View clinical trials related to Asthma.
Filter by:The present study is designed to collect data on real world experience on use of Medrol in acute asthma in Indian patients.
This randomized, double-blind, placebo-controlled study will evaluate the efficacy, safety and tolerability of RO5036505 in patients with inadequately controlled moderate to severe asthma. Patients will be randomized to receive either RO5036505 (380mg iv infusion once weekly) or placebo for 8 weeks. Patients will be on a standardized inhaled corticosteroid/long-acting beta-agonist regimen during study treatment. Target sample size is 50-100 individuals.
The Canadian Severe Asthma Network (CSAN) was developed to gain a better understanding of the clinical, environmental, socio-economic, work-related, and biological characteristics of severe asthmatics (SA) that may account for poor response to clinically available therapies for asthma. This network of clinical and basic researchers will be a means by which Canadian investigators can develop and conduct research in this small patient group, which could lead to better clinical management of SA. Patient information will be entered into the CSAN database (created by PI Dr. Vethanayagam in connection with Mr. Jack Yeung) and will help researchers and doctors from multiple hospitals and universities across Canada to understand this subpopulation of asthmatics better. It will help to answer questions regarding SA epidemiology, asthma education, inflammatory monitoring, risks of near fatal asthma (NFA), symptom perception, changes in lung structure and function, co-morbidities, and the effectiveness of developing regional severe asthma clinics. Two of the early projects the investigators will be working on are psychosocial co-morbidities in asthma and medication coverage related to asthma. There will also be biobanking of sputum samples and/or bronchoscopy samples (such as BALs & lung washings) that are being obtained for clinical purposes. Also, for those consented for biobanking blood and urine will be collected, separate from clinical care, and stored in the biobank. The Canadian Biosample Repository (CBSR) will be storing our biobanked samples. The investigators will be following the CBSR policies for storage and security. Tissue research will be conducted in the future, and separate ethics approval will be obtained for each project.
The purpose of this study is to serve as a pilot safety study for nasal allergen challenges.
Asthma is a clinical syndrome that is well recognized by health care practitioners, yet asthma pathogenesis still remains poorly understood. Asthma affects approximately 20 million Americans, who suffer around 5,000 deaths annually. More than 70% of people with asthma also suffer from allergies. Although many advances in understanding the pathophysiology of asthma have been made in the past few decades, more studies are necessary to achieve a more thorough understanding of asthma at the cellular and molecular level. The majority of murine models suggest asthma and "allergic" responses involve activation of Th2 cytokine pathways, including IL-4 and -13. Similarly in humans, several lines of evidence support a large role for Th2 adaptive immunity. These include the large majority of asthmatic patients with atopy; the measurement of increased amounts of Th2 cytokines, including IL-4 and IL-13 in the airways and sputum of mild asthma; and most recently, the observed efficacy of anti-IgE therapy in "allergic" asthma. However, other data, including the large numbers of subjects with atopy and no asthma, suggest Th2 adaptive responses are insufficient to explain many aspects of asthma. Whether and how innate and adaptive immune pathways interact in human asthma is not clear, with few studies beginning to address these interactions in vitro and in vivo. For this reason, the investigators of this study would like to prospectively enroll patients with known asthma and follow them through an asthma exacerbation, while treating them with a standardized protocol. Over six week's duration, the investigators would like to study patients by collecting physiologic data such as spirometry, and biologic material in the form of sputum, nasal scraping, venous blood, exhaled breath and sputum. It is our aim to fully characterize the impact of the prostaglandin/cycloygenase/eicosanoid pathway as it relates to asthma exacerbation and recovery. Completion of this study in human asthma may provide new mechanistic insights into how relationships between innate and adaptive immune responses influence the course of an asthma exacerbation. The information obtained from this research and the corresponding studies may lead to innovative medical therapies and insight into the role of the epithelium and its interactions with both innate and adaptive immunity.
The goal of this research is to use Helium-3 MRI to see the changes in airflow of the lungs at different times of an attack. These three stages are immediately after the attack, 1 month later and 4-6 months later.
The purpose of this study is to collect information in order to identify people who have asthma and who may be good candidates to participate in one of the future asthma studies to be conducted at The Ohio State University Asthma Clinical Research Center.
The objective of this study is to compare the peak dose relative bronchoprotection offered by levosalbutamol and racemic salbutamol in mild to moderate asthmatics preselected into two groups on the basis of their beta-2 adrenoreceptor polymorphisms.
This study (A7881006) is the first multiple dose study in moderate asthmatic subjects and aims to determine the safety and efficacy of PF-00610355 when subjects take PF-00610355 on a daily basis for 4 weeks in subjects maintained on inhaled corticosteroid.
The objective of this multicenter, single-arm, open-label clinical study is to evaluate the safety of performing bronchial thermoplasty with the Alair® System during two treatment sessions to treat severe asthma.