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Παρασκευή 18 Αυγούστου 2017

Scholar : Ειδοποίηση Μελετητή - [ intitle:Bi

Ειδοποίηση Μελετητή:[ intitle:Bioprinting ]

Three-Dimensional Bioprinting of Polycaprolactone Reinforced Gene Activated Bioinks for Bone Tissue Engineering

GM Cunniffe, T Gonzalez-Fernandez, A Daly, BN Sathy… - Tissue Engineering Part A, 2017
Regeneration of complex bone defects remains a significant clinical challenge. Multi-tool
biofabrication has permitted the combination of various biomaterials to create multifaceted
composites with tailorable mechanical properties and spatially controlled biological function.
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3D Bioprinting for Cartilage and Osteochondral Tissue Engineering

AC Daly, FE Freeman, T Gonzalez‐Fernandez… - Advanced Healthcare …, 2017
Abstract Significant progress has been made in the field of cartilage and bone tissue
engineering over the last two decades. As a result, there is real promise that strategies to
regenerate rather than replace damaged or diseased bones and joints will one day reach
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Nanocellulosic materials as bioinks for 3D bioprinting

C Piras, S Fernández-Prieto, WM De Borggraeve - Biomaterials Science, 2017
3D bioprinting is a new developing technology with lots of promise in tissue engineering and
regenerative medicine. Being biocompatible, biodegradable, renewable and cost-effective,
cellulosic nanomaterials have recently captured the attention of researchers due to their
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Emerging Business Models Toward Commercialization of Bioprinting Technology

YM Balakhovsky, AY Ostrovskiy, YD Khesuani - 2017
Abstract After breaking out from the confines of purely academic research, 3D bioprinting
technology is quickly developing as a commercial industry and exhibiting the qualities of a
mature market with immense potential. We are currently witnessing not only growth in the
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