View clinical trials related to Idiopathic Pulmonary Fibrosis.
Filter by:The recent literature shows an increased incidence of obstructive sleep apnea (OSA) in patients with idiopathic pulmonary fibrosis (IPF). On the other hand there are no published studies related to CPAP treatment in this patient group. The investigators aim was to assess the effect of CPAP on sleep and overall life quality parameters in IPF patients with OSA and to recognize and overcome possible difficulties in CPAP initiation and acceptance by these patients.
The aim of this extension trial is to assess the long-term safety of BIBF 1120 treatment in patients with Idiopathic Pulmonary Fibrosis who have completed one year treatment and the follow up period in the double-blind phase III placebo controlled parent trials (1199.32 and 1199.34), who wish to continue treatment with BIBF 1120.
Primary Objective: To assess in adult patients with Idiopathic Pulmonary Fibrosis (IPF) the safety and tolerability of ascending doses of SAR156597 administered subcutaneously (SC) once weekly over a 6-week period. Secondary Objectives: To assess in adult patients with IPF: - The pharmacodynamic effects of SAR156597, as measured on pulmonary function tests (PFTs), pulse oximetry and patient reported outcome and peripheral blood biomarkers. - The trough plasma concentrations of SAR156597 - The potential immunogenicity of SAR156597.
Idiopathic pulmonary fibrosis (IPF) is an illness characterized by progressive decline in lung function and premature death from respiratory failure. Fibrocytes are a novel population of bone marrow-derived circulating progenitor cells that have been shown to traffic to the lungs and contribute to fibrosis in animal models of pulmonary fibrosis, and whose numbers correlate with the degree of fibrosis and with survival in human pulmonary fibrosis. The investigators propose to test the hypothesis that therapy with the mTOR inhibitor, sirolimus, reduces the number of circulating fibrocytes in patients with IPF. The investigators propose to test this hypothesis in short-term pilot trial of sirolimus in patients with IPF to determine its effect on the number and phenotype of circulating fibrocytes.
Idiopathic pulmonary fibrosis is a relentlessly progressive disease that is responsible for the deaths of over 5000 people in the UK each year. At present, despite a dramatic increase in clinical trials in the last decade, there are no licensed treatments for IPF. The pathogenesis of the condition remains incompletely understood, nonetheless there is good evidence to suggests that the condition arises as the consequence of an aberrant wound healing response in genetically susceptible individuals. Basic science research into IPF has identified a wide range of potential treatment targets. However, in many cases developing compounds to act against these targets, because of their role in normal wound healing, is limited by the possibility of major systemic side effects. The lung is highly amenable to topical therapy in the form of inhaled drug preparations and this route is utilised in the treatment of the majority of respiratory disease. The inhaled route offers a number of important potential advantages for administration of therapy to patients with IPF. Firstly, by limiting systemic exposure to drugs, the inhaled route offers the potential for achieving higher lung doses of drugs that might otherwise cause systemic toxicity. Secondly, inhaled treatment may more effectively reach the areas of abnormality in IPF, namely the hyperplastic epithelium and the underlying fibroblastic foci. Thirdly, the inhaled route offers an alternative to parenteral administration of compounds that are poorly absorbed through the gastro-intestinal tract e.g. monoclonal antibodies. It should be noted however, that the fibrosis in IPF develops peripherally involving the alveolar interstitium and the terminal bronchioles. Furthermore, the disease causes architectural destruction and distortion of the lung that is liable to alter the normal laminar flow of air (and inhaled particles) through the bronchial tree. It is therefore, by no means certain that it is possible to deliver inhaled therapies directly to regions of fibrosis in IPF. The feasibility of delivering inhaled drugs in IPF has not been previously studied. This research by assessing the effect of particle size on inhaled particle deposition and by relating to this the pharmacokinetic profile of salbutamol aims to validate the potential of the inhaled route in IPF. This study is an important precursor to the development of specific topical therapies for patients with IPF.
The purpose of this study is to determine the possible efficacy of low dose, orally administered interferon alpha in subjects with Idiopathic Pulmonary Fibrosis (IPF).
Primary objective of this study is to investigate the long-term tolerability and safety profile of BIBF 1120 on top of pirfenidone treatment in patients with Idiopathic Pulmonary Fibrosis who have completed a prior clinical trial of BIBF 1120 (1199.31). Secondary objectives are to assess effects on some efficacy criteria during long term treatment with BIBF 1120 on top of pirfenidone.
The primary objective of this study is to establish the feasibility and safety of infusions of placental Mesenchymal Stem Cells (MSC) from related or unrelated HLA identical or HLA mismatched donors in the treatment of Idiopathic Pulmonary Fibrosis (IPF). The secondary objectives are to document changes in lung function, 6 minute walk distance (6MWD), gas exchange and radiological appearance following infusion of MSC over a six month evaluation period.
The primary objective of this study is to evaluate the safety and tolerability of subcutaneously (SC) administered multiple, escalating doses of BG00011 (a humanized monoclonal antibody directed against the alpha v beta 6 (αvβ6) integrin, formerly known as STX-100) in participants with IPF. The Secondary objectives are to estimate the pharmacokinetic (PK) parameters after the 1st dose and after the last dose of multiple, escalating doses of BG00011 in participants with IPF, to assess the immunogenicity of BG00011 in participants with IPF, and to assess the effect of BG00011 on biomarkers isolated from bronchoalveolar lavage (BAL) and peripheral blood in participants with IPF.
PIPF-016 (ASCEND) is a Randomized, Double-Blind, Placebo Controlled, Phase 3 Study of the Efficacy and Safety of Pirfenidone in Patients with Idiopathic Pulmonary Fibrosis. The study objectives are to confirm the treatment effect of pirfenidone compared with placebo on change in percent predicted forced vital capacity (%FVC) in patients with idiopathic pulmonary fibrosis (IPF), and to confirm the safety of treatment with pirfenidone compared with placebo in patients with IPF.