Composite mesoporous silica nanoparticle/chitosan nanofibers for bone tissue engineering

被引:48
|
作者
Li, Kai [1 ]
Sun, Hailang [2 ]
Sui, Haitao [3 ]
Zhang, Yongxing [1 ]
Liang, He [1 ]
Wu, Xiaofeng [1 ]
Zhao, Qinghua [1 ]
机构
[1] Shanghai Jiao Tong Univ, Sch Med, Shanghai Peoples Hosp 1, Dept Orthopaed, Shanghai 200080, Peoples R China
[2] Nanjing Med Univ, Huaian Peoples Hosp 1, Dept Orthopaed, Huaian 223300, Peoples R China
[3] Dongying Peoples Hosp, Dept Orthopaed, Dongying 257000, Shandong, Peoples R China
来源
RSC ADVANCES | 2015年 / 5卷 / 23期
基金
上海市自然科学基金;
关键词
HYBRID NANOFIBERS; CHITOSAN; MEMBRANE; SCAFFOLD; FILMS;
D O I
10.1039/c4ra15232h
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Electrospinning of inorganic-organic composites into nanofibers has emerged as a new approach for fabricating scaffolds for biomimetically engineered bone tissues. This paper reports novel biomimetic nanocomposite nanofibers composed of mesoporous silica nanoparticles/chitosan (MSN/CTS) prepared by electrospinning. The optimal conditions for electrospinning CTS and MSNs were identified to produce beadless nanofibers without any aggregation of the MSNs. The mechanical properties of the composite scaffolds were analyzed by tensile tests for scaffolds with varying contents of MSNs within CTS fibers. Increasing the MSN content to 10 wt% enhanced the mechanical properties of the composite scaffolds, whereas increasing the content beyond 10 wt% disrupted the polymer chain networks within the CTS nanofibers and weakened the mechanical strength of the fibers. Swelling ratio, shrinkage and biodegradation properties were characterized. MTT, SEM, alkaline phosphatase activity and Alizarin Red staining analysis of osteoblast-cultured scaffolds confirmed the biocompatibility and functionally promoted biomineralization of the composite scaffolds. Thus, the prepared MSN/CTS composite nanofibrous mats are highly promising as local implantable scaffolds for potential bone tissue engineering applications.
引用
收藏
页码:17541 / 17549
页数:9
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