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Research Topic : COLON
Country : Australia
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  • Funded Activity

    Mechanical Factors In Normal Human Colonic Motility

    Funder
    National Health and Medical Research Council
    Funding Amount
    $650,023.00
    Summary
    Abnormal human colonic contractions cause significant medical, societal and financial burdens. Diagnosis and treatment of motility disorders requires an understanding of normal colonic contractility against which to measure dysfunction. Through state-of-the-art recording and analytical techniques, developed by the applicants, this project will provide the first clear description of normal human colonic motor patterns and how they are generated.
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    Personalised Medicine Markers Of Anti-EGFR Antibody Therapy In Metastatic Colorectal Cancer: Accelerating Clinical Translation With Collaborative Meta-analyses Based On Individual-participant Data

    Funder
    National Health and Medical Research Council
    Funding Amount
    $300,953.00
    Summary
    When selecting cancer therapy we take into account ‘biomarkers’, biological cancer characteristics that predict treatment success. We will work with an international group, the Advanced Colorectal Cancer Database, to analyse individual patient clinical trial data. We intend to validate biomarkers used to select treatment with cetuximab or panitumumab. Cancer genes called KRAS, NRAS, PTEN, PIK3CA, EREG and BRAF will be examined. Our study will provide best evidence for personalised treatment.
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    Molecular Characterisation Of Early Precursor Lesions Of A Novel Ñserrated Pathwayî Of Colorectal Cancer Using Gene Expression And Proteomics.

    Funder
    National Health and Medical Research Council
    Funding Amount
    $318,338.00
    Summary
    In Australia, CRC is the second highest cause of all cancer-related deaths. If detected early, CRC has a high success rate of cure, but a percentage of precursor lesions escape detection and show aggressive clinical behaviour to progress to CRC. These are difficult to diagnosis with existing technologies. We aim to understand the biology behind sessile serrated adenoma pathways and hence enhance early detection, diagnosis and treatments strategies.
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    Genomic Profiling For The Prevention Of Colorectal Cancer

    Funder
    National Health and Medical Research Council
    Funding Amount
    $425,048.00
    Summary
    Bowel cancer is a major health issue but is also a preventable disease. Identifying who has a high risk of developing bowel cancer from someone who has a low risk is an important way to ensure preventative medical treatment is targeted to those who are at the highest risk and will ultimately save lives. I will utilise different genomic profiling approaches to identify risk factors for bowel cancer so that they can be used to identify high risk people in the population.
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    Funded Activity

    Mechanistic Basis Of AP-1-regulated Gene Expression During Colorectal Cancer Progression

    Funder
    National Health and Medical Research Council
    Funding Amount
    $597,802.00
    Summary
    The spread of colorectal cancers in the body poses a major clinical problem for which current treatment options are inadequate. This project aims to unravel how a specific DNA-binding protein regulates the expression of genes involved in the spread of these cancers. The research is expected to provide a better mechanistic understanding of how disease progression occurs and to identify novel strategies to treat aggressive tumours.
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    Funded Activity

    Developmental Therapeutics For The Treatment Of Gastrointestinal Cancers

    Funder
    National Health and Medical Research Council
    Funding Amount
    $5,392,649.00
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    Funded Activity

    Characterising The Beta-catenin Nuclear Targeting Pathway In Cancer

    Funder
    National Health and Medical Research Council
    Funding Amount
    $485,081.00
    Summary
    Bowel cancer is caused by inherited gene mutations that cause build-up of beta-catenin protein in the cell nucleus. Bowel cancer is the second largest cause of cancer deaths in Australia. We aim to study the mechanisms controlling beta-catenin accumulation in the nucleus. We will characterise new signalling pathways that control movement and activity of beta-catenin in the nucleus. This will yield insights into the role of beta-catenin in cancer and possible targets for therapy.
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    Improved Formulations Of Anti-cancer Agents 5-Fluorouracil And Oxaliplatin Using Excipient Technology

    Funder
    National Health and Medical Research Council
    Funding Amount
    $202,973.00
    Summary
    Chemotherapy plays a key role in cancer treatment, however, problems persist with severe adverse toxic effects. Combinations of anti-cancer agents give better results, but these agents still have major negative effects, for example, on veins and peripheral nerves and they must be given separately. We have developed a novel, all-in-one formulation of Oxaliplatin with 5-Fluorouracil and Leucovorin, with the potential for fewer toxic effects and improved patient care.
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    Development Of Diagnostic Tools To Characterise Predictors Of Therapeutic Outcome In Severe Constipation

    Funder
    National Health and Medical Research Council
    Funding Amount
    $433,999.00
    Summary
    This project will use fibre-optic technology to create detailed high resolution maps of colonic motor patterns in both health and in patients with severe constipation. The data will be used in combination with actual patient symptoms to help identify specific markers of disease that can differentiate sub-types of constipation and ultimately guide and improve treatment in constipated patients
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    Funded Activity

    Novel Approaches For Activation And Expansion Of Genetically Modified T Cells In Vivo

    Funder
    National Health and Medical Research Council
    Funding Amount
    $115,660.00
    Summary
    Killer T lymphocytes can penetrate tumors and their propagation and transfer into cancer patients has demonstrated some encouraging results, but this form of adoptive immunotherapy remains ineffective in most cancer patients. We propose to improve the tumor trafficking and anti-tumor activities of killer cells by genetically engineering them with proteins that will enable them to recognise and destroy cancer cells. Our previous work has indicated that killer T lymphocytes can be genetically engi .... Killer T lymphocytes can penetrate tumors and their propagation and transfer into cancer patients has demonstrated some encouraging results, but this form of adoptive immunotherapy remains ineffective in most cancer patients. We propose to improve the tumor trafficking and anti-tumor activities of killer cells by genetically engineering them with proteins that will enable them to recognise and destroy cancer cells. Our previous work has indicated that killer T lymphocytes can be genetically engineered in culture with tumor recognition receptors. When transferred into mice, these genetically engineered cells can release toxic and inflammatory proteins that cause tumor destruction. In this proposal we wish to further test this approach in mice by enginneering the mouse killer T cells with (i) receptors that provide stronger signals for killing and proliferation; and (ii) with receptors targeting other structures on tumor cells including the tumor vasculature as a means to overcome tumor escape. In addition, we wish to test a novel approach of combining both genetic engineering and vaccination strategies for expanding gene-modified cells after adoptive transfer. These studies will allow the best receptor genes to be transferred to human white blood cells and examined for anti-tumor effects in immune-deficient mice.
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