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Research Topic : Disease Susceptibility
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  • Funded Activity

    Prevention And Cure Of Type 1 Diabetes

    Funder
    National Health and Medical Research Council
    Funding Amount
    $5,289,733.00
    Summary
    The team has been at the forefront of research on type 1 diabetes for over a decade. This form of diabetes is a major chronic disease from childhood, as well as accounting for at least 10% of adult-onset diabetes. It occurs when the body�s immune system attacks and destroys the beta cells in the pancreas that make insulin, the hormone that controls the level of glucose in the blood. The team was one of the first in the world, and is the only one in Australia, to develop screening programs to tes .... The team has been at the forefront of research on type 1 diabetes for over a decade. This form of diabetes is a major chronic disease from childhood, as well as accounting for at least 10% of adult-onset diabetes. It occurs when the body�s immune system attacks and destroys the beta cells in the pancreas that make insulin, the hormone that controls the level of glucose in the blood. The team was one of the first in the world, and is the only one in Australia, to develop screening programs to test and identify people at risk for type 1 diabetes. They showed that the underlying disease could start years before symptoms occurred and discovered genes that determine the rate at which the underlying disease progresses. They have also found evidence that the disease may be triggered by gut viruses called rotaviruses in genetically-susceptible individuals. They showed that type 1 diabetes could be prevented in a mouse model by getting the immune system to make a protective response to insulin, and then went on to apply this in at-risk humans in a controlled trial of intranasal insulin, the first of its kind. They have used genetic techniques not only to pinpoint the mechanisms responsible for killing the beta cells but also to modify the beta cells to make them resistant to attack by these mechanisms. The multidisciplinary approach of the team will be directed to further understanding the genetic and environmental factors underlying type 1 diabetes and the immune mechanisms, particularly involving special white blood cells called T cells, that kill beta cells. A molecular target of the immune attack, the parent of insulin called proinsulin, will be used, paradoxically, as a tool to regulate the immune system and avert the attack. This will be achieved by giving proinsulin via the mucosa of the naso-respiratory tract or via the bone marrow-derived stem cells, initiallyin the mouse model as a test of feasibility for human application. In parallel with these approaches to prevention, specially constructed viruses will be used to transfer several new genes into beta cells to improve their resistance to immune attack, so that they can be transplanted into people with established diabetes without the need for potentially toxic drugs that suppress the immune system overall. The integrated research of the team is helping to provide a sound, rational base for the eventual prevention and cure of type 1 diabetes.
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    Funded Activity

    Neurodegenerative Diseases Of The Ageing Brain: Diagnosis & Therapy Based On The Study Of Aggregated Protein Deposition

    Funder
    National Health and Medical Research Council
    Funding Amount
    $5,248,710.00
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    Funded Activity

    Neurodegeneration In The Ageing Brain: How The Pathways Leading To Aggregated Protein Cause Disease

    Funder
    National Health and Medical Research Council
    Funding Amount
    $12,322,838.00
    Summary
    The team consists of eight highly experienced research scientists who are dedicated to solving the question of how the brain degenerates in the elderly when associated with the accumulation of certain proteins: e.g. A_ amyloid (Alzheimer�s disease) and PrP (Creutzfeldt-Jakob disease). Understanding the molecular pathways leading to the degeneration (loss of neuronal synapses) will permit the development of rational diagnostic and therapeutic interventions. Over the past five years the program ha .... The team consists of eight highly experienced research scientists who are dedicated to solving the question of how the brain degenerates in the elderly when associated with the accumulation of certain proteins: e.g. A_ amyloid (Alzheimer�s disease) and PrP (Creutzfeldt-Jakob disease). Understanding the molecular pathways leading to the degeneration (loss of neuronal synapses) will permit the development of rational diagnostic and therapeutic interventions. Over the past five years the program has identified several diagnostic and therapeutic avenues which are now being developed by the Pharmaceutical and Biotechnology industries. Much more research is still required for maximizing the chances of success using these approaches.
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    Funded Activity

    Beyond BRCA1 And BACA2

    Funder
    National Health and Medical Research Council
    Funding Amount
    $3,474,222.00
    Summary
    To understand the genetic basis of two of the most important cancers in women, breast and ovarian cancer. The team has already identified one gene that confers a very high risk of breast cancer and may account for a large proportion of 'familial' breast cancer. Their aim is to identify additional predisposition genes and to determine their normal function in the cell, as well as the way in which they contribute to the development of cancer
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    Funded Activity

    Molecular Mechanisms Of Cardiac Function And Disease

    Funder
    National Health and Medical Research Council
    Funding Amount
    $10,053,131.00
    Summary
    Adult-onset heart disease remains the leading cause of death and disability in our society, with almost 2 million Australians affected. Furthermore, structural heart malformations are the most common type of abnormality at birth and the leading cause of deaths in infants dying from non-infectious causes. Many of these problems are due to defects in the development, repair and-or function of heart muscle cells or cardiomyocytes. Thus, we propose to understand, in fine detail, cardiomyocyte as wel .... Adult-onset heart disease remains the leading cause of death and disability in our society, with almost 2 million Australians affected. Furthermore, structural heart malformations are the most common type of abnormality at birth and the leading cause of deaths in infants dying from non-infectious causes. Many of these problems are due to defects in the development, repair and-or function of heart muscle cells or cardiomyocytes. Thus, we propose to understand, in fine detail, cardiomyocyte as well as integrated heart development, biology, physiology and function as a prerequisite for the development of major advances in the prevention and treatment of these disorders.
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    Funded Activity

    Nerodegeneration In The Aging Brain: How The Pathways Leading To Aggregating Protein Cause Disease

    Funder
    National Health and Medical Research Council
    Funding Amount
    $15,050,508.00
    Summary
    The Neurodegeneration Program is discovering the basic pathways that cause Alzheimer’s disease and related diseases of the aging brain; from these discoveries the team are finding new methods for early diagnosis and therapeutic interventions which will allow them to determine whether it is possible to delay the onset or improve the way in which the brain copes with these diseases
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    Funded Activity

    The Biology And Therapeutic Manipulation Of Lymphatic Vessels In Human Disease

    Funder
    National Health and Medical Research Council
    Funding Amount
    $5,688,743.00
    Summary
    This proposal is for an established team of researchers and clinicians to explore the molecular control of the lymphatic system. This network of lymphatic vessels, located in organs throughout the body, is critical for regulation of tissue fluid and immune function. This program will explore the molecules which control the function of lymphatic vessels and their interactions with other cells in the body. It will greatly enhance our understanding of the lymphatic vessels and identify molecular ta .... This proposal is for an established team of researchers and clinicians to explore the molecular control of the lymphatic system. This network of lymphatic vessels, located in organs throughout the body, is critical for regulation of tissue fluid and immune function. This program will explore the molecules which control the function of lymphatic vessels and their interactions with other cells in the body. It will greatly enhance our understanding of the lymphatic vessels and identify molecular targets for medicines designed to treat cancer, cardiovascular disease and lymphoedema.
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    Funded Activity

    Heart Failure And Its Antecedents: Pathophysiology, Prevention And Treatment

    Funder
    National Health and Medical Research Council
    Funding Amount
    $9,061,084.00
    Summary
    Heart failure is mainly a result of coronary artery disease. It is a major cause of disability and mortality in Australia and is projected to increase markedly over the next two decades. This program brings together clinical and basic science expertise to address aspects of the prevention and control of coronary disease and heart failure. The outcomes that will arise will provide a better understanding of the mechanisms involved in the progression from stable heart disease to failure.
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    Funded Activity

    Immunological Therapies For Cancer And Autoimmunity

    Funder
    National Health and Medical Research Council
    Funding Amount
    $4,928,323.00
    Summary
    The programme team comprises a group of leading scientists with a history of successful investigation into the mechanisms and treatment of diseases in which the immune system plays a role in their development. These include cancers of the cervix and blood system, and autoimmune diseases such as rheumatoid arthritis and type 1 diabetes. Working together, the team have made discoveries that have led to testing and clinical development of new treatments for these diseases. In this programme, the te .... The programme team comprises a group of leading scientists with a history of successful investigation into the mechanisms and treatment of diseases in which the immune system plays a role in their development. These include cancers of the cervix and blood system, and autoimmune diseases such as rheumatoid arthritis and type 1 diabetes. Working together, the team have made discoveries that have led to testing and clinical development of new treatments for these diseases. In this programme, the team aims to discover mechanisms regulating the immune response, and to exploit this knowledge to define new ways of switching on or off, specific immune responses. We will particularly seek to develop novel vaccines for chronic infections and autoimmune diseases, and to improve the safety of bone marrow transplantation.
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    Funded Activity

    Integration Of Risk Evaluation In Cardiovascular Disease Management Programs.

    Funder
    National Health and Medical Research Council
    Funding Amount
    $5,162,176.00
    Summary
    This study will determine the feasibility of a coordinated health care team approach to the treatment of cardiovascular disorders. It will examine a range of issues – who would most benefit from this approach, its value for money, the relative importance of health care services to consumers, and where to invest additional health funds. Built on strong collaborations between expert researchers in advanced diagnostic techniques, coordinated health care, community health care and health economics, .... This study will determine the feasibility of a coordinated health care team approach to the treatment of cardiovascular disorders. It will examine a range of issues – who would most benefit from this approach, its value for money, the relative importance of health care services to consumers, and where to invest additional health funds. Built on strong collaborations between expert researchers in advanced diagnostic techniques, coordinated health care, community health care and health economics, this provides a unique opportunity to benefit millions of Australians.
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