Decoding The Transcriptional Program Of Vessel Growth In Health And Disease
Funder
National Health and Medical Research Council
Funding Amount
$463,652.00
Summary
Lymphatic vessels are essential to maintain fluid balance in most tissues of the human body. Further the lymphatic vasculature plays a central role during cancer and contributes to tumour metastasis. Despite this integral function in health and disease little is known about the molecular programs that coordinate gene expression to build a functional vasculature. This research project will address this gap in our knowledge and will open up new therapeutic avenues for lymphatic vascular disorders
New Insights Into The Mechanisms Of Thrombogenesis In Atrial Fibrillation
Funder
National Health and Medical Research Council
Funding Amount
$443,946.00
Summary
Atrial fibrillation (AF) is the most common heart rhythm disturbance (arrhythmia), which is associated with a high risk of stroke due to clot formation within the left atria. At present we still only have a limited understanding of the mechanism of clot formation in AF. The aim of this study is to determine the critical mechanisms that contribute to clot formation within the left atria in AF. This knowledge is fundamental to the development of more successful interventional approaches.
The Genetic And Cellular Control Of Lymphangiogenesis In Health And Disease
Funder
National Health and Medical Research Council
Funding Amount
$475,534.00
Summary
Lymphatic vessels and veins play major roles in cardiovascular disorders. In many vascular pathologies we need an ability to promote or restrict vessel formation. This research investigates the genes that control the development of new veins and lymphatic vessels. Outcomes will include a greater understanding of how our vasculature is formed, providing new knowledge that should contribute to future lymphatic and vascular therapeutic approaches.
Novel Single-chain Antibody-targeted Nanoparticles For Diagnosis Of Vascular Diseases
Funder
National Health and Medical Research Council
Funding Amount
$380,558.00
Summary
The aim of this project is to develop targeted imaging agents that seek out specific markers for various states of cardiovascular disease. These agents would provide a method for detecting the presence and level of atherosclerosis, fatty tissue build up in the vessel wall. The nanoparticles may provide a unique opportunity to detect very early plaques, the vulnerability of existing plaques and difficult-to-diagnose vessel blockages such as clots in lung vessels (pulmonary embolism).
Patient-specific Modelling Of Cardiovascular Disease
Funder
National Health and Medical Research Council
Funding Amount
$428,065.00
Summary
Cardiovascular disease is undoubtedly the biggest killer in the developed world and accounts for 30% of all deaths in Australia; killing one Australian every twelve minutes. My research group and I, combine medical imaging with biomedical engineering to perform patient-specific modelling. For example, we can predict the likelihood that aneurysm will rupture or the way blood flows through the aorta. My goal is to make these modelling tools accurate and robust enough to be used in the clinic.
Understanding, Detecting, Monitoring And Treating Brain Dysfunctions Due To Chronic Immune Diseases
Funder
National Health and Medical Research Council
Funding Amount
$415,219.00
Summary
The role of immune burdens on the brain of middle-aged persons is not well understood. For example the combined brain effects of HIV and cardio-vascular diseases are unknown. Our research is about better understanding those processes using advanced neuropsychology and brain imaging methods. It is also about developing new instruments to detect problems as early as possible, to monitor them accurately and to better treat them in Australia and the Asia-Pacific region.