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Research Topic : expression microarrays
Field of Research : Endocrinology
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Endocrinology (15)
Gene Expression (incl. Microarray and other genome-wide approaches) (3)
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  • Funded Activity

    Androgen Receptor Signalling In Development And Progression Of Prostate Cancer

    Funder
    National Health and Medical Research Council
    Funding Amount
    $753,420.00
    Summary
    Prostate cancer is a major health problem in Australia, being the second leading cause of cancer deaths in men. Although there have been improvements in the diagnosis and treatment of prostate cancer, there are no effective treatments for advanced (metastatic) disease that has spread to other parts of the body. Currently, the only therapy for advanced disease involves the reduction in circulating androgens such as testosterone by surgical or medical castration, i.e. androgen ablation. Because pr .... Prostate cancer is a major health problem in Australia, being the second leading cause of cancer deaths in men. Although there have been improvements in the diagnosis and treatment of prostate cancer, there are no effective treatments for advanced (metastatic) disease that has spread to other parts of the body. Currently, the only therapy for advanced disease involves the reduction in circulating androgens such as testosterone by surgical or medical castration, i.e. androgen ablation. Because prostate cells are dependent on testicular androgens for their growth and survival, surgical or medical castration results in an initial tumour regression. However, tumours inevitably develop resistance to androgen ablation therapy and regrow. In this study we aim to provide the most comprehensive analysis to date of the role of androgen signalling in the initiation and progression of prostate cancer. This will enable us to identify the most effective means of eliminating androgen-dependent prostate tumours and identify tumours with high metastatic potential. Our studies will indicate whether treatments targeting androgen signalling are a more effective strategy to inhibit prostate cancer growth while minimising undesirable side effects.
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    Funded Activity

    Control Of Prostate Cancer Growth By Vitamins And Hormo Nes

    Funder
    National Health and Medical Research Council
    Funding Amount
    $165,774.00
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    Funded Activity

    Understanding Androgen Action In Human Prostate Cancer.

    Funder
    National Health and Medical Research Council
    Funding Amount
    $62,552.00
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    Funded Activity

    Understanding Estrogen Action In Human Breast Cancer.

    Funder
    National Health and Medical Research Council
    Funding Amount
    $62,552.00
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    Funded Activity

    Mechanisms By Which Thyroid Hormone Controls Pituitary Hormone Production

    Funder
    National Health and Medical Research Council
    Funding Amount
    $175,393.00
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    Funded Activity

    Thyroid Hormone Effects On Gene Expression In Human Cells

    Funder
    National Health and Medical Research Council
    Funding Amount
    $112,555.00
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    Funded Activity

    Control Of A Gene Highly Expressed In Prostate Tumour C Ells

    Funder
    National Health and Medical Research Council
    Funding Amount
    $139,869.00
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    Funded Activity

    Molecular Etiology Of Type 2 Diabetes

    Funder
    National Health and Medical Research Council
    Funding Amount
    $296,857.00
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    Funded Activity

    Kallikrein Gene Variants In Prostate Cancer: Analysis Of Gene Regulation And Diagnostic/Prognostic Use

    Funder
    National Health and Medical Research Council
    Funding Amount
    $486,801.00
    Summary
    Prostate cancer is the most common male cancer in Australia. However, early detection through screening programs has proven challenging, and about 30% of the 10,000 new cases diagnosed annually already have advanced disease. Hence, there is a fundamental need for increased basic research in prostate cancer etiology (cause) and tumour biology, and a critical requirement for methods that will assist in earlier detection of the disease and predict progression. A family of proteins called kallikrein .... Prostate cancer is the most common male cancer in Australia. However, early detection through screening programs has proven challenging, and about 30% of the 10,000 new cases diagnosed annually already have advanced disease. Hence, there is a fundamental need for increased basic research in prostate cancer etiology (cause) and tumour biology, and a critical requirement for methods that will assist in earlier detection of the disease and predict progression. A family of proteins called kallikreins (including prostate specific antigen, PSA) are often associated with clinical features of prostate cancer. We will characterise genetic variants (polymorphisms) in kallikrein genes that are consistently over-produced in prostate cancer, and determine whether they cause more protein to be produced in cells grown in the laboratory and in tumour tissue, and-or give rise to different expression products or splice variants. We will use bioinformatics (computer programs) to characterise published kallikrein gene sequences and to examine them for genetic variants that might be related to changes in gene expression or to splice variants. We will then use a case-control study, involving 1200 men with prostate cancer and 1200 healthy men, to determine whether these gene variants are associated with an increased risk of prostate cancer or with clinical aspects of the disease. Finally, we will examine the functional significance of the gene variants. This project represents an important and novel combination of molecular biology with the study of clinical disease at the population level, in the relatively new field of molecular epidemiology. It will clarify the role of kallikrein gene variants in prostate cancer risk and progression. The technologies may ultimately prove useful clinically for diagnosis of prostate cancer or for monitoring of treatment and prognosis, and hopefully will assist in clinical decision-making.
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    Funded Activity

    Discovery Early Career Researcher Award - Grant ID: DE120100434

    Funder
    Australian Research Council
    Funding Amount
    $375,000.00
    Summary
    Estrogen-mediated regulation of gene expression via transcriptional and translational control: complementary, synergistic or opposing responses? Hormones dictate cellular behaviour by activating pre-programmed responses. The sex hormone estrogen affects cell fate by regulating the gene expression, but it is unknown to which extent this response occurs via activation of genes or control of already transcribed gene. The project will investigate how the cell integrates the complex estrogen signals.
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    Showing 1-10 of 15 Funded Activites

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