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首页> 外文期刊>Stem Cell Research & Therapy >EphrinB2 overexpression enhances osteogenic differentiation of dental pulp stem cells partially through ephrinB2-mediated reverse signaling
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EphrinB2 overexpression enhances osteogenic differentiation of dental pulp stem cells partially through ephrinB2-mediated reverse signaling

机译:EphrinB2过表达通过EphrinB2介导的反向信号,提高了牙髓干细胞的成骨分化

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Alveolar bone loss is a frequent occurrence. Dental pulp stem cells (DPSCs) which have invasive accessibility and high osteogenic potential is a promising source for cell-based bone regeneration. EphrinB2 is involved in bone homeostasis and osteogenesis. The aim of this study was to investigate the effect and mechanism of ephrinB2 overexpression on osteogenic differentiation of DPSCs and bone defect repair. EphrinB2 expression was analyzed during osteogenic induction of human DPSCs (hDPSCs). Endogenous ephrinB2 expression in hDPSCs was then upregulated using EfnB2 lentiviral vectors. The effect of ephrinB2 overexpression on osteogenic differentiation capacity of hDPSCs was investigated in vitro, and activation of ephrinB2-EphB4 bidirectional signaling in ephrinB2-overexpressing hDPSCs was detected. In vivo, a canine alveolar bone defect model was established and canine DPSCs (cDPSCs) were cultured, characterized, EfnB2-tranfected, and combined with a PuraMatrix scaffold. Micro-CT analysis was performed to evaluate the therapeutic effect of ephrinB2-overexpressing cDPSCs on bone defect repair. EphrinB2 was upregulated after osteogenic induction of hDPSCs. EphrinB2 overexpression enhanced osteogenic differentiation capacity of hDPSCs in vitro. Moreover, p-ephrinB2 instead of p-EphB4 was upregulated by ephrinB2 overexpression, and activation of ephrinB2-mediated reverse signaling promoted osteogenic differentiation of hDPSCs. In a canine bone defect model, ephrinB2 overexpression in cDPSCs significantly improved trabecular bone volume per tissue volume (BV/TV) and trabecular thickness, as demonstrated by radiographic analysis. EphrinB2 overexpression enhanced osteogenic potential of DPSCs partially via upregulation of ephrinB2-mediated reverse signaling and effectively promoted alveolar bone defect repair.
机译:肺泡骨质损失频繁发生。具有侵入性可访问性和高骨质发生潜力的牙科纸浆干细胞(DPSC)是用于细胞基骨再生的有希望的源。 EphrinB2参与骨宿标和骨质发生。本研究的目的是探讨EphrinB2过表达对DPSCS和骨缺损修复的骨质发生分化的影响和机制。在人DPSCS(HDPSC)的骨质诱导期间分析EphrinB2表达。然后使用EFNB2慢病毒载体上调HDPSC中的内源性EphrinB2表达。在体外研究了EphrinB2过表达对HDPSCs的骨质发生分化能力的影响,检测到EphrinB2过表达HDPSC中EphrinB2-Ephb4双向信号传导的激活。在体内,建立了犬孔骨缺损模型,并培养了甘氨酸DPSC(CDPSCs),其特征,EFNB2-络合,并与Puramatrix支架组合。进行微型CT分析以评估Ephrinb2过表达CDPSC对骨缺损修复的治疗效果。 ephrinB2在骨质植物诱导后升级的HDPSC。 EphrinB2过表达在体外增强了HDPSC的骨质发生分化能力。此外,通过EphrinB2过表达来上调p-EphrinB2代替P-Ephb4,并且EphrinB2介导的反向信号传导的激活促进了HDPSC的骨质发生分化。在犬骨缺陷模型中,CDPSC中的ephrinB2过表达在CDPSC中显着改善了每组组织体积(BV / TV)和小梁厚度的小梁骨体积,如通过射线照相分析所证明的。 EphrinB2过表达通过ephrinb2介导的逆向信号的上调和有效促进了肺泡骨缺损修复,这些ephrinb2部分通过上调增强了DPSCs的溶血性潜力。

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