View clinical trials related to Fibrosis.
Filter by:This is a 5-year (+30 days) long term follow up study to evaluate the safety of Livercellgram in subject who participated in and completed the Livercellgram Phase 2 trials (refer to ClinicalTrials.gov.Identifier: NCT01875081).
Azithromycin is an antibiotic currently prescribed continuously in cystic fibrosis patients. It was shown that this treatment taken every day or every week for 12 months, can improve the respiratory state of patients. From the second year of treatment, it would appear there is more profit to continue such treatment. The main objective is to study the association between continuous use of azithromycin and lung function measured by Forced expiratory volume in one second (FEV1), after two years of treatment.
The purpose of the present study is to evaluate the characteristics, management and clinical course of patients with IPF as treated under real-world in Italian Pulmonary Centres, in terms of symptoms, lung function and exercise tolerance during 12 months of observation.
To assess efficacy and safety of concomitant treatment with nintedanib and sildenafil in Idiopathic Pulmonary Fibrosis (IPF) patients with advanced lung function impairment.
In patients with cystic fibrosis (CF) the commonest cause of death is respiratory failure. Respiratory failure can have many causes. However, in patients with CF a major contributor is the impairment of the muscles required for breathing (respiratory muscles). Respiratory muscle impairment can result from poor nutrition. Lung function declines particularly during adolescence whilst body composition also changes at the same time. Thus, the investigators plan to study the relationship of nutrition and body composition to respiratory muscle strength and lung function in children and young people with CF aged between 12-18 years. The body mass index (BMI) is currently used in the clinical setting to measure nutritional status in CF. At King's College Hospital (KCH) there are portable devices to assess both respiratory muscle function and lung function. The research team will use a Bioelectrical Impedance Analysis (BIA) device to assess body composition, including BMI and lean body mass (LBM). The aim of the study is primarily to assess whether measurements of LBM impairment may better relate to poor lung function compared to BMI and secondly to examine whether lung and respiratory muscle function correlates with exercise tolerance.
This is a Phase 3, 2-part (Part A and Part B), open-label, multicenter study evaluating the pharmacokinetics (PK), safety, tolerability, and pharmacodynamics (PD) of multiple doses of lumacaftor/ivacaftor (LUM/IVA) in subjects 2 through 5 years of age (inclusive) with cystic fibrosis (CF), homozygous for F508del. Subjects who participate in Part A may participate in Part B, if they meet the eligibility criteria.
Aortic valve disease causes impaired let ventricular function (LVF) due to hypertrophy, dilatation and diffuse myocardial fibrosis yet the prognostic effect of fibrosis, waiting time for operation and postoperative exercise training is presently unknown. The investigators aim to (1) determine the changes in LVF for patients on the waiting list; (2) establish non-invasive diagnostics for diffuse myocardial fibrosis; (3) relate LVF to fibrosis and physical capacity. The unique design (echocardiography, cardiopulmonary exercise test, cardiac magnetic resonance tomography and myocardial biopsy on the same patients) makes it possible to establish relationship between results of histology and imaging; quantifying and qualifying fibrosis in vivo, evaluate LVF vs. general cardiopulmonary function and optimize health care prior to and after operation.
Identifying biomarkers to predict the clinical course and benefits of therapy early in the course of the disease remains one of the most urgent and relevant challenges to improve overall patient management, to prevent treatment delay or overtreatment. This study is conducted to examine the effect of nintedanib treatment on change in biomarkers indicative of extracellular matrix turnover which have been shown recently to correlate with disease progression. This study further aims to confirm the association of biomarker course during the first three months of treatment and disease progression.
Cystic fibrosis (CF), a life-shortening genetic disease, is marked by acute episodes during which symptoms of lung infection increase and lung function decreases. These pulmonary exacerbations are treated with varying antibiotics for varying time periods based on needs determined by individual patients, their families, and the health care providers. Cystic fibrosis pulmonary guidelines for the treatment of pulmonary exacerbation published by the Cystic Fibrosis Foundation (CFF) in 2009 provided recommendations for treatment and also identified key questions for which additional studies were needed. A strong desire among clinicians to reduce treatment durations (and reduce cost, inconvenience, and potential toxicities) is in conflict with belief that patients not responding robustly to treatment might benefit from extending treatment. This randomized, controlled, open-label study is designed to evaluate the efficacy and safety of differing durations of IV treatment, given in the hospital or at home for a pulmonary exacerbation in adult patients with CF.
Investigators will examine temporal and regional dynamic changes in the microbiome of Cystic Fibrosis patients to explore microbiome features that are associated with an inflammatory phenotype. Investigators hypothesize that temporal and spatial differences in lung microbiome are associated with host inflammatory responses. While chronic and polymicrobial airway colonization are commonly recognized in cystic fibrosis (CF), it is unclear what factors of the microbial environment lead to infection with pathogenic microorganism. This is a multi center, longitudinal cohort of adult Cystic Fibrosis subjects recruit4ed from NYU and Columbia to understand how changes in the airway microbiome may affect the host inflammatory responses in Cystic Fibrosis (CF). There will be three approaches to understanding inflammatory responses; 1) a longitudinal assessment of temporal changes in the microbiome over a 6-month period of clinical stability; 2) comparison of the regional differences in airway microbiome between lung segments with more versus less disease; 3) evaluation of functional aspects of the lung microbiome.