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Respiratory Distress Syndrome clinical trials

View clinical trials related to Respiratory Distress Syndrome.

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NCT ID: NCT04347941 Terminated - COVID19 Clinical Trials

Awake Prone Positioning to Reduce Invasive VEntilation in COVID-19 Induced Acute Respiratory failurE

APPROVE-CARE
Start date: July 11, 2020
Phase: N/A
Study type: Interventional

Prone positioning (PP) is an effective first-line intervention to treat moderate-severe acute respiratory distress syndrome (ARDS) patients receiving invasive mechanical ventilation, as it improves gas exchanges and lowers mortality.The use of PP in awake self-ventilating patients with (e.g. COVID-19 induced) ARDS could improve gas exchange and reduce the need for invasive mechanical ventilation, but has not been studied outside of case series.The investigators will conduct a randomized controlled study of patients with COVID-19 induced respiratory failure to determine if prone positioning reduces the need for mechanical ventilation compared to standard management.

NCT ID: NCT04345887 Completed - Clinical trials for Respiratory Distress Syndrome, Adult

Spironolactone in Covid-19 Induced ARDS

Start date: May 5, 2020
Phase:
Study type: Observational [Patient Registry]

This study intended to evaluate the effects of commonly used diuretic, spironolactone, on oxygenation in covid-19 ARDS patients.

NCT ID: NCT04345601 Completed - COVID-19 Clinical Trials

Mesenchymal Stromal Cells for the Treatment of SARS-CoV-2 Induced Acute Respiratory Failure (COVID-19 Disease)

Start date: February 12, 2021
Phase: Phase 1/Phase 2
Study type: Interventional

***At this time, we are only enrolling at Houston Methodist Hospital (HMH)/Baylor College of Medicine (BCM) and are not shipping cells outside of BCM/HMH.*** This is a study for patients who have respiratory infection caused by SARS-CoV-2 that have not gotten better. Because there is no standard treatment for this infection, patients are being asked to volunteer for a gene transfer research study using mesenchymal stem cells (MSCs). Stem cells are cells that do not yet have a specific function in the body. Mesenchymal stem cells (MSCs) are a type of stem cell that can be grown from bone marrow (the spongy tissue inside of bones). Stem cells can develop into other types of more mature (specific) cells, such as blood and muscle cells. The purpose of this study is to see if MSCs versus controls can help to treat respiratory infections caused by SARS-CoV-2.

NCT ID: NCT04343404 Completed - Clinical trials for Respiratory Distress Syndrome

Place of ECMO in the Management of Severe Refractory ARDS Associated With Covid-19

ECMO-COVID-19
Start date: April 1, 2020
Phase:
Study type: Observational

Describe COVID-19 patients who are receiving ECMO-VV respiratory replacement and what happens to them.

NCT ID: NCT04335786 Terminated - COVID-19 Clinical Trials

Valsartan for Prevention of Acute Respiratory Distress Syndrome in Hospitalized Patients With SARS-COV-2 (COVID-19) Infection Disease

Start date: April 17, 2020
Phase: Phase 4
Study type: Interventional

Rationale: The current SARS-CoV-2 pandemic has a high burden of morbidity and mortality due to development of the so-called acute respiratory distress syndrome (ARDS). The renin-angiotensin-system (RAS) plays an important role in the development of ARDS. ACE2 is one of the enzymes involved in the RAS cascade. Virus spike protein binds to ACE2 to form a complex suitable for cellular internalization. The downregulation of ACE2 results in the excessive accumulation of angiotensin II, and it has been demonstrated that the stimulation of the angiotensin II type 1a receptor (AT1R) increases pulmonary vascular permeability, explaining the increased lung pathology when activity of ACE2 is decreased. Currently available AT1R blockers (ARBs) such as valsartan, have the potential to block this pathological process mediated by angiotensin II. There are presently two complementary mechanisms suggested: 1) ARBs block the excessive angiotensin-mediated AT1R activation, and 2) they upregulate ACE2, which reduces angiotensin II concentrations and increases the production of the protective vasodilator angiotensin 1-7. In light of the above, ARBs may prevent the development of ARDS and avert morbidity (admission to intensive care unit (ICU) and mechanical ventilation) and mortality. Objective: To investigate the effect of the ARB valsartan in comparison to placebo on the occurrence of one of the following items, within 14 days of randomization:1) ICU admission; 2) Mechanical ventilation; 3) Death. Study design: A double-blind, placebo-controlled 1:1 randomized clinical trial Study population: Adult hospitalized SARS-CoV-2-infected patients (n=651). Intervention: The active-treatment arm will receive valsartan in a dosage titrated to blood pressure up to a maximum of 160mg b.i.d. and the placebo arm will receive a matching placebo also titrated to blood pressure. Treatment duration will be 14 days or up to hospital discharge < 14 days or occurrence of the primary endpoint if < 14 days. Main study endpoint: The primary study endpoint is the occurrence within 14 days of randomization of either: 1) ICU admission; 2) Mechanical ventilation; 3) Death.

NCT ID: NCT04334629 Withdrawn - Coronavirus Clinical Trials

LIBERATE Trial in COVID-19

LIBERATE
Start date: May 26, 2020
Phase: Phase 4
Study type: Interventional

The study aims to evaluate the reduction in severity and progression of lung injury with three doses of lipid ibuprofen in patients with SARS-CoV-2 infections.

NCT ID: NCT04333563 Completed - Premature Birth Clinical Trials

Non-invasive Neurally Adjusted Ventilator Assist or Continuous Positive Airway Pressure in Preterm Infants

Start date: April 14, 2020
Phase: N/A
Study type: Interventional

Strategies to prevent lung injury, facilitate lung development, and to support the preterm infant's capacity to breathe are decisive. Continuous positive airway pressure (CPAP) is the gold standard in non-invasive breathing support in preterm infants with a positive pressure that keeps the alveoli slightly inflated during expiration. Non-invasive neurally adjusted ventilator assist (NIV NAVA) is a novel method of breathing support and uses the electrical activity from the diaphragm to trigger the ventilator and synchronize with the breathing cycle. During NIV NAVA the preterm infant controls the onset of the inspiration, the respiratory rate, inspiratory time and peak pressure. This method has the potential to improve the positive pressure transmission to the infant's lower airways, accurate synchronization with the breathing pattern and be a comfortable breathing support system for the preterm infant. The investigators will compare the effect on breathing effort in preterm infants during continuous positive airway pressure and non-invasive neurally adjusted ventilatory assist measured by electrical activity in the diaphragm, respiratory vital signs, systematic clinical scoring of breathing effort and comfort, and parent reported outcomes.

NCT ID: NCT04333368 Completed - Clinical trials for Severe Acute Respiratory Syndrome Coronavirus 2

Cell Therapy Using Umbilical Cord-derived Mesenchymal Stromal Cells in SARS-CoV-2-related ARDS

STROMA-CoV2
Start date: April 6, 2020
Phase: Phase 1/Phase 2
Study type: Interventional

Whereas the pandemic due do Covid-19 continues to spread, the severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) causes Severe Acute Respiratory Distress Syndrome in 30% of patients with a 30%-60% mortality rate for those requiring hospitalization in an intensive care unit. The main physio-pathological hallmark is an acute pulmonary inflammation. Currently, there is no treatment. Mesenchymal stem cells (MSC) feature several attractive characteristics: ease of procurement, high proliferation potential, capacity to home to inflammatory sites, anti-inflammatory, anti-fibrotic and immunomodulatory properties. If all MSC share several characteristics regardless of the tissue source, the highest productions of bioactive molecules and the strongest immunomodulatory properties are yielded by those from the Wharton's jelly of the umbilical cord. An additional advantage is that they can be scaled-up to generate banks of cryofrozen and thus readily available products. These cells have already been tested in several clinical trials with an excellent safety record. The objective of this project is to treat intubated-ventilated patients presenting with a SARS-CoV2-related Acute Respiratory Distress Syndrome (ARDS) of less than 96 hours by three intravenous infusions of umbilical cord Wharton's jelly-derived mesenchymal stromal cells (UC-MSC) one every other day (duration of the treatment: one week). The primary endpoint is the PaO2/FiO2 ratio at day 7. The evolution of several inflammatory markers, T regulatory lymphocytes and donor-specific antibodies will also be monitored. The trial will include 40 patients, of whom 20 will be cell-treated while the remaining 20 patients will be injected with a placebo solution in addition to the standard of care. Given the pathophysiology of SARS-CoV2, it is thus sound to hypothesize that the intravenous administration of UC-MSC during the initial phase of ARDS could control inflammation, accelerate its recovery with improved oxygenation, reduced mechanical ventilation and ventilation weaning time and therefore reduced length of stay in intensive care. The feasibility of the project is supported by the expertise of the Meary Cell and Gene Therapy Center, which is approved for the production of Advanced Therapy Medicinal Products and has already successfully prepared the first batches of cells, as well as by the involvement of a cardiac surgery team which will leverage its experience with stem cells for the treatment of heart failure to make it relevant to the Stroma-Cov-2 project.

NCT ID: NCT04330443 Completed - Clinical trials for Respiratory Distress Syndrome

Lung Ultrasound to Guide Surfactant Therapy

ECOSURF
Start date: March 1, 2019
Phase: N/A
Study type: Interventional

Inclusion criteria are premature newborns under the gestational age (GA) of 32 weeks old with RDS, defined as the need of non invasive mechanical ventilation to keep peripheral oxygen saturation (SpO2) >90% and clinical signs of respiratory distress (polypnea, chest retractions, nasal flutter). Exclusion criteria are non-acceptance of the informed consent, chromosomal abnormalities, complex congenital malformations, signs of congenital septic shock and mechanical ventilation or endotracheal surfactant prior to the lung ultrasound. The main objective of the study is to determine if a diagnostic of respiratory distress syndrome guided by a lung ultrasound algorithm allow an earlier surfactant therapy (within the first 2 hours of life) comparing to chest X ray Secondary objectives were to assess FiO2 reached before surfactant therapy in patients surfacted according to the lung ultrasound score, the influence of the lung ultrasound algorithm regarding the respiratory evolution, and its differences comparing to the FiO2group. Respiratory evolution was defined as the need of mechanical ventilation, second dose of surfactant, duration of non invasive ventilation, number of days with oxygen requirements, length of stay in the neonatal intensive care unit, evolution to bronchopulmonary dysplasia and their progression to discharge from hospital. Patients who met the inclusion criteria were randomly assigned to two groups. using the "random" function in MS-Excel XP® program. A total of 6 physicians enrolled participants, all them fully trained for the use of lung ultrasound. The principal investigator assigned participants to interventions, depending on the randomized list. - Experimental Group 1: The neonatologist-researcher (NR) performed the lung ultrasond at admission during the first hour of life. The neonatologist-assistant (NA) of the baby was not blinded to the result of the lung ultrasound. If the patient had a lung ultrasound score higher than >8 or when FiO2 exceeded 30% patient received surfactant therapy during in the first 72 hours of life . This lung ultrasound threshold is the one with best diagnostic accuracy. - Control Group 2: The NR performed the at admission/suspicion during the first hour of life. The NA was not blinded to the result of the ultrasound. Patient received surfactant therapy only when FiO2 exceeded 30% during the first 72 hours of life

NCT ID: NCT04327505 Terminated - COVID-19 Clinical Trials

Safety and Efficacy of Hyperbaric Oxygen for ARDS in Patients With COVID-19

COVID-19-HBO
Start date: June 3, 2020
Phase: Phase 2/Phase 3
Study type: Interventional

COVID-19 may cause severe pneumonitis that require ventilatory support in some patients, the ICU mortality is as high as 62%. Hospitals do not have enough ICU beds to handle the demand and to date there is no effective cure. We explore a treatment administered in a randomized clinical trial that could prevent ICU admission and reduce mortality. The overall hypothesis to be evaluated is that HBO reduce mortality, increase hypoxia tolerance and prevent organ failure in patients with COVID19 pneumonitis by attenuating the inflammatory response.