View clinical trials related to Respiratory Distress Syndrome.
Filter by:The objective of this study was to investigate the hemodynamic effects of two alveolar recruitment maneuver strategies in critical care patients with acute respiratory distress syndrome.
This is a Phase 1, multi-center, dose escalation study that is followed by a Phase 2 randomized, double-blind, placebo-controlled study of the safety and efficacy of WP1122 administered q12h ±1 hr PO in adult patients with COVID-19 who require hospitalization with respiratory support. The Phase 1 component will enroll COVID-19 positive patients who are symptomatic and the Phase 2 component will enroll adults with COVID-19 who require hospitalization for respiratory support and those patients requiring intubation with mechanical ventilation.
The purpose of this study is to determine the efects of prone positioning on the recruitment- to-inflation ratio in COVID-19 patients with acute respiratory distress syndrome.
To evaluate the safety and efficacy of intravenous (IV) administration of bone marrow mesenchymal stem cell derived extracellular vesicles (EVs), ExoFlo, versus placebo for the treatment of hospitalized patients with moderate-to-severe Acute Respiratory Distress Syndrome (ARDS).
Aortic dissection (AD) is one of the most dangerous cardiovascular emergencies, with rapid onset, rapid progression, high fatality rate, and a variety of life-threatening complications. Acute lung injury (ALI) caused by AD is an important cause of many adverse outcomes. Studies have confirmed that 34.9% to 53.8% of AAD patients have ALI before surgery, and Impaired preoperative lung function may lead to worse oxygenation after AD surgery. The pathophysiological mechanism of AD-induced ALI is complex. A variety of preoperative and intraoperative risk factors can induce or aggravate ALI, such as ischemia-reperfusion injury, deep hypothermic circulatory arrest, and inflammatory reactions. At present, the clinical use of improved surgery, cardiopulmonary bypass perfusion, early anti-inflammatory treatment, and protective lung ventilation can reduce and improve perioperative ALI to a certain extent, but it is still not ideal. In recent years, inhibition of neutrophil activation and aggregation, and reduction of neutrophil elastase activity as targets for the treatment of inflammatory injury have also become an important clinical treatment measure, in order to further reduce the body's inflammatory response to improve and alleviate ALI. Sivelestat sodium, as a neutrophil elastase inhibitor, is the only approved therapeutic drug for ALI/ acute respiratory distress syndrome (ARDS) in the world. It is precisely by reducing the inflammatory infiltration of neutrophils and inhibiting neutrophil elastase activity, thereby exerting a certain protective effect on the lungs. The study takes patients with AD surgery as the research object. On the basis of not terminating and changing the original treatment plans, sivelestat sodium was added in the perioperative period to observe the incidence, and severity of ALI/ARDS in the perioperative period. It aims to explore the efficacy and safety of sivelestat sodium in the treatment of pulmonary insufficiency after AD arch surgery under hypothermic circulatory arrest.
Expiratory or inspiratory transpulmonary pressures have been proposed to optimize ventilator settings in patients with ARDS. The aim of this study is to assess the feasibility and the physiological effects of a new method based on both expiratory and inspiratory transpulmonary pressures.
In the current COVID-19 pandemic, many patients have an acute respiratory distress syndrome (ARDS). Among mechanisms related to COVID-19 acute respiratory distress syndrome, cytokine storm and secretion of IL-6 play a central role. ARDS management involves intubation for protective mechanical ventilation, deep sedation and curarisation. During intensive care unit (ICU) hospitalization, improvement of hematosis induces a switch from a controlled ventilation mode to a withdrawal ventilation mode, such as Spontaneous Ventilation with Pressure Support (SP-PS) or Adaptative Support Ventilation (ASV). This step is essential prior to considering complete weaning from controlled ventilation and sometimes ends with a failure. In this case, deterioration of hematosis and/or ventilatory mechanics is observed. At the same time as withdrawal failure, the investigators observed biological inflammatory rebound in some patients. Therefore, influence of inflammatory biological parameters, including IL-6, on withdrawal failure, needs to be investigated. To this end, the investigators decide to dose different inflammatory markers - such as IL6, C-Reactive Protein (CRP), Procalcitonin (PCT) - in patients with acute respiratory distress syndrome due to COVID-19, during standard of care. Indeed, in patients with acute respiratory distress syndrome not due to COVID-19, the increase in IL6 is a negative prognosis during medical first aid but also when the mechanical ventilation is withdrawn. In addition, IL6 rise is associated with poor prognosis for patients with COVID-19 and longer stays in intensive care.
Acute respiratory distress syndrome (ARDS) is a severe pulmonary insult responsible for major, life-threatening hypoxemia. The alteration of hematosis is secondary to alveolar edema, following damage to the alveolocapillary barrier in response to a systemic inflammatory process. The presence of fluid effusion within the alveolar sacs and the modification of type II pneumocyte activity due to the presence of numerous pro-inflammatory mediators will lead to a quantitative and qualitative alteration of the surfactant. At the same time, leukocyte infiltration will lead to an alteration of the support tissue and to the accumulation of cellular debris. All these elements will lead to a heterogeneous loss of aeration of the lung. In addition, the alveolar units are compressed by the entire lung parenchyma due to the effect of gravity on the edematous tissue. The treatment of ARDS is based on the antagonistic need to maintain hematosis and reduce parenchymal insult secondary to mechanical ventilation. Optimization of mechanical ventilation consists in reducing the volume of gas administered at each respiratory cycle and in limiting thoracic parietal stress by the use of curares. More recently, the interest of the ventral decubitus position has been demonstrated. During such a maneuver, the posterior pulmonary parenchymatous zones, usually subjected to gravity in the supine position, will be able to re-expand under the effect of the prone position and of the positive pressure induced by the ventilator. The increase in parietal elastance, due to the compression of the thorax between the posterior part of the trunk and the bed, also contributes to an improvement in the distribution of inhaled gases within the pulmonary parenchyma by limiting the loss of energy, transmitted directly to the wall. The ventral decubitus position allows to redistribute the ventilation in territories which were not aired before but which participate to the respiratory exchanges because they are still perfused and thus to improve the pulmonary compliance measured. Although described as an atypical form, SARS-CoV-2 infection can lead to ARDS with severe forms of viral pneumonia and thus require prone positioning. While this results in improved oxygenation and compliance, prone positioning is accompanied by a risk of complications such as pressure sores, described as the most frequent. In addition, the massive influx of patients and more generally the lack of personnel during pandemic peaks has made the application of prone position sometimes complex because it requires human resources. As a result, the benefit/risk ratio of the maneuver is difficult to determine because not all patients respond in the same way to prone positioning. It appeared essential to be able to predict the expected benefit of the prone position before performing the procubitus maneuver. The application of thoracic and abdominal pressures, as part of the respiratory management of patients, is a technique commonly used by physiotherapists. Investigators have demonstrated a similar change in measured lung parenchymal compliance during manual compression of a patient's chest and during prone positioning. In the context of the epidemic, investigators used this test systematically to determine which patients were most likely to benefit from prone positioning and for whom the available resources should be concentrated at any given time.
Inhalation injury become a more common cause of death in burn patients but alone the smoke injury has low mortality rate. It is reported that a combination of smoke injury with cutaneous burn increases the mortality rate and predispose to Acute Respiratory Distress Syndrome. This experimental study aims to report the benefits of postural drainage on the respiratory system in burn patients. This study will determine the effects of postural drainage on oxygen saturation, airway clearance in burn patients with Acute Respiratory Distress Syndrome by comparing mechanical ventilation with and without the application of postural drainage. A randomized clinical trial will be conducted in the data and will be collected from the ICU of Jinnah Burn & Reconstructive Surgery Centre and Shafique Aziz Free Burn Centre through consecutive sampling through technique on 50 patients which will be allocated through sealed opaque enveloped into Group A and Group B. Pre and post treatment value of oxygenation and other variables for both group will be recorded by using APACHE II. Group A will be treated by postural drainage and mechanical ventilation for two consecutive days. Similarly, Group B will be treated by mechanical ventilation only. Data will be analyzed using SPSS software 25. After assessing the normality of data by the Shapiro-Wilk test, it will be decided either parametric or non-parametric tests will be used within a group or between two groups.
This study aimed to investigate the prognostic value of serum melatonin as a biomarker for the determination of severe COVID-19 infection in pregnant women. Four study groups were formed, including pregnant women with a positive COVID-19 PCR test, severe symptoms, and inpatient treatment. Pregnant women who had complaints similar to COVID-19 infection or had no complaints, but had a PCR test due to the surveillance program and negative test results were included in the control group. Methods and Main Outcome measure: Laboratory values of the cases at the time of diagnosis parameters were collected. Melatonin levels decrease in pregnant women with COVID-19 symptoms, the severity of symptoms increases. In addition, patients with low melatonin levels have an increase in infection parameters and an increase in the hospital stay.