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An innovative synthesis technique to fabricate nano-sized calcium phosphate particles

The project aims to develop a novel method to fabricate homogenous and non-aggregated nano-sized hydroxyapatite (HA) particles capable of delivering therapeutic nucleic acids into t more...

Supervisor(s): Rohanizadeh, Ramin (Dr)

The role of calcium overload in myocardial ischemia / reperfusion injury

This project aims to identify the biochemical targets of calcium overload responsible for ischemia / reperfusion injury in the heart. more...

Supervisor(s): Cordwell, Stuart (Professor)

Surface modification of biomaterials for orthopaedic applications

This project will establish that our novel modified calcium silicate materials have enhanced bioactivity and osseointegration properties for coatings onto orthopaedic implants. more...

Supervisor(s): Zreiqat, Hala (Professor)

Scaffolds for skeletal tissue regeneration

This project will modify calcium silicate ceramic scaffolds with divalent cations to improve their mechanical, osteoinductive and osteoconductive properties for bone regeneration. more...

Supervisor(s): Zreiqat, Hala (Professor)

Amino acid sensing mechanisms in human biology.

Amino acid sensing mechanisms determine how dietary protein regulates appetite and satiety, how feeding influences endocrine responses and how nutrition can direct cell fate in brea more...

Supervisor(s): Conigrave, Arthur (Professor)

Mechanosensation in human erythrocytes: NMR and microscopy studies

We/you will explore the mechanistic basis of the autonomous movement of the plasma membrane of red blood cells, so called membrane flickering. Also, the molecular processes that und more...

Supervisor(s): Kuchel, Philip (Emeritus Professor)

Curcumin nano-formulation: enhanced anti-cancer and anti-microbial properties

The project aims to design and develop curcumin nanoparticles using various fabrication approaches, including liposome-nanoparticle assemblies and polymer-coated nanoparticles. The more...

Supervisor(s): Rohanizadeh, Ramin (Dr)

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)

Designing tailored nanomaterials for CO2 capture

In this project we will develop a porous coating for our novel nano-structured CaO sorbent which will prevent abrasion of the particles inside the fluidised bed reactor, and th more...

Supervisor(s): Harris, Andrew (Professor)