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首页> 外文期刊>International endodontic journal >VEGF/BMP‐2 loaded three‐dimensional model for enhanced angiogenic and odontogenic potential of dental pulp stem cells
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VEGF/BMP‐2 loaded three‐dimensional model for enhanced angiogenic and odontogenic potential of dental pulp stem cells

机译:VEGF / BMP-2加载的三维模型,用于增强牙牙牙髓干细胞的血管生成和幼儿发生潜力

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Abstract Aim To investigate the proliferation and differentiation potential of human dental pulp stem cells (DPSCs) in a three‐dimensional culture model (TDM) by incorporation of VEGF and BMP‐2. Methodology TDM was established using fibrin gel (fg) as a soft tissue matrix and demineralized dentine disc (dd) as a hard tissue matrix. DPSCs and vascular endothelial growth factor (VEGF) were encapsulated in fibrin gel (fg‐VEGF) and then inserted into bone morphogenetic protein (BMP‐2)‐coated demineralized dentine discs (dd‐BMP‐2). DPSCs were incubated for 28?days in various fg/dd combinations in the absence or presence of VEGF and BMP‐2. Proliferation and morphology of DPSCs in fibrin gel were analysed using MTT and Live&Dead assays. Release profiles of VEGF and BMP‐2 from fibrin gel and dentine discs were quantified using ELISA, and the expressions of angiogenic and odontogenic differentiation markers were determined with RT‐qPCR analysis. Data were analysed statistically using Wilcoxon signed rank tests, Kruskal–Wallis tests with Mann–Whitney U tests and Bonferroni adjustment. The level of significance was set at P ??0.05. Results DPSCs were able to proliferate and showed interconnected cellular elongations in fibrin gel depending on fibrinogen concentration whilst monolayer control group showed typical fibroblast‐like cell morphology. Encapsulating of VEGF in fibrin gel and BMP‐2 in gelatin that was used to coat dentine discs allowed the controlled releases of growth factors, which induced angiogenic and odontogenic gene expressions by DPSCs. Higher expressions of PECAM as an angiogenic factor, and BSP, DMP‐1, OCN and CBFA as odontogenic factors, were observed in TDM as compared to the other fg/dd combinations and the monolayer control group ( P ??0.05). Conclusions TDM consisting of fibrin gel and dentine matrix allowed cell–cell interactions. TDM was highly effective in delivering both VEGF and BMP‐2 that enhanced the angiogenic and odontogenic potential of DPSCs.
机译:摘要目的通过掺入VEGF和BMP-2研究人牙髓干细胞(DPSC)在三维培养模型(TDM)中的增殖和分化潜力。使用纤维蛋白凝胶(FG)作为软组织基质和脱矿质牙本质盘(DD)来建立方法TDM作为硬组织基质。将DPSC和血管内皮生长因子(VEGF)包封在纤维蛋白凝胶(FG-VEGF)中,然后插入骨形态发生蛋白(BMP-2)涂覆的脱液牙本质盘(DD-BMP-2)中。在VEGF和BMP-2的情况下,在不存在或存在下,在各种FG / DD组合中孵育28℃的DPSC。使用MTT和Live&Live&Live&Live&Live&Live&Live&Live&Live&Live&Live&Live&Live&DPSC的增殖和形态。死亡测定。使用ELISA定量来自纤维蛋白凝胶和牙本质盘的VEGF和BMP-2的释放曲线,并利用RT-QPCR分析测定血管生成和幼儿分化标志物的表达。使用Wilcoxon签名的等级测试进行统计分析数据,Kruskal-Wallis测试与Mann-Whitney U Tests和Bonferroni调整。在P中设定了意义水平?&?0.05。结果DPSCs能够通过纤维蛋白原浓度而促进纤维蛋白凝胶中的相互连接的细胞伸长率,而单层对照组显示典型的成纤维细胞样细胞形态。使用用于涂覆牙本质盘的明胶中的纤维蛋白凝胶和BMP-2中的VEGF允许受控释放的生长因子,其诱导DPSC诱导血管生成和幼儿基因表达。与其他FG / DD组合和单层对照组相比,在TDM中观察到PECAM作为血管生成因子的较高表达,以及BSP,DMP-1,OCN和CBFA,以TDM在TDM中观察到(P?&β0.05)。结论TDM由纤维蛋白凝胶和牙本质基质组成的TDM允许细胞细胞相互作用。 TDM在递送VEGF和BMP-2方面具有高效,可增强DPSCS的血管生成和幼儿发生潜力。

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