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Research Topic : bone structure
Australian State/Territory : VIC
Scheme : Project Grants
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Biochemistry and Cell Biology not elsewhere classified (4)
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  • Funded Activities (17)
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  • Funded Activity

    Targeting Bone Marrow Lesions To Find Interventions In The Progression Of Osteoarthritis

    Funder
    National Health and Medical Research Council
    Funding Amount
    $467,395.00
    Summary
    It is essential to elucidate the underlying cause(s) of osteoarthritis because our current level of understanding of this condition has failed to produce effective treatments. Lesions in the bone under the cartilage (BMLs), seen using MRI, have strong potential value for the objective monitoring and management of OA. However, because the nature of BMLs is not well understood, the aim of this application is to perform a comprehensive study of BMLs in OA bone.
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    Funded Activity

    The Role Of Osteocytes In Particle Induced Osteolysis

    Funder
    National Health and Medical Research Council
    Funding Amount
    $457,196.00
    Summary
    Hip replacements often fail due to the loss of adjacent bone. Metal or polyethylene particles are produced as the prosthesis bearing surface wears but how do these particles lead to bone loss? Our work suggests involvement of osteocytes within the bone mineral, which are increasingly understood to drive bone physiology and pathology. We will explore the role of the osteocytes by examining their response to particles, which may identify a new target to prevent particle-induced bone loss.
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    Funded Activity

    Whole Body Vibration For Osteoporosis: Shaking Up Our Treatment Options

    Funder
    National Health and Medical Research Council
    Funding Amount
    $961,017.00
    Summary
    Our aim is to examine the ability of vibration alone and in combination with osteoporosis drugs to reduce hip fracture in postmenopausal women. In Australia, 1 in 2 women >60yrs, will sustain an osteoporotic fracture. Only drugs notably decrease fracture; however none are entirely effective and some patients don’t respond. Whole body vibration has emerged as a potentially effective therapy. A combination of vibration and drugs may enhance the effects of both and revolutionise treatment.
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    Funded Activity

    ? Subunit Function In The Regulation Of AMPK

    Funder
    National Health and Medical Research Council
    Funding Amount
    $530,627.00
    Summary
    Many of the most serious diseases of Western societies including obesity, Type 2 diabetes, cancer growth and metastasis and cardiovascular disease have metabolic dimensions. The enzyme AMPK regulates cellular and whole body energy homeostasis by coordinating metabolic pathways to balance energy demand with nutrient supply. We are studying the structure and function of AMPK with the aim of better treating metabolic diseases.
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    Funded Activity

    Signaling Pathways To Enhance Potency Of AMPK-targeting Drugs

    Funder
    National Health and Medical Research Council
    Funding Amount
    $661,966.00
    Summary
    Sedentary lifestyles and consumption of high energy foods has led to epidemics of obesity-related metabolic diseases that place enormous financial and medical burden on the Australian economy. An attractive drug target to treat these diseases is AMP-activated protein kinase (AMPK) which functions as both a cellular fuel gauge and co-ordinator of whole-body metabolism. Our goal is to improve AMPK drug potency by identifying novel processes that sensitize AMPK to drugs.
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    Funded Activity

    Genomic Analysis Of DNA Binding And Gene Regulation By The Chromatin Remodelling Factor UBF

    Funder
    National Health and Medical Research Council
    Funding Amount
    $624,254.00
    Summary
    Synthesis of ribosomes, the cellular protein synthetic machinery, is the major anabolic event of a growing cell and is frequently dysregulated during disease such as cancer. This grant will examine a protein termed UBF that we think plays an important role in orchestrating the cellular response to dysregulated ribosome biogenesis. By understanding how UBF functions we hope to uncover novel therapeutic approaches to treat diseases associated with ribosome stress .
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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

    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

    DsbA Inhibitors: From Hits To Leads

    Funder
    National Health and Medical Research Council
    Funding Amount
    $882,978.00
    Summary
    Antibiotic resistance is a looming public health crisis. New antibiotics with new mechanisms of action are desperately needed. The long-term goal of this research is to develop new drugs that disarm bacteria to overcome the problem of antibiotic resistance.
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    Funded Activity

    Molecular Basis For Stress-induced Gene Regulation—a Model System To Understand Transcriptional Deregulation In Cancer And Neurological Disease

    Funder
    National Health and Medical Research Council
    Funding Amount
    $384,076.00
    Summary
    Deregulated gene transcription plays a critical role in cancer formation. It is therefore important to understand the molecular basis of gene transcription and how tumour cells hijack the process. In this Project, we will study the molecular basis of stress-inducible gene expression. This is particularly important for understanding the molecular basis of cancer as stress-inducible genes are activated by transcription factors implicated in breast, colon, lung, and prostate cancers.
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    Showing 1-10 of 17 Funded Activites

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