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Differential gene network analysis for the identification of asthma-associated therapeutic targets in allergen-specific T-helper memory responsesDifferential network analysis of allergen-induced CD4 T cell responses can unmask covert disease-associated genes and pin point novel therapeutic targets
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CFTR-dependent defect in alternatively-activated macrophages in cystic fibrosisCFTR-dependent imbalance of macrophage phenotypes and functions could contribute to the exaggerated inflammatory response seen in CF lung disease
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Prevention of Allergy/Asthma - New StrategiesThis review focuses on the scientific rationale for early intervention aimed at asthma prophylaxis and discusses therapeutic approaches
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Low serum 25-hydroxyvitamin D concentrations associate with non-alcoholic fatty liver disease in adolescents independent of adiposityThis paper examined the link between low serum Vitamin D levels and development of non-alcoholic fatty liver disease (NAFLD) in adolescents between 14 and 17...
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Prevention - what is the most promising approach?This paper is an editorial comment by Professor Patrick Holt on the potential for developing early intervention strategies in children with allergies and asthma
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Size-Dependent Uptake of Particles by Pulmonary Antigen-Presenting Cell PopulationsThe respiratory tract is an attractive target organ for novel diagnostic and therapeutic applications with nano-sized carriers, but their immune effects and...
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Maternal Vitamin D Levels and the Autism Phenotype Among OffspringWe tested whether maternal vitamin D insufficiency during pregnancy is related to the autism phenotype.
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Vitamin D and atopy and asthma phenotypes in childrenThe purpose of this Review was to give an overview of the recent research into whether a lack of vitamin D contributes to the development of atopy and asthma...

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Vitamin D deficiency linked to childhood asthmaResearchers at The Kids Research Institute Australia have found children with vitamin D deficiency are more likely to develop asthma.
Research
Single cell transcriptomics reveals cell type specific features of developmentally regulated responses to lipopolysaccharide between birth and 5 yearsHuman perinatal life is characterized by a period of extraordinary change during which newborns encounter abundant environmental stimuli and exposure to potential pathogens. To meet such challenges, the neonatal immune system is equipped with unique functional characteristics that adapt to changing conditions as development progresses across the early years of life, but the molecular characteristics of such adaptations remain poorly understood.