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首页> 外文期刊>Journal of biomaterials science >Sustained delivery of BMP-2 enhanced osteoblastic differentiation of BMSCs based on surface hydroxyapatite nanostructure in chitosan-HAp scaffold
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Sustained delivery of BMP-2 enhanced osteoblastic differentiation of BMSCs based on surface hydroxyapatite nanostructure in chitosan-HAp scaffold

机译:基于表面羟基磷灰石纳米结构的壳聚糖-HAp支架,BMP-2的持续递送增强了BMSCs的成骨细胞分化。

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The surface characteristics of biomaterials, especially regarding the sustained delivery of bone morphogenetic protein-2 (BMP-2), can possibly provide a novel and effective drug delivery system that can enhance osteogenesis. In this study, we evaluated the BMP-2 adsorption and release ability of the surface biomimetic hydroxyapatite (HAp) nanostructure on a new HAp-coated genipin-chitosan conjugation scaffold (HGCCS), and the resulting osteogenic differentiation of rat bone marrow-derived mesenchymal stem cells (BMSCs) in vitro. HGCCS exhibited a loading efficiency of 65% (1.30 μg), which is significantly higher than 28% (0.56 μg, p < 0.01) for the genipin cross-linked chitosan framework, as quantified by an enzyme-linked immunosorbent assay. More importantly, we found that the release of BMP-2 from HGGCS sustained for at least 14 days in simulated body fluid in vitro, which is much better than the burst release within 3 days for CGF. Moreover, the BMP-2 release from HGCCS induced an increase in alkaline phosphatase activity as an indicator of osteogenic differentiation of seeded BMSCs for 14 days in vitro. HGCCS also stimulated a high mRNA expression of osteogenic differentiation makers, runt-related transcription factor 2 for 14 days, osteopontin for 3 days, and osteocalcin for 14 days. The results of this study suggest that the surface biomimetic HAp nanostructure of HGCCS used as a delivery system for BMP-2 is capable of promoting osteogenic differentiation in vitro. These findings demonstrated that HAp nanostructure assembled on organic porous scaffold could work as both calcium source and absorption/release platform, which opened a new research avenue for cell growth factor release, and provided a promising strategy for design and preparation of bioactive scaffold for bone tissue engineering.
机译:生物材料的表面特性,特别是关于骨形态发生蛋白2(BMP-2)持续递送的表面特性,可能会提供一种新颖有效的药物递送系统,从而增强成骨作用。在这项研究中,我们评估了表面仿生羟基磷灰石(HAp)纳米结构在新型HAp涂覆的Genipin-壳聚糖偶联支架(HGCCS)上的BMP-2吸附和释放能力,以及由此导致的大鼠骨髓间充质的成骨分化干细胞(BMSC)体外。 HGCCS表现出65%(1.30μg)的上样效率,这明显高于通过酶联免疫吸附测定法定量的Genipin交联壳聚糖骨架的28%(0.56μg,p <0.01)。更重要的是,我们发现在体外模拟体液中HGGCS中BMP-2的释放至少持续了14天,这比CGF在3天内的爆发性释放要好得多。此外,从HGCCS释放的BMP-2诱导了碱性磷酸酶活性的增加,作为体外接种的BMSC成骨分化的指标。 HGCCS还刺激成骨分化形成子,与矮子相关的转录因子2持续​​14天,骨桥蛋白3天和骨钙素14天的高mRNA表达。这项研究的结果表明,用作BMP-2递送系统的HGCCS的表面仿生HAp纳米结构能够在体外促进成骨分化。这些发现表明,在有机多孔支架上组装的HAp纳米结构既可以作为钙源,又可以作为吸收/释放平台,为细胞生长因子的释放开辟了新的研究途径,为骨组织生物活性支架的设计和制备提供了有希望的策略。工程。

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