In vitro and in vivo evaluation of chitosan scaffolds combined with simvastatin-loaded nanoparticles for guided bone regeneration.
Clicks: 258
ID: 39308
2019
The objective of this study was to fabricate and characterize chitosan combined with different amounts of simvastatin-loaded nanoparticles and to investigate their potential for guided bone regeneration in vitro and in vivo. Different SIM-CSN formulations were combined into a chitosan scaffold (SIM-CSNs-S), and the morphology, simvastatin release profile, and effect on cell proliferation and differentiation were investigated. For in vivo experiments, ectopic osteogenesis and the critical-size cranial defect model in SD rats were chosen to evaluate bone regeneration potential. All three SIM-CSNs-S formulations had a porous structure and exhibited sustained simvastatin release. CSNs-S showed excellent degradation and biocompatibility characteristics. The 4 mg SIM-CSNs-S formulation stimulated higher BMSC ALP activity levels, demonstrated significantly earlier collagen enhancement, and led to faster bone regeneration than the other formulations. SIM-CSNs-S should have a significant effect on bone regeneration.
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Authors | Xue, Yan;Wu, Mingyao;Liu, Zongren;Song, Jinhua;Luo, Shuyu;Li, Hongjie;Li, Yuan;Jin, Lichun;Guan, Binbin;Lin, Mingli;Chen, Fuyu;Jin, Chenxin;Liu, Deping;Li, Yanqiu;Zhang, Xu; |
Journal | journal of materials science materials in medicine |
Year | 2019 |
DOI | 10.1007/s10856-019-6249-3 |
URL | |
Keywords | Keywords not found |
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