Structural And Functional Studies Of The Human IL-3 Receptor
Funder
National Health and Medical Research Council
Funding Amount
$307,946.00
Summary
This proposal will study a protein hormone that is implicated in blood cell cancers and inflammatory diseases and for which current treatments are inadequate. We will determine how the hormone receptor becomes activated, identify and characterise new agents that block this activation. This information will help in the development of new and highly specific drugs for use in certain cancers in inflammatory diseases.
Role For Dipeptidyl Peptidase-IV In The Innate Immune Response
Funder
National Health and Medical Research Council
Funding Amount
$302,123.00
Summary
The innate immune system is the bodyÍs first line of defence in fighting off infections by invading organisms. An inappropriate innate immune response can lead to the development of several inflammatory conditions such as inflammatory bowel disease. A malfunctioning innate immune response has been identified in children with IBD. This project will determine the role of a unique enzyme called DPIV in the development of innate immune responses and its potential as a therapeutic target for IBD.
Isolation And Pre-clinical Evaluation Of Small Molecule Anti-inflammatory Compounds From Hookworms
Funder
National Health and Medical Research Council
Funding Amount
$320,891.00
Summary
This project will harness the unique ability of hookworm small molecules (<10 kDa) to modulate inflammation, and exploit these properties to develop novel modalities to treat inflammatory bowel diseases, using millennia of host-parasite coevolution as a guide. The excretory/secretory and somatic extracts will be assessed for their anti-inflammatory properties using TNBS mouse model. Compounds will be separated using HPLC and identified using MS and NMR spectroscopy.
Therapeutic Potential Of Hookworm Secreted Molecules For The Treatment Of Human Autoimmune Diseases
Funder
National Health and Medical Research Council
Funding Amount
$93,597.00
Summary
In developed countries, the increased incidence of allergic and autoimmune diseases has been related to the decreased prevalence of parasitic infections. The present research will explore the role that parasite molecules play in mechanisms that regulate the immune response of their vertebrate hosts and test their potential to become novel therapeutics for the treatment of inflammatory diseases.
Emu Oil And Protection From Experimentally-induced Ulcerative Colitis And Crohn's Disease
Funder
National Health and Medical Research Council
Funding Amount
$316,449.00
Summary
The inflammatory bowel diseases (IBD), encompassing ulcerative colitis and Crohn’s disease, are chronic intestinal inflammatory disorders of unknown cause. Current treatments for IBD are variably effective highlighting the need for improved therapeutic approaches. Emu Oil is reported to exert potent anti-inflammatory and antioxidant effects. Using well established experimental models, we seek to determine the potential efficacy and underlying mechanism of Emu Oil action in acute and chronic IBD.
Identifying And Preventing Inflammation-induced Brain Injury In Preterm Infants
Funder
National Health and Medical Research Council
Funding Amount
$338,652.00
Summary
Exposure to infection/inflammation around the time of birth is one of the most common factors associated with long-term disability. There is no effective treatment. My studies will use world-class techniques for measuring brain structure and function to improve our understanding of how infection/inflammation impacts on development of the preterm brain and determine whether blocking key inflammatory pathways in the brain will help restore normal brain growth and development in preterm infants.
Circadian Clock Regulation Of Dendritic Cell Metabolism And Function
Funder
National Health and Medical Research Council
Funding Amount
$408,768.00
Summary
Immunological and metabolic parameters change with the time of day, and are known as circadian rhythms. These fluctuations are critical for host adaptation to the environment and anticipate any increased risks of tissue damage and infection that accompany changes in activity and feeding. How the molecular circadian clock influences innate control of adaptive immunity is unknown. We will investigate how circadian proteins influence immune function through their sensing of nutrient and metabolic