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The proposed program of work aims to shed light on dietary, environmental and genetic factors that may be related to the risk of childhood cancers. Identifying these risk factors, and how they interact with each other, will provide clues as to how childhood cancers may be prevented. The research program includes a number of Australian and international studies, which will involve collaboration between doctors and research scientists from a range of disciplines.
Understanding The Development Of Dental Fear Among Australian Children And Adults By Applying A Comprehensive Conceptual Model
Funder
National Health and Medical Research Council
Funding Amount
$418,482.00
Summary
Dental fear acts as a significant barrier to obtaining dental care, and leads to poorer dental health, greater dental treatment needs and reduced school and work performance. Approximately 1 in 7 children and adults have high dental fear. Understanding how dentists are being trained, what they are doing in their dental practise, and how and why dental fear develops and is maintained, are fundamental steps in trying to reduce this important dental, mental, and public health issue.
Mitochondrial Energy Metabolism And Insulin Action
Funder
National Health and Medical Research Council
Funding Amount
$380,558.00
Summary
Obesity and type 2 diabetes are two major health conditions associated with abnormal energy metabolism. In this proposal I will investigate the role of important metabolic proteins in regulating energy expenditure and insulin action in skeletal muscle and adipose tissue, two crucial tissues for whole-body energy metabolism. These studies will provide critical insight into the factors leading to obesity and type 2 diabetes and will assist in identifying possible therapeutic targets.
Generation Of Mouse Models To Study The Roles Of Different Bcl-2 Family Members In The Regulation Of Apaptosis
Funder
National Health and Medical Research Council
Funding Amount
$420,872.00
Summary
Programmed cell death, or apoptosis, is required for the removal of infected, damaged or unwanted cells and its disrupted regulation is implicated in cancer, autoimmunity and degenerative disorders. The Bcl-2 family of proteins are key regulators of apoptosis. We propose to generate several mouse models to better understand the relationships between the different members of the Bcl-2 family in an effort to control this pathway for therapeutic purposes.