The Role Of EphA2 Signalling And Environmental Modifiers In Cataract.
Funder
National Health and Medical Research Council
Funding Amount
$591,547.00
Summary
In cataract the clear lens in the eye becomes opaque causing blindness. Cataract is very common in the elderly, but is rarely also seen in babies and children. In babies certain gene defects, and in the elderly the genes and environmental factors contribute to cataract. The EPHA2 gene causes cataract in both young and old people. This project aims to understand how EPHA2 and other related genes cause cataract in young and old people, to prevent, delay or improve its treatment in the future.
The Role Of Reduced Phagocytosis In The Pathogenesis Of Age-related Macular Degeneration
Funder
National Health and Medical Research Council
Funding Amount
$786,742.00
Summary
Understanding the underlying mechanisms which lead to age-related macular degeneration (AMD) is critical if we are to ultimately develop novel treatments. We hypothesise that there is a defective ability to remove debris that accumulates in the retina as we age and this is a crucial step in the development of AMD. We will investigate this hypothesis in an AMD cohort and in a pre-clinical model where we will test the efficacy of an intervention that improves the ability to clear debris.
Age-related Macular Degeneration: A Cause And A Cure
Funder
National Health and Medical Research Council
Funding Amount
$828,300.00
Summary
Age-related macular degeneration (AMD) is a leading cause of vision loss and there is urgent need for an intervention to slow disease progression. AMD is characterised by debris accumulation in the retina and I will investigate if loss of function in cells that should clear this debris is a critical step in the development of AMD. I will trial a novel laser intervention to slow progression of disease and use basic science techniques to investigate the mechanisms of action of the laser.
A Nanosecond Laser Based Surgical Treatment To Prevent Progression To Vision Loss In Early Age-related Macular Degeneration (AMD)
Funder
National Health and Medical Research Council
Funding Amount
$813,481.00
Summary
We aim to conduct a trial of a new nano-laser based treatment for Age-related Macular Degeneration (AMD) which, if successful in slowing progression of AMD, will lead to a dramatic reduction in vision loss in our community. AMD is the leading cause of irreversible vision loss in people 50 years and older in Australia. The successful outcome will postpone vision loss, benefiting many thousands of Australians, and result in substantial healthcare savings.
Predictors Of Treatment Outcomes Following Anti-vascular Endothelial Growth Factor (VEGF) Therapy For Neovascular AMD.
Funder
National Health and Medical Research Council
Funding Amount
$240,277.00
Summary
Age-related macular degeneration (AMD) is the most common cause of severe, irreversible loss of vision amongst elderly populations in the developed world. Bleeding in the retina destroys central vision. New treatments have been developed to stop this bleeding. However not all patients benefit equally, with some still losing vision. This project aims to investigate what determines how well an individual responds to treatment, in particular, how genes might influence the response.
I am an epidemiologist, primarily interested in the study and quantitative assessment of the environment-health relationship. Specifically, my current research focuses on development of innovative methods to assess the impact of ecosystem change (eg, clim
Identifying The Barriers To Optimal Diabetes And Diabetic Retinopathy Care In Non-English Speaking Adults With Type I And II Diabetes
Funder
National Health and Medical Research Council
Summary
Diabetes is a growing epidemic, with diabetic retinopathy being one of its common complications. With an ageing population, the public health and economic impact associated with diabetes are expected to magnify. Among the risk factors for sub-optimal diabetes care, language proficiency and cultural differences have been indicated. However, there is little to no research into the barriers of diabetes care in Australia�s non-English speaking population, which is the purpose of the proposed study.
Novel Morphological Retinal Vascular Features As Early Biomarkers Of Vision-threatening Eye Diseases.
Funder
National Health and Medical Research Council
Funding Amount
$107,169.00
Summary
Vision loss is not just a personal health burden, but a huge socio-economical burden. Management of major vision-threatening eye diseases such as diabetic retinopathy, age-related macular degeneration and glaucoma will be improved if we can successfully identified persons at risk of developing the disease before clinical presentation to benefit from preventive treatment. My research aims to contribute to the prediction of these blinding diseases using advanced computer imaging analysis for simpl ....Vision loss is not just a personal health burden, but a huge socio-economical burden. Management of major vision-threatening eye diseases such as diabetic retinopathy, age-related macular degeneration and glaucoma will be improved if we can successfully identified persons at risk of developing the disease before clinical presentation to benefit from preventive treatment. My research aims to contribute to the prediction of these blinding diseases using advanced computer imaging analysis for simple retinal photographs.Read moreRead less
An Investigation Into The Importance Of Potable Water As A Source Of Melioidosis In Northern Australia
Funder
National Health and Medical Research Council
Funding Amount
$362,036.00
Summary
Melioidosis is a potentially fatal infection that occurs throughout the Top End. Infection usually sets in after exposure to contaminated soil or surface water. A recent outbreak of melioidosis in which three of seven cases died was traced to the community's drinking water supply. Subsequent improvements to the community's drinking water treatment appear to have brought the outbreak under control. However, the ability of the bacteria responsible for this infection to survive within the body for ....Melioidosis is a potentially fatal infection that occurs throughout the Top End. Infection usually sets in after exposure to contaminated soil or surface water. A recent outbreak of melioidosis in which three of seven cases died was traced to the community's drinking water supply. Subsequent improvements to the community's drinking water treatment appear to have brought the outbreak under control. However, the ability of the bacteria responsible for this infection to survive within the body for many years before causing late onset infection means that further cases may be recorded in the affected community for years to come. This project aims to assess whether the drinking water supply to other rural communities presents a risk of melioidosis throughout the Top End. Drinking water supplies will be tested for the presence of the bacteria that cause melioidosis. Genetic fingerprinting will be used to compare each strain isolated from water specimens with strains obtained from infections previously diagnosed in hospitals throughout the Top End. This will involve the combined efforts of researchers in Western Australia, the Northern Territory and Queensland. Comparison of these results with standard measures of drinking water quality will enable the research team to work out whether any routinely performed tests can be used as a guide to melioidosis risk. The team will also examine whether any geographical features such as deep water supply or the type of vegetation present can be used to assess melioidosis risk. A clearer picture of melioidosis risk will make it easier to target the delivery of preventive methods such as chlorination or alternatives to specific water supplies. Preliminary studies in Western Australia suggest that primary prevention of melioidosis may be possible. We need to see how widely those findings apply. It is hoped that this work will lead to a significant reduction in the risk of contracting this disease throughout the endemic region.Read moreRead less