The purpose of this study is to assess whether 6% hypertonic saline (HS) is a safe and effective preventive therapy in newborns and infants with cystic fibrosis (CF).
Cystic fibrosis (CF) remains one of the most common lethal genetic diseases in Europe and North America. Despite a substantial increase in life expectancy over the past decades, many CF patients still die during young adulthood due to chronic progressive CF lung disease that is caused by defective fluid transport by airway epithelia causing dehydration of airway surfaces, which in turn leads to impaired mucociliary clearance, chronic airway mucus obstruction, inflammation and infection. Recent evidence from studies in a mouse model of CF lung disease suggest that preventive improvement of airway surface hydration may be an effective treatment of early and reversible mucus obstruction and inflammation, and thus delay or ameliorate progressive damage in lungs of CF patients. Hypertonic saline (HS) is an osmotic agent that improves airway surface hydration, and inhalation of 6% HS is already an established, safe, and effective maintenance therapy that improves mucociliary clearance and lung function, and reduces pulmonary exacerbations in older children (\> 6 years) and adults with chronic CF lung disease and fixed lung damage. However, the effect of HS as a preventive therapy has not been studied, and no other therapies are available for preventive improvement of airway dehydration and mucociliary dysfunction in CF. This investigator initiated clinical trial is a monocentric, randomized, double-blind, controlled pilot study on safety and efficacy of a preventive and early inhalation with HS in newborns and infants with CF who are diagnosed in the newborn period either by CF newborn screening (CF-NBS) or for another reason (e.g. meconium ileus) and are younger than 4 months of age at the time of enrolment. Participating patients will be randomized to 6% HS or 0.9% isotonic saline (IS) as active comparator. In both groups, patients will inhale their study solution twice daily over 52 weeks. At the beginning, during and at the end of the study, different measurements will be undertaken to determine effects of HS on safety, radiologic and/or functional alterations of the lung, number of exacerbations, time to first detection of a CF pathogen, and health-related quality of life. We expect that the results of this study will provide first evidence on the safety and efficacy of a preventive therapy that improves airway surface hydration and targets a CF basic defect and may thus delay and/or ameliorate chronic damage of the lungs of patients with CF.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
PREVENTION
Masking
QUADRUPLE
Enrollment
42
Administered via inhalation twice daily for 52 weeks. The delivery system is a PARI LC SPRINT® Junior nebulizer with a baby bend, size-adapted PARI® Baby face mask size 0-3, connection tubing (2.2m) and a PARI JuniorBOY® SX compressor.
Administered via inhalation twice daily for 52 weeks. The delivery system is a PARI LC SPRINT® Junior nebulizer with a baby bend, size-adapted PARI® Baby face mask size 0-3, connection tubing (2.2m) and a PARI JuniorBOY® SX compressor.
University Children's Hospital Heidelberg, Cystic Fibrosis Centre
Heidelberg, Baden-Wurttemberg, Germany
University Hospital Gießen and Marburg GmbH
Giessen, Germany
Medizinische Hochschule Hannover
Hanover, Germany
University Children's Hospital Schleswig-Holstein
Lübeck, Germany
Number of patients in both treatment groups with adverse events (AEs) and serious adverse events (SAEs)
Safety of inhalation with HS and IS in newborns and infants with CF assessed by proportion of adverse events (AEs) and serious adverse events (SAEs)
Time frame: during the 52 week treatment period
Rate of protocol-defined pulmonary exacerbations
Rate of protocol-defined pulmonary exacerbations requiring treatment with oral, inhaled or intravenous antibiotics between subjects randomized to HS and IS
Time frame: during the 52 week treatment period
Time to first pulmonary exacerbation in both treatment groups
Time frame: during the 52 week treatment period
Proportion of children with morphological and/or functional changes due to CF lung disease at baseline and after 1 year of inhalation
Proportion of children with morphological and/or functional changes due to CF lung disease at baseline and after 1 year of inhalation according to magnetic resonance imaging (MRI) chest score and chest x-ray (CXR) Chrispin-Norman score in both groups (HS vs. IS)
Time frame: during the 52 week treatment period
Extent and severity of bronchial dilatation
Extent and severity of bronchial dilatation after MRI and CXR scores at baseline and after 1 year of inhalation in both groups
Time frame: during the 52 week treatment period
Proportion of children with impairments in lung function
Proportion of children with impairments in lung function determined via multiple breath washout at baseline, after 3, 6, 9, and 12 months of inhalation in both groups
Time frame: during the 52 week treatment period
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Severity of impairment in lung function test
Severity of impairment in lung function test at baseline, after 3, 6, 9, and 12 months of inhalation in both groups
Time frame: during the 52 week treatment period
Health-related quality of life
Health-related quality of life as assessed by scores from Cystic Fibrosis Questionnaire - Revised Parent Report (CFQ-R, German version), administered quarterly
Time frame: during the 52 week treatment period
Change in anthropometric and basic respiratory parameters
Change in weight, height, body mass-index, weight-for-height, resting respiratory rate, and room air oxygen saturation
Time frame: during the 52 week treatment period
Proportion of patients with new isolation of CF pathogen
Among participants from whom Pseudomonas aeruginosa or other CF pathogens were not isolated from respiratory cultures prior to enrolment, the proportion from whom these organisms are isolated from clinically collected respiratory cultures
Time frame: during the 52 week treatment period
Time to first isolation of a CF pathogen
Time to acquisition of a CF pathogen is going to be compared between both treatment groups
Time frame: during the 52 week treatment period