Novel Strategies For The Early Identification Provention And Treatment Of The Microvascular Complications Of Diabetes
Funder
National Health and Medical Research Council
Funding Amount
$4,715,000.00
Summary
Despite recent advances, approximately one third of subjects with type 1 diabetes develop kidney disease and similar proportion develop vision-threatening eye disease. Indeed, in many instances eye and kidney disease occur in the same individual. The central aim of this proposed Special Program is the exploration of mechanisms that lead to the development and progression of these devastating complications of type 1 diabetes with a particular focus on novel strategies, directly applicable to man, ....Despite recent advances, approximately one third of subjects with type 1 diabetes develop kidney disease and similar proportion develop vision-threatening eye disease. Indeed, in many instances eye and kidney disease occur in the same individual. The central aim of this proposed Special Program is the exploration of mechanisms that lead to the development and progression of these devastating complications of type 1 diabetes with a particular focus on novel strategies, directly applicable to man, for their prevention and treatment. Participants in Special Program include both established diabetes researchers and investigators from other areas of academia (blood vessel biology and applied genetics). Strong interrelationships between the various investigators and their departments already exist and will be further consolidated with continued collaboration, sharing a combination of models, novel interventions and complex genetic techniques that would not be possible outside of a large collaborative framework. In addition to academic collaboration, interactions with industry-based drug discovery programs is also an important component in developing new treatment strategies for diabetic kidney and eye disease. The Special Program will thus consist of a range of studies of direct relevance to diabetic kidney and diabetic eye disease in humans. It is expected that these studies will lead to new strategies for the prevention, treatment and even the reversal of long term complications of diabetes.Read moreRead less
The Genetic Understanding Of Asbestos Related Disorders (GUARD)
Funder
National Health and Medical Research Council
Funding Amount
$566,008.00
Summary
This proposal is to build a new national biospeciman resource for mesothelioma research that will both underpin and enhance the national health and medical research effort in Australia by systematically enabling a world-class resource for genetic epidemiological research. The Genetic Understanding of Asbestos-Related Disorders (GUARD) project aims to establish a national facility that will enable new, large-scale DNA banking capacity for malignant mesothelioma (MM) and other asbestos-related dis ....This proposal is to build a new national biospeciman resource for mesothelioma research that will both underpin and enhance the national health and medical research effort in Australia by systematically enabling a world-class resource for genetic epidemiological research. The Genetic Understanding of Asbestos-Related Disorders (GUARD) project aims to establish a national facility that will enable new, large-scale DNA banking capacity for malignant mesothelioma (MM) and other asbestos-related diseases. The GUARD biospecimen resource and linked database will integrate the current WA population-based asbestos-exposed cohorts with case collections from across Australia. The GUARD project will undertake high-quality research aimed at discovering the genes and gene: environment interactions underlying susceptibility, progression and variable response to chemotherapy in mesothelioma, and will facilitate National collaboration and research in the areas of genetic epidemiology and pharmacogenomics. Progress towards the goals of the GUARD project holds the potential for enormous public health benefits; the incidence of malignant melanoma is increasing, due to the long delay between asbestos exposure and diagnosis. GUARD will ensure that Australian researchers have access to a large and well-managed biospecimen resource linked to excellent clinical data, and that Australia takes the lead role internationally in genetic research into mesothelioma. GUARD data will be critical for understanding the importance and functional roles of specific genes in the general Australian population, and their relationship to particular environmental factors. Understanding how causal factors act at a population level will be a critical step for the clinical utilization of new genomic knowledge and tools to improve clinical practice and public health.Read moreRead less