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Bioprinting of three-dimensional dentin–pulp complex with local differentiation of human dental pulp stem cells

机译:人牙髓干细胞局部分化的三维牙本质浆复合体的生物打印

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摘要

Numerous approaches have been introduced to regenerate artificial dental tissues. However, conventional approaches are limited when producing a construct with three-dimensional patient-specific shapes and compositions of heterogeneous dental tissue. In this research, bioprinting technology was applied to produce a three-dimensional dentin–pulp complex with patient-specific shapes by inducing localized differentiation of human dental pulp stem cells within a single structure. A fibrin-based bio-ink was designed for bioprinting with the human dental pulp stem cells. The effects of fibrinogen concentration within the bio-ink were investigated in terms of printability, human dental pulp stem cell compatibility, and differentiation. The results show that micro-patterns with human dental pulp stem cells could be achieved with more than 88% viability. Its odontogenic differentiation was also regulated according to the fibrinogen concentration. Based on these results, a dentin–pulp complex having patient-specific shape was produced by co-printing the human dental pulp stem cell–laden bio-inks with polycaprolactone, which is a bio-thermoplastic used for producing the overall shape. After culturing with differentiation medium for 15 days, localized differentiation of human dental pulp stem cells in the outer region of the three-dimensional cellular construct was successfully achieved with localized mineralization. This result demonstrates the possibility to produce patient-specific composite tissues for tooth tissue engineering using three-dimensional bioprinting technology.
机译:已经引入了许多方法来再生人造牙齿组织。然而,当产生具有三维患者特定形状和异质牙齿组织组成的构建体时,常规方法受到限制。在这项研究中,生物印刷技术被用于通过诱导人类牙髓干细胞在单个结构中的局部分化来生产具有患者特定形状的三维牙本质-纸浆复合体。一种基于纤维蛋白的生物墨水被设计用于人类牙髓干细胞的生物印刷。从可印刷性,人类牙髓干细胞相容性和分化方面研究了生物墨水中纤维蛋白原浓度的影响。结果表明,具有人类牙髓干细胞的微模式可以实现88%以上的生存力。其牙源性分化也根据纤维蛋白原浓度来调节。基于这些结果,通过共同印刷载有人类牙髓干细胞的生物墨水与聚己内酯(一种用于产生整体形状的生物热塑性塑料)共同印刷,可以生产出具有患者特定形状的牙本质-纸浆复合物。用分化培养基培养15天后,通过局部矿化作用成功地实现了人牙髓干细胞在三维细胞结构外部区域的局部分化。该结果证明了使用三维生物打印技术生产用于牙齿组织工程的患者特定复合组织的可能性。

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