Role Of Viruses In The Development Of Lung Disease In Cystic Fibrosis
Funder
National Health and Medical Research Council
Funding Amount
$1,223,186.00
Summary
This study will investigate how lung disease starts in babies with cystic fibrosis and the role of viral infections in this process. The new knowledge gained will help us move towards treatments that prevent or delay the start of lung disease, something not currently possible. We believe this new treatment paradigm will lead to improved quality and extent of life of those with cystic fibrosis.
A POPULATION-BASED COHORT INVESTIGATION OF LUNG FUNCTION IN RELATION TO EARLY LIFE LOWER RESPIRATORY TRACT ILLNESS AND AEROALLERGN SENSITISATION
Funder
National Health and Medical Research Council
Funding Amount
$456,013.00
Summary
Infancy appears to be the critical developmental window during which important alterations in lung structure and function develop. In this study we will assess how early lung function evolves in relation to potential insults such as lower respiratory tract infections and allergic inflammation. These are the mechanisms by which asthma is thought to develop. We will use exciting new lung function tests to evaluate lung function abnormalities associated with peripheral dysfunction characteristic of ....Infancy appears to be the critical developmental window during which important alterations in lung structure and function develop. In this study we will assess how early lung function evolves in relation to potential insults such as lower respiratory tract infections and allergic inflammation. These are the mechanisms by which asthma is thought to develop. We will use exciting new lung function tests to evaluate lung function abnormalities associated with peripheral dysfunction characteristic of chronic airway disease such as asthma.Read moreRead less
Long Term Outcomes Of Infant Lung Function In Cystic Fibrosis
Funder
National Health and Medical Research Council
Funding Amount
$509,456.00
Summary
We have shown that babies with cystic fibrosis (CF) who are apparently well can still have lung problems. As lung disease is the major cause of death in CF we need ways to monitor the condition in babies, identify those at greatest risk of lung changes and predict which children should receive newer treatments. We have developed a unique program for the measurement of lung function in babies. We now aim to find out the long term consequences of lung function changes detected in infants with CF.
Imaging Lung Aeration And Lung Motion Following Very Premature Birth
Funder
National Health and Medical Research Council
Funding Amount
$517,631.00
Summary
Using a synchrotron as an X-ray source, we will image the lungs as they aerate at birth and optimise ventilation strategies that improve lung aeration while minimising the risk of ventilation-induced lung injury.
Characterising Lung Growth And Development In Health And Disease
Funder
National Health and Medical Research Council
Funding Amount
$451,716.00
Summary
A/Prof Graham Hall is senior researcher at the Telethon Institute for Child Health Research in Perth, Western Australia and is internationally recognised for his research in the area of respiratory physiology in infants and young children. His research focuses on understanding the impact of respiratory diseases, such as asthma and cystic fibrosis, as well as pre-term birth and air pollution on lung function not only in early life but as the lung grows and develops.
Bronchopulmonary Dysplasia – A Regenerative Medicine Approach
Funder
National Health and Medical Research Council
Funding Amount
$480,406.00
Summary
Bronchopulmonary dysplasia is a major leading cause of morbidity and mortality in premature babies. There is no cure. We have previously shown that amnion epithelial cells can reduce the extent of lung damage during early stages of lung development. We aim to understand how amnion cells can promote repair by interacting with existing cell types in order to restore normal lung structure and function. The outcomes from this study will help design clinical trials and develop new therapies.
Human Amnion Epithelial Cell Therapy For Bronchopulmonary Dyspliasa
Funder
National Health and Medical Research Council
Funding Amount
$1,048,035.00
Summary
Preterm infants, especially those born very early, commonly develop a type of chronic lung disease called bronchopulmonary displasia (BPD). There is currently no cure or means of preventing BPD. Cells from the amniotic membrane that surrounds the developing baby before birth show promise as a treatment, or perhaps even a way of preventing, BPD. This project will use a preterm lamb model of BPD to assess the ability of amnion cells to treat or prevent the disease.
Premature babies often need assistance to breathe but this can injure the lung and lead to abnormal lung development and long-term lung disease. We have recently identified 3 factors that we believe are fundamental to initiating this abnormal lung development. We will demonstrate that these 3 factors mediate abnormal lung development following lung injury at birth. This information can then be used to reduce the incidence and severity of chronic lung disease of the newborn.
Investigation Of The Influence Preterm Birth On Lung Structure And Function In School Age Children.
Funder
National Health and Medical Research Council
Funding Amount
$204,482.00
Summary
Bronchopulmonary dysplasia (BPD) remains the most significant chronic lung complication of premature birth. While some information on the long term respiratory outcomes in BPD exist there are no comprehensive studies linking lung structure, function and respiratory symptoms and relating these changes to neonatal history. Studies of this kind are essential to ensure future healthcare for these children can be planned accordingly.
Respiratory failure at birth is a major cause of death and disease in newborn infants. At birth the airways must be cleared of liquid to allow the inhalation of air, but, little is known about the process of lung aeration, because it has not been possible to observe or measure it. We have developed imaging and analytical techniques to observed and measure lung aeration. We will determine ventilation procedures that promote uniform lung aeration and minimise lung injury in ventilated infants.