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20 Year Study Of Skin Cancer In A Queensland Community
Funder
National Health and Medical Research Council
Funding Amount
$396,415.00
Summary
Skin cancers are by far the commonest cancers diagnosed in Australia. Even though it is known that sun exposure in excess causes skin cancers there are complexities about the causes, especially of basal cell carcinoma (BCC) -the major type of skin cancer- that are still not understood. Relative intensity of sun exposure and perhaps its timing with respect to age in life may well be critical factors. We aim to study these causes in very great detail by collating information that has been gathered ....Skin cancers are by far the commonest cancers diagnosed in Australia. Even though it is known that sun exposure in excess causes skin cancers there are complexities about the causes, especially of basal cell carcinoma (BCC) -the major type of skin cancer- that are still not understood. Relative intensity of sun exposure and perhaps its timing with respect to age in life may well be critical factors. We aim to study these causes in very great detail by collating information that has been gathered over a 20 year period in a community-based skin cancer study in Nambour, Qld as well as performing some laboratory tests on skin cancer tissue collected from participants. This 3-year project will enable the full realisation of the potential of this esource-20 years in the making- with its wealth of information for answering questions about skin cancer decelopment and preventability. It should finally provide us with a clearer rationale for 'prevention of skin cancer' than is currently available. In addition we shall assess the costs of treatment of skin cancer in general and for the individual, and how much preventive practices for skin cancer might save the health budget, by using the releavnt data collected from this community sample.Read moreRead less
Discovery Early Career Researcher Award - Grant ID: DE230101466
Funder
Australian Research Council
Funding Amount
$442,723.00
Summary
Violent offenders in the night-time economy: Building the evidence. Alcohol-related violence in entertainment precincts is a significant community safety problem. This project aims to improve knowledge on individuals that are violent in entertainment precincts. It is expected to be the first study globally to use linked data to develop multi-system informed offending trajectories of violent offenders in these settings, examine the impact of patrons bans on offending trajectories, and apply situa ....Violent offenders in the night-time economy: Building the evidence. Alcohol-related violence in entertainment precincts is a significant community safety problem. This project aims to improve knowledge on individuals that are violent in entertainment precincts. It is expected to be the first study globally to use linked data to develop multi-system informed offending trajectories of violent offenders in these settings, examine the impact of patrons bans on offending trajectories, and apply situational action theory to alcohol-related violence. Results are expected to inform a critical knowledge gap and assist in the development of targeted violence preventive responses which reduce harm and make communities safer.Read moreRead less
A New Function For An Old Enzyme: Src Protein Kinase Directs Excitotoxic Neuronal Death In Stroke
Funder
National Health and Medical Research Council
Funding Amount
$513,975.00
Summary
In our previous investigation of how brain cells die in patients suffering from stroke, we found that stroke causes aberrant activation of an enzyme called Src in the affected brain cells. Furthermore, this aberrantly activated Src directs the brain cells to undergo cell death. Our proposal, which aims to decipher this neurotoxic mechanism of the aberrantly activated Src will benefit development of new therapeutic strategies to reduce brain damage in stroke patients.
Media Formulations To Enhance Embryo Formation In Assisted Reproduction
Funder
National Health and Medical Research Council
Funding Amount
$660,133.00
Summary
The increasing age of parenthood has led to an explosion in the demand for assisted reproductive technologies such as in vitro fertilisation (IVF). This procedure has a poor success rate and is limited by the ability of fertilised eggs to mature into early embryos in the lab prior to being transferred into women. We will develop new compounds that improve embryo growth in the clinic, which will improve IVF success rates.
Only recently has it emerged that our cells have a built-in backup mechanism that instructs cells to die in extreme cases, such as when viruses have hijacked a cell. A misfiring backup mechanism is thought to underlie a number of human diseases, including inflammatory disease. Our investigation will establish a starting point for the development of novel anti-inflammatory drugs.
Analysing and disrupting outlaw motorcycle gangs in Australia. This project aims to reveal the structure and social dynamics of co-offending networks by OMCGs in Australia. Outlaw motorcycle gangs (OMCGs) cause significant social and economic harm in Australia and internationally. The project will generate new knowledge about OMCG co-offending using an innovative multimethod approach combining social network analysis with interviews and focus groups. Expected outcomes include a deeper understand ....Analysing and disrupting outlaw motorcycle gangs in Australia. This project aims to reveal the structure and social dynamics of co-offending networks by OMCGs in Australia. Outlaw motorcycle gangs (OMCGs) cause significant social and economic harm in Australia and internationally. The project will generate new knowledge about OMCG co-offending using an innovative multimethod approach combining social network analysis with interviews and focus groups. Expected outcomes include a deeper understanding of OMCG criminal activity across Australia and refined theory development about co-offending in criminal groups. The project will lead to improved policy, legislation and policing practice to prevent OMCG crime and dismantle OMCG criminal networks in more cost-effective ways.Read moreRead less
Discovery Early Career Researcher Award - Grant ID: DE200100359
Funder
Australian Research Council
Funding Amount
$420,960.00
Summary
Preventing crime in public spaces: everyday guardianship & territoriality . Safe public spaces are the cornerstone of liveable cities. Everyday users of public spaces are vital crime prevention guardians because they are frequently present in the absence of formal regulators like police. This project will investigate factors that enhance active guardianship and facilitate crime prevention in public spaces. It aims to generate new knowledge on the extent to which everyday users of public spaces d ....Preventing crime in public spaces: everyday guardianship & territoriality . Safe public spaces are the cornerstone of liveable cities. Everyday users of public spaces are vital crime prevention guardians because they are frequently present in the absence of formal regulators like police. This project will investigate factors that enhance active guardianship and facilitate crime prevention in public spaces. It aims to generate new knowledge on the extent to which everyday users of public spaces develop a sense of territorial control leading to conscious monitoring of public spaces and intervention in social problems. The project aims to inform crime prevention strategies that facilitate active guardianship leading to less crime, reduced fear of crime and enhanced opportunities for pro-social use of public spaces. Read moreRead less
Roles Of Impaired Apoptosis And Differentiation In Tumourigenesis And Therapy
Funder
National Health and Medical Research Council
Funding Amount
$21,656,910.00
Summary
The ten scientific laboratories in this program have joined forces to investigate two ways in which tumours develop. Both are of particular interest, because they suggest new ways in which cancer might be overcome. Most of our tissues are continually renewed throughout life by production of new cells. Therefore many of the old cells in each tissue must die off to maintain the proper cell numbers. To eliminate cells that are no longer needed or have become damaged, the body has developed a remark ....The ten scientific laboratories in this program have joined forces to investigate two ways in which tumours develop. Both are of particular interest, because they suggest new ways in which cancer might be overcome. Most of our tissues are continually renewed throughout life by production of new cells. Therefore many of the old cells in each tissue must die off to maintain the proper cell numbers. To eliminate cells that are no longer needed or have become damaged, the body has developed a remarkable cell suicide process termed apoptosis. Unfortunately, however, occasionally a random accident to the genes in one of our cells prevents the machinery for apoptosis from being turned on. In that case, the cell will not die when it should and, by continually dividing, it may eventually give rise to a cancer. Since most cancer cells still retain most of the machinery for apoptosis, however, a drug that could switch on this natural cell death machinery would provide a promising new approach to cancer therapy. Identifying and developing such drugs is one major long-term goal of this program. The other focus of our program concerns stem cells. These are rare cells with the remarkable ability to generate an entire tissue. For example, one of our laboratories has identified stem cells that can generate all the cells in the breast. The almost unlimited regenerative capacity of stem cells has a built-in danger. If a stem cell acquires the ability to proliferate excessively, it can go on to form a tumour. Indeed, many cancer researchers now suspect that rare stem cells within a tumour cause its inexorable growth. If tumour growth is maintained by stem cells, it will be essential to develop new forms of therapy that target these rare cancer stem cells rather than merely the bulk of the tumour cells. This is another key long-term goal of our program.Read moreRead less
Understanding How Bcl-2 Proteins Form The Apoptotic Pores That Kill Cells
Funder
National Health and Medical Research Council
Funding Amount
$893,614.00
Summary
Programmed cell death termed apoptosis is a process our bodies use to remove cells that are a threat to our health, e.g. cancer cells. The proteins that regulate cell death are attractive targets for therapeutics that have become resistant to this defence mechanism. This study will reveal how proteins from the Bcl-2 family regulate cell death at the molecular level. Understanding this process will inform the development of drugs aimed at regulating cell death in cancer and other diseases.
What Is The Molecular Mechanism Underlying Cell Death By Necroptosis?
Funder
National Health and Medical Research Council
Funding Amount
$653,742.00
Summary
Recently, we and others have demonstrated that part of the MLKL protein is able to kill cells. This process is known to cause a number of pathologies, including those arising from stroke. Blocking this type of cell death has thus emerged as an attractive therapeutic strategy. However, precisely how MLKL kills cells remains unclear and controversial. In this project, we will resolve these controversies with the goal of an increased fundamental understanding to aid drug discovery.