作者
Lorenz Meinel, Robert Fajardo, Sandra Hofmann, Robert Langer, Jake Chen, Brian Snyder, Gordana Vunjak-Novakovic, David Kaplan
发表日期
2005/11/1
期刊
Bone
卷号
37
期号
5
页码范围
688-698
出版商
Elsevier
简介
Bone (re)-generation and bone fixation strategies utilize biomaterial implants, which are gradually replaced by autologous tissues. Ideally, these biomaterials should be biodegradable, osteoconductive, and provide mechanical strength and integrity until newly formed host tissues can maintain function. Some protein-based biomaterials such as collagens are promising because of their biological similarities to natural proteins on bone surfaces. However, their use as bone implant materials is largely hampered by poor mechanical properties. In contrast, silks offer distinguishing mechanical properties that are tailorable, along with slow degradability to permit adequate time for remodeling. To assess the suitability of silk-based biomaterials as implants for bone healing, we explored the use of novel porous silk fibroin scaffolds as templates for the engineering of bone tissues starting from human bone marrow derived …
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