Completed Bones, Joints & Muscles Materials & Manufacturing

Late stage development & clinical evaluation of FibroFix Cartilage: A Mechanically Functional, Tissue Regenerative, Knee Cartilage Repair Implant

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AI plain-English summary

A silk-based implant is being developed to repair damaged knee cartilage and prevent the onset of osteoarthritis. Cartilage injuries are common, particularly in active adults, and the tissue has a very limited ability to heal itself. Current treatments, such as microfracture or cell transplants, work poorly for large defects and often fail to restore a smooth, load-bearing surface. This project addresses that gap by engineering an implant that mimics cartilage’s strength and resilience while actively stimulating new tissue growth. The implant, called FibroFix Cartilage, is made from fibroin—a protein extracted from silk fibres. This material is strong, smooth, and durable, allowing the implant to bear weight immediately after surgery. If successful, the device could treat large cartilage injuries even when osteoarthritis is already present, potentially delaying or avoiding the need for a total knee replacement. The project will finalise the implant’s design, complete safety and efficacy testing in animal and laboratory models, and then evaluate its performance in a clinical trial.

View original technical description
This project will develop an implant to reduce pain and restore mobility to patients suffering from injuries to the cartilage in their knees. The implant is made from a novel material called FibroFix™ which is formed from a protein extracted from silk fibres called fibroin. The properties of fibroin give FibroFix™ devices unique advantages, allowing them to be very strong, smooth and resilient like cartilage itself, while also capable of regenerating new cartilage tissue. This will allow the FibroFix™ implant to be used to treat large injuries to the articular cartilage in the knee where the painful condition osteoarthritis may already be present. The project will finalise development of this implant and complete testing in animal and laboratory trials, demonstrating that it is both safe and effective. Once this has been achieved, the project will investigate the implant’s performance in a clinical trial.

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Related Research

Grants with similar aims, by meaning.

Development and clinical evaluation of two mechanically functional, tissue regenerative, knee cartilage repair devices
Development, Clinical Validation and Manufacturing Scale up of FIbroFix Meniscus: A mechanically advanced, tissue regenerative, meniscal cartilage repair implant
Development of single protein fibre matrix composites for high performance cartilage repair devices
FibroFix™ Cartilage, silk-based implant for cartilage repair and regeneration, introducing a new paradigm in osteoarthritis treatment.
FibroFix™Cartilage, an innovative implant for cartilage repair and regeneration, introducing a new paradigm in osteoarthritis (OA) treatment.

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