Next Generation Of Medical Devices And Diagnostics
Funder
National Health and Medical Research Council
Funding Amount
$2,738,220.00
Summary
This Investigator Project will deliver innovative technologies that improve patient wellbeing, make significant economic impact and contribute to answering complex biological questions. This will happen via delivering breakthrough technologies to prevent infections and diagnose diseases – two area that currently require substantial technological advances. In addition to helping patients and clinicians, the project will also deliver solid body of new knowledge that is currently missing.
Understanding And Improving Outcomes Due To Sepsis In At-risk And Underserved Populations
Funder
National Health and Medical Research Council
Funding Amount
$645,205.00
Summary
Sepsis is life-threatening organ failure that occurs in response to infection. Each year, 19 million adults suffer from sepsis and 6 million die. My research will measure sepsis risk factors and frequency in ageing Australians and new mothers (Australia and Vietnam). I will measure the long term impact of sepsis to better understand how sepsis impacts survivors and their families. I will develop and implement relevant, culturally appropriate and evidence-based strategies to reduce sepsis.
Is The Excess Mortality Amongst Tuberculosis Survivors Explained By Chronic Pulmonary Aspergillosis? Investigating Burden, Diagnosis, And Therapy
Funder
National Health and Medical Research Council
Funding Amount
$645,205.00
Summary
Chronic pulmonary aspergillosis (CPA) is a serious lung infection due to the mould Aspergillus. It affects people with damaged lungs, such as those who have had tuberculosis. In Vietnam, TB is extremely common, and there should be many cases of CPA. However, because diagnostic facilities are poor, CPA is often wrongly labelled as failed TB treatment, and patients receive the wrong therapy. My research will determine the size of the problem in Vietnam and how best to address it.
The Role Of Mucosal-Associated Invariant T Cells In Protective And Aberrant Immunity
Funder
National Health and Medical Research Council
Funding Amount
$620,205.00
Summary
Despite their prevalence and potential therapeutic value, MAIT cells remain the least studied of all T cells. This program seeks to do paradigm shifting research into the role of MAIT cells in protective immunity to microbes and allergies. Thereby this project will significantly advance fundamental knowledge on MAIT cell biology and could furnish novel immunotherapeutic agents with an enormous potential as alternatives to microbial and allergy treatments, areas of tremendous clinical need.
Genomics For Combating Antimicrobial Resistant Bacterial Pathogens
Funder
National Health and Medical Research Council
Funding Amount
$2,027,364.00
Summary
Applying genomics to bacterial pathogens is revolutionising the way we understand infectious diseases and antimicrobial resistance (AMR). There is a major opportunity to now bring the technology into routine clinical and public health practice. This research program will investigate and deliver the technology of pathogen genomics directly into public health disease surveillance, outbreak detection and the diagnosis and response to infectious diseases and AMR in hospitalised patients.
Understanding The Development And Spread Of Pan Resistance In Acinetobacter Baumannii
Funder
National Health and Medical Research Council
Funding Amount
$2,339,215.00
Summary
Resistance to all antibiotics available for treatment of bacterial infections is a cause for global concern (Word Health Organization, US Centres for Disease Control) as it also compromises therapies relying on antibiotics such as transplantation and cancer chemotherapy. Extensively antibiotic resistant Acinetobacter baumannii, mainly causes hospital-acquired infections. This project will seek to track different types of these bacteria as they repeatedly spread around the world.
Targeting Vitamin-reactive T Cells For Enhanced Immunity
Funder
National Health and Medical Research Council
Funding Amount
$2,590,576.00
Summary
A specialised set of T cells called mucosal-associated invariant T (MAIT) cells react against bacteria and yeast, and reside at mucosal sites where the body's immune defences are often breached, e.g. respiratory tract and intestinal mucosa. This study seeks to define the molecular signals driving the function of MAIT cells, particularly during infections. This information may lead to methods tailored to manipulating MAIT cells therapeutically.
Understanding Immune Responses To Severe Influenza Virus Infection And Vaccination In Humans
Funder
National Health and Medical Research Council
Funding Amount
$645,205.00
Summary
During influenza virus infection, people acquire robust and long-lasting immunity. However, current influenza vaccines elicit only transient immunity. I will define optimal responses in different immune cell types after natural infection versus vaccination; understand why some people fail to generate protective antibodies to the vaccine; and identify key biomarkers aimed at reducing influenza disease impact in high risk groups. This work will improve future influenza vaccination regimens.
From Bench To Bedside: A New Treatment For Chronic Rhinosinusitis
Funder
National Health and Medical Research Council
Funding Amount
$2,360,520.00
Summary
My research focuses on diseases of the upper airways, in particular chronic relapsing infections and inflammation of the nose and sinus mucosa and on improving wound healing after surgery. My research is translational, aimed at defining new treatments for these diseases. I have invented novel products that improve wound healing after surgery and instruments that help surgeons perform their surgeries in a better and safer way.
Improving Reproductive Health Through Infectious Diseases Research
Funder
National Health and Medical Research Council
Funding Amount
$1,957,108.00
Summary
Infectious diseases that impact upon reproductive health remain a major problem worldwide. This proposal will examine human papillomavirus infection, the role of the human microbiota in a number of conditions (necrotising enterocolitis, bacterial vaginosis, and human papillomavirus infection), and antibiotic resistance in sexually transmitted infections. The knowledge generated will be used to improve diagnostics.