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HUMAN MINIBRAINS GROWN FROM STEM CELLS

This project will involve CRISPR genome editing strategies combined with human stem cell derived mini-brains to investigate new neuronal factors that control development, cognitive more...

Supervisor(s): Neely, Greg (Professor)

Gene editing of human stem cells and to better understand chronic pain disease

This project involves the use of human stem cells to generate pain sensing neurons and CRISPR gene editing to identify new pain killers. A complimentary scholarship for this pr more...

Supervisor(s): Neely, Greg (Professor)

Gene editing of stem cells or cancer to develop new stem cell therapies to treat human disease

This project involves the use of human stem cells and CRISPR genome editing to study basic signalling pathways controlling stem cell differentiation and/or cancer. A compliment more...

Supervisor(s): Neely, Greg (Professor)

Conserved Regulatory Genes in Neurodevelopment

The present project aims to utilize the promising combination of 3D organoid technology and CRISPR genome editing, which will allow us to examine the roles of several conserved gene more...

Supervisor(s): Neely, Greg (Professor)

Telomere deprotection and cancer

Genome stability in human cells is maintained through the coordinated functions of the DNA damage response. We study these processes with particular interest in the pathways that re more...

Supervisor(s): Cesare, Tony (Dr)

Pathways to therapies in blinding genetic retinal eye diseases

In this project, novel disease genes and variants are identified that cause blinding retinal eye diseases. Cellular, gene editing, proteomic and animal model approaches are taken to more...

Supervisor(s): Jamieson, Robyn (Associate Professor)

UNDERSTANDING GENETIC VARIATIONS IN BONE

Functional genomics is a field that is undergoing major changes in practice due to the accessibility of gene editing technologies. Our team has developed methods for gene editing in more...

Supervisor(s): Schindeler, Aaron (Associate Professor), Munns, Craig (Associate Professor)

GENE THERAPY FOR GENETIC BONE DISEASES

Gene therapy is becoming a practical approach to treat severe genetic conditions and in recent years conditions such as Spinal Muscular Atrophy (SMA) have been success stories. Our more...

Supervisor(s): Schindeler, Aaron (Associate Professor), Munns, Craig (Associate Professor)

CRISPR-based genome editing

The recent development of genome editing technology is perhaps the single biggest technical breakthrough in the history of life sciences, allowing for near complete control over euk more...

Supervisor(s): Neely, Greg (Professor)

Investigating the role of a novel RNA binding protein in telomerase activity

We have identified a role for a novel RNA binding protein in telomerase biogenesis and recruitment to telomeres. We aim to investigate how this protein functions in this context usi more...

Supervisor(s): Pickett, Hilda (Associate Professor)