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Research Topic : BREAST
Australian State/Territory : VIC
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  • Funded Activity

    Activation Of BMP4 Signalling To Inhibit Breast Cancer Metastasis

    Funder
    National Health and Medical Research Council
    Funding Amount
    $748,742.00
    Summary
    The spread of cancer cells to other organs is a common cause of breast cancer-related death in women. Current therapies for advanced breast cancer are often palliative since the secondary tumours become resistant to the chemotherapy. Here, we are using preclinical models of advanced breast cancer to develop a treatment that should be effective in patients with secondary tumours and should reduce the risk of dying of this disease.
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    Funded Activity

    The Clinicial Centre Of Research Excellence At The Jean Hailes Foundation: For The Study Of Women's Health

    Funder
    National Health and Medical Research Council
    Funding Amount
    $2,000,000.00
    Summary
    The major health issues affecting women from the mid-reproductive years include depression, disorders of mood and sexual function, and breast cancer, with cardiovascular disease, osteoporosis, and osteoarthritis becoming increasingly prevalent with age. Linking each of these are their known or probable causal associations with oestrogens and androgens. This Centre will provide an opportunity for comprehensive and multidisciplinary research into the role of oestrogens and androgens in these disor .... The major health issues affecting women from the mid-reproductive years include depression, disorders of mood and sexual function, and breast cancer, with cardiovascular disease, osteoporosis, and osteoarthritis becoming increasingly prevalent with age. Linking each of these are their known or probable causal associations with oestrogens and androgens. This Centre will provide an opportunity for comprehensive and multidisciplinary research into the role of oestrogens and androgens in these disorders.
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    Targeting Bone Marrow Mediated Angiogenesis And Metastasis In Breast Cancer

    Funder
    National Health and Medical Research Council
    Funding Amount
    $463,006.00
    Summary
    Despite advances in treatment and diagnostics breast cancer (BC) remains one of the leading causes of death in women. Metastases and tumour blood vessel recruitment are linked. Work by Dr Mellick and others has shown that host bone marrow contributes endothelial progenitor cells (EPCs) to tumour vasculature. The chemokines and their receptors, which differentiate EPCs from tumour vessels, will be knocked down in the tumour cells and EPC progenitors with the aim of preventing tumour spread.
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    Funded Activity

    Role Of IGF Binding Protein-3 (IGFBP-3) And IGFBP-5 As Modulators Of Nuclear Hormone Signalling

    Funder
    National Health and Medical Research Council
    Funding Amount
    $465,750.00
    Summary
    The insulin-like growth factors are small proteins involved in the growth of most tissues. Their actions are regulated by binding to larger proteins (known as IGFBPs) in the bloodstream and outside the cell. However, some IGFBPs are also found inside cells, where they seem to carry out other functions. We believe that two of these binding proteins, IGFBP-3 and IGFBP-5, change the way cells respond to vitamin A and vitamin D. These two vitamins are important in cell growth and in the way certain .... The insulin-like growth factors are small proteins involved in the growth of most tissues. Their actions are regulated by binding to larger proteins (known as IGFBPs) in the bloodstream and outside the cell. However, some IGFBPs are also found inside cells, where they seem to carry out other functions. We believe that two of these binding proteins, IGFBP-3 and IGFBP-5, change the way cells respond to vitamin A and vitamin D. These two vitamins are important in cell growth and in the way certain cells perform specialised functions. In test-tube experiments, IGFBP-3 and IGFBP-5 interact directly with the receptors that regulate the effects of these hormones. If the same thing happens inside the cell, IGFBP-3 and IGFBP-5 could change the way these receptors respond to signals from outside the cell. We will investigate what effect these IGFBPs have in living cells and in whole animals and how this may relate to human disease. If we are able to understand how IGFBP-3 and IGFBP-5 affect the way cells respond to vitamin A and D, then we may be able to develop new ways to treat certain human diseases.
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