Studies On The Role Of The MIP-3beta/SLC System In The Priming Phase Of The Cytotoxic T Lymphocyte Response.
Funder
National Health and Medical Research Council
Funding Amount
$425,250.00
Summary
Generation of cytotoxic T cells (CTLs) is important for defence against viruses and cancer cells. However, when activated inappropriately, CTLs can contribute to diseases such as diabetes as well as transplant rejection. We intend to study the role of several recently-discovered proteins in this process. The outcome of this work may lead to the development of molecules that control CTL generation more specifically than existing therapeutics. Such inhibitors would potentially be useful in the tre ....Generation of cytotoxic T cells (CTLs) is important for defence against viruses and cancer cells. However, when activated inappropriately, CTLs can contribute to diseases such as diabetes as well as transplant rejection. We intend to study the role of several recently-discovered proteins in this process. The outcome of this work may lead to the development of molecules that control CTL generation more specifically than existing therapeutics. Such inhibitors would potentially be useful in the treatment of a range of human diseases.Read moreRead less
Immune Tolerance In Experimental Autoimmune Encephalomyelitis Following Transplant Of Bone Marrow Cells Genetically Encoding Autoantigen
Funder
National Health and Medical Research Council
Funding Amount
$339,143.00
Summary
Autoimmune diseases affect 5-6% of the population and include diseases such as multiple sclerosis. Our studies focus on examining a gene therapy approach together with bone marrow transplantation to treating autoimmune diseases. Using a model for multiple sclerosis we are finding promising results
Regulation Of The Anti-tumour Immune Response By The Chemokine Decoy Receptor CCX-CKR
Funder
National Health and Medical Research Council
Funding Amount
$562,742.00
Summary
Melanoma is a significant cause of cancer-related deaths in Australians. Death is usually due to metastasis of the cancer to the lungs and other organs. In this project, we will take advantage of unique mouse models to determine whether inhibition of the function of a novel protein can prevent melanoma growth and metastasis to different organs. The results of this study may lead to new therapeutic approaches to control malignant melanoma and other metastatic cancers.