Colon Cancer: Receptors, Signalling And Therapeutics
Funder
National Health and Medical Research Council
Funding Amount
$7,115,542.00
Summary
This program aims to understand the biochemical and biological basis of colorectal cancer, a major cause of cancer deaths in Australia. The Chief Investigators have extensive experience in the analysis of the molecular defects in colorectal cancer cells and have already developed new drugs to treat successfully experimental colon tumours in animals. During this research program, we will explore these systems further, concentrating on the identification of novel inhibitors of colon cancer cell gr ....This program aims to understand the biochemical and biological basis of colorectal cancer, a major cause of cancer deaths in Australia. The Chief Investigators have extensive experience in the analysis of the molecular defects in colorectal cancer cells and have already developed new drugs to treat successfully experimental colon tumours in animals. During this research program, we will explore these systems further, concentrating on the identification of novel inhibitors of colon cancer cell growth, survival and movement. Newly developed instruments and techniques will allow us to identify and detect the critical steps during the development of colorectal cancer and to design potent drugs to fight the disease. We have experience in conducting novel clinical trials in colon cancer and have developed imaging techniques for monitoring the effectiveness and safety of new anti-cancer drugs. Our collective scientific experience and ability to work in the clinic provides a unique opportunity for developing more effective treatments for colorectal cancer patients.Read moreRead less
The Biology & Therapeutic Manipulation Of Lymphatic Vessels In Cancer & Lymphedema
Funder
National Health and Medical Research Council
Funding Amount
$2,589,101.00
Summary
This proposal brings together a team of researchers from diverse backgrounds who have already made important discoveries about the molecular control of the lymphatic system in normal physiology and cancer. The lymphatic vasculature consists of a network of vessels in organs and tissues that is critical for the regulation of tissue fluid volume and immune function. The lymphatics are also important for the metastatic spread of cancer, as they provide a route by which tumour cells spread to distan ....This proposal brings together a team of researchers from diverse backgrounds who have already made important discoveries about the molecular control of the lymphatic system in normal physiology and cancer. The lymphatic vasculature consists of a network of vessels in organs and tissues that is critical for the regulation of tissue fluid volume and immune function. The lymphatics are also important for the metastatic spread of cancer, as they provide a route by which tumour cells spread to distant sites in the body, and for lymphedema, a condition in which lymphatic dysfunction leads to swelling of tissues. This program will explore the molecular mechanisms that control the growth and differentiation of the lymphatic vessels. It will greatly enhance our understanding of lymphatic vessel growth (lymphangiogenesis) and generate a range of reagents for stimulating or inhibiting this process. These reagents will be tested in animal models for their capacity to modulate lymphatic function in the context of cancer and lymphedema.Read moreRead less
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.Read moreRead less
Determinants Of Child Health And Development: Populations, Partnerships, Pathways And Prevention
Funder
National Health and Medical Research Council
Funding Amount
$8,214,333.00
Summary
There are considerable challenges to the study of complex health and developmental problems in children and young people. Despite increasing prosperity in Australia, many of these problems are not abating and some appear to be increasing. These include low birthweight, behavioural and mental health problems, autism, obesity and, in Indigenous children, infections. This Program proposes investigating these problems with a view to prevention, thus meeting the national research priority of Promotin ....There are considerable challenges to the study of complex health and developmental problems in children and young people. Despite increasing prosperity in Australia, many of these problems are not abating and some appear to be increasing. These include low birthweight, behavioural and mental health problems, autism, obesity and, in Indigenous children, infections. This Program proposes investigating these problems with a view to prevention, thus meeting the national research priority of Promoting and Maintaining Good Health, particularly _a healthy start to life� and _preventive health care�. The Program is unique in that it brings together a multi-disciplinary team of researchers of international repute to investigate these complex issues. The research team comprises epidemiologists, clinicians, developmental psychologists, biostatisticians, sociologists and other social scientists. This team has a proven track record in producing research outcomes that have translated into innovative health policy and practice in areas as diverse as: - the use of folic acid in spina bifida prevention - understanding cerebral palsies - suicide prevention and mental health in children and young people - Aboriginal child health and development - intellectual disabilities including Rett syndrome and autism - in vitro fertilisation and birth defects. The factors influencing how children develop into young adults include genetic inheritance, nutrition and growth, and family, socioeconomic and environmental conditions. This work demands new ways of measuring and analysing these factors in populations of children and their families. Western Australia is one of only three sites in the world to have comprehensive linked health data on the whole of its population of children and their families. This Program comprises five overlapping themes of research planned around these unique population databases. The five themes are: - social, economic and psychological influences on child health and development - many paths to poor health are linked to social disadvantage. Examining these issues may explain why some childhood conditions are worsening or not improving - pathways to wellbeing, resilience and developmental disorders, including intellectual disability, autism, birth defects and cerebral palsy - nutrition and growth, particularly as it relates to low birthweight, childhood obesity and mental health - infectious disease, its causes and its influence on lifelong health problems and disabilities - Aboriginal health _ whilst spanning each of the research themes above, it presents its own unique challenges and requires it�s own unique solutions. This Program will investigate how children develop into young adults and will examine the influence of their families, nutrition and growth and socioeconomic and environmental conditions. It will develop new ways of measuring and analysRead moreRead less
This established team of investigators will research into the molecular control of white blood cell formation and function, using a multidisciplinary, team approach to fundamental biological questions with a focus on potential clinical and commercial outcomes. The team will also attempt to identify new validated targets for therapeutic intervention by using both forward and reverse genetic approaches in mice coupled with complete phenotypic analyses of the blood cell system.