The Effect Of Innate Immune Responses On The Induction Of Protective Immunity In Murine Typhoid Fever
Funder
National Health and Medical Research Council
Funding Amount
$136,500.00
Summary
Salmonella are important pathogens of humans causing diseases ranging from gastroenteritis, typhoid fever to arthritis. Like most if not all infections, the early interaction between the host and the bacterium is characterised by very non-specific symptoms. These non-specific symptoms arise because the so-called innate immune system is activated by the infection. The purpose of this grant is to establish whether these non-specific symptoms, caused by the release of immunological homrones called ....Salmonella are important pathogens of humans causing diseases ranging from gastroenteritis, typhoid fever to arthritis. Like most if not all infections, the early interaction between the host and the bacterium is characterised by very non-specific symptoms. These non-specific symptoms arise because the so-called innate immune system is activated by the infection. The purpose of this grant is to establish whether these non-specific symptoms, caused by the release of immunological homrones called cytokines, are essential to the development of an effective immune response which can protect against subsequent re-infection. This study has important implications for vaccines, of our understanding of how bacteria cause disease, and the role-capacity of the innate immune system in the development of immunity.Read moreRead less
Characterisation Of The Genetic Networks Underlying Macrophage Differentiation And The Resolution Of Inflammation
Funder
National Health and Medical Research Council
Funding Amount
$405,000.00
Summary
Chronic inflammation is a central player in many common diseases, impacting on the health and well being of millions of Australians. By using innovative genomic approaches to build a map of all of the gene products involved in the inflammatory process, this project aims to identify which are the critical molecules that normally switch off inflammation. Our ultimate aim is to develop new approaches to treating inflammatory disease.
The Role Of Novel G-Protein Coupled Receptors In Immunity And Inflammatory Diseases
Funder
National Health and Medical Research Council
Funding Amount
$69,684.00
Summary
Recent advances in molecular biology techniques have resulted in the identification of many novel GPCRs. Novel GPCRs expressed selectively on immune cells display a potential target for novel therapies for inflammatory diseases such as Asthma and Rheumatoid arthritis. This project aims to define the activity and significance of a novel group of GPCRs, the GPR40 family. Outcomes of this project will be further understanding of immune cell development and inflammatory disease development.
Inflammasome Sensors And Immune Protection Against Tumorigenesis
Funder
National Health and Medical Research Council
Funding Amount
$750,110.00
Summary
Intestinal cancer is a leading cause of death in Australia and worldwide. Defects in the immune system can lead to the development of intestinal cancer. In this project, we will investigate the critical role of an immune sensor in inhibiting the development of intestinal cancer. This project will provide new insights into the interplay between the immune system and cancer biology and will potentially inform the development of new immunotherapies.
Inflammasome Function In Gastrointestinal Immunity And Inflammation
Funder
National Health and Medical Research Council
Funding Amount
$421,116.00
Summary
The immune system in the gut provides a vital defence against microbes. If these defences are ineffective we become infected leading to gastroenteritis, a major cause of death in the third world and hospitalisation in developed countries. Conversely, excessive or inappropriate activation of these defences can cause inflammatory disease. This project will investigate microbial detection in the gut, and aims to discover new, more effective ways to treat gastrointestinal infection and inflammation.
The Role Of Toll Like Receptors In Leukocyte Activation And Adherence In Glomeruli In Auto-immune Glomerulonephritis
Funder
National Health and Medical Research Council
Funding Amount
$82,554.00
Summary
1 in 7 Australians have Kidney disease. Kidney disease tends to be progressive and over 8500 Australians require renal replacement therapy (dialysis). The cost of dialysis from 2004-2010 in Australia will be $ 4.5 billion. Auto-immune disease and Diabetes accounts for nearly 60% of kidney failure. Whilst current regimes exist to treat Kidney disease these are limited because they are deleterious side-effects. Improved understanding of the mechanism of disease will lead to improved treatments.
Understanding And Modulating Hyperinflammation Caused By Influenza Viruses
Funder
National Health and Medical Research Council
Funding Amount
$425,048.00
Summary
In humans, highly pathogenic influenza A virus (IAV) infections can be fatal, as the disease is untreatable with available vaccine or anti-viral drugs. My fellowship aims to advance our knowledge of the mechanisms by which the immune system induces and regulates inflammation during IAV infection, which can be both helpful and detrimental in fighting the infection. This is critical for identifying and developing new therapies for severe IAV infections in the future.
PB1-F2 Is Critical To Influenza A Virus Pathogenicity Through Activation Of The Inflammasome
Funder
National Health and Medical Research Council
Funding Amount
$663,919.00
Summary
Fatal Influenza A virus infections are excessive inflammation. We identified the IAV protein PB1-F2 as critical in driving excessive inflammation via activating the host inflammasome complex. Our study evaluates PB1-F2-mediated inflammation contribution to inflammatory responses. Identifying PB1-F2 in emerging IAV strains is invaluable in aiding health policy makers to quickly assess fatal IAV pandemics. Our research will potentially identify treatment targets towards reducing this inflammation
NOD-like Receptors And Severe Malaria: Do Inflammasomes Mediate Immunopathogenesis?
Funder
National Health and Medical Research Council
Funding Amount
$263,001.00
Summary
Our immune system is very effective in preventing disease. But sometimes our immune cells overreact and actually make us sick. Recently, a new component of the immune system, the inflammasome, was discovered. Overreaction of the inflammasome can result in fever, inflammation, and even death. This project will investigate whether inflammasome overreaction exacerbates diseases as diverse as malaria and cancer, and whether drugs that inhibit the inflammasome can help cure these and other diseases.