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Develop single-molecule and super-resolution microscopy imaging technologies in the cardiovascular disease

This project will focus on development, improvement, and application of single-molecule tracking and super-resolution imaging, such as TIRF, HiLo, PALM, STORM, Lattice Light-Sheet M more...

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

Structure-based drug design with Kynurenine Aminotransferase-2

Human kynurenine amino transferase-2 (KAT-2) forms the basis of a structure-based drug design study with implications for schizophrenia and gender differences.  The various asp more...

Supervisor(s): Church, W Bret (Dr)

Studies in Cell-Projection Pumping

Cell-projection pumping (CPP) is a mechanism we have recently discovered whereby cells pump cytoplasm between each other. We have discovered this in context of cancer, where there i more...

Supervisor(s): Zoellner, Hans (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)

Nanoparticle-based biomolecule detection systems

You will develop novel systems to detect biomolecular expression profiles for use in imaging and flow cytometry. This multidisciplinary project aims to improve our understandin more...

Supervisor(s): Bilek, Marcela (Professor)

Organometallics and Catalysis

The projects will focus on novel monometallic and multimetallic transition metal catalysts as well as new methodologies for catalysis and developing surface supported catalysts. The more...

Supervisor(s): Messerle, Barbara (Professor)

Develop point-of-care microfluidic technologies for cardiovascular and cerebrovascular diseases

We are developing a clinically useful, rapid and high throughput profiling microdevices for thrombosis and coagulation. It will be extremely useful for patients with diabetes, obesi more...

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

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 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)

Plasma surface modification for applications in microfluidic diagnostic systems and implantable cardiovascular devices

You will develop novel hemocompatible, bioactive surfaces in microfluidic models for cardiovascular applications. The project is part of an existing collaboration between medic more...

Supervisor(s): Bilek, Marcela (Professor)