Airway Smooth Muscle And Fixed Airway Obstruction: Strategies For Softening Muscle
Funder
National Health and Medical Research Council
Funding Amount
$555,643.00
Summary
In severe asthma the airways don't relax fully making breathing more difficult. The inability to relax is being addressed by exploring the behaviour of isolated muscle cells. These cells are able to compact collagen gels. The mechanisms used to compact the gel are different to those that cause rapid muscular contraction. We aim to identify the molecules responsible for the gel compaction as a first step to identifying new drugs to treat the fixed airway obstruction in severe asthma.
Understanding Uterine Contractility: What Can We Learn From Obesity?
Funder
National Health and Medical Research Council
Funding Amount
$600,792.00
Summary
The incidence of failure to progress in labour has increased in recent years, being linked to the rise in obesity. The result is a significant escalation in the rate of delivery by Caesarean Section (CS) which increases the risk of serious complications during subsequent pregnancies. We have identified five dysfunctional systems associated with poor uterine contraction. We now aim to determine the mechanisms underlying these dysfunctional systems, particularly those mechanisms in common.
Targeting Small Airways To Overcome Resistance To Therapy In Asthma
Funder
National Health and Medical Research Council
Funding Amount
$531,045.00
Summary
There is a pressing need to overcome resistance to current therapies for severe asthma. Targetting inflammation-induced changes in small airway contraction offers an alternative strategy. We have identified a novel bronchodilator that relaxes maximally contracted mouse small airways when current treatment is ineffective. We will demonstrate its efficacy in animal models mimicking key features of human asthma, and define new ways to improve outcomes in poorly-controlled asthma.