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Pressurised metered dose inhaler-spacer technique in young children improves with video instructionRepeated video instruction over time improves inhaler technique in young children
Research
Disruption of β-catenin/CBP signaling inhibits human airway epithelial-mesenchymal transition and repair.The airway epithelium of both children and adults with asthma is relatively undifferentiated characterized by a significantly increased proportion of...
Research
Route of exposure alters inflammation and lung function responses to diesel exhaustIn this study, we compared the physiological consequences of short-term exposure to diesel exhaust via inhalation to those due to exposure to the same diesel...

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Funding boost for cancer, antimicrobial resistance, and pain management treatmentsThe Kids Research Institute Australia researchers will share in $2.3 million awarded by the Western Australian Department of Health Innovation Seed Fund.
Research
Children’s regenerative and genetic medicine programThe project aims to build capacity in regenerative medicine for children with respiratory diseases.
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COCOON: Virus transmission, immunity, and family wellbeing during COVID-19The delay in community transmission of the new Coronavirus in WA, together with the strict, social distancing measures that have been adopted, provide us with an opportunity to observe the level of immunity development to the virus within the community and assess the impact of COVID-19 pandemic on health and well-
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Compound Repurposing Into Novel Therapeutics In COVID-19 At risk Lungs (CRITICAL Study)Anthony Christopher David Ingrid Shannon Thomas Kicic Blyth Martino Laing Simpson Iosifidis BSc (Hons) PhD MBBS (Hons) DCH FRACP FRCPA PhD BSc PhD
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Epithelial Drivers of Neutrophil Plasticity in Early Cystic Fibrosis Lung DiseaseHallmarks of cystic fibrosis (CF) airway disease include bronchiectasis, airway inflammation by infiltrating polymorphonuclear neutrophils (PMNs) and recurring infection.
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WA Epithelial Research Program for Childhood Respiratory DiseasesOnce thought to be a simple barrier to the external environment, epithelial cells are involved in many repair and inflammatory processes that occur in childhood airway diseases.
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Lytic activity, stability, biofilm disruption capabilities and genomic characterisation of two bacteriophages active against respiratory MRSAThis study aimed to characterise bacteriophages for potential therapeutic use against Staphylococcus aureus, focusing on clinical respiratory isolates of methicillin-sensitive (MSSA) and methicillin-resistant (MRSA) strains. Specifically, it sought to evaluate phage lytic activity, host range, stability, biofilm disruption capabilities, and overall safety for therapeutic use.