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A New Function For An Old Enzyme: Src Protein Kinase Directs Excitotoxic Neuronal Death In Stroke
Funder
National Health and Medical Research Council
Funding Amount
$513,975.00
Summary
In our previous investigation of how brain cells die in patients suffering from stroke, we found that stroke causes aberrant activation of an enzyme called Src in the affected brain cells. Furthermore, this aberrantly activated Src directs the brain cells to undergo cell death. Our proposal, which aims to decipher this neurotoxic mechanism of the aberrantly activated Src will benefit development of new therapeutic strategies to reduce brain damage in stroke patients.
Low Dose Aspirin And Age-related Macular Degeneration: Randomised Controlled Trial
Funder
National Health and Medical Research Council
Funding Amount
$1,043,189.00
Summary
Age-related macular degeneration (AMD) is a major cause of visual impairment in advanced countries, responsible for nearly half of all legal blindness in Australia. Due to increased life expectancy, the number of people with this progressive late onset disease will double by 2025. Aspirin could prevent or delay the onset of AMD in older persons but its bleeding risk also needs to be considered. This project will determine whether treatment with low dose aspirin reduces incidence or progression o ....Age-related macular degeneration (AMD) is a major cause of visual impairment in advanced countries, responsible for nearly half of all legal blindness in Australia. Due to increased life expectancy, the number of people with this progressive late onset disease will double by 2025. Aspirin could prevent or delay the onset of AMD in older persons but its bleeding risk also needs to be considered. This project will determine whether treatment with low dose aspirin reduces incidence or progression of AMD.Read moreRead less
Promoting Regrowth Of Nerve Fibres Into The Epidermis During Diabetic Neuropathy By LRP Agonists
Funder
National Health and Medical Research Council
Funding Amount
$427,102.00
Summary
Nerve damage can develop post injury or disease and is often very debilitating, slow to heal and can cause increased pain. Our work aims to examine a new class of molecules that we show can activate selected fat-receptors on nerve cells to guide the growth of regenerating nerves. We will determine how these receptors function with the aim of developing a novel class of therapeutics directed at healing nerve damage.
Aurora Kinase: Molecular, Cellular And Functional Studies Deciphering Its Role In Stroke Injury
Funder
National Health and Medical Research Council
Funding Amount
$580,993.00
Summary
In stroke patients, oxygen deprivation indirectly induces massive nerve cell death by activating an enzyme called aurora kinase A (AURKA). We aim at unravelling (i) how AURKA is activated by oxygen deprivation, (ii) where the activated AURKA is localised in cells, and (iii) how the activated AURKA induces nerve cell death.The study will benefit development of therapeutic strategies to protect against brain damage in stroke since this is novel and different target for drug targeting.