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Respiratory Distress Syndrome clinical trials

View clinical trials related to Respiratory Distress Syndrome.

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NCT ID: NCT00244101 Completed - Clinical trials for Respiratory Distress Syndrome, Newborn

Delivery Room Management Trial of Premature Infants at High Risk of Respiratory Distress Syndrome

Start date: August 2003
Phase: Phase 3
Study type: Interventional

The best mode of delivery room stabilization for premature infants at high risk for respiratory distress syndrome is unknown. The protocol evaluates the impact of three distinct methods of post-delivery stabilization and subsequent early respiratory care on chronic lung disease and survival in premature infants at high risk for respiratory distress syndrome.

NCT ID: NCT00216931 Withdrawn - Clinical trials for Respiratory Distress Syndrome

Treatment of Elevated Arterial Pulmonary Pressure With Inhaled Iloprost

Start date: May 2006
Phase: N/A
Study type: Interventional

The purpose of this study is to determine if iloprost is effective in the treatment of elevated arterial pulmonary pressure in children with ventilator treated respiratory distress syndrome.

NCT ID: NCT00208039 Completed - Clinical trials for Bronchopulmonary Dysplasia

Pilot Trial of Surfactant Booster Prophylaxis For Ventilated Preterm Neonates

Start date: September 2004
Phase: N/A
Study type: Interventional

A research study that will evaluate if giving surfactant medication to premature babies weighing < 1250 gm at birth during the second and third weeks of life will help their lungs. We are enrolling those premature babies who continue to require the breathing tube and the mechanical ventilator at days 7-10 of life.

NCT ID: NCT00165074 Completed - Clinical trials for Respiratory Distress Syndrome

Pilot Trial of Surfactant Therapy For Preterm Neonates 5-21 Days Old With Respiratory Decompensation

Start date: June 2003
Phase: N/A
Study type: Interventional

The purpose of the study is to determine whether additional surfactant(Infasurf) doses at 7 to 10 days of life time will improve lung function in premature infants, allowing a decrease in required oxygen concentration and ventilator settings.

NCT ID: NCT00146497 Terminated - Clinical trials for Respiratory Distress Syndrome

Cytokine Change in Bronchoalveolar Lavage Fluid After Early Budesonide-Surfactant Treatment in Premature Infants

Start date: August 2004
Phase: Phase 4
Study type: Interventional

Pulmonary inflammation plays an important role in the development of chronic lung disease (CLD) in preterm infants. This inflammation occurs very early in postnatal life. Any therapy that could be beneficial in preventing CLD should be started very early. The investigators' previous double-blind study has shown that early (< 12 hours) postnatal use of intravenous dexamethasone for 4 weeks significantly suppressed pulmonary inflammation and significantly reduced the incidence of CLD. However, the use of dexamethasone was associated with increased incidence of infection and sepsis. Their follow-up study also suggested an increase in the incidence of psychomotor anomalies. As compared to intravenous administration, endotracheal instillation will provide more local anti-inflammatory effects and less systemic side effects. Infants will be eligible for the study if their birth weight (BW) is < 1500 gm and if they had severe respiratory distress syndrome (RDS) requiring mechanical ventilation shortly after birth. After informed consent is obtained, the infant will be randomly assigned depending on the condition of the infant. The primary outcome is the change in cytokines (interleukin-6, 8, 10 and TNF-α) levels in BAL fluid. Chronic lung disease (CLD) was judged at 36 postmenstrual weeks. Infants in the study group (S/B group) received surfactant (Survanta®, Abbott Laboratories, North Chicago, IL; 100 mg or 4 mL/kg/dose) and Budesonide (Pulmicort®, AstraZeneca Pty Ltd., Australia; 0.5 mg or 1mL/kg/dose), while those in the control group (S group) received surfactant (Survanta® Abbott, 100 mg/kg/dose) and saline (1mL/kg).

NCT ID: NCT00030121 Completed - Clinical trials for Respiratory Distress Syndrome

Carperitide in Acute Respiratory Distress Syndrome (ARDS)

Start date: December 1999
Phase: Phase 2
Study type: Interventional

The purpose of this study is to determine whether Carperitide is safe and effective in the management of Acute Respiratory Distress Syndrome (ARDS).

NCT ID: NCT00014859 Completed - Lung Diseases Clinical Trials

Epidemiology of Surfactant Protein-B Deficiency

Start date: June 1, 2001
Phase:
Study type: Observational [Patient Registry]

The purpose of this study is to test the hypothesis that excess, rare, functionally disruptive single nucleotide polymorphisms (SNPs) characterize genes (e.g., the surfactant protein-B gene)(SFTPB) and gene networks (e.g., the pulmonary surfactant metabolic network or other gene networks that regulate alveolar type 2 cell function) associated with increased risk of neonatal respiratory distress syndrome (RDS).

NCT ID: NCT00006496 Active, not recruiting - Clinical trials for Acute Respiratory Distress Syndrome

Molecular Epidemiology of ARDS

Start date: February 2000
Phase:
Study type: Observational

To examine the possible relationship between genetic factors and the acute respiratory distress syndrome (ARDS).

NCT ID: NCT00006274 Recruiting - Clinical trials for Respiratory Distress Syndrome

Study of Energy Requirements in Critically Ill Newborns

Start date: March 1997
Phase: N/A
Study type: Observational

OBJECTIVES: I. Determine the total energy expenditure in term and preterm infants in both well and ill states using the doubly labeled water method.

NCT ID: NCT00006058 Completed - Clinical trials for Bronchopulmonary Dysplasia

Study of the Pathobiology of Bronchopulmonary Dysplasia in Newborns

Start date: September 1996
Phase: N/A
Study type: Observational

OBJECTIVES: I. Create a clinical sample bank of neonates with lung disease to test hypotheses regarding the pathogenesis of bronchopulmonary dysplasia (BPD). II. Determine whether a developmental deficiency of surfactant protein B (SP-B) contributes to the occurrence of respiratory distress and BPD in these patients. III. Study metabolic abnormalities associated with inherited deficiency of SP-B in these patients. IV. Determine whether plasma nitrotyrosine levels, a marker of peroxynitrite mediated oxidant stress, are elevated in premature infants who develop BPD. V. Measure the temporal changes in critical components of the inflammatory process (cell composition, inducible nitric oxide synthase, hyaluronan (HA), receptor for HA mediated mobility, and selected cytokines) in bronchoalveolar lavage, blood, and urine samples obtained from these patients, and to correlate these changes with their clinical course. VI. Examine changes in the insulin-like growth factor axis that occur in the lungs of infants with respiratory distress syndrome (RDS) and BPD. VII. Determine the relationship between degradation of elastin and the clinical course of BPD. VIII. Determine whether the normal fall in plasma endothelin-1 concentrations after birth are delayed in infants with RDS and BPD.