Your Search Results

MicroRNAs in disease

Regulation of the endothelial cell barrier integrity is critical in inducing new blood vessel formation (angiogenesis), in developing an inflammatory response and importantly in res more...

Supervisor(s): Gamble, Jennifer (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)

Understanding the role of novel genes in disease

From mRNA arrays we have identified a number of ‘novel’ genes that influence tissue function. Our studies are investigating the biochemical basis for the mechanism of ac more...

Supervisor(s): Gamble, Jennifer (Professor)

Combined, Correlative and Integrated Microscopy: Unraveling Biomolecular Structure-Function Activities in Cancer & Transendothelial Transport

Our team seek to understand the spatial and temporal mechanisms involved in the onset and progress of colorectal cancer by using state-of-the-art multidimensional microscopy and 3-D more...

Supervisor(s): Braet, Filip (Associate Professor)

Müller glial-neuronal-vascular interactions in retinal vascular diseases

Research projects in the Macular Research Group are focused on the cellular and molecular mechanisms of Müller glial-neuronal-vascular interactions in retinal diseases. The gro more...

Supervisor(s): Gillies, Mark (Professor), Shen, Weiyong (Dr)

Corneal bioengineering

Two research projects existing under this big area :1. To develop in situ bioprinting to treat corneal diseases; and 2. develop potential electromechanical methods to treat eye dise more...

Supervisor(s): You, Jingjing (Dr), Sutton, Gerard (Professor)

Gene and Cell therapy for treating corneal diseases

Two research projects existing under this board area :1. Develop in vivo gene editing technique to treat corneal diseases; and 2. Sequencing and mapping gene and protein interaction more...

Supervisor(s): You, Jingjing (Dr), Sutton, Gerard (Professor)

RNA-based biomarkers to understand and predict disease progression

RNA-based biomarkers are becoming increasingly important due to their stability and sensitivity of detection. This project will use in vitro, in vivo and clinical sample analysis b more...

Supervisor(s): Hardikar, Anandwardhan (Associate Professor)

Identifying the causes of fibrosis after kidney transplantation

This is a PhD project. The successful applicant will be top up scholarship. This study will lead to publish high quality of papers and apply a new NHMRC project grant. more...

Supervisor(s): O'Connell, Philip (Professor)

Targeting melanoma secretory pathways.

Cancer cells secrete a variety of factors that induce tumour growth, metastasis, angiogenesis, and alter the tumour stroma to create a more favourable microenviroment. This project more...

Supervisor(s): Weninger , Wolfgang (Professor), Beaumont, Kimberley (Dr)