View clinical trials related to Asthma.
Filter by:This 12-week clinical study evaluates the safety and efficacy of Albuterol Sulfate HFA Inhalation Aerosol (Albuterol-HFA, or: A004), Armstrong's proposed HFA formulation of metered dose inhaler (MDI) of Albuterol (Treatment T), in comparison with: 1. Placebo control: (HFA propellant only, Treatment P); and 2. Active control: 3M/Key's Proventil-HFA (Treatment R). The treatments will be given as self-administered oral inhalations in adult and adolescent patients with mild-to-moderate asthma, for 12-weeks. Dosing regimen throughout the 12-week study is two actuations four times daily (QID).
This study will look for a relationship between asthma and factors released from the lungs in exhaled breath. If a relationship can be established, the identified factors may be used as biomarkers to predict episodes of increased asthma symptoms so that medications can be given to prevent the onset of an asthma attack. Healthy volunteers and people who have had asthma for at least 1 year may be eligible for this study. Candidates must be between 18 and 75 years of age. Participants undergo blood tests and breathing tests. For the latter, participants breathe into a machine before and after inhaling an asthma medication called albuterol. The machine measures the volume of air the subject can breathe out. Participants also provide a sample of exhaled breath by breathing normally for up to 30 minutes while wearing a mask devised for the procedure. Pulse rate, oxygen saturation and wheezing are monitored during the breath collection.
This clinical study will evaluate and establish the protective effects of Amphastar's Albuterol Sulfate HFA Inhalation Aerosol (Albuterol-HFA), in preventing exercise-induced bronchoconstriction (EIB) in adolescent and adult asthmatic patients, in comparison with (1) Proventil®-HFA (Reference drug and Active Control ), and (2) Placebo-HFA control (HFA propellant only). Safety of the test drug, Albuterol-HFA, will also be evaluated in comparison to the Active and Placebo Controls. Analyses will be performed to determine if the Armstrong's Albuterol-HFA has resulted in a significant bronchoprotective effect, with attenuated Max % Fall in FEV1, in comparison to the Placebo-HFA control.
This 4-week clinical study evaluates the efficacy and safety of Albuterol Sulfate HFA Inhalation Aerosol in comparison with the Active Control, Proventil-HFA (3M Pharmaceuticals, Inc) in pediatric patients (4-11 years old) with mild-to-moderate asthma. In addition, pharmacokinetic profile in this population will be evaluated using a population PK approach with sparse blood samples.
Endotoxin is a component of outdoor air pollution, an air contaminant found in a number of different workplaces, and is even found in homes. The endotoxin used for this study is obtained from the National Institutes of Health, and is called "Clinical Center Reference Endotoxin", or CCRE. The purpose of this Phase 1 research study is to identify a dose of inhaled endotoxin that is safe (does not cause prolonged cough, shortness of breath or other problems), but causes changes in your sputum cell samples that the scientists can measure. Phase 1 research studies like this one are not intended to be a treatment, but are a scientific investigation. Eventually, with these types of studies we will be able to examine why some people are more sensitive to endotoxin. Scientists at other universities have found that while most people do not have a considerable lung response to endotoxin at doses as high as 60,000 EU (endotoxin units), a few respond to as little as a total dose of 4500 EU. Our study is designed to identify if using a dose of 20,000 EU causes changes in the lung cells but does not cause symptoms in our study subjects. In our previous studies in our lab, using an endotoxin from another source, we have used higher doses (15,000 EUs) in subjects with asthma with no major problems, and we have used 10,000 EUs of CCRE in subjects with allergies and asthma without problems. We have used 20,000 EUs of CCRE in healthy individuals with no major problems.
The objective of this trial is to evaluate the clinical effectiveness of the administration of a depigmented and polymerized allergen extract Dermatophagoides pteronyssinus in children with allergic asthma due to this mite
We hypothesize that the nocturnal use of continuous positive airway pressure in adults and children with asthma will decrease airway reactivity.
The main objective of this study is to evaluate the safety and tolerability of multiple fixed doses of MEDI-528 in adult patients with stable asthma and exercise-induced bronchoconstriction (EIB).
Asthma is an inflammatory condition of the airways in the lungs that results in obstruction of airflow in those with the condition. The disease continues to be a major worldwide health care problem and its prevalence continues to increase annually. In 2005, 20 million people were diagnosed with asthma. The disease causes significant morbidity and accounts for 5,000 deaths annually. Between 1980 and 1994 the prevalence of asthma increased 74% in the United States and, in children under age 5, the prevalence increased by 160%. The allergic etiology of airway inflammation associated with asthma is established. Bronchial washings of asthmatic subjects are most often characterized by eosinophils, mast cells, and cytokines that are associated with the Th2 (allergic) phenotype. Similarly, IgE plays a pivotal role in airway inflammation of asthmatic subjects when allergens that cross-link IgE bound to mast cells in the airways cause the release of histamine and other inflammatory mediators. The association of asthma and the IgE mediated allergic phenotype is well established and up to 70% of asthmatics also suffer from allergic disease. Adequately treated asthma often has minimal impact of quality of life but diagnosis and proper treatment is often delayed, resulting in increased missed school days, emergency room visits, and otherwise preventable degradation in quality of life. It would therefore be highly useful to identify a biomarker that can be used to assist in the diagnosis of asthma or to identify subjects at higher risk of developing allergic disease or asthma in the future. Efforts at identifying a genetic marker for the early diagnosis of asthma have been unsuccessful, mainly due to the complexity of the pathogenesis of the disease. Atrial natriuretic factor is a pro-hormone precursor for 4 natriuretic peptide hormones including atrial natriuretic peptide (ANP). ANP's effects on the cardiovascular system are well characterized. Less well understood is the role these hormones play in immune regulation. Recent studies have demonstrated a role for ANP in the regulation of immune function: ANP induces release of histamine from mast cells and macrophages, stimulates migration of neutrophils, enhances the cytotoxic activity of natural killer (NK) cells, and stimulates TNF-β production. Human dendritic cells express ANP receptors (GC-a) which polarize CD4+ cells towards a Th2 phenotype. Since allergic rhinitis and asthma are associated with a Th2 phenotype, it is possible that elevated levels of ANP can be used to predict asthma severity or to predict future predilection to atopic disease. There are a number of ANP gene polymorphisms that have been studied and found to be associated with renal disease, heart disease, hypertension and diabetes. Several studies have investigated the potential role of these polymorphisms in cardiovascular disease and have found association between polymorphisms of the ANP gene and left ventricular remodeling, hypertension, renal disease, diabetes, and increased risk of ischemic stroke. To our knowledge, no studies evaluating the role of ANP polymorphisms in allergic disease have been performed. The goal of this research proposal is to evaluate whether ANP levels can be utilized to assist in diagnosis of asthma and in the prediction of asthma severity. Additionally, we will investigate the potential effect of polymorphisms in the ANP gene on asthma severity and thus serve as a useful genetic marker to predict future risk of atopy and asthma.
The purpose of this study is to determine if exhaled nitric oxide (eNO) levels will be increased in pediatric patients with uncontrolled asthma as determined by the Asthma Control Test (ACT). During the study the investigators will also examine if the combination of eNO and ACT will better predict asthma control that either tool alone when compared to a medical provider's assessment of the patient's asthma control.