Group A streptococcal diseases, including rheumatic heart disease, are major causes of illness globally, mostly in developing countries. This proposal is an investigation into how best to tackle control these diseases. It focuses on 1) a novel way to detect rheumatic heart disease in its earliest phases using ultrasound, 2) using a single drug once per year to stop streptococcal skin sores by controlling scabies infestation in whole communities and 3) developing a new vaccine that is applicable ....Group A streptococcal diseases, including rheumatic heart disease, are major causes of illness globally, mostly in developing countries. This proposal is an investigation into how best to tackle control these diseases. It focuses on 1) a novel way to detect rheumatic heart disease in its earliest phases using ultrasound, 2) using a single drug once per year to stop streptococcal skin sores by controlling scabies infestation in whole communities and 3) developing a new vaccine that is applicable across all regions of the world.Read moreRead less
Towards The Elimination Of Tuberculosis And Rheumatic Heart Disease In Northern Australia And Our Region
Funder
National Health and Medical Research Council
Funding Amount
$258,600.00
Summary
My research program addresses tuberculosis and rheumatic heart disease, which are leading challenges for Northern Australia and our region. Both are diseases caused by infections with long-term complications. They cause illness and death in young Aboriginal people and neighbouring Southeast Asian populations. There are many gaps in our ability to effectively detect and prevent these diseases. My research targets these gaps, from cutting-edge science to translation of guidelines into practice.
Clinical And Genomic Aspects Of Staphylococcus Aureus And Other Infectious Diseases In Northern Australia.
Funder
National Health and Medical Research Council
Funding Amount
$421,747.00
Summary
The burden of infectious disease is high in Indigenous populations in northern Australia and patterns of disease differ. My research proposes to deepen our understanding of infectious diseases such as that due to Staphylococcus aureus (golden staph), hepatitis B and influenza by applying cutting-edge technologies (e.g., bacterial genomics) to answer clinically relevant questions. Ultimately I hope to prevent transmission of infections, improve vaccine strategies and find better targets for treat ....The burden of infectious disease is high in Indigenous populations in northern Australia and patterns of disease differ. My research proposes to deepen our understanding of infectious diseases such as that due to Staphylococcus aureus (golden staph), hepatitis B and influenza by applying cutting-edge technologies (e.g., bacterial genomics) to answer clinically relevant questions. Ultimately I hope to prevent transmission of infections, improve vaccine strategies and find better targets for treatment.Read moreRead less
During injury or infection, our body’s immune system protects us by launching inflammation. But uncontrolled inflammation drives common diseases such as cancer, diabetes, Alzheimer’s and Parkinson's. This research program will reveal how the body deactivates inflammasomes – protein complexes at the heart of inflammation and disease – so we can design better drugs for treating patients with inflammation-driven disease.
Investigating Tumour Biology Using Regulated RNAi In Cells And Mice
Funder
National Health and Medical Research Council
Funding Amount
$305,915.00
Summary
Inhibiting gene expression using the recently discovered process known as RNA interference (RNAi) can be used as an experimental tool to analyse specific genes, in cells and genetically engineered animal models of human disease. I propose to use RNAi to mimic human cancer gene mutations in mouse cancer models, and aim to discover novel tumour suppressor genes. A further aim is to validate potential drug targets in cancer by using RNAi to inhibit specific genes in established mouse tumours.
A Transgenic Approach To Rationale Drug Design In Plasmodium Falciparum
Funder
National Health and Medical Research Council
Funding Amount
$420,872.00
Summary
Malaria is a disease caused by parasites of the genus Plasmodium. It is responsible for more than 2 million deaths per year predominately in Sub-Saharan Africa. Many of the currently used drugs to combat this disease are failing through drug resistance in the parasite population. New and novel drugs are urgently required. This project uses state of the art techniques to identify and validate new and novel targets within the parasite that can be used for rational drug design