| Literature DB >> 27822909 |
Yang Dan1, Ouyang Liu1, Yong Liu1, Yuan-Yuan Zhang2, Shuai Li1, Xiao-Bo Feng1, Zeng-Wu Shao1, Cao Yang1, Shu-Hua Yang1, Ji-Bo Hong3.
Abstract
In this study, a three-dimensional chitosan-gelatin/nanohydroxyapatite (ChG/nHaP) scaffold was successfully fabricated and characterized in terms of swelling, degradation, cell proliferation, cell attachment, and mineralization characterizations. The ChG/nHaP scaffold was fabricated with a mean pore size of 100-180 μm. Our results showed that the physicochemical and biological properties of the scaffolds were affected by the presence of HaP. The swelling and degradation characteristics of the ChG scaffold were remarkably decreased by the addition of HaP. On the other hand, the presence of HaP remarkably improved the MC3T3-E1 cell attachment and cell growth in the scaffold membrane. The biocompatible nature of the ChG/nHaP scaffold leads to the development of finely scaled mineral deposits on the scaffold membrane. Thus, HaP played an important role in improving the biological performance of the scaffold. Therefore, the ChG/nHaP scaffold could be applied as a suitable material for bone tissue engineering applications.Entities:
Keywords: Bone tissue engineering; Mineralization; Preosteoblast cells; Scaffolds
Year: 2016 PMID: 27822909 PMCID: PMC5099305 DOI: 10.1186/s11671-016-1669-1
Source DB: PubMed Journal: Nanoscale Res Lett ISSN: 1556-276X Impact factor: 4.703
Fig. 1Schematic illustration of fabrication of chitosan-gelatin/hydroxyapatite (ChG/nHaP) scaffolds
Fig. 2a In vitro swelling and b in vitro degradation studies of the ChG scaffold and ChG/nHaP scaffolds
Fig. 3In vitro cell viability assay of MC3T3-E1 cells grown on the ChG scaffold and ChG/nHaP scaffolds
Fig. 4Live/dead assay of MC3T3-E1 cells grown on the ChG scaffold and ChG/nHaP scaffolds
Fig. 5Cell adhesion study of MC3T3-E1 cells on the ChG scaffold and ChG/nHaP scaffolds
Fig. 6In vitro mineralization study of the ChG scaffold and ChG/nHaP scaffolds. The mineralization study was performed by alizarin red assay