RNA Interference In Model Systems Of Macular Degeneration.
Funder
National Health and Medical Research Council
Funding Amount
$166,500.00
Summary
Exudative age-related macular degeneration (AMD) is the most common cause of irreversible severe vision loss in the elderly, with an estimated 25-30 million people worldwide blind due to AMD. There is currently no standard treatment for AMD. A safe, specific and effective pharmacologic agent for AMD, therefore, has enormous therapeutic, social and economic benefits. AMD is underpinned by vascular leakiness and new blood vessel formation. We have demonstrated that Egr-1, a nuclear transcription f ....Exudative age-related macular degeneration (AMD) is the most common cause of irreversible severe vision loss in the elderly, with an estimated 25-30 million people worldwide blind due to AMD. There is currently no standard treatment for AMD. A safe, specific and effective pharmacologic agent for AMD, therefore, has enormous therapeutic, social and economic benefits. AMD is underpinned by vascular leakiness and new blood vessel formation. We have demonstrated that Egr-1, a nuclear transcription factor, plays a key regulatory role in a diverse array of angiogenic processes. In this project, we will use novel gene-targeting agents (Egr-1 siRNA) to provide preclinical proof-of principle evidence of their therapeutic potential in established animal models of AMD. These studies will pre-empt Phase IA safety trials in AMD patients.Read moreRead less
Control Of Refractive Error Through Ionically Driven Fluid Movements
Funder
National Health and Medical Research Council
Funding Amount
$208,600.00
Summary
Myopia affects about half the world's population with recent studies suggesting epidemic proportions among some Asian schoolchildren though we are not seeing this in Australia. Costs associated with detection, monitoring and optical correction of low and high myopia are huge. High myopes (15% with > 6D) also have a greatly increased risk of blindness between the ages of 30 and 50 years due to secondary disorders associated with impaired fluid balance (retinal and choroidal oedema, macula oede ....Myopia affects about half the world's population with recent studies suggesting epidemic proportions among some Asian schoolchildren though we are not seeing this in Australia. Costs associated with detection, monitoring and optical correction of low and high myopia are huge. High myopes (15% with > 6D) also have a greatly increased risk of blindness between the ages of 30 and 50 years due to secondary disorders associated with impaired fluid balance (retinal and choroidal oedema, macula oedema, retinal detachment and glaucoma). Currently there is no accepted pharmaceutical treatment for myopia though our studies in chick have provided the theoretical rationale and experimental data for a potential therapy and patent. This patent is now at the PCT stage and attests that changes in the abundance of the ions of the subretinal space control fluid movements across the retina to choroid and can be modulated therapeutically by diuretics to control fluid flow and hence axial growth and myopia. This application aims to take our current knowledge about fluid control in myopic chick into a mammalian model prior to preclinical trials in monkey. We anticipate it will take 1 year to establish the feasibility of diuretic control of experimentally induced myopic refractive errors in guinea pigs and the best drug and best the dosage range. These studies will contribute to the scientific understanding and bring the proposed pharmaceutical therapy for myopia in adults and children to a point of full commercialization. We believe that the results found in chick will have significance for early and late-onset myopia in humans as it is highly likely that the same mechanisms of ocular growth regulation operate throughout life.Read moreRead less
This project will develop a technique for detecting blind spots in the human field of vision by using virtual reality goggles to present a stimulus to the eye and then recording the tiny electrical signals from the brain that are generated in response to this. It will overcome many of the limitations of current subjective visual field testing and expand the potential market for the objective perimeter that we have developed. By recording from both eyes simultaneously it will halve the recording ....This project will develop a technique for detecting blind spots in the human field of vision by using virtual reality goggles to present a stimulus to the eye and then recording the tiny electrical signals from the brain that are generated in response to this. It will overcome many of the limitations of current subjective visual field testing and expand the potential market for the objective perimeter that we have developed. By recording from both eyes simultaneously it will halve the recording time and improve the ability to do inter-eye comparisons to look for early signs of glaucoma.Read moreRead less