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This project will develop a smart bone healing gel to bridge fragments of bone defects leading to stem cell recruitment, reduced inflammation, and blood supply for fracture healing. The design of the smart bone healing gel is based on the structures and properties of functional tissue healing hematoma in wound healing.
Plasma Activated Hydrogel Therapy For Combatting Antimicrobial Resistance In Chronic Wounds
Funder
National Health and Medical Research Council
Funding Amount
$755,023.00
Summary
The aim is to advance wound care using electrical ionised gas discharge (plasma) to deliver antimicrobial and healing agents through tailored hydrogel dressings into wounds. The technology will be configured for real-world wounds and clinical settings and its antimicrobial delivery system will be optimised to eradicate all wound pathogens and prevent re-infection. The technology has potential to revolutionise chronic wound care and alleviate the growing problem of antimicrobial resistance.
Harnessing Neural Plasticity To Improve Functional Outcomes Following Burn Injury.
Funder
National Health and Medical Research Council
Funding Amount
$667,984.00
Summary
Burn is painful and leads to long-term functional impairment and increased chronic disease. Pain and peripheral injury induce changes in the brain that can be functionally beneficial or maladaptive, yet we know little about brain changes following burn injury. This project will identify the mechanisms and functional impact of neural plasticity after burn injury, and test the efficacy of a neural intervention to reduce pain and improve functional recovery following burn injury.