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Scheme : Development Grants
Research Topic : Improving Islet cell function
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  • Funded Activities (17)
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  • Funded Activity

    Development Of A High Acuity, Diamond Retinal Prosthesis

    Funder
    National Health and Medical Research Council
    Funding Amount
    $1,010,214.00
    Summary
    Over recent years our team has developed a retinal implant to restore sight to people with certain types of blindness. With 256 independently controllable electrodes this device is among the most sophisticated in the world. We aim to conduct experiments to demonstrate that our device can provide improved better visual acuity than the world leaders with a view to developing a competitive commercial medical technology.
    More information
    Funded Activity

    Compound Culture Media To Improve Human IVF Pregnancies

    Funder
    National Health and Medical Research Council
    Funding Amount
    $254,340.00
    Summary
    In Australia 1 in 6 couples require IVF to conceive. Although pregnancy rates have improved over the last 10 years the live birth rate in Australia per cycle is only 17%. This project will assess a new method for the culture of embryos for the ability to maintain embryo vitality and produce healthy babies.
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    Funded Activity

    Development Of A Novel Microfluidic Device To Treat Male Infertility

    Funder
    National Health and Medical Research Council
    Funding Amount
    $508,397.00
    Summary
    This research aims to develop a novel technology for the separation of high quality sperm. It is envisaged this will replace existing technology to improve the reproductive outcomes of both humans, as well as animals.
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    Funded Activity

    From The Synchrotron To The Clinic: Translation Of A Novel Functional Lung Imaging Technology

    Funder
    National Health and Medical Research Council
    Funding Amount
    $891,834.00
    Summary
    Our team has recently developed a synchrotron technology with a startling capacity for dynamic functional imaging that can act as a sensitive regional indicator of lung disease. We will demonstrate that this technology can be translated from the synchrotron to the lab and eventually the clinic. We will provide proof of this concept by the application of this technology to emphysema, asthma, lung cancer, cystic fibrosis lung disease and neonatal resuscitation.
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    Funded Activity

    Development Of A First-in-class Therapeutic For Protecting The Ischemic Heart

    Funder
    National Health and Medical Research Council
    Funding Amount
    $926,673.00
    Summary
    Heart disease is the leading cause of death globally. Heart attacks are the primary cause of death associated with heart disease. We have discovered a drug, Hi1a, that blocks the injury response of the heart when a heart attack happens. There are no other drugs currently available or in the discovery pipeline that address this problem. This proposal will use models of injury to the heart as well as safety studies to help develop Hi1a as a new drug for people who suffer from heart attacks.
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    Funded Activity

    Development And Validation Of A Latent Tuberculosis Diagnostic

    Funder
    National Health and Medical Research Council
    Funding Amount
    $534,865.00
    Summary
    Globally, tuberculosis is a leading cause of death with 9.6 million new diagnoses in 2014. The diagnosis of latent TB infection is important, but is difficult to make because current assays are suboptimal. We have developed a very simple assay which detects responses to TB antigens by co-expression of two surface markers expressed by CD4+ T cells. We propose to develop this into a highly standardised kit for the diagnosis of TB with our commercial partner Cytognos.
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    Funded Activity

    Preclinical Development Of Q2361, A Transforming New Drug For Skin Cancer Prevention In Organ Transplant Recipients

    Funder
    National Health and Medical Research Council
    Funding Amount
    $724,957.00
    Summary
    Patients that receive organ transplants need additional medications in order to prevent organ rejection. Unfortunately, these drugs carry an unwanted side-effect - they permit the development of skin cancer. Currently, other than surgery, little can be done to help these patients. Our preliminary data suggest that a new drug may prevent these skin cancers from forming. This project aims to deliver key insights into the influence of this drug and its role in skin cancer prevention.
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    Funded Activity

    Development Of Effective Biomarkers For The Diagnosis And Prognosis Of Prostate Cancer

    Funder
    National Health and Medical Research Council
    Funding Amount
    $1,062,585.00
    Summary
    Every year ~20,000 Australian men are diagnosed with prostate cancer and more than 3,000 die of this disease. The current PSA test for the diagnosis of prostate cancer is not specific and this can result in incorrect diagnosis, unnecessary biopsies and lead to wrong treatments. We have discovered a novel change in the biology of prostate cancer. We will use this information to develop new tests for prostate cancer, which provide early accurate detection and can predict disease progression.
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    Funded Activity

    Novel Prostate Cancer Target For Diagnosis, Imaging, Detection Of Recurrence And Response To Therapy

    Funder
    National Health and Medical Research Council
    Funding Amount
    $731,497.00
    Summary
    This project will generate the critical proof of concept to justify clinical development of a novel biomarker in prostate cancer which would bring significant benefit in terms of differential diagnosis of aggressive disease. The biomarker will be assessed for a functional role in prostate cancer and potential as a therapeutic target and use as a imaging agent in for monitoring disease progression and response to therapy. These investigations will be extended to other common solid tumours.
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    Funded Activity

    Manufacture And Testing Of Next Generation Orthopaedic Implants Harnessing Periosteum's Regenerative Power

    Funder
    National Health and Medical Research Council
    Funding Amount
    $508,314.00
    Summary
    Tissue defects, e.g. due to trauma or tumor removal, are too large to heal without reconstructive surgery. Complications associated with defect repair may diminish the patient's quality of life and productivity, posing significant medical and psychosocial costs. Here we propose a plan to define technical specifications for next generation, "smart" orthopaedic implants that deliver cells and the signals they need to build new tissue using nature's paradigms.
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    Showing 1-10 of 17 Funded Activites

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