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聚(γ-苄基-L-谷氨酸)(PBLG)表面改性的聚(乳酸-乙醇酸)多孔支架与介孔羟基磷灰石用于体内骨修复

Porous Scaffolds of Poly(lactic--glycolic acid) and Mesoporous Hydroxyapatite Surface Modified by Poly(γ-benzyl-l-glutamate) (PBLG) for in Vivo Bone Repair.

作者信息

Li Linlong, Shi Xincui, Wang Zongliang, Guo Min, Wang Yu, Jiao Zixue, Zhang Peibiao

机构信息

Key Laboratory of Polymer Ecomaterials, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, 5625 Renmin Street, Changchun 130022, P. R. China.

University of Chinese Academy of Sciences, 19 Yuquan Road, Beijing 100049, P. R. China.

出版信息

ACS Biomater Sci Eng. 2019 May 13;5(5):2466-2481. doi: 10.1021/acsbiomaterials.8b01614. Epub 2019 Apr 22.

DOI:10.1021/acsbiomaterials.8b01614
PMID:33405754
Abstract

Three-dimensional (3D) composite porous scaffolds containing hydroxyapatite (HA) and polymer matrix showed wide applications in bone repair because of their improved biocompatibility, bioactivity, and mechanical properties in our previous studies. In this work, mesoporous hydroxyapatite (MHA) surface-modified by poly(γ-benzyl-l-glutamate) (PBLG) with different amounts (from 11 to 50 wt %) was synthesized by the in situ ring opening polymerization of γ-benzyl-l-glutamate N-carboxy anhydride (BLG-NCA) and then PBLG--MHA/PLGA composite films were prepared to illustrate the biological performance of the composites. Furthermore, porous scaffolds of PBLG--MHA/PLGA were fabricated through modified solvent casting/particulate leaching (SC/PL) method to demonstrate the ability of in vivo bone defect repair. In vitro cytological assay indicated that enhanced cell expansion on PBLG--MHA/PLGA with 11 wt % PBLG amounts and improved osteogenic differentiation on the composites with 33 and 50 wt % PBLG amounts were achieved. And the porous scaffolds exhibited high porosity and interconnected pores. Results of the in vivo rabbit radius defect repair indicated that rapid mineralization and new bone formation could be observed on the composites with 22 and 33 wt % PBLG. This study revealed that PBLG--MHA/PLGA composites might have potential applications in clinical bone repair.

摘要

在我们之前的研究中,含有羟基磷灰石(HA)和聚合物基质的三维(3D)复合多孔支架因其改善的生物相容性、生物活性和机械性能而在骨修复中显示出广泛的应用。在这项工作中,通过γ-苄基-L-谷氨酸N-羧基酐(BLG-NCA)的原位开环聚合合成了用不同量(11至50 wt%)的聚(γ-苄基-L-谷氨酸)(PBLG)表面改性的介孔羟基磷灰石(MHA),然后制备了PBLG-MHA/PLGA复合膜以说明复合材料的生物学性能。此外,通过改进的溶剂浇铸/颗粒沥滤(SC/PL)方法制备了PBLG-MHA/PLGA多孔支架,以证明其体内骨缺损修复能力。体外细胞学分析表明,在PBLG含量为11 wt%的PBLG-MHA/PLGA上细胞增殖增强,在PBLG含量为33和50 wt%的复合材料上成骨分化得到改善。并且多孔支架表现出高孔隙率和相互连通的孔隙。体内兔桡骨缺损修复结果表明,在PBLG含量为22和33 wt%的复合材料上可观察到快速矿化和新骨形成。这项研究表明,PBLG-MHA/PLGA复合材料可能在临床骨修复中有潜在应用。

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