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用于骨组织工程的仿生复合支架:羟基磷灰石/明胶-壳聚糖核壳纳米纤维

Biomimetic composite scaffold of hydroxyapatite/gelatin-chitosan core-shell nanofibers for bone tissue engineering.

机构信息

Department of Physics, Key Laboratory of ATMMT Ministry of Education, Zhejiang Sci-Tech University, Hangzhou 310018, People's Republic of China.

School of Chemistry & Bioengineering, Taizhou College of Nanjing Normal University, Taizhou 225300, People's Republic of China.

出版信息

Mater Sci Eng C Mater Biol Appl. 2019 Apr;97:325-335. doi: 10.1016/j.msec.2018.12.027. Epub 2018 Dec 10.

Abstract

Good biocompatibility and osteogenesis of three-dimensional porous scaffolds are critical for bone tissue engineering. In this work, biomimetic hydroxyapatite/gelatin-chitosan core-shell nanofibers composite scaffolds have been fabricated to mimic both the specific structure and the chemical composition of natural bone. The coaxial electrospinning technique was introduced to prepare gelatin-chitosan core-shell structured nanofibers mat which formed three-dimensional porous structure for promoting cells growth. The gelatin-chitosan core-shell nanofibers formed Arginine-Glycine-Aspartic acid (RGD)-like structure to mimic the organic component of natural bone extracellular matrix. Hydroxyapatite (Ca(PO)(OH), HAP), as the major mineral constituent of native bone, was then deposited onto the surface of gelatin-chitosan core-shell structured nanofibers by a wet chemical method. Compared with chitosan nanofibers, gelatin nanofibers and chitosan-gelatin composite nanofibers, gelatin-chitosan core-shell structured nanofibers improved the mineralization efficiency of hydroxyapatite and formed a homogeneous HAP deposit. When Human osteoblast like cell line (MG-63) were cultured on the materials, the results showed that hydroxyapatite deposited on the gelatin-chitosan core-shell structured nanofibers could further enhance osteoblast cell proliferation. The biomimetic composite scaffolds could be suggested as a promising material to promote osteoblast cell growth in bone tissue engineering.

摘要

良好的生物相容性和三维多孔支架的成骨作用对于骨组织工程至关重要。在这项工作中,仿生羟基磷灰石/明胶-壳聚糖核壳纳米纤维复合支架已被制备以模拟天然骨的特定结构和化学成分。同轴静电纺丝技术被引入制备明胶-壳聚糖核壳结构纳米纤维垫,其形成三维多孔结构以促进细胞生长。明胶-壳聚糖核壳纳米纤维形成精氨酸-甘氨酸-天冬氨酸(RGD)样结构以模拟天然骨细胞外基质的有机成分。羟基磷灰石(Ca(PO)(OH),HAP)作为天然骨的主要矿物成分,然后通过湿法化学方法沉积在明胶-壳聚糖核壳结构纳米纤维的表面上。与壳聚糖纳米纤维、明胶纳米纤维和壳聚糖-明胶复合纳米纤维相比,明胶-壳聚糖核壳结构纳米纤维提高了羟基磷灰石的矿化效率并形成了均匀的 HAP 沉积物。当人成骨样细胞系(MG-63)在这些材料上培养时,结果表明沉积在明胶-壳聚糖核壳结构纳米纤维上的羟基磷灰石可以进一步增强成骨细胞的增殖。仿生复合支架可作为一种有前途的材料,以促进骨组织工程中成骨细胞的生长。

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