微载波
骨不连
化学
纳米复合材料
生物医学工程
再生(生物学)
成骨细胞
材料科学
细胞生物学
体外
生物化学
解剖
细胞
纳米技术
生物
医学
作者
Long Gao,Zhongyue Huang,Shifeng Yan,Kunxi Zhang,Shenghua Xu,Guifei Li,Lei Cui,Jingbo Yin
出处
期刊:Biomacromolecules
[American Chemical Society]
日期:2017-09-29
卷期号:18 (11): 3742-3752
被引量:27
标识
DOI:10.1021/acs.biomac.7b01101
摘要
The microcarrier system offers an attractive method for cellular amplification and phenotype enhancement in the field of bone tissue engineering. However, it remains a challenge to fabricate porous microcarriers with osteoinductive activity for speedy and high-quality osseointegration in regeneration of serious complication of bone fracture, like nonunion. Here, we present a facile method for the first time manufacture microcarriers with osteogenic effects and properties based on well controlled and long-term Sr2+ release. At first, strontium-substituted hydroxyapatite was prepared (Sr-HA) and a novel Sr-HA-graft-poly(γ-benzyl-l-glutamate) (Sr-HA-PBLG) nanocomposite was synthesized. Then, the microcarriers with highly interconnected macropores were fabricated by a double emulsion method, which allowed cells to adhere and proliferate and secrete extracellular matrix. Besides, the microcarriers with a relatively uniform diameter of 271.5 ± 45.0 μm are feasible for injection. The Sr-HA-PBLG microcarriers efficiently promoted osteogenic gene expression in vitro. With injection of the Sr-HA-PBLG microcarriers loading adipose derived stem cells (ADSCs) into the nonunion sites, bone regeneration was observed at 8 weeks after injection in a mice model.
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