View clinical trials related to Idiopathic Pulmonary Fibrosis.
Filter by:Background: - Idiopathic pulmonary fibrosis (IPF) is a chronic lung disease that becomes worse over time. There is currently no effective treatment for it. Researchers want to study the disease and learn new ways to treat it. Objectives: - To discover new pathways that are involved in pulmonary fibrosis. To develop new drugs that may be used to treat pulmonary fibrosis. Eligibility: - People at least 18 years old with IPF. - Healthy volunteers at least 18 years old. Design: - Participants will be screened with medical history, questionnaire, and physical exam. They will have blood, lung, and walking tests and chest scans. - All participants will have 1 study visit, including: - Medical history and physical exam. - Questions about their breathing. - Blood tests. - Breathing tests. - Six-minute walk test. - Pregnancy test. - Chest x-ray (healthy volunteers) or chest CT scan (people with pulmonary fibrosis ). - Small area of skin may be removed. - Genetic tests of blood and skin samples. Participants will probably not be informed of any findings. Samples may be used to make stem cells for use in research. Participants may be contacted in the future to give consent for this research. - Some participants will have repeat visits over many years, repeating many of the study tests.
This study will investigate the effects of a reservoir nasal cannula (Oxymizer®) compared to a conventional nasal cannula (CNC) in patients with idiopathic pulmonary fibrosis.
The objective of this exploratory study is to examine the utility of high resolution computed tomography (HRCT) to measure changes in functional pulmonary imaging parameters as a function of short term a) iNO administration and b) nitric oxide (NO) cylinder concentration using the investigational medical device INOpulse® DS-C in subjects with WHO Group 3 PH associated with COPD on LTOT (Part 1) and in Subjects with WHO Group 3 PH associated with Idiopathic Pulmonary Fibrosis (IPF) on LTOT (Part 2 and Part 3)
This study will be divided into 2 parts. Part 1 is a randomized, double-blind, single centre, placebo-controlled, single ascending dose (SAD) phase I study designed to assess the safety, tolerability, PK and PD (Pharmacodynamic) of TD139 in up to 36 healthy male subjects. Part 2 will be a randomized, double-blind, multi-centre, placebo-controlled, multiple dose expansion cohort, designed to assess the safety, tolerability, PK and PD of TD139 in up to 24 male subjects and female subjects of non child-bearing potential with IPF.
Long term oxygen therapy (LTOT) increases the life span of patients with chronic obstructive pulmonary disease who have low oxygen levels. However, even when on oxygen therapy at home, from time to time patients still have low oxygen levels especially when walking which can be harmful. The investigators have designed a new system of delivering oxygen to overcome the above problem. The system measures the oxygen saturations of a patient and subsequently adjust the flow of oxygen to meet a pre-set oxygen saturation target. Hypothesis: the investigators intelligent oxygen therapy system is better at reducing low levels of oxygen during a 6 minute walk than usual ambulatory oxygen for patients with chronic obstructive pulmonary disease and idiopathic pulmonary fibrosis.
Idiopathic pulmonary fibrosis (IPF) is a devastating disease with no cure available. Patients suffer from respiratory symptoms including dyspnea and cough. To improve life quality the investigators will test the effects of immunomodulation of macrolides specifically on cough in IPF patients. The investigators hypothesize that immunomodulatory treatment reduces cough frequency and might improve lung function.
Idiopathic pulmonary fibrosis (IPF) is a progressive, fatal, fibrotic disorder of the lung. The estimated prevalence is 30-80/100,000 in the United States with incidence estimates clearly rising. A major challenge in the care of patients with IPF is determining prognosis. The natural history of IPF is usually one of inexorable decline in lung function, ultimately resulting in death from respiratory failure. However, longitudinal physiologic decline in IPF is heterogeneous and difficult to predict in individual patients. While some patients with IPF may remain stable for years, in others the disease may progress rapidly over a relatively short time. We hypothesize that peripheral blood biomarkers based on extracellular matrix and matrix-modifying molecules will improve prognostication in patients with IPF.
Pirfenidone as anti-fibrosis drug developed in recent years demonstrated the potential anti- fibrotic effect, but so far there were no domestic studies about pirfenidone's efficacy and safety evaluation in china. The aim of this study was to evaluate the efficacy and safety of pirfenidone in patients with idiopathic pulmonary fibrosis (IPF) through the observation of a large sample of clinical cases.
Idiopathic pulmonary fibrosis (IPF) is a disease of unknown cause in which areas of normal lung tissue are replaced by scars. As a result it becomes harder for the lungs to extract oxygen from the air. IPF is commonly progressive, and around 50% of patients diagnosed with the disease die after approximately 3 years. The most common, troublesome symptoms of IPF are breathlessness on exertion, and cough. No drug treatments have been unequivocally shown to improve the death rate, or to significantly impact upon symptoms, in IPF. In recent years it has been recognised that cough can be caused by small amounts of liquid coming up from the stomach and "going down the wrong way" into the lungs, a process commonly known as "reflux". As liquid in the stomach is usually acidic, patients' lungs may repeatedly be exposed to small amounts of acid. Reflux is unusually common in IPF and could potentially contribute to the debilitating cough found with the disease. However there are many potential causes for cough in IPF. Stomach acid can be efficiently "switched off" by drugs called "proton pump inhibitors", one of which is called omeprazole. If reflux of stomach acid does contribute to cough in IPF, omeprazole might be expected to reduce cough. The purpose of this study is therefore to test whether omeprazole does reduce cough in patients with IPF. Sixty patients with IPF will be randomly allocated to have 3 months of omeprazole or a placebo. Neither the patient nor the doctor will be aware which treatment has been given, ie this is a randomised "double-blind", placebo--controlled trial. Patients' cough frequency will be measured before and after treatment and the change in cough frequency compared in those receiving omeprazole and those receiving placebo. Change in cough frequency is the main thing we aim to compare, but a range of other measurements will be assessed such as the numbers of patients eligible to take part, agreeing to randomisation and providing outcome data, patients' lung function, symptom scores, the amount of reflux, and the amount of inflammation in the lungs.
This is a clinical study to characterise the lung function, airway morphometry, pharyngometry and inhalation profiles in patients with mild to severe Idiopathic Pulmonary Fibrosis (IPF) over a period of up to 6 months. Inhalation profiles will be recorded from patients with IPF as they inhale during tidal breathing, and following two sets of instructions (maximal effort and 'long, steady and deep' inhalation), across a range of airflow resistances that reflect those of typical inhalers used to deliver medication to the lungs. Mouth and throat dimensions will be measured using an acoustic reflectance Pharyngometer. Measurements of lung function will be made using conventional sprirometry, plethysmography and diffusion, whilst Low Dose High Resolution Computed Tomography (HRCT) will be used to scan the airways at two lung volumes; functional residual capacity (FRC) and total lung capacity (TLC). Data from HRCT will be used to reconstruct airway morphometry, and model inhaled particle deposition within the lung. Overall, the study allows a further understanding of the IPF patient population, using the data to assist in the development of new inhaled products for this disease. Following up the patients with additional HRCT scans at 3 and 6 months will enable the sensitivity of CT based criteria of disease progression to be compared with lung function criteria. No investigational product will be used in this study.