Patients Requiring Oxygen Therapy

Start date: October 30, 2021
Phase: Phase 2
Study type: Interventional

This is a multiregional, randomized, double-blind, placebo-controlled Phase 2 study in patients with confirmed symptomatic COVID-19, designed to evaluate the safety, tolerability, efficacy, and PK of XW001 (IL-29 analog) inhalation solution. The purpose of this study is to evaluate whether treatment with XW001 reduces the likelihood of worsening disease in patients with severe COVID-19. Hospitalized patients on oxygen therapy by mask or nasal prongs (WHO-OSCI score 4) will be enrolled.

NCT ID: NCT05081895 Enrolling by invitation - Critical Illness Clinical Trials

Ventilation and Perfusion in the Respiratory System

Start date: August 19, 2021
Phase:
Study type: Observational

Respiratory failure occurs when the lung fails to perform one or both of its roles in gas exchange; oxygenation and/or ventilation. Presentations of respiratory failure can be mild requiring supplemental oxygen via nasal cannula to more severe requiring invasive mechanical ventilation as see in acute respiratory distress syndrome (ARDS).It is important to provide supportive care through noninvasive respiratory support devices but also to minimize risk associated with those supportive devices such as ventilator induced lung injury (VILI) and/or patient self-inflicted lung injury (P-SILI). Central to risk minimization is decreasing mechanical stress and strain and optimizing transpulmonary pressure or the distending pressure across the lung, minimizing overdistention and collapse. Patient positioning impacts ventilation/perfusion and transpulmonary pressure. Electrical impedance tomography (EIT) is an emerging technology that offers a noninvasive, real-time, radiation free method to assess distribution of ventilation at the bedside. The investigators plan to obtain observational data regarding distribution of ventilation during routine standard of care in the ICU, with special emphasis on postural changes and effects of neuromuscular blockade, to provide insight into ventilation/perfusion matching, lung mechanics in respiratory failure, other pulmonary pathological processes.

NCT ID: NCT05079009 Completed - Clinical trials for Acute Respiratory Distress Syndrome

Effects of Blood Pulsatility on Von Willebrand Factor During ECCO2R

FLOW-ECCO2R
Start date: January 28, 2022
Phase: N/A
Study type: Interventional

The primary objective of the study is to demonstrate that the ECCO2R pulsatile configuration prevents the Willebrand factor high molecular weight multimers decrease observed under continuous blood flow configurations. The secondary objectives are to quantify the CO2 extracorporeal removal in the pulsatile configuration, to describe complications (hemorrhagic, thrombotic and hemolytic), to describe patients' gas exchanges under ECCO2R, to describe the clinical course of the patients under ECCO2R as well as during the whole stay in the Intensive Care Unit (ICU).

NCT ID: NCT05077319 Completed - COVID-19 Clinical Trials

Characteristics and Outcome of Patients With COVID-19 in ICUs in South Tyrol

Start date: March 5, 2020
Phase:
Study type: Observational

The investigators retrospectively investigate the epidemiology, clinical characteristics and therapeutic interventions of patients with COVID-19 associated respiratory failure admitted to the intensive care units in South Tyrol, Italy.

NCT ID: NCT05075161 Recruiting - Clinical trials for Acute Respiratory Distress Syndrome (ARDS)

Pirfenidone to Prevent Fibrosis in Ards.

PIONEER
Start date: June 1, 2022
Phase: Phase 3
Study type: Interventional

Acute respiratory distress syndrome (ARDS) is a severe form of acute lung injury and a major cause of Intensive Care Unit (ICU) admission worldwide. Despite a large number of randomized clinical trials, a specific and effective pharmacological approach for patients with ARDS is still lacking. Fibroproliferation is a crucial part of the host defence response, and severe fibrotic lung disease affects ARDS patients even years after acute phase resolution. Pirfenidone is an oral anti-fibrotic drug, approved and largely used for treatment of idiopathic pulmonary fibrosis (IPF). The effect of Pirfenidone in ARDS has been evaluated only in animal models. This is a randomized controlled study to evaluate for the first time the efficacy of Pirfenidone in ARDS.

NCT ID: NCT05074758 Recruiting - ARDS, Human Clinical Trials

Characterization of the microVAScular Dysfunction in Covid-19 ARDS

VASCOV
Start date: December 10, 2021
Phase:
Study type: Observational

The primary endpoint of this research is to establish that the alveolar dead space is significantly higher in patients with COVID-19 ARDS, compared to patients with non-COVID-19 ARDS. Secondarily, the investigators want to establish the prognostic value of the alveolar-dead space (measured iteratively) in patients with COVID-19 and non-COVID-19 ARDS, to establish the respective influences of the biological parameters of endothelial damage, of the biological parameters of coagulopathy, of the parameters set on the artificial ventilator on the value of the alveolar dead space; in ARDS patients with COVID-19 and non-COVID-19 ARDS, to establish the prognostic value of the laboratory parameters of endothelial damage and coagulopathy in patients with COVID-19 and non-COVID-19 ARDS.

NCT ID: NCT05067907 Completed - Clinical trials for COVID-19 Acute Respiratory Distress Syndrome

Efficacy of Respiratory Physiotherapy on Severe ICU-admitted COVID-19 Patients.

Start date: March 1, 2021
Phase:
Study type: Observational

COVID-19 is an infectious disease caused by SARS-CoV2 virus. COVID-19 patients can develop a severe disease that can lead to hypoxic respiratory failure and acute respiratory distress syndrome (ARDS). Severe patients can require access to intensive care unit (ICU). Early rehabilitation is known to be effective in critically ill patients and in ARDS. Early rehabilitation is known to be effective in critically ill subjects. The role of physiotherapy in severe COVID-19 patients is still unclear and few guidelines have been proposed so far. Aim of this study is to assess efficacy of early rehabilitation for severe ICU-admitted COVID-19 patients as compared to a group that did not received physiotherapy treatment in ICU.

NCT ID: NCT05065424 Recruiting - Clinical trials for Respiratory Distress Syndrome, Newborn

Premedication for Less Invasive Surfactant Administration Study (PRELISA)

PRELISA
Start date: March 14, 2022
Phase: Phase 4
Study type: Interventional

The purpose of this study is to conduct a double blinded randomized control trial to determine the safety and efficacy of using IV fentanyl and atropine prior to Less Invasive Surfactant Administration (LISA) procedure in preterm infants with Respiratory Distress Syndrome compared to the local standard of care to perform this procedure without any premedication. Hypothesis: In infants greater than or equal to 29 weeks gestational age requiring the Less Invasive Surfactant Administration procedure, premedication with a combination of IV atropine and IV fentanyl will be associated with fewer combined bradycardia events, defined as heartrate less than 100 beats per minute for longer than 10 seconds, and hypoxemia events, defined as saturations less than or equal to 80% for longer than 30 seconds, during the procedure compared with placebo. Specific Aims: - To determine if infants receiving IV fentanyl and atropine prior to LISA will have a decrease in hypoxemia and bradycardia events during the procedure compared to infants receiving placebo - To determine if infants receiving premedication prior to Less Invasive Surfactant Administration will have higher procedure first attempt success rate compared with infants receiving placebo - To determine the effect of premedication on cerebral oxygenation compared to placebo during and for 12 hours after Less Invasive Surfactant Administration using cerebral Near Infrared Spectroscopy - To determine the effect of premedication prior to Less Invasive Surfactant Administration on the need for mechanical ventilation for 24 hours after the procedure

NCT ID: NCT05061212 Not yet recruiting - ARDS, Human Clinical Trials

The Mechanism of Extracellular Vesicles Containing Mitochondrial DNA in ARDS Lung Injury Caused by Extrapulmonary Sepsis

Start date: October 1, 2021
Phase:
Study type: Observational

The acute respiratory distress syndrome (ARDS) remains a common and morbid complication of critical illness. Sepsis contribute to a lot of ARDS cases, but mechanisms by which non-pulmonary insults such as extrapulmonary sepsis propagate lung injury remain unclear. Most eukaryotic cells release small anuclear membrane-bound vesicles into the extracellular environment in either physiological or pathophysiological conditions, often called extracellular vesicles (EVs) .Through their cargo containing bioactive molecules such as proteins, mRNAs, and microRNAs and their interaction with target cells, EVs are recognized as important mediators of cellular communication. Mitochondrial contents are clearly present in EVs, and mitochondrial cargo within EVs have been shown to stimulate the production of proinflammatory cytokines, further enhancing LPS-induced inflammation. Among the mitochondrial contents, mtDNA was present at higher levels in EVs.Therefore, we hypothesis, EVs containing mtDNA play an important role in the occurrence and development of ARDS caused by extrapulmonary sepsis.

NCT ID: NCT05060679 Completed - Sepsis Clinical Trials

Presepsin:Gelsolin Ratio in Sepsis-related Organ Dysfunction

Start date: January 1, 2018
Phase:
Study type: Observational

In the present study, 126 patients were enrolled (23 control, 38 non-septic and 65 septic patients). Blood samples were collected from septic patients at the intensive care unit (ICU) at three time points (T1-3): T1: within 12h after admission; T2: second day morning; T3: third day morning. Sampling points for non-septic ICU patients were T1 and T3. Exclusion criteria were patients under 18 years of age, unobtainable consent, end-stage renal disease requiring chronic dialysis or kidney transplantation and patients with malignancies needing palliative care. Not more than one sample (venous blood) was collected from control patients. Plasma presepsin levels were determined by an automated chemiluminescence-based Point of Care instrument while serum gelsolin levels were measured using an automated immune turbidimetric assay. Plasma presepsin concentrations were expressed as pg/mL, while serum gelsolin levels were expressed as mg/L. Data were compared with laboratory and clinical parameters. Patients were categorized by the Sepsis-3 definitions and 10-day mortality data were investigated. Presepsin:gelsolin ratio was evaluated in major sepsis-related organ dysfunctions including hemodynamic disturbances, respiratory insufficiency and acute kidney injury (AKI).