作者: John Watson , Isabelle Arrighi , Jason Schense
DOI:
关键词: In vivo 、 Biomedical engineering 、 Biocompatible material 、 Fusion peptide 、 Controlled release 、 Matrix (mathematics) 、 Materials science
摘要: Supplemented matrices comprising a PTH releasably incorporated therein, optionally containing granular material, are described herein. The is either through covalent linkage to the matrix or non-covalent interaction with and/or granules. These supplemented decrease time of healing compared autograft and trigger bone fractures which otherwise would not heal. biocompatible biodegradable can be formed in vitro vivo, at implantation. may part fusion peptide. into full retention its bio-activit y. incorporated, using techniques that provide control over how when what degree released as controlled release vehicle heal fractures.