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The effect of neural cell integrated into 3D co-axial bioprinted BMMSC structures during osteogenesis

机译:神经电池集成到骨质发生过程中3D共轴上生物布局BMMSC结构中的影响

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摘要

A three-dimensional (3D) bioprinting is a new strategy for fabricating 3D cell-laden constructs that mimic the structural and functional characteristics of various tissues and provides a similar architecture and microenvironment of the native tissue. However, there are few reported studies on the neural function properties of bioengineered bone autografts. Thus, this study was aimed at investigating the effects of neural cell integration into 3D bioprinted bone constructs. The bioprinted hydrogel constructs could maintain long-term cell survival, support cell growth for human bone marrow-derived mesenchymal stem cells (BMMSCs), reduce cell surface biomarkers of stemness, and enhance orthopedic differentiation with higher expression of osteogenesis-related genes, including osteopontin (OPN) and bone morphogenetic protein-2. More importantly, the bioprinted constructs with neural cell integration indicated higher OPN gene and secretory alkaline phosphatase levels. These results suggested that the innervation in bioprinted bone constructs can accelerate the differentiation and maturation of bone development and provide patients with an option for accelerated bone function restoration.
机译:三维(3D)BioPlinting是制造3D细胞载花的新策略,其模仿各种组织的结构和功能特征,并提供了天然组织的类似结构和微环境。然而,据报道,关于生物工程骨自体移植物的神经功能性质的研究。因此,本研究旨在研究神经细胞整合到3D生物印刷骨构建体中的影响。生物印刷的水凝胶构建体可以保持长期细胞存活,支持人骨髓源性间充质干细胞(BMMSCs)的细胞生长,降低茎干的细胞表面生物标志物,并增强骨科分化,具有更高表达与骨开发相关基因的表达,包括截骨疏松术。 (OPN)和骨形态发生蛋白-2。更重要的是,具有神经细胞集成的生物印刷构建体表明了opn基因和分泌碱性磷酸酶水平更高。这些结果表明,生物印刷骨构建体中的支配可以加速骨发育的分化和成熟,并为患者提供加速骨功能修复的选择。

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