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Australian State/Territory : VIC
Status : Closed
Research Topic : peripheral glucose utilization
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  • Funded Activity

    Post-stroke Hyperglycaemia – Treatment With Exenatide In Acute Ischaemic Stroke (TEXAIS) Trial

    Funder
    National Health and Medical Research Council
    Funding Amount
    $1,266,149.00
    Summary
    Raised blood glucose levels (hyperglycaemia) after a stroke is common. It reduces the efficacy of stroke treatments and results in worse outcomes. Insulin is not useful as a treatment for this as it causes frequent hypoglycaemia and does not improve clinical outcomes. Exenatide is a common diabetes drug that is simple to use and lowers blood glucose without hypoglycaemia. It will be tested in the Treatment with Exenatide in Acute Ischaemic Stroke (TEXAIS) trial.
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    Funded Activity

    Discovery Projects - Grant ID: DP140101702

    Funder
    Australian Research Council
    Funding Amount
    $440,000.00
    Summary
    "Smart Food" - The fulcrum in the energy balance equation. The overall aim of the project is to establish how nutrients best promote an increase in energy expenditure and therefore weight loss. The experiments will be performed in rats using sophisticated technologies to introduce specific combinations of fats, carbohydrates or proteins directly into the stomach and then measure energy expenditure in a specialised type of energy burning rather than energy storing fat called brown adipose tissue. .... "Smart Food" - The fulcrum in the energy balance equation. The overall aim of the project is to establish how nutrients best promote an increase in energy expenditure and therefore weight loss. The experiments will be performed in rats using sophisticated technologies to introduce specific combinations of fats, carbohydrates or proteins directly into the stomach and then measure energy expenditure in a specialised type of energy burning rather than energy storing fat called brown adipose tissue. These experiments will uncover the mechanisms that relate nutrients in the stomach and activation of brown adipose tissue. They will provide a framework on which this project can build a knowledge of smart diets that will allow the effective control of body weight through modulation of energy expenditure.
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    Funded Activity

    The Diamond Cohort Study - Long Term Outcomes Of Depressive Symptoms In Primary Care

    Funder
    National Health and Medical Research Council
    Funding Amount
    $567,538.00
    Summary
    The diamond study follows what happens to almost 800 people with depressive symptoms whom attend general practice for care over 5 years of their life. This study will map the severity of depressive symptoms, life circumstances, use of health care services and treatments and allow us to understand factors associated with relapse and recovery from depression in order to improve care. This will assist us to develop models of care that better suit the needs of people experiencing depressive symptoms .... The diamond study follows what happens to almost 800 people with depressive symptoms whom attend general practice for care over 5 years of their life. This study will map the severity of depressive symptoms, life circumstances, use of health care services and treatments and allow us to understand factors associated with relapse and recovery from depression in order to improve care. This will assist us to develop models of care that better suit the needs of people experiencing depressive symptoms.
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    Funded Activity

    Impact Of Advanced Glycation On Anti-atherogenic Properties Of High Density Lipoprotein

    Funder
    National Health and Medical Research Council
    Funding Amount
    $372,471.00
    Summary
    Type 2 diabetes is a rapidly growing medical problem in Australia and around the world. Diabetes affects human health through its complications and the cardiovascular complications are a cause for major concern. One of the complications is the effect on plasma lipids: it makes cholesterol carrying particles to accumulate in the blood vessels, causing atherosclerosis. We intend to investigate how diabetes modify these particles making them atherogenic.
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    Funded Activity

    An Integrated Approach To Identify The Molecular Mechanisms Contributing To The Pathogenesis Of Insulin Resistance: Targeting The Liver And Skeletal Muscle

    Funder
    National Health and Medical Research Council
    Funding Amount
    $415,218.00
    Summary
    The inability of muscle and liver to utilise sugar from the blood is a major problem that contributes to the development of obesity and diabetes. How these problems occur is unknown. The goal of my research is to identify what causes the muscle and liver problem, and whether fixing these problems will reduce obesity and diabetes. Since the number of people with obesity and diabetes is predicted to double over the next decade, we need to understand the cause of these diseases.
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    Funded Activity

    Central Neural Regulation Of Brown Fat Function – Glucose Sensing And CNS Pathways

    Funder
    National Health and Medical Research Council
    Funding Amount
    $761,942.00
    Summary
    Our research aims to identify how specific brain cells detect changes in glucose levels and how ageing and diet affect their function. We identified a subset of nerve cells that detect changes in glucose and the “hunger” hormone ghrelin, their ability to do so adapting with age and nutritional status. This project will investigate the potential of these nerve cells as targets for therapeutic and diet- intervention strategies to target obesity, diabetes and promote healthy ageing.
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    Funded Activity

    Glucose Transport In The Diabetic Kidney

    Funder
    National Health and Medical Research Council
    Funding Amount
    $321,675.00
    Summary
    SGLT2 inhibitors are new glucose-lowering agents for type 2 diabetes. They promote glucose loss into urine, which lowers blood glucose levels. However, little is known regarding the changes to kidney physiology when this system is manipulated with these drugs. There is evidence that SGLT2 inhibitors do not protect against kidney disease in diabetic mice, despite being an effective blood glucose-lowering agent. I aim to characterise the changes to kidney function upon SGLT2 blockade in diabetes.
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    Funded Activity

    Linkage Projects - Grant ID: LP100200782

    Funder
    Australian Research Council
    Funding Amount
    $180,000.00
    Summary
    Use of an animal model to understand mechanisms underlying reductions in body weight associated with use of the laparoscopic adjustable gastric band. At least one in ten Australians is classified as morbidly obese and as such are eligible for bariatric surgery. Those undergoing the surgery will achieve an average excess weight loss of up to 60 per cent, they will have reduced or eliminated diabetes and will appreciably improve their prospects of survival. These experiments aimed at understandin .... Use of an animal model to understand mechanisms underlying reductions in body weight associated with use of the laparoscopic adjustable gastric band. At least one in ten Australians is classified as morbidly obese and as such are eligible for bariatric surgery. Those undergoing the surgery will achieve an average excess weight loss of up to 60 per cent, they will have reduced or eliminated diabetes and will appreciably improve their prospects of survival. These experiments aimed at understanding the mechanisms underpinning this success have the potential to further improve surgical approaches and outcomes and provide insights that will better enable weight loss therapies for all overweight and obese Australians.
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    Funded Activity

    Discovery Projects - Grant ID: DP180101395

    Funder
    Australian Research Council
    Funding Amount
    $331,383.00
    Summary
    Central pathways regulating visceral pain. This project aims to investigate the neural pathways within the spinal cord and brain processing colorectal pain perception. The project aims to identify the spinal cord neurons relaying colorectal signalling into the brain and the influence of descending modulation from the brainstem upon these pathways. The outcomes will greatly benefit fundamental understanding of the central pathways processing visceral pain.
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    Funded Activity

    Biology Of EGFR Mutations In Glioblastoma Multiforme

    Funder
    National Health and Medical Research Council
    Funding Amount
    $287,445.00
    Summary
    The epidermal growth factor receptor (EGFR) is a protein that has a critical role in the development of normal cells. In glioma, the most lethal of the brain cancers, the EGFR is altered. These alterations result in uncontrolled activation of the EGFR, causing signals that promote the growth and survival of brain cancer. This grant seeks to understand the nature of the signals mediated by the altered EGFR, in turn helping us develop better therapeutics for the treatment of this deadly cancer.
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    Showing 1-10 of 13 Funded Activites

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