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Elucidating the interaction of CF airway epithelial cells and rhinovirus: Using the host-pathogen relationship to identify future therapeutic strategiesA better understanding of the innate immune responses by CF airway epithelial cells is needed to identify why viral infections are more severe in CF
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Bronchial brushings for investigating airway inflammation and remodellingAsthma is the commonest medical cause for hospital admission for children in Australia, affects more than 300 million people worldwide, and is incurable...
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Improved diagnosis, treatment and prevention of recurrent tonsillitisStrep A causes over 775 million infections each year world-wide, including over 615 million cases of tonsil infection (Strep throat).
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BEAT-CF: Bayesian Evidence-Adaptive Tool to optimise management of Cystic FibrosisAn innovative response-adaptive approach to driving improvements in health outcomes, applied to cystic fibrosis.
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Developing a novel therapeutic pipeline for antibiotic resistant bacterial lung infection in children: investigating and assessing the potential phage therapyAntimicrobial resistance is a global health crisis, which has accelerated due to the overuse of antibiotics.
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Progress in Model Systems of Cystic Fibrosis Mucosal Inflammation to Understand Aberrant Neutrophil ActivityHere we examine the latest findings of neutrophils in pediatric CF lung disease and proposed mechanisms of their pathogenicity
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Ground zero—the airway epitheliumNew PageThis chapter will discuss the structure of the airway highlighting the now broad number of cell types that comprise it
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Interleukin-1 is associated with inflammation and structural lung disease in young children with cystic fibrosisOur data associates IL-1α with early structural lung damage in CF and suggests this pathway as a novel anti-inflammatory target
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Persistent activation of interlinked type 2 airway epithelial gene networks in sputum-derived cells from aeroallergen-sensitized symptomatic asthmaticsOur findings provide new insight into the molecular mechanisms operative at baseline in the airway mucosa in atopic asthmatic with natural aeroallergen exposure
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Pulmonary microRNA profiles identify involvement of Creb1 and Sec14l3 in bronchial epithelial changes in allergic asthmaIn this study, we aimed to use microRNAs-which are critical regulators of signaling cascades-to identify so far uncharacterized asthma pathogenesis pathways