This program will investigate the strategies used by pathogenic bacteria to cause human diseases. The research will focus on how bacteria initiate infections, how they invade, cause cell and tissue damage and respond to their human host. It will also examine how the host’s innate immune system interacts with these bacteria. The results will provide new insights into host-pathogen interactions and reveal new targets for the development of novel antibacterial drugs and vaccines.
Assessing The Benefit Of Low Dose Aspirin In The Prevention Of Severe Sepsis.
Funder
National Health and Medical Research Council
Funding Amount
$391,880.00
Summary
Recent discoveries suggest that low doses of aspirin may save lives in patients with infection by limiting its severity. We will conduct a large-scale primary prevention study using daily low-dose aspirin to explore whether this widely used drug can safely prevent severe infection. This study is made possible by collaborative involvement in an existing Australian and USA funded study called ASPREE. Finding a treatment that helps prevent severe effects and outcomes of infection would be a major h ....Recent discoveries suggest that low doses of aspirin may save lives in patients with infection by limiting its severity. We will conduct a large-scale primary prevention study using daily low-dose aspirin to explore whether this widely used drug can safely prevent severe infection. This study is made possible by collaborative involvement in an existing Australian and USA funded study called ASPREE. Finding a treatment that helps prevent severe effects and outcomes of infection would be a major health advance.Read moreRead less
Evolution And Function Of A Novel Lateral Flagellar Locus, Flag-2, In Pathogenic Escherichia Coli
Funder
National Health and Medical Research Council
Funding Amount
$465,158.00
Summary
This project will study how the bacteria that cause infant diarrhoea colonize the intestine and induce disease. We have identified a novel genetic region that allows E. coli to survive and persist in the intestine. Similar genes are also present in closely related organisms. This project will help us to undestand how new diseases evolve and emerge and may lead to the development of new vaccines to protect against infant diarrhoea.