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Modelling plasma surface functionalisation of additively manufactured, porous, prosthetic implants

This project will develop multiphysics models of plasma surface treatment to enable the creation of prosthetic implants with controllable surface properties and long-term biostabili more...

Supervisor(s): Bilek, Marcela (Professor), Baldry, Mark (Dr)

Modelling plasma synthesis of nanoparticles for non-invasive diagnosis and targeted treatment of disease

This project will develop multiphysics models of a low temperature capacitively coupled plasma reactor to engineer functionalised nanoparticles for biomedical applications.This proj more...

Supervisor(s): Bilek, Marcela (Professor), Baldry, Mark (Dr)

Modelling atmospheric plasma processes for biofunctionalization in additive manufacturing

This project will develop multiphysics models of atmospheric pressure plasma systems to engineer interfaces and biofunctionalised scaffolds in 3D bioprinting.  The Applied Phys more...

Supervisor(s): Bilek, Marcela (Professor), Baldry, Mark (Dr)

Green Chemistry - Biocatalysis For Production Of High-Value Chemicals

The ultimate aim of biocatalysis research is to replace the petrochemical industry with clean and green microbial reactions using renewable and non-toxic feedstocks. But how exactly more...

Supervisor(s): Coleman, Nicholas (Associate Professor), Rutledge, Peter (Professor)

PhD in microbial biofilm research

We have an exciting PhD project that is focused on understanding the interaction of cold atmospheric plasmas with microbial biofilms. Plasma is the fourth state of matter and forms more...

Supervisor(s): Mai-Prochnow, Anne (Dr)

PRECLINICAL AND CLINICAL DEVELOPMENT OF NOVEL BONE-BINDING ANTIMICROBIALS

Our team has spent several years developing and testing new a new class of drugs termed bone-binding antimicrobials (BBAs). Our lead compound (BBA-1) has been shown to have antimicr more...

Supervisor(s): Schindeler, Aaron (Associate Professor), Little, David (Professor)

Develop single-cell mechanobiological methods for discovering molecular mechanisms of cardiovascular and neuronal mechanical force sensing

We are developing cutting-edge technologies for the following biomedical application: 1) define the mechanosensing functions of key protein players in the cardiovascular system such more...

Supervisor(s): Ju, Lining (Arnold) (Dr)

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)

Development of Tissue-Targeted Vectors for Musculoskeletal Gene Therapy

A unique opportunity is available for an outstanding PhD scholar to conduct research in developing tissue-targeted AAV vectors for gene delivery and CRISPR gene editing. more...

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