Effect of carbon based fillers on xylan/chitosan/nano-HAp composite matrix for bone tissue engineering application

被引:23
作者
Ali, Asif [1 ]
Hasan, Abshar [2 ]
Negi, Yuvraj Singh [1 ]
机构
[1] Indian Inst Technol Roorkee, Dept Polymer & Proc Engn, Saharanpur Campus, Saharanpur, UP, India
[2] Univ Nottingham, Biodiscovery Inst, Sch Pharm, Nottingham NG7 2RD, England
关键词
Xylan; Chitosan; Hydroxyapatite; Polymer scaffold; Graphene oxide; Reduced graphene oxide; Bone tissue engineering; REDUCED GRAPHENE OXIDE; REACTION-PRODUCTS; CHITOSAN; SCAFFOLD; HYDROXYAPATITE; HYDROGEL; XYLAN; OXIDE/CHITOSAN;
D O I
10.1016/j.ijbiomac.2021.12.012
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The objective of our present work is to analyze the effect of carbon derived fillers (GO/RGO) on microstructural, mechanical and osteoinductive potential of xylan/chitosan/HAp composite matrix for bone tissue engineering application. The composites were characterized by FTIR, XRD and SEM to evaluate the composition and morphological parameters. Change in microstructural and mechanical properties of scaffold was observed on tuning filler type (GO/RGO) and concentration. Composites with GO and RGO content demonstrated significant mineralization potential with dense apatite growth. A comparative evaluation of cell viability using MG-63 cell line revealed improved cell response in samples incorporated with carbon fillers than their native parent matrix. MTT Assay revealed highest cell viability in composite with 0.75% RGO content. Cell attachment was observed in all the scaffold samples cultured for 72 h. The filler incorporated X/C/HAp matrix demonstrated increase in ALP activity over a period of 7 and 14 days. Synergistic effect of these fillers in enhancing in vitro mineralization tendency and osteogenic differentiation capability make the composites a potential candidate for bone tissue engineering construct.
引用
收藏
页码:1 / 11
页数:11
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