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Exploring The Contribution Of The Immunoproteasome To Immunodominance And T Cell Function
Funder
National Health and Medical Research Council
Funding Amount
$82,421.00
Summary
The immunoproteasome is a piece of cellular machinery which degrades proteins and has been shown to enhance the body's recognition and response to viruses and cancer cells. This immunoproteasome is made up of various subunits, but it has not yet been assessed how each of these subunits contribute to the overall response. By studying the individual subunits, we will have a better understanding in how to manipulate the immune system for anti-viral and anti-cancer vaccine design.
Investigation Of Neuregulin Precessing By Beta-site APP Cleaving Enzyme And Gamma Secretase In Schizophrenia
Funder
National Health and Medical Research Council
Funding Amount
$46,715.00
Summary
Schizophrenia (SCZ) is a complex psychiatric disorder that appears in male and female around adulthood. To date there is no clear pathological symptoms to identify SCZ individuals and place them in a specific group. Some proteins are genetically associated with this disease. I will investigate how some of these proteins disturb the function of the brain in human. My recent published data shows decrease of one of the proteins in the brain of SCZ group. My project may help develop novel and more s ....Schizophrenia (SCZ) is a complex psychiatric disorder that appears in male and female around adulthood. To date there is no clear pathological symptoms to identify SCZ individuals and place them in a specific group. Some proteins are genetically associated with this disease. I will investigate how some of these proteins disturb the function of the brain in human. My recent published data shows decrease of one of the proteins in the brain of SCZ group. My project may help develop novel and more selective therapies with less side-effects.Read moreRead less
Design And Use Of Conductive Biopolymers In Neural Stem Cell Network Formation
Funder
National Health and Medical Research Council
Funding Amount
$74,055.00
Summary
Growing neural tissue from stem cells on an electrically conductive surface can improve cell growth over the short term, yet the functionality of the cells has never been fully established. We will investigate the use of polymers for facilitation of neural tissue growth from stem cells, test the functionality of the tissue produced, and investigate the effectiveness of implantation of the developed tissue into primates to supplement or replace damaged tissue.