Biocompatible and Biodegradable 3D Double-Network Fibrous Scaffold for Excellent Cell Growth

被引:28
|
作者
Li, Zhanrong [1 ]
Chu, Dandan [1 ]
Chen, Genxin [2 ]
Shi, Liuqi [1 ]
Jin, Lin [1 ,2 ]
Zhang, Xingcai [3 ]
Li, Jingguo [1 ]
机构
[1] Zhengzhou Univ, Peoples Hosp, Henan Prov Peoples Hosp, Zhengzhou 450003, Henan, Peoples R China
[2] Zhoukou Normal Univ, Int Joint Res Lab Biomed Nanomat Henan, Henan Key Lab Rare Earth Funct Mat, Zhoukou 466001, Peoples R China
[3] Harvard Univ, John A Paulson Sch Engn & Appl Sci, Cambridge, MA 02138 USA
基金
中国博士后科学基金; 中国国家自然科学基金;
关键词
Double Network; Porous Structure; Fibrous Scaffold; Biocompatible; Biodegradable; MECHANICAL-PROPERTIES; COMPOSITE SCAFFOLDS; FABRICATION; NANOFIBERS; HYDROGELS;
D O I
10.1166/jbn.2019.2846
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Fibrous scaffold could provide extracellular matrix (ECM) like structure and desired network for cell growth; however, the mechanical performance of this type uni-structured fibrous scaffold cannot meet the requirement of tissue formation. Therefore, new strategies are needed for form mechanical strength enhancement. In this study, we developed three dimensional double-network structured fibrous scaffold (3D DN-Fs) using self-assembly technology combined with electrospinning technology. Our 3D DN-Fs consists of two types of skeletons: the finer silk nanofibers which can mimic biocompatible ECM structure; and the larger skeletal fibrous layers can greatly improve the mechanical strength and cellular loading ability, and provide good nutrition and excreta delivery system for cell growth. Therefore, our 3D DN-Fs displayed excellent mechanical performance (more than 50% increment), biocompatibility, biodegradability, and a desirable microenvironment for cell growth. More importantly, cultured cells exhibited excellent viability and 3D growth. Our novel strategy greatly enhances the potential application of fibrous scaffold in the biomedical area, such as 3D cell culture and tissue engineering.
引用
收藏
页码:2209 / 2215
页数:7
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