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3D Printed Silk Bio-Ink Shows Potential for Knee Meniscus Repair

At the intersection of medical biotechnology and additive manufacturing, a team of researchers from the Indian Institute of Technology Guwahati and West Bengal University of Animal and Fishery Sciences, Kolkata, have forged a path toward innovative knee injury treatment. Their&he

3D Printed Silk Bio-Ink Shows Potential for Knee Meniscus Repair
3Dnatives

At the intersection of medical biotechnology and additive manufacturing, a team of researchers from the Indian Institute of Technology Guwahati and West Bengal University of Animal and Fishery Sciences, Kolkata, have forged a path toward innovative knee injury treatment. Their work combines the use of cutting-edge 3D printing technology with a specially formulated silk-based bio-ink, promising a paradigm shift in the way knee injuries are studied and treated.

The focus of this approach lies on the knee meniscus, a vital fibrocartilage structure crucial for knee joint stability. This knee component is challenging for surgeons to operate on and is often prone to tears and injuries, requiring invasive procedures to fix. Traditional treatment methods, such as open surgery and tissue removal, pose significant challenges and may not always have satisfactory results, especially in cases of severe tears or chronic conditions like osteoarthritis. Because of these hurdles, the result is often post-operation compilations and lengthy rehabilitation times.

The 3D bioprinted meniscus. (Photo Credits: Biman B Mandal)

Professor Biman B. Mandal and his team aimed to address these challenges through the development and 3D bioprinting of a customized bio-ink designed explicitly for knee meniscus tissue engineering. Comprising of silk fibroin methacrylate, gelatin methacrylate, and polyethylene glycol dimethacrylate, this unique combination of silk-based materials, inspired by India’s rich tradition of silk clothing, is tailored to improve tissue engineering applications, particularly in meniscus regeneration.