Biomedical research now routinely generates massive, complex datasets using next generation sequencing platforms and other high throughput “omics” technologies. Our unique program will develop powerful computational and statistical methods to analyse such data. We will apply these methods to a range of human diseases including cancer, and infectious and genetics disease, contributing to deeper insight into pathological states.
Regulation Of Haemopoietic And Immune Cells In Health And Disease
Funder
National Health and Medical Research Council
Funding Amount
$19,924,984.00
Summary
This Program brings together a team of researchers with world-class multidisciplinary skills in biomedical discovery and an established track record of clinical and commercial translation of research discoveries. This Program will result in the creation of new knowledge regarding the control of blood and immune cell production and function and provide new avenues for the treatment of people suffering from cancers of the blood, inflammatory and immune disorders.
Social media, weather forecasting and mineral exploration are driven by Big Data enabled by new technologies. Likewise, disease prevention, diagnosis and prediction is moving towards personalised and precision medicine, facilitated by novel genomics technologies. This Program of research will develop analysis methods and tools and apply them to clinical genomics data in neurological and psychiatric disorders, thereby paving the way for the translation of genomic tools to common diseases.
Human Epilepsy: Understanding Biology To Improve Outcomes
Funder
National Health and Medical Research Council
Funding Amount
$16,657,948.00
Summary
Our team of neurologists, molecular geneticists, physiologists and brain imaging specialists and leads the world in the discovery of the genetic causes of epilepsy. Through this work we will identify genes underlying epilepsy and study how genetic variations result in the development of seizures. Advanced brain imaging will be used to understand the effects of genetic variation on brain structure and function. This study may lead to new diagnostic methods and treatments for epilepsy.
Musculoskeletal Pain And Disability: Improving Outcomes Through Conservative Interventions
Funder
National Health and Medical Research Council
Funding Amount
$8,549,204.00
Summary
Musculoskeletal conditions (particularly back pain and osteoarthritis) are highly prevalent and have a major impact on health and well being of Australians. This Program aims to resolve the major priorities in the field: optimal methods to target the right treatment to the right person at the right time through our unique strategy to understand mechanisms and identify patient subgroups, and establish optimal methods to overcome barriers to translation of research to policy and practice.
Tropical Disease - Immunity, Pathogenesis And Vaccine Development: Global Translation
Funder
National Health and Medical Research Council
Funding Amount
$17,988,456.00
Summary
Tropical diseases create a significant human and economic burden worldwide - particularly in resource-poor settings. Around half of the world's population is at risk of malaria. In Australia, Streptococcal and parasitic worm infections are particularly common in indigenous communities. This Program brings together leading experts to tackle these major health challenges. They are investigating how the body reacts to infection and creating new drugs and vaccines to eradicate these diseases.
Clinical, Public Health And Policy Interventions To Combat Cardiovascular Diseases
Funder
National Health and Medical Research Council
Funding Amount
$24,025,090.00
Summary
This program will generate and translate evidence from high-quality research designed to inform the decisions of health care providers and policy makers about best strategies for the prevention and treatment of cardiometabolic conditions. The program, with both domestic and global relevance, will address a spectrum of issues, with translational outcomes for clinical research.
Central to improving the management of patients with cancer is an understanding of the molecular drivers of cancer. Based on our fundamental discoveries about the role of cell growth and perturbed cell signalling as drivers of cancer we will use the integration of molecular and imaging biomarkers with targeted therapies to translate this knowledge into better outcomes for cancer patients with defined molecular drivers of their cancer.