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Field of Research : Biotechnology Not Elsewhere Classified
Research Topic : Cancer
Australian State/Territory : NSW
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  • Funded Activity

    Linkage Projects - Grant ID: LP0883838

    Funder
    Australian Research Council
    Funding Amount
    $514,076.00
    Summary
    Structural and pharmaceutical studies on a novel human protein, MIC-1. Cancer and obesity are two of the main health problems facing Australia, as reflected by the National Research Priority: Promoting and Maintaining Good Health. This project will develop new diagnostic tools for early cancer detection and prognosis using the protein, MIC-1. MIC-1 is responsible for cachexia, a wasting disorder responsible for 25% of cancer deaths, which has no effective therapy. MIC-1 and antibodies neutrali .... Structural and pharmaceutical studies on a novel human protein, MIC-1. Cancer and obesity are two of the main health problems facing Australia, as reflected by the National Research Priority: Promoting and Maintaining Good Health. This project will develop new diagnostic tools for early cancer detection and prognosis using the protein, MIC-1. MIC-1 is responsible for cachexia, a wasting disorder responsible for 25% of cancer deaths, which has no effective therapy. MIC-1 and antibodies neutralising MIC-1 may provide therapeutic agents to control cancer cachexia and severe obesity. The project will optimise these molecules for therapeutic uses. These diagnostic and therapeutic tools will form the basis of a spin-off company for commercialisation.
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    Funded Activity

    Discovery Projects - Grant ID: DP0877414

    Funder
    Australian Research Council
    Funding Amount
    $250,000.00
    Summary
    Intelligent Image Processing Techniques for Novel Biomarker Discovery. This project will make an impact on Australia's international research profile by seeking a solution to a worldwide challenging problem in biomarker discovery for the detection of diseases at an early stage which requires the incorporation of the skills and knowledge from biology, medicine, engineering, computer science, and information technology. The successful outcomes of this research will make an impact on Australia's e .... Intelligent Image Processing Techniques for Novel Biomarker Discovery. This project will make an impact on Australia's international research profile by seeking a solution to a worldwide challenging problem in biomarker discovery for the detection of diseases at an early stage which requires the incorporation of the skills and knowledge from biology, medicine, engineering, computer science, and information technology. The successful outcomes of this research will make an impact on Australia's engagement in using advanced image analysis and intelligent methods for the emerging research and development of targeted drug discovery.
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    Funded Activity

    Discovery Projects - Grant ID: DP0450774

    Funder
    Australian Research Council
    Funding Amount
    $212,868.00
    Summary
    Forces on Particles in Flows Traversing a Magnetic Field. The influence of magnetic fields on the motion of particles near surfaces will be examined using quiescent and shear flow fields at low Reynolds numbers. This theoretical and experimental study will produce a precise theoretical understanding of the motion, including the shear induced lift-force, and hence a basis for controlling the interaction of the particle with the adjacent surface. This fundamental study will provide the foundations .... Forces on Particles in Flows Traversing a Magnetic Field. The influence of magnetic fields on the motion of particles near surfaces will be examined using quiescent and shear flow fields at low Reynolds numbers. This theoretical and experimental study will produce a precise theoretical understanding of the motion, including the shear induced lift-force, and hence a basis for controlling the interaction of the particle with the adjacent surface. This fundamental study will provide the foundations needed to apply magnetic fields to a broad range of emerging problems in nano-technology and biotechnology, and help train and educate a student at the PhD level in the area.
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    Funded Activity

    Discovery Projects - Grant ID: DP0665598

    Funder
    Australian Research Council
    Funding Amount
    $175,000.00
    Summary
    An Automated Bioimaging System for High-Content Cell-Cycle Screening. 1) Providing a better understanding of the biological complexities that will advance knowledge in life science research and facilitate the development of new anti-cancer drugs. 2) Supporting Australian academic institutions in a challenging field of innovative research through international, interdisciplinary collaborations, and publications in journals of high quality scientific research. 3) Providing research training .... An Automated Bioimaging System for High-Content Cell-Cycle Screening. 1) Providing a better understanding of the biological complexities that will advance knowledge in life science research and facilitate the development of new anti-cancer drugs. 2) Supporting Australian academic institutions in a challenging field of innovative research through international, interdisciplinary collaborations, and publications in journals of high quality scientific research. 3) Providing research training in a research venture that requires expertise and collaboration in the disciplines of biology, engineering, computer science, and mathematics. 4) Bringing economic and social benefits for Australia by enhancing important industries and existing technologies in medicine, and biotechnology.
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    Funded Activity

    Discovery Projects - Grant ID: DP0449693

    Funder
    Australian Research Council
    Funding Amount
    $270,000.00
    Summary
    Proteomic analysis of subcellular changes during apoptosis. This project aims to use a novel proteomic approach to examine mechanisms of apoptosis at the level of the plasma membrane, mitochondrion, nucleus and cytosol, screening protein extracts of cell organelles by the new technique of SELDI-TOF mass spectrometry in which proteins are adsorbed onto activated chips. This will provide protein mass profiles characteristic of various stages of apoptosis, and will allow identification of proteins .... Proteomic analysis of subcellular changes during apoptosis. This project aims to use a novel proteomic approach to examine mechanisms of apoptosis at the level of the plasma membrane, mitochondrion, nucleus and cytosol, screening protein extracts of cell organelles by the new technique of SELDI-TOF mass spectrometry in which proteins are adsorbed onto activated chips. This will provide protein mass profiles characteristic of various stages of apoptosis, and will allow identification of proteins of interest by conventional proteomic methods. The establishment of SELDI-MS as a viable tool for cell proteomics would open new opportunities to understand a broad range of cellular functions at the level of protein expression.
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