A Multi-national Trial To Predict Treatment Response In Subtypes Of Depression
Funder
National Health and Medical Research Council
Funding Amount
$387,489.00
Summary
Treatment of MDD using trial and error can have serious consequences. It can prolong the patient’s suffering (depression is associated with substantial morbidity, and mortality), prolong their absence from work and other productive activity and increase the burden on their family-carers. This multi-national study will collect genetics, brain function and behavioural data from a large number of participants, allowing for sensitive predictors of response to be determined.
Using Epidemiological Methods To Investigate How Genetic, Environmental And Lifestyle Factors Influence Cancer Incidence And Cancer Survivorship; And Translation Into Cancer Prevention And Policy Outcomes
Funder
National Health and Medical Research Council
Funding Amount
$421,747.00
Summary
This research program focuses on investigating genetic, environmental and lifestyle causes of cancer, preventing new cases of cancer, and improving outcomes after a cancer diagnosis, particularly for melanoma and gynaecological cancer, which carry a heavy burden in the Australian population. The research will also inform the best allocation of health system resources for cancer control, and ensure translation of research findings into cancer prevention, clinical practice and policy outcomes.
Optimising Primary Care Risk Profiling And Management Of Cardiovascular Disease
Funder
National Health and Medical Research Council
Funding Amount
$408,387.00
Summary
Dr Carrington's CDF will support her career progression in 4 areas of translational research: 1. Closing the gap in ATSI heart health – optimising management of heart disease in Central Australia 2. Supporting healthy regional communities - developing cost-effective risk reduction clinics 3. Coordinating the care of complex cardiac conditions – refining an electronic tool to optimise GP management 4. International heart health – develop an effective primary care model of risk reduction in Sub-Sa ....Dr Carrington's CDF will support her career progression in 4 areas of translational research: 1. Closing the gap in ATSI heart health – optimising management of heart disease in Central Australia 2. Supporting healthy regional communities - developing cost-effective risk reduction clinics 3. Coordinating the care of complex cardiac conditions – refining an electronic tool to optimise GP management 4. International heart health – develop an effective primary care model of risk reduction in Sub-Saharan AfricaRead moreRead less
Structural And Drug Discovery Studies Of Medically Important Protein Complexes
Funder
National Health and Medical Research Council
Funding Amount
$438,577.00
Summary
My research is focused on structural studies of medically important biological systems, where specific protein complex formation contributes to human illnesses. I use X-ray crystallography to visualize the whole complex at atomic resolution as well as to determine whether binding partners have undergone changes in shape upon complex formation. This structural information then helps me in drug design with goals to either disrupt or modulate the complex.
Understanding Allosteric Modulation And Biased Signalling At Family B GPCRs
Funder
National Health and Medical Research Council
Funding Amount
$428,065.00
Summary
Family B GPCRs are therapeutic targets for drugs treating osteoporosis, hypercalcaemia, Paget’s disease, type II diabetes and are being actively pursued for other diseases that represent major global health burdens. Despite huge financial input, there are no orally available drugs that act on these receptors. This speaks to a lack of mechanistic understanding of how they work. My research focuses on addressing this question and how to exploit these receptors to design and identify better drugs.
Assembly Of Mitochondrial Respiratory Chain Complexes And Their Defects Associated With Disease.
Funder
National Health and Medical Research Council
Funding Amount
$413,431.00
Summary
Mitochondrial “respiratory chain complexes are multi-subunit assemblies that function to produce most of our cellular energy. Defects in the assembly of these complexes can result in mitochondrial disease, including infant death. The assembly of the respiratory complexes is a complicated procedure and the mechanisms involved in disease remain elusive. This work will aid in our understanding of how these protein complexes are built and how defects in their assembly can cause disease.