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The Effect of Covalently Immobilized FGF-2 on Biphasic Calcium Phosphate Bone Substitute on Enhanced Biological Compatibility and Activity

机译:共价固定的FGF-2对增强生物相容性和活性的双相磷酸钙骨质钙的影响

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摘要

The purpose of this research was to covalently graft fibroblast growth factor 2 (FGF-2) onto biphasic calcium phosphate (BCP) via a bifunctional cross-linker technique and to estimate the optimal dose of FGF-2 resulting in the best osteogenic differentiation of human mesenchymal stem cells (hMSCs). SEM observation revealed that the surface of the 100 ng FGF-2 coated BCP was completely covered with the nanoparticles expected to be from the silane coupling agent. XRD, FT-IR, and XPS analysis showed that silane treatment, bifunctional cross-linker coating, and FGF-2 covalent grafts were conducted successfully without deforming the crystalline structure of BCP. An MTT assay demonstrated that FGF-2 coated BCP had good biocompatibility, regardless of the concentration of FGF-2, after 24 or 48 h of incubation. An alkaline phosphatase (ALP) activity assay (14 days of incubation) and the ALP gene expression level of real-time PCR analysis (7 days of incubation) revealed that 50, 100, and 200 ng FGF-2 coated BCP induced the highest activities among all experimental groups and control group (P<0.05). Thus, low concentrations of FGF-2 facilitated excellent osteogenesis and were effective at enhancing osteogenic potential. Also, the bifunctional cross-linker technique is expected to be a more feasible way to induce osteogenic differentiation while minimizing the risk of FGF-2 overdose.
机译:该研究的目的是通过双官能交联剂技术将共纤维细胞生长因子2(FGF-2)共价接枝到双相磷酸钙(BCP)上,并估计最佳剂量的FGF-2导致人的最佳成骨分化间充质干细胞(HMSCs)。 SEM观察显示,100ng FGF-2涂覆的BCP的表面完全覆盖,所述纳米颗粒预期来自硅烷偶联剂。 XRD,FT-IR和XPS分析表明,成功地进行了硅烷处理,双官能交联剂涂层和FGF-2共价接枝,而不会使BCP的晶体结构变形。 MTT测定证明FGF-2涂覆的BCP具有良好的生物相容性,无论孵育24或48小时后,FGF-2的浓度如何。碱性磷酸酶(ALP)活性测定(孵育14天)和实时PCR分析的ALP基因表达水平(孵育7天)显示,50,100和200ng FGF-2涂覆的BCP诱导了最高的活性在所有实验组和对照组中(P <0.05)。因此,低浓度的FGF-2促进了优异的成骨,并且有效地增强了成骨潜力。此外,预期双功能交联剂技术是一种更可行的方式来诱导成骨分化,同时最小化FGF-2过量的风险。

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