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Respiratory and chest wall mechanics in very preterm infants

Data on static compliance of the chest wall (Ccw) in preterm infants are scarce. We characterized the static compliance of the lung and Ccw to determine their relative contribution to static compliance of the respiratory system in very preterm infants at 36 wk postmenstrual age. We also aimed to investigate how these compliances were influenced by the presence of bronchopulmonary dysplasia and impacted breathing variables.

Comparison of "IN-REC-SUR-E" and LISA in preterm neonates with respiratory distress syndrome: a randomized controlled trial (IN-REC-LISA trial)

Surfactant is a well-established therapy for preterm neonates affected by respiratory distress syndrome (RDS). The goals of different methods of surfactant administration are to reduce the duration of mechanical ventilation and the severity of bronchopulmonary dysplasia (BPD); however, the optimal administration method remains unknown. 

Transcriptomic analysis of primary nasal epithelial cells reveals altered interferon signalling in preterm birth survivors at one year of age

Many survivors of preterm birth (<37 weeks gestation) have lifelong respiratory deficits, the drivers of which remain unknown. Influencers of pathophysiological outcomes are often detectable at the gene level and pinpointing these differences can help guide targeted research and interventions. This study provides the first transcriptomic analysis of primary nasal airway epithelial cells in survivors of preterm birth at approximately 1 year of age.

A near-complete genome of the uncultured Staphylococcus aureus phage COMBAT-CF_PAR1 isolated from the lungs of an infant with cystic fibrosis

In cystic fibrosis, bacteria–bacteriophage interaction in the lower airways is poorly understood. We present the near-complete genome of the uncultured Siphovirus-like bacteriophage, Staphylococcus aureus phage COMBAT-CF_PAR1, isolated from the lower airways. The genome spans 41,510 bp with 33.45% guanine–cytosine content and contains 65 open reading frames.

The potential of antisense oligonucleotide therapies for inherited childhood lung diseases

Antisense oligonucleotides are an emerging therapeutic option to treat diseases with known genetic origin. In the age of personalised medicines, antisense oligonucleotides can sometimes be designed to target and bypass or overcome a patient's genetic mutation, in particular those lesions that compromise normal pre-mRNA processing. Antisense oligonucleotides can alter gene expression through a variety of mechanisms as determined by the chemistry and antisense oligomer design.

Wal-yan researchers secure three MRFF grants to tackle childhood lung disease

The Wal-yan Respiratory Research Centre is thrilled to see three researchers awarded prestigious Medical Research Future Fund (MRFF) Chronic Respiratory Conditions grants to improve lung health in children.

Five researchers from The Kids awarded Early Career Child Health Researcher Fellowships

Five researchers from The Kids Research Institute Australia have been awarded three-year fellowships with the aim of keeping more WA-based PhD graduates involved in child health research.

Respiratory researcher named joint winner of prestigious Premier’s Science Award

Congratulations to respiratory health researcher and clinician Dr Pam Laird, who was last night named joint winner of Early Career Scientist of the Year at the 2024 Premier’s Science Awards.

Government grants to support valuable new child health research

Eight The Kids Research Institute Australia-led projects will benefit from the latest round of WA Child Research Fund (WACRF) grants, announced this week by Medical Research Minister Stephen Dawson.

Bacterial slime causing persistent wet coughs for children

Researchers using powerful microscopes have identified bacterial slime in the lungs of some children with persistent wet coughs.