Therapeutic Targeting Of The Hedgehog Signaling Pathway In Premalignant Lesions Of The Breast.
Funder
National Health and Medical Research Council
Funding Amount
$115,980.00
Summary
Breast screening has been successful in reducing deaths from breast cancer. Unfortunately it also detects increasing numbers of precancerous changes. Treatment of these changes is often aggressive, using surgery and radiotherapy. However we are unable to predict exactly which of the changes we need to treat. We aim to better understand the changes involved in this progression and try to block them using new drugs.
A Wireless Electric Nerve-guide For Peripheral Nerve Repair
Funder
National Health and Medical Research Council
Funding Amount
$805,064.00
Summary
We aim to deliver a radical new precision intervention for peripheral nerve repair to improve the lives of people with peripheral nerve damage. Drawing from our recently awarded work on 'electric neural tissue engineering', we will pre-clinically test our invention of a unique clinically-amenable electric nerve-guide (e-nerve-guide), designed to act as a protective nerve conduit and wirelessly electrically-stimulate damaged nerves for their regeneration and restoration of function.
What Factors Affect Lesion Distribution In Multiple Sclerosis And Experimental Autoimmune Encephalomyelitis?
Funder
National Health and Medical Research Council
Funding Amount
$56,797.00
Summary
Multiple sclerosis (MS) is a common neurological disease which affects about 10,000 people in Australia. In MS, a persons own immune system starts to attack specific parts of their brain and spinal cord, causing lesions that prevent nerve impulses from passing from the brain to other parts of the body. The symptoms that people with MS develop can vary from one person to another, depending on where in the brain or spinal cord the lesions occur. Some parts of the brain and spinal cord seem to be m ....Multiple sclerosis (MS) is a common neurological disease which affects about 10,000 people in Australia. In MS, a persons own immune system starts to attack specific parts of their brain and spinal cord, causing lesions that prevent nerve impulses from passing from the brain to other parts of the body. The symptoms that people with MS develop can vary from one person to another, depending on where in the brain or spinal cord the lesions occur. Some parts of the brain and spinal cord seem to be much more susceptible to this attack than others, and the question that this study will address is why do lesions occur where they do in MS? Some preliminary results strongly suggest that there is a link between carrying particular genes that control immune responses, having immune cells that can attack one particular protein in the nervous system called PLP, and developing lesions in parts of the brain that control balance. This will be investigated further, and we will also look for other links between immune cells that can attack other proteins and development of lesions in particular areas. If such links can be identified, they would be very important for improved diagnosis of MS and it would enable more specific treatments for MS to be developed. We will also use experimental models of MS to investigate the exact components within the nervous system and within the immune system that play a role in directing the attack to particular sites.Read moreRead less
RISK AND PROTECTION FACTORS FOR NORMAL AND ABNORMAL BRAIN AGEING: A LONGITUDINAL EPIDEMIOLOGICAL MRI STUDY
Funder
National Health and Medical Research Council
Funding Amount
$153,020.00
Summary
Brain is considered the last frontier of medicine, and ageing the major challenge to health care in the 21st century. In this proposal, we bring these two challenges together in a major new longitudinal study of ageing in Canberra that has recently been initiated. This is a longitudinal study of a random community sample covering 3 age groups - 20-24 years, 40-44 years and 60-64 years, with at least 2000 participants in each age group - who are being assessed in 1999-2001, and will be followed u ....Brain is considered the last frontier of medicine, and ageing the major challenge to health care in the 21st century. In this proposal, we bring these two challenges together in a major new longitudinal study of ageing in Canberra that has recently been initiated. This is a longitudinal study of a random community sample covering 3 age groups - 20-24 years, 40-44 years and 60-64 years, with at least 2000 participants in each age group - who are being assessed in 1999-2001, and will be followed up at 4-yearly intervals for 20 years. The focus of the study is on neuropsychiatric disorders (anxiety, depression, substance use and cognitive disorders). In this application, we propose to perform MRI scans and blood tests on a quarter (n-500) of the 60-64 sample to obtain an epidemiological sample for brain morphology. Not only will we be able to study changes in brain morphology over time, and relate it with cognitive function and psychiatric disorder, we will also be able to assess the role of risk and protection factors. We are particularly interested in brain reserve, dietary factors (anti-oxidants, omega 3, wine and folate) and drugs (anti-inflammatory drugs, hormone replacement and vitamin supplements) as protection factors, and hypertension, homocysteine levels, white matter lesions on MRI and low hippocampal volumes as risk factors for cognitive impairment and dementia. We also want to study the brain morphological correlates of Depression in a community sample. The study will enhance our understanding of the ageing brain, both in health and disease, and identify factors that increase or decrease the risk of cognitive impairment and psychiatric disorder in old age.Read moreRead less
Axonal Regeneration And Degeneration: Cellular And Molecular Mechanisms
Funder
National Health and Medical Research Council
Funding Amount
$622,655.00
Summary
Understanding how to repair of nerve damage following a traumatic injury, a vascular accident, or a degenerative condition, is essential to develop novel effective treatments. We have identified, in a simple genetic model system, the molecular mechanisms that allow a transected nerve to be repaired by reattachment of its two separated fragments. This 'axonal fusion' process is a highly promising innovative approach that can be exploited to restore the original neuronal circuit.