Improving Outcome For People With Heart Diseases Using Digital Health Technologies
Funder
National Health and Medical Research Council
Funding Amount
$606,009.00
Summary
Digital technologies such as smart phones, wearable devices, sensors and artificial intelligence have shown promise to improve human health. However, evidence that these technologies can improve health outcomes in people with heart disease is lacking. My program of research in digital health will address this need and develop new model-of-care for people with heart disease to better monitor their health, take action before their health deteriorates and provide much needed support at home.
Biology Of Speech Disorders: Advancing Diagnosis, Prognosis & Management
Funder
National Health and Medical Research Council
Funding Amount
$3,515,005.00
Summary
For 100 years, my field has focused on assessing and managing patients based on speech disorder symptomatology. We have ignored aetiology, preventing targeted care. My work will pioneer gene discovery to advance knowledge of the aetiology of human communication disorders, enabling targeted care to reduce disability. Proposed work will be directly translated to improve care and optimise outcomes in speech disorder via advancing detection, diagnosis and prognostic counselling of patients.
The Developing Microbiome As A Predictor And Modulator Of Mental Health Risk And Resilience: A Translational Gut-brain Axis Approach To Improving Childhood Mental Health
Funder
National Health and Medical Research Council
Funding Amount
$645,205.00
Summary
Most psychological problems start to emerge in childhood or adolescence, likely because the brain is most vulnerable while it is still growing. The latest research suggests that brain health is intimately linked to the gut. Could bacteria in the gut contribute to risk of (or resistance to) mental health problems in children? This project will investigate this question and the information gathered will then be used to trial new, gut-based, approaches to protect children’s mental health.
Revolutionising Multiple Sclerosis Care And Trials Through E-health
Funder
National Health and Medical Research Council
Funding Amount
$2,182,124.00
Summary
Multiple Sclerosis (MS) is now a highly treatable disease. However, many people with MS are not treated optimally because health care delivery is intermittent and disease monitoring is patchy. People failing treatment should switch quickly to prevent disability, but the treatment choices and sequences also need to be safe long-term. The solution to these problems, to be validated by my team, is greater involvement of people with MS in their own monitoring though e-health tools.
Pathways To Vision Following Lesions Of The Primary Visual Cortex
Funder
National Health and Medical Research Council
Funding Amount
$2,500,000.00
Summary
Lesions due to stroke or trauma in the occipital lobe cause blindness, which can be complete or restricted to part of the visual field. My work has identified areas of the visual brain that remain active after such lesions. I want to find out if these areas can be used to partially restore vision. This project will study the potential roles of different surviving areas, how brain cells rewire their connections in response to damage, and how rehabilitation programs work at the cellular level.
Novel Nanotechnology Strategies For Drug Co-delivery And Combined Therapies In The Brain
Funder
National Health and Medical Research Council
Funding Amount
$1,512,250.00
Summary
Key challenges for treating brain diseases include effective delivery of drugs into the brain and targeted delivery to pathogenic areas. I have developed two world-first drug delivery systems that address these challenges. This project will expand their loading and brain delivery capability to deliver a broad range of novel multiple therapeutics to target sites in the brain. Human brain disease models will be used for systematic preclinical evaluation of novel delivery systems and therapeutics.
A Long-Lasting Oral Drug Delivery System Using Spiky Silica Nanoparticles
Funder
National Health and Medical Research Council
Funding Amount
$645,205.00
Summary
This project aims to develop a novel silica nanoparticle-based delivery system for long-lasting oral drug delivery. The particles will be engineered with a spiky morphology that will increase adhesion to the gastrointestinal tract enabling sustained drug release for days or even weeks. Longer lasting oral drug formulations would make it much easier for patients to adhere to the treatment schedules required in chronic diseases like HIV and increase the effectiveness of therapy.
Tipping The Balance - Improving Response Rates To Cancer Immunotherapy
Funder
National Health and Medical Research Council
Funding Amount
$1,562,250.00
Summary
Survival rates for some types of cancer remain low. It was previously thought that chemotherapy could not be combined with drugs that affect the immune system (immunotherapy) to treat cancer. My research disproved this. I develop models to study cancer in the lab. I also research ways to measure how people’s bodies respond to chemotherapy and immunotherapy (biomarkers). I use this information to discover new drug combinations to reduce deaths from cancer.
Investigating Post-transcriptional Gene Regulation In Cancer
Funder
National Health and Medical Research Council
Funding Amount
$645,205.00
Summary
In this program, I will enhance our understanding of cancer gene regulation and provide novel avenues for the treatment of aggressive tumours. Using own data and that from collaborators, I will determine patterns of gene regulation in blood cancers and identify markers that predict disease outcome. I aim to understand how gene regulation can transform healthy cells into tumour cells and whether personalised treatment can kill tumour cells more effectively and prevent relapse and metastasis.
Mapping Neurodevelopmental Disorders In A Zebrafish Model
Funder
National Health and Medical Research Council
Funding Amount
$2,760,520.00
Summary
The way in which the brain develops differently in neurodevelopmental disorders such as autism is hard to reveal in humans, but can be addressed in a zebrafish model. Using cutting-edge imaging and computational techniques, this project will investigate how neural representations of the world develop differently between normal zebrafish and zebrafish mutant for a gene that causes autism. This will provide new insights into the mechanisms of altered circuit development in autism.