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Fibrosis clinical trials

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NCT ID: NCT01915511 Recruiting - Clinical trials for Idiopathic Pulmonary Fibrosis, Interstitial Lung Disease

Idiopathic Pulmonary Fibrosis and Interstitial Lung Disease Prospective Outcomes Registry

IPF/ILD-PRO
Start date: June 2014
Phase:
Study type: Observational [Patient Registry]

This registry will collect data on the strategies used to achieve a diagnosis of Idiopathic Pulmonary Fibrosis (IPF) and Chronic Fibrosing Interstitial Lung Disease with Progressive Phenotype (ILD) and the treatment and management efforts applied throughout study follow-up, clinical outcome events and patient reported outcome data. Blood samples will be collected periodically throughout the study for use in future research efforts. For participants with non-IPF, chronic fibrosing ILD with progressive phenotype, HRCT images will be collected throughout the study for use in future research efforts.

NCT ID: NCT01863121 Recruiting - Cirrhosis Clinical Trials

Validation of Child-Turcotte-Pugh-Kumar (CTPK) Score in Predicting Short Term Mortality in Patients With Liver Cirrhosis

Start date: May 2013
Phase: N/A
Study type: Observational

The CTP score is one of the best proved severity score in predicting mortality in patients with cirrhosis. Portal hypertension and variceal bleed are significant causes of morbidity and mortality in patients with cirrhosis. The recently published CTPK score included variceal variceal bleed status to the CTP score which improved the accuracy of CTP score in predicting short term mortality. CTPK score needs prospective validation.

NCT ID: NCT01852448 Recruiting - Cystic Fibrosis Clinical Trials

Genetics of Insulin and Incretins in Cystic Fibrosis

Start date: May 2013
Phase:
Study type: Observational

Cystic fibrosis related diabetes (CFRD) is associated with worse CF-relevant outcomes. The mechanisms underlying CFRD development are not fully understood, but recent evidence suggests Type 2 Diabetes Mellitus (T2DM) mechanisms may be involved and may involve incretins (gut secreted hormones that augment insulin secretion in response to a nutrient load). This study will examine the prevalence of Genome wide association study (GWAS)-implicated T2DM alleles (including TCF7L2) across the spectrum of glucose abnormalities in CF and will use this information to compare incretin and insulin secretion in non-diabetic children and adults with high risk and low risk alleles.

NCT ID: NCT01851694 Recruiting - Cystic Fibrosis Clinical Trials

Beta-cell Response to Incretin Hormones in Cystic Fibrosis

Start date: May 2013
Phase: N/A
Study type: Interventional

In recent years, diabetes has emerged as one of the most significant co-diseases that many Cystic Fibrosis (CF) patients develop. Type 1 (T1D) and Type 2 (T2D) diabetes results when either the body does not make enough insulin or the body does not respond correctly to this insulin, respectively. Insulin is a hormone which is made by cells in the pancreas and helps carry glucose (sugar) from the food we eat to the cells of the body for energy. While cystic fibrosis related diabetes (CFRD) has many features similar to both T1D and T2D, patients with CF may not have the same symptoms as either T1D or T2D patients. Currently, there is little understanding of CFRD and the best options for treatment remain unclear. The purpose of this research study is to examine and understand the various mechanisms that contribute to CFRD and gain a better understanding of potential means to treat CFRD. In particular, we plan to study the effects of incretin hormones that can enhance insulin production in CF patients. Enrollment is complete for the protocol as initially written. In order to further study the role of the incretin hormone on Cystic Fibrosis Transmembrane Conductance Regulator (CFTR) function , we have received approval to extend our investigation to include the following study groups: - Cystic Fibrosis participants with normal glucose tolerance - Non-Cystic Fibrosis controls

NCT ID: NCT01851642 Recruiting - Clinical trials for Alpha-1 Antitrypsin Deficiency

Lung Disease and Its Affect on the Work of White Blood Cells in the Lungs

Start date: August 9, 2007
Phase:
Study type: Observational

The purpose of this study is to look at how Alpha-1-antitrypsin (AAT) deficiency and Cystic Fibrosis (CF) affect white blood cells in the lungs, called macrophages, and their ability to work.

NCT ID: NCT01837355 Recruiting - Cystic Fibrosis Clinical Trials

Modulation of Intestinal and Pulmonary Inflammation by Lactobacillus Diet Supplementation in Pediatric Cystic Fibrosis

MoHuM-1
Start date: March 2013
Phase: N/A
Study type: Interventional

Pulmonary inflammation is an independent risk factor for disease progression in cystic fibrosis patients (CF). Yet, no effective treatment is known to reduce this detrimental inflammation. Dysbiosis of the gut microbiota has been linked to inflammation in several inflammatory diseases. As children with CF have different faecal microbiota from their healthy siblings, modulating gut microbiota by lactobacillus rhamnosus diet supplementation might be a strategy to target the inflammatory state in CF. Study subjects (CF or healthy control) will receive either placebo or lactobacillus rhamnosus once daily as dietary supplementation for 12 weeks. After a one-week washout phase, they will be switched for another 12 weeks to the other trial arm. Effect on in intestinal and pulmonary inflammation as well as clinical outcome will be studied.

NCT ID: NCT01823783 Recruiting - Clinical trials for Duchenne Muscular Distrophy (DMD)

Endomysial Fibrosis, Muscular Inflammatory Response and Calcium Homeostasis Dysfunction in Duchenne Muscular Dystrophy

Start date: November 7, 2012
Phase: N/A
Study type: Interventional

Duchenne muscular dystrophy (DMD) is the most common and devastating form of muscular dystrophy, caused by an X-chromosome gene mutation resulting in the absence of the protein dystrophin. Gene therapy by exon skipping or stop codon read-through and cell therapy are at the stage of clinical assays with very promising results. Nevertheless, they will not allow a complete cure of DMD patients and they will concern only specific types of mutations. It is therefore crucial to develop other therapeutic strategies related to the natural history of the disease and targeted not on the dystrophin itself, but on the consequences of its absence. Another crucial pathophysiological pathway in DMD is muscle cell calcium homeostasis, particularly via the ryanodine recepteur (RyR1). Our study focus on the relationship between endomysial fibrosis, abnormal inflammation response and calcium homeostasis dysfunction which are not entirely established in DMD. The identification of the biological mechanisms that play a role in the severity of the phenotype, particularly endomysial fibrosis, should allow the development of targeted pharmacotherapy as a complementary strategy for the future treatment of DMD.

NCT ID: NCT01783314 Recruiting - Hepatic Fibrosis Clinical Trials

Development of an Imaging Biomarker for Hepatic Fibrosis Using Gadoxetate Disodium

Start date: December 2010
Phase: Phase 4
Study type: Interventional

When someone has hepatitis C or some other condition that causes liver injury, he or she can develop a condition called liver fibrosis that over time, can cause the liver to stop working normally. Currently, the best way to determine the degree of fibrosis is to do a liver biopsy. The investigators hope to show that measuring the degree of liver fibrosis using an MRI with gadoxetate disodium is as good as or better than obtaining this information by performing a liver biopsy. Gadoxetate disodium is a contrast solution given through the veins that is considered safe, is approved for use by the Food and Drug Administration, and is already routinely given to patients with various forms of liver disease, including fibrosis.

NCT ID: NCT01776398 Recruiting - Smoking Cessation Clinical Trials

Collection of Airway, Blood and/or Urine Specimens From Subjects for Research Studies

Start date: August 29, 2012
Phase:
Study type: Observational

The purpose of this study is to obtain biologic materials from the blood, airways and/or urine of normal individuals and individuals with lung disease. The normal are used to establish a set of normal ranges for various parameters. These provide control information when compared to individuals with various pulmonary diseases, and will help in understanding of the etiology and pathogenesis of various lung diseases. The underlying hypothesis is that the pathologic morphological changes in the airway epithelium must be preceded by changes in the gene expression pattern of the airway epithelium and potentially in macrophages.

NCT ID: NCT01605565 Recruiting - Cystic Fibrosis Clinical Trials

Functional Analysis by Dynamic Imaging of the Respiratory Epithelium in Infants With Cystic Fibrosis

Start date: November 2011
Phase: N/A
Study type: Interventional

Cystic fibrosis (CF) is characterized by airway inflammation and infection leading to progressive destruction of lungs. One of the most important abnormalities in CF is an abnormal processing of the mutated CFTR protein through the endoplasmic reticulum that causes abnormal location or even absence of the protein at the apical plasma membrane of airway epithelial cells. This abnormality results in a marked dehydration of the airway surface fluid, decreased mucus transport and airway obstruction. Nevertheless, the events that occur very early during the progression of the disease at the airway level in infants are not known. At cellular level, it has also been reported that the CFTR expression and localization could be related to the differentiation state of the airway epithelium. Furthermore, it has been reported that gap junctions could be involved in dysregulate inflammation process. In CF infants, many answers are still lacking. For a better understanding of the early stages of cystic fibrosis, it is of major interest to study respiratory epithelial cells obtained as early as possible. In 15 CF infants and 15 control infants, a nasal brushing will be performed by means of a soft sterile cytology brush. Samples will be used for cytological and functional studies: ciliary beating frequency, cAMP-dependent chloride efflux, potassium efflux, tight and gap junctions functionalities. These studies will be done in basal conditions and will be repeated after activation of the nasal epithelial cells by the bacteria, such as Staphylococcus aureus, which can be found very early in the course of CF disease.