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首页> 外文期刊>Journal of biomedical materials research, Part A >Poly (3‐hydroxybutyrate‐co‐3‐hydroxyvalerate)/fibrinogen/bredigite nanofibrous membranes and their integration with osteoblasts for guided bone regeneration
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Poly (3‐hydroxybutyrate‐co‐3‐hydroxyvalerate)/fibrinogen/bredigite nanofibrous membranes and their integration with osteoblasts for guided bone regeneration

机译:聚(3-羟基丁酸酯-CO-3-羟基戊戊烷)/纤维蛋白原/ BREDIGITE纳米纤维膜及其与引导骨再生成骨细胞的整合

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摘要

Abstract Guided bone regeneration (GBR) has been established to be an effective method for the repair of defective tissues, which is based on isolating bone defects with a barrier membrane for faster tissue reconstruction. The aim of the present study is to develop poly (hydroxybutyrate‐co‐3‐hydroxyvalerate) (PHBV)/fibrinogen (FG)/bredigite (BR) membranes with applicability in GBR. BR nanoparticles were synthesized through a sol–gel method and characterized using transmission electron microscopy and X‐ray diffractometer. PHBV, PHBV/FG, and PHBV/FG/BR membranes were fabricated using electrospinning and characterized by scanning electron microscopy, Fourier transform infrared spectroscopy, contact angle, pore size, thermogravimetric analysis and tensile strength. The electrospun PHBV, PHBV/FG, and PHBV/FG/BR nanofibers were successfully obtained with the mean diameter ranging 240–410?nm. The results showed that Young's modulus and ultimate strength of the PHBV membrane reduced upon blending with FG and increased by further incorporation of BR nanoparticles, Moreover hydrophilicity of the PHBV membrane improved on addition of FG and BR. The in vitro degradation assay demonstrated that incorporation of FG and BR into PHBV matrix increased its hydrolytic degradation. Cell‐membrane interactions were studied by culturing human fetal osteoblast cells on the fabricated membrane. According to the obtained results, osteoblasts seeded on PHBV/FG/BR displayed higher cell adhesion and proliferation compared to PHBV and PHBV/FG membrane. Furthermore, alkaline phosphatase activity and alizarin red‐s staining indicated enhanced osteogenic differentiation and mineralization of cells on PHBV/FG/BR membranes. The results demonstrated that developed electrospun PHBV/FG/BR nanofibrous mats have desired potential as a barrier membrane for guided bone tissue engineering. ? 2018 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 107A: 1154–1165, 2019.
机译:抽象的骨再生(GBR)已经建立为修复缺陷组织的有效方法,这是基于与阻隔膜的分离骨缺陷,以更快的组织重建。本研究的目的是在GBR中开发聚(羟基丁酸酯-CO-3-羟基羟基戊烯)(PHBBV)/纤维蛋白原(FG)/ BREDIGITE(BR)膜。通过溶胶 - 凝胶法合成Br纳米粒子,并使用透射电子显微镜和X射线衍射仪表征。使用静电纺丝制造PHBV,PHBV / FG和PHBV / FG / BR膜,并通过扫描电子显微镜,傅里叶变换红外光谱,接触角,孔径,热重分析和拉伸强度。通过平均直径测距240-410Ω,成功地获得了Electrom ow PHBV,PHBV / FG和PHBV / FG / Br纳米纤维。结果表明,PHBV膜的杨氏模量和最终强度降低了与FG共混并通过进一步掺入Br纳米颗粒而增加,另外,PHBV膜的亲水性改善了FG和Br。体外降解测定证明,将FG和BR掺入PHBV基质增加其水解降解。通过在制造的膜上培养人胎成骨细胞来研究细胞膜相互作用。根据所得的结果,与PHBV和PHBV / FG膜相比,在PHBV / FG / FG / BR上播种的骨细胞显示出更高的细胞粘附和增殖。此外,碱性磷酸酶活性和茜素红-S染色表明PHBV / FG / BR膜上的细胞的增强成骨分化和矿化。结果证明,开发的Electrom纺器PHBV / FG / Br纳米纤维垫具有作为引导骨组织工程的阻隔膜的所需潜力。还2018 Wiley期刊,Inc .J生物保解员A部分:107A:1154-1165,2019。

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