Gastrokine 2 Promotes Gastric Homeostasis And Inhibits Bacterial Pathology
Funder
National Health and Medical Research Council
Funding Amount
$621,335.00
Summary
Gastrokine 2 is a small regulatory protein secreted by the stomach lining. Its function is unknown but data from our lab suggests that it may be important in maintaining stomach integrity. This project will investigate how gastrokine 2 maintains stomach function, how this can be compromised when bacterial infection is ongoing, and how we might be able to turn up gastrokine 2 expression to prevent inflammation and precancerous changes in the stomach lining.
Novel Candidate Genes, Lung Function And Allergic Airways Disease
Funder
National Health and Medical Research Council
Funding Amount
$581,892.00
Summary
We propose to study airway remodelling (structural changes to the airway) and in asthma using human samples and rodent models of asthma. We are particularly interested in investigating the role of trefoil peptide 2 and relaxin, two genes identified as determining lung function. To do this we need to understand the mechanisms of airway remodelling and its impact on disease severity in the patient. A strength of this study is availability of samples from a large study of human asthma.
Mechanisms Of Action Of The Trefoil Peptides In Promoting Healing In Models Of Inflammatory Bowel Disease
Funder
National Health and Medical Research Council
Funding Amount
$365,270.00
Summary
Preliminary experiments from our laboratory have shown that members of a family of small proteins called trefoil peptides, found naturally in the stomach, intestine and colon, are able to shorten the healing time of ulcers and reduce inflammation, in an animal model of inflammatory bowel disease. Crohn's disease and ulcerative colitis together make up the human inflammatory bowel diseases, or IBD for short. They afflict many members of the community, are debilitating, expensive to treat, and cur ....Preliminary experiments from our laboratory have shown that members of a family of small proteins called trefoil peptides, found naturally in the stomach, intestine and colon, are able to shorten the healing time of ulcers and reduce inflammation, in an animal model of inflammatory bowel disease. Crohn's disease and ulcerative colitis together make up the human inflammatory bowel diseases, or IBD for short. They afflict many members of the community, are debilitating, expensive to treat, and current treatments like corticosteroids and suppressors of the immune system have unpleasant and health-threatening side effects. There are therefore good reasons for the development of new forms of therapy which will be better tolerated and which are specific in their actions. We believe that the trefoil peptides may be good candidates on which new treatments for inflammatory disease might be based. The studies outlined in this proposal will test the best route of administration, and how often to give trefoil peptides in order to relieve the symptoms of experimental IBD. In addition the effectiveness of the trefoils will be compared to other agents currently used in IBD treatment, or which are known to relieve inflammation or speed the healing of the ulcerated colon. We will also carry out experiments designed to work out the mechanisms by which the trefoils' healing effects are mediated, and finally we will characterise a new member of the trefoil peptide family which we have recently discovered.Read moreRead less
Relaxin family peptides are small proteins that have numerous essential biological roles in the vascular system, brain and gut. The hormone relaxin is currently in Phase III clinical trials to treat heart failure and the other peptides show great potential as drugs to treat diseases including mental illnesses and obesity. My research focuses on developing drugs targeting the receptors for these important peptide systems and understanding how these drugs can be best used therapeutically
The Bcl-2 family of proteins is crucial for apoptosis (a form of programmed cell death) regulation. They target the mitochondrial outer membrane where they interact to determine cell fate. We will evaluate the membrane interactions of the Bcl-2 proteins in complementary biophysical and cellular experiments to redefine our understanding of the mechanism of apoptosis and provide new avenues for the development of compounds to selectively modulate diseases in which apoptosis is unregulated.
Development Of Selective Melanocortin Receptor Agonists And Antagonists
Funder
National Health and Medical Research Council
Funding Amount
$684,607.00
Summary
Human melanocortin receptors play a key role in a variety of physiological processes ranging from energy regulation, skin pigmentation and regulation of food intake. This project aims to generate novel peptide based molecules that will selectively interact with different melanocortin receptors to better understand their pharmacology thereby opening the potential for future drug development for obesity, stroke or inflammatory skin disorders.
I am a physiologist with expertise in endocrinology determining the roles of particular regulatory peptides in the normal functions of the gastrointestinal tract and in the development of gastrointestinal, renal and prostate cancers.