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Research Topic : cancer cell genetics
Scheme : Project Grants
Australian State/Territory : ACT
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Biochemistry and Cell Biology not elsewhere classified (2)
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  • Funded Activities (15)
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  • Funded Activity

    To Search For Genetic Causes Of Renal Disease In The Tiwi Island Aboriginal Population

    Funder
    National Health and Medical Research Council
    Funding Amount
    $638,721.00
    Summary
    This project aims to continue work done on identifying the genetic basis to the kidney disease suffered by the Tiwi population from Bathurst and Melville Islands. It is based on the outcomes of the first genome-wide scan in an Aboriginal population. The scan yielded a genetic association to a locus that has led to a very plausible hypothesis. If this hypothesis is correct, and the goal of this project is designed to find this out, then public health measures should be able to halt the progressio .... This project aims to continue work done on identifying the genetic basis to the kidney disease suffered by the Tiwi population from Bathurst and Melville Islands. It is based on the outcomes of the first genome-wide scan in an Aboriginal population. The scan yielded a genetic association to a locus that has led to a very plausible hypothesis. If this hypothesis is correct, and the goal of this project is designed to find this out, then public health measures should be able to halt the progression of this disease in the community.
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    Funded Activity

    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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    Funded Activity

    ADAM Metalloprotease Inhibition For Treatment Of Colorectal Cancer

    Funder
    National Health and Medical Research Council
    Funding Amount
    $770,925.00
    Summary
    Colorectal cancer (CRC) causes over 4000 deaths/year, typically from developing drug resistance and spreading to other organs (metastasis). These processes involve tumour cells called cancer stem cells (CSCs), which rely on specific cell surface proteins for survival and function. We are developing antibodies against one of these type of proteins, to test in mouse models of CRC. These already show promise in targeting CSCs and inhibiting drug-resistance and metastasis in mice.
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    Funded Activity

    Identifying Novel Antimalarial Targets Using ENU Mutagenesis In The Mouse

    Funder
    National Health and Medical Research Council
    Funding Amount
    $760,170.00
    Summary
    Malaria is estimated to cause 1.2 million deaths per year. The malarial parasite has developed resistance to most drugs and new drugs are needed. We aim to mimic the protective red blood cell diseases common in human populations in malarial endemic areas by identifying host targets that are important in parasite growth.
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    Funded Activity

    Investigating The Cellular Response To Iron-Depletion: The Trilogy Of ASK1, Thioredoxin And Ribonucleotide Reductase

    Funder
    National Health and Medical Research Council
    Funding Amount
    $552,572.00
    Summary
    Iron is crucial for many essential biological processes. Recently, we demonstrated that iron-depletion can affects important signalling pathways (e.g., JNK and p38) that play important roles in growth arrest and apoptosis. This study is designed to investigate the cellular and molecular effects of iron depletion which currently remains unclear. The research is crucial for understanding: (1) the effects of iron deficiency and (2) for understanding the effects of iron chelators that are used for t .... Iron is crucial for many essential biological processes. Recently, we demonstrated that iron-depletion can affects important signalling pathways (e.g., JNK and p38) that play important roles in growth arrest and apoptosis. This study is designed to investigate the cellular and molecular effects of iron depletion which currently remains unclear. The research is crucial for understanding: (1) the effects of iron deficiency and (2) for understanding the effects of iron chelators that are used for treating various diseases.
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    Funded Activity

    Radiotherapy Treatment For Prostate Cancer - A Change In Practice Based On Direct Evidence For Targeting And Toxicity Effects Using Real Outcomes Data

    Funder
    National Health and Medical Research Council
    Funding Amount
    $555,129.00
    Summary
    Radiotherapy for prostate cancer treatment will be more effective when we have better knowledge of what patient anatomy needs to be targeted, and what needs to be avoided. This project will combine data collected during a large Australasian prostate cancer radiotherapy trial, ‘RADAR’, with data collected using new patient imaging methods to determine how patient anatomy impacts on the effectiveness of their treatment and the side-effects they experience.
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    Funded Activity

    Alpha Particle Therapy Of Solid Tumours

    Funder
    National Health and Medical Research Council
    Funding Amount
    $715,005.00
    Summary
    Alpha-particles linked to recombinant antibodies targeting tumour cells have potential to effectively treat tumours while minimising normal tissue side effects. We will explore a novel alpha-particle therapy approach to solid tumours, by delivering 225Ac directly into tumour cells, or into cells that support the tumour (microenvironment). This approach will hopefully result in development of a new approach to treatment of cancers that are resistant to conventional therapies.
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    Funded Activity

    Biofocussed Prostate Cancer RadioTherapy (BiRT): A Personalised Approach To Delivering The Right Dose To The Right Place

    Funder
    National Health and Medical Research Council
    Funding Amount
    $753,565.00
    Summary
    We propose a new approach to treating prostate cancer with radiotherapy to move from the standard whole prostate treatment to a personalised treatment that varies radiation intensity throughout the prostate. We will mathematically combine features that influence radiotherapy effect from advanced imaging, clinical and biopsy information. This model will map out the radiotherapy dose required at each part of the prostate, to maximise killing of the cancer whilst minimising harm to normal tissue
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    Funded Activity

    Regulation Of Ribosomal RNA Gene Chromatin During Malignant Transformation.

    Funder
    National Health and Medical Research Council
    Funding Amount
    $882,486.00
    Summary
    The overarching goal of this proposal is to determine the molecular basis for tumour cell dependence on activated ribosomal RNA gene repeats (rDNA). Our working model posits that rDNA repeats become activated through changes in rDNA chromatin structure that include increased binding of the RNA Polymerase I transcription factor UBF.
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    Funded Activity

    Epigenetic Regulation By PKC-theta In Human Breast Cancer Stem Cells.

    Funder
    National Health and Medical Research Council
    Funding Amount
    $818,132.00
    Summary
    Treating women with advanced breast cancer is difficult, and new drugs are needed to kill the cancer stem cells that cause recurrence. We think that a newly discovered protein, PKC-?, plays an important role in recurring breast cancer and can be targeted using novel ‘epigenetic’ drugs. Here, we will use cutting-edge DNA techniques to learn how this protein controls how cancer cells grow and produce the necessary data to show that targeting this protein is likely to be effective in real patients.
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    Showing 1-10 of 15 Funded Activites

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