Methamphetamine-induced Habits And The Re-establishment Of Behavioural Control.
Funder
National Health and Medical Research Council
Funding Amount
$577,079.00
Summary
The aim of this project is to understand the neural bases of drug addiction, specifically methamphetamine addiction, particularly the changes in neural processes that render drug seeking compulsive. We aim to establish the physical and chemical changes in the brain that cause the changes in decision making induced by exposure to drugs of abuse, most notably the changes that result in a loss of behavioural control.
The Australasian Resuscitation In Sepsis Evaluation - Randomised Controlled Trial
Funder
National Health and Medical Research Council
Funding Amount
$2,424,807.00
Summary
Patients with severe infections often present to Emergency Departments and early treatment with particular fluids, blood transfusions and stimulants, may improve survival rates. To determine whether early treatment is safe and effective in reducing deaths, the Australian and New Zealand Intensive Care Society Clinical Trials Group, in conjunction with the Australasian College of Emergency Medicine, plan to perform a large trial of early goal directed therapy in patients with severe infections.
The Neurochemical Basis Of Behavioural Control: Relevance For Addiction, OCD And Tourette Syndrome.
Funder
National Health and Medical Research Council
Funding Amount
$375,225.00
Summary
Both the control of voluntry responses over reflexive habits, and the ability to direct voluntary responses appropriately when there are conflicting choices present in the world, are thought to be important in mental disorders such as drug addiction, tic disorders such as Tourette syndrome and obsessive compulsive disorder. This project will examine the brain neurochemistry that underpins our ability to control voluntary responses, providing insight into potential pharmacological interventions.
I am a reproductive physiologist investigating the nature and actions of hormones, particularly steroids and transforming growth factor-? superfamily members, regulating follicle growth and oocyte quality in the ovary, implantation and breakthrough bleedi
Prof A Suhrbier is the Group Leader of the Inflammation Biology Group at the Queensland Institute of Medical Research. The group focuses at the applied end of inflammation research and development and will be involved in the identification and development of new interventions and diagnostics for inflammatory diseases and cancer, often in collaboration with the biotech industry.
Linking Estrogens, Prostatitis And Prostate Cancer
Funder
National Health and Medical Research Council
Funding Amount
$291,309.00
Summary
Prostatitis is very common and a significant health issue that affects men from their 20's. Estrogens promote inflammation and inflammation is associated with the development of cancer. If this study links estrogens, prostatitis and prostate cancer, we can provide better treatment for prostatitis, thus preventing progression to prostate cancer
Examining The Metabolic And Cognitive Deficits Caused By Insulin Resistance In The Ventral Striatum
Funder
National Health and Medical Research Council
Funding Amount
$400,372.00
Summary
Brain insulin resistance is thought to cause metabolic and cognitive deficits, but the underlying neural mechanisms remain elusive. This project addresses this gap in our knowledge by examining how brain insulin resistance disrupts the metabolic regulation of food intake and the cognitive control of actions. The outcomes will provide new insights in disorders characterised by brain insulin resistance such as obesity and dementia.
Steroid hormones, such as oestrogen and cortisol, act in the body by binding a family of proteins (nuclear receptors) that bind directly to the DNA to regulate genes. The mechanisms underlying this process are complex and involve recruitment of additional molecules or coactivators to improve efficiency. Recently a novel coactivator was identified termed SRA, which remarkably is never made into protein in cells, rather exerting its effects as a RNA. We have identified a novel family of proteins t ....Steroid hormones, such as oestrogen and cortisol, act in the body by binding a family of proteins (nuclear receptors) that bind directly to the DNA to regulate genes. The mechanisms underlying this process are complex and involve recruitment of additional molecules or coactivators to improve efficiency. Recently a novel coactivator was identified termed SRA, which remarkably is never made into protein in cells, rather exerting its effects as a RNA. We have identified a novel family of proteins that bind to SRA in cancer cells, and may well play a critical role in regulating how SRA modulates genes. This project seeks to understand how this family interacts with SRA, the functional effects on breast cancer cells, and the detailed 3-dimensional structure of the family members coupled with SRA. This work will provide novel insight into how SRA regulates steroid hormone action, and may create new potential avenues for developing therapeutics in breast cancer.Read moreRead less