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Scheme : Linkage Projects
Research Topic : disorders
Socio-Economic Objective : Diagnostics
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  • Researchers (81)
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  • Funded Activity

    Linkage Projects - Grant ID: LP0562190

    Funder
    Australian Research Council
    Funding Amount
    $117,444.00
    Summary
    Devil Facial Tumour Disease: Cytogenetic Clues to Transmission and Development. Devil Facial Tumour Disease is a fatal cancer that is decimating Tasmanian devils. Preliminary work suggests that tumours from different animals have identical sets of highly abnormal chromosomes, including a giant marker chromosome. We will use DNA probes to 'paint' abnormal tumour chromosomes to discover markers for diagnosis, and identify genes contributing to tumour development and immune suppression. Most import .... Devil Facial Tumour Disease: Cytogenetic Clues to Transmission and Development. Devil Facial Tumour Disease is a fatal cancer that is decimating Tasmanian devils. Preliminary work suggests that tumours from different animals have identical sets of highly abnormal chromosomes, including a giant marker chromosome. We will use DNA probes to 'paint' abnormal tumour chromosomes to discover markers for diagnosis, and identify genes contributing to tumour development and immune suppression. Most importantly, we will test our hypothesis that tumours all arose from a single ancestral cancer cell that is transmitted between animals. A cellular transmission has frightening implications for spread of disease, but will allow us to develop appropriate therapeutic strategies to save a unique Australian marsupial from extinction.
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    Funded Activity

    Linkage Projects - Grant ID: LP0776802

    Funder
    Australian Research Council
    Funding Amount
    $120,000.00
    Summary
    Development of a non-invasive diagnostic test of Embryo Viability. A successful outcome will: . improve the cost effectiveness of assisted reproductive technologies resulting in reduced health care costs and allowing greater use of ART in animal production . by greater cost-effectiveness, facilitate greater access to these advanced technologies in less well developed economies . build the national capacity in development and validation of biotech diagnostics . build collaborative relationsh .... Development of a non-invasive diagnostic test of Embryo Viability. A successful outcome will: . improve the cost effectiveness of assisted reproductive technologies resulting in reduced health care costs and allowing greater use of ART in animal production . by greater cost-effectiveness, facilitate greater access to these advanced technologies in less well developed economies . build the national capacity in development and validation of biotech diagnostics . build collaborative relationship between the CI, University of Sydney and a leading industry partner (Cook Australia) . lead to significant new fundamental knowledge in embryology that will be of major International significance
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    Funded Activity

    Linkage Projects - Grant ID: LP0219286

    Funder
    Australian Research Council
    Funding Amount
    $67,635.00
    Summary
    The development of a rapid diagnostic test for heparanase activity. Heparanase is an enzyme that has been implicated in a number of disease states such as cancer, arthritis, multiple sclerosis and other inflammatory diseases. Characterisation of this enzyme has been slow, due in part to the lack of a reliable direct activity assay. Using a multi-disciplinary approach, this project seeks to establish a rapid assay that will provide easy determination of heparanase activity. Furthermore, this a .... The development of a rapid diagnostic test for heparanase activity. Heparanase is an enzyme that has been implicated in a number of disease states such as cancer, arthritis, multiple sclerosis and other inflammatory diseases. Characterisation of this enzyme has been slow, due in part to the lack of a reliable direct activity assay. Using a multi-disciplinary approach, this project seeks to establish a rapid assay that will provide easy determination of heparanase activity. Furthermore, this assay could provide a useful diagnostic tool in a clinical environment that would allow for the rapid assessment of these diseases, their progression and indeed response to therapy.
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    Funded Activity

    Linkage Projects - Grant ID: LP0884003

    Funder
    Australian Research Council
    Funding Amount
    $76,881.00
    Summary
    Biomarkers and objective assessment of cognitive and brain effects of fish oil dietary supplementation. There are potential widespread community benefits from knowing whether consuming fish oils will improve cognitive function. This is mainfest in children and even more so in those suffering attention deficits at a time when inattention and hyperacitvity is likely to permanently lower their overall career prospects.
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    Funded Activity

    Linkage Projects - Grant ID: LP0455407

    Funder
    Australian Research Council
    Funding Amount
    $389,997.00
    Summary
    Novel Glycoproteomic based diagnostic technology for identifying cartilage tissue turnover and repair. Osteoarthritis is a long-term debilitating disease, which results in the loss of cartilage in the joints, leading to pain and disability. This is a major problem and cost in ageing societies, yet the mechanisms of joint deterioration are still poorly understood. This project will investigate proteoglycans and proteoglycan fragments produced by cells of the joint, detailing the structure of th .... Novel Glycoproteomic based diagnostic technology for identifying cartilage tissue turnover and repair. Osteoarthritis is a long-term debilitating disease, which results in the loss of cartilage in the joints, leading to pain and disability. This is a major problem and cost in ageing societies, yet the mechanisms of joint deterioration are still poorly understood. This project will investigate proteoglycans and proteoglycan fragments produced by cells of the joint, detailing the structure of their sugar components, and map which regions are interacting with antibodies. Understanding these proteoglycan fragments will help us to determine their role in disease progression, and application of this knowledge will assist in the development of an early diagnostic for osteoarthritis.
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