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Research Topic : intervention study
Field of Research : Central Nervous System
Australian State/Territory : NSW
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  • Funded Activity

    The Australian Parkinson's Project - Uncovering Genetic Risk Factors For Sporadic PD

    Funder
    National Health and Medical Research Council
    Funding Amount
    $768,546.00
    Summary
    Parkinson s disease (PD) is a progressively disabling movement disorder afflicting many elderly Australians. It is caused by the degeneration of specific nerve cells in the brain that produce certain chemicals and patients suffer from an inability to move fluently (or ultimately at all). At present we do not know what triggers this neurodegeneration, but it is believed that complex interactions between inherited (genetic) and environmental factors contribute significantly to the phenomenon. This .... Parkinson s disease (PD) is a progressively disabling movement disorder afflicting many elderly Australians. It is caused by the degeneration of specific nerve cells in the brain that produce certain chemicals and patients suffer from an inability to move fluently (or ultimately at all). At present we do not know what triggers this neurodegeneration, but it is believed that complex interactions between inherited (genetic) and environmental factors contribute significantly to the phenomenon. This project aims to learn more about these complex interactions and their association with PD. People with PD and unaffected individuals will be recruited from throughout Australia and we will look for specific combinations of genetic, environmental and lifestyle factors that either increase or decrease an individual's risk for PD. This research will identify the most common dominant genetic and environmental influences for PD in Australia, enabling scientists to focus on the most relevant biological pathways to target therapeutically.
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    Funded Activity

    Discovery Early Career Researcher Award - Grant ID: DE170100628

    Funder
    Australian Research Council
    Funding Amount
    $372,000.00
    Summary
    Promotion of NAD+ anabolism to promote lifespan. The project aims to identify mechanisms of ageing, the role of stress on the ageing brain and how NAD+ modulates these effects. NAD+ maintains cellular energy, repairs DNA and performs other essential cell functions. Intracellular NAD+ levels, the essential substrate for sirtuin activity including SIRT2, decline with age in humans and physiologically aged rats. This project will investigate the mechanisms by which pharmacological strategies design .... Promotion of NAD+ anabolism to promote lifespan. The project aims to identify mechanisms of ageing, the role of stress on the ageing brain and how NAD+ modulates these effects. NAD+ maintains cellular energy, repairs DNA and performs other essential cell functions. Intracellular NAD+ levels, the essential substrate for sirtuin activity including SIRT2, decline with age in humans and physiologically aged rats. This project will investigate the mechanisms by which pharmacological strategies designed to elevate intracellular NAD+ levels will maintain optimal SIRT2 function to extend lifespan and improve age-related cognitive decline in vivo. Potential outcomes include using NAD+ to improve brain health in advanced old age.
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