Discover how montelukast and exhaled nitric oxide testing are revolutionizing asthma treatment in young children through scientific research and clinical studies.
Explore how voltage-dependent potassium channels in alveolar macrophages influence asthma and the potential for new therapeutic approaches.
Discover how mast cell chymase gene polymorphisms influence childhood asthma risk and the potential for personalized treatments.
Discover how IL-10 mRNA overexpression in the gut mucosa of asthma patients reveals the fascinating gut-lung axis connection and its implications for future treatments.
Exploring asthma prevalence in Iraqi children and strategies to improve teacher awareness and management in Baghdad's primary schools
Exploring the complex relationship between cough sensitivity and asthma in children, including mechanisms, research findings, and quality of life impacts.
Discover how oxidative stress drives asthma and how antioxidant therapies could revolutionize treatment approaches for millions worldwide.
Discover how IL-13 protein causes airway hyperresponsiveness in asthma independently of traditional inflammatory pathways, revealing new therapeutic targets.
Discover how SIRT5 protein alleviates eosinophilic asthma through ROS inhibition and Nrf2/HO-1 activation in this groundbreaking research.
Discover how Tomatidine, a natural compound from tomato plants, shows promise in fighting allergic asthma by suppressing key inflammatory pathways.