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Targeting Regulatory T Cells for the Treatment of Autoimmune Renal Disease

This project will investigate the role of regulatory T cells for the treatment of autoimmunity kidney disease.    more...

Supervisor(s): Alexander, Stephen (Professor), Wang, Yuan Min (Dr)

Regulatory T cells

Regulatory T cells (Tregs) control autoimmune, allergic and inflammatory responses, and are involved in organ transplantation and immune responses to cancer. more...

Supervisor(s): Fazekas, Barbara (Professor)

The role of regulatory T Lymphocytes in aberrant human immune responses

The focus is to phenotypically and functionally characterise T regulatory cells in aberrant immune responses  e.g. autoimmune and allergic diseases. more...

Supervisor(s): Nanan, Ralph (Professor)

Clinical utility of MS molecular phenotypes of MS

My group at the Centre for Immunology aims to translate immunogenetic findings from discovery to clinical practice. We have used genome wide association studies to identify genetic more...

Supervisor(s): Booth, David (Associate Professor)

Antibody-Mediated Pain Syndrome (AMPS)

Complex regional pain syndromes (CRPSs) are painful disorders with pathophysiological etiologies associated with neuroinflammation, peripheral nerve damage, central sensitization, more...

Supervisor(s): Parratt, John (Dr), Ng, Karl (Associate Professor)

Defining the clinical and immunogenetic profile in antibody-associated demyelination

Masters or PhD opportunity ideally suited for a medical or neurology trainee or fellow with a commitment to building expertise in clinical and translational neuroimmunology. more...

Supervisor(s): Ramanathan, Sudarshini (Dr), Brilot-Turville, Fabienne (Dr), Dale, Russell (Professor)

Dendritic cells and control of T cell immune responses

DCs are unique antigen-presenting cells that can initiate (prime) CD4 T cell responses, as well as controlling the progression and subsequent reduction of the immune response, devel more...

Supervisor(s): Fazekas, Barbara (Professor)

TARGETING THE BRAIN VASCULATURE AS A TREATMENT FOR CEREBRAL TYPE I INTERFERONOPATHIES

Abnormal blood vessels are feature of cerebral type I interferonopathies. Discover how the endothelial cells that line the brain’s blood vessels contribute to disease in patie more...

Supervisor(s): Hofer, Markus (Dr)

Medical Image Analysis with Machine Learning Techniques

Develop artificial intelligence for computer-assisted diagnosis from medical scans. more...

Supervisor(s): Zhou, Luping (Dr)

Towards a cure for Type I diabetes mellitus

Transfect a lentivirus construct expressing an immunosuppressive peptide in islet cells for the treatment of diabetes type I more...

Supervisor(s): Manolios, Nicholas (Professor), Logan, Grant (Dr)