The Consequences Of Simulated Shift Work Exposure During Gestation On The Metabolic Health Of The Adult Offspring.
Funder
National Health and Medical Research Council
Funding Amount
$555,892.00
Summary
Shiftwork is associated with increased risk for preterm birth & spontaneous abortion. In an animal model simulated shiftwork exposure during pregnancy increases fat deposits & reduces glucose tolerance in the adult offspring, suggesting exposure during pregnancy has lifelong health consequences for the progeny. This project will investigate the impact of shiftwork during gestation on the metabolic health of the offspring, & determine the stage of pregnancy most susceptible.
A Case-control Study Of Environment And Breast Cancer
Funder
National Health and Medical Research Council
Funding Amount
$808,948.00
Summary
Breast cancer is the most common cancer in Australian women and there have been a number of recent events which have raised public concern that occupational exposures are contributing to the increasing occurrence of this cancer. In this study, we will investigate occupational causes of breast cancer, particularly shift work, industrial solvent use and combustion products. We will compare occupations of 1000 women with breast cancer and 2000 women without cancer.
Mechanisms Of Dendritic Cell-induced T-cell Tolerance
Funder
National Health and Medical Research Council
Funding Amount
$314,773.00
Summary
Autoimmune diseases constitute a significant medical problem in the developed world and are increasing in incidence. Many control mechanisms exist in the body, but in people with genetic suceptibility to autoimmune disease, the mechanisms fail and the body's immune sytem attacks normal tissues or organs. We have developed a new approach to using the cells which train the immune system to re-educate the cells that would otherwise attack normal healthy tissues in autoimmune-prone individuals. Thes ....Autoimmune diseases constitute a significant medical problem in the developed world and are increasing in incidence. Many control mechanisms exist in the body, but in people with genetic suceptibility to autoimmune disease, the mechanisms fail and the body's immune sytem attacks normal tissues or organs. We have developed a new approach to using the cells which train the immune system to re-educate the cells that would otherwise attack normal healthy tissues in autoimmune-prone individuals. These cells (dendritic cells) are genetically modified to express the molecular targets of the autoimmune response. This in turn switches off the response to these targets. In this project we will explore how these cells can be used to turn off cells of the immune system and if cells of the immune system in turn control the dendritic cell's ability to do this.Read moreRead less
The Role Of 14-3-3 Proteins In Regulating The Innate Immune Response
Funder
National Health and Medical Research Council
Funding Amount
$517,989.00
Summary
The immune response is the body's defense system. It's malfunction leads to many diseases such as immune deficiency, asthma and cancer. Thus, it is important to find genes controlling immunity. Significantly, mammals have amazing similarities with flies, in terms of genes controlling immunity. We have found a new regulator of fly immunity and will define how this gene functions in the immune system. This project will identify potential points of intervention for treating immune system disorders.
New research with scanning techniques has confirmed older ideas about the complementary functions of the two hemispheres of the human brain. One major contrast between the two hemispheres concerns their cognitive and emotional styles. The left hemisphere plans and confidently smooths over discrepancies that do not fit the plan while the right hemisphere looks at all possibilities and cautiously highlights the discrepancies. This research project studies the switch between the two hemispheres tha ....New research with scanning techniques has confirmed older ideas about the complementary functions of the two hemispheres of the human brain. One major contrast between the two hemispheres concerns their cognitive and emotional styles. The left hemisphere plans and confidently smooths over discrepancies that do not fit the plan while the right hemisphere looks at all possibilities and cautiously highlights the discrepancies. This research project studies the switch between the two hemispheres that alternately activates these contrasting, but equally valid, viewpoints. The switch is studied directly by optical recording from animal brains. The switch can also be studied in humans using a recent discovery from our laboratory:- that the perceptual rivalries are mediated by a hemispheric switch mechanism. Perceptual rivalry is a phenomenon where continuous, but ambiguous, stimulation leads to a back-and-forth alternation of complementary percepts, a phenomenon that fascinated Salvador Dali and is featured in many of his paintings. The nature of the perceptual switch during rivalry has been debated for centuries. New experiments link perceptual rivalry to the switch of attention between the hemispheres. Using perceptual rivalry as an indirect way to monitor hemispheric switching in humans, we discovered a remarkable feature. The back-and-forth switching process of perceptual rivalry is significantly slower in subjects with bipolar disorder (manic depression), even when they are between episodes and their mood is normal. The timing of the switching process is very stable in an individual, and appears to be similar in identical twins. The speed of the switch mechanism may therefore be inherited. Altered neural rhythms may underly the predisposition, known to run in familes, from which bipolar disorder can be triggered. The aim of the project is to test these propositions about the basis of this common disorder, affecting 1-2% of the population..Read moreRead less
Autoimmune diseases are those caused by the body's immune system attacking the body's own tissues. One group of autoimmune diseases, termed the thyrogastric cluster appear to share genetic risk factors, because they tend to occur together - either in the same patient, or else in families. Some of the diseases within the thyrogastric cluster are known to be very complex genetically, while others appear to be much less complex. Furthermore, some animal models of autoimmune diease are genetically s ....Autoimmune diseases are those caused by the body's immune system attacking the body's own tissues. One group of autoimmune diseases, termed the thyrogastric cluster appear to share genetic risk factors, because they tend to occur together - either in the same patient, or else in families. Some of the diseases within the thyrogastric cluster are known to be very complex genetically, while others appear to be much less complex. Furthermore, some animal models of autoimmune diease are genetically simpler still. We have chosen to study the genetics of gastritis in mice that have had their thymuses removed on the third day of life, because this model has relatively few genes involved; we have found that only 4 genes affect the risk of disease. This means that it will give us the optimum chance of identfiying at least one of these genes. The methods used involve both selective breeding techniques and generating special gene transfer mice in which individuals from one strain will carry the inserted genes from another. In this way, we can identify exactly which genes affect the risk of disease. Once identified, the gene sequences will help us determine if the same gene plays a role in human disease, and if so, to develop new diagnostic tests and therapies.Read moreRead less