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首页> 外文期刊>Biofabrication >A dentin-derived hydrogel bioink for 3D bioprinting of cell laden scaffolds for regenerative dentistry
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A dentin-derived hydrogel bioink for 3D bioprinting of cell laden scaffolds for regenerative dentistry

机译:用于封装牙科的三维生物制版的牙本质衍生的水凝胶生物凝胶,用于再生牙科

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摘要

Recent studies in tissue engineering have adopted extracellular matrix (ECM) derived scaffolds as natural and cytocompatible microenvironments for tissue regeneration. The dentin matrix, specifically, has been shown to be associated with a host of soluble and insoluble signaling molecules that can promote odontogenesis. Here, we have developed a novel bioink, blending printable alginate (3% w/v) hydrogels with the soluble and insoluble fractions of the dentin matrix. We have optimized the printing parameters and the concentrations of the individual components of the bioink for print accuracy, cell viability and odontogenic potential. We find that, while viscosity, and hence printability of the bioinks, was greater in the formulations containing higher concentrations of alginate, a higher proportion of insoluble dentin matrix proteins significantly improved cell viability; where a 1: 1 ratio of alginate and dentin (1: 1 Alg-Dent) was most suitable. We further demonstrate high retention of the soluble dentin molecules within the 1: 1 Alg-Dent hydrogel blends, evidencing renewed interactions between these molecules and the dentin matrix post crosslinking. Moreover, at concentrations of 100 mu g ml(-1), these soluble dentin molecules significantly enhanced odontogenic differentiation of stem cells from the apical papilla encapsulated in bioprinted hydrogels. In summary, the proposed novel bioinks have demonstrable cytocompatibility and natural odontogenic capacity, which can be a used to reproducibly fabricate scaffolds with complex three-dimensional microarchitectures for regenerative dentistry in the future.
机译:组织工程中最近的研究采用细胞外基质(ECM)衍生的支架,作为用于组织再生的天然和细胞势型微环境。具体地,牙本质基质已被证明与可以促进odontofis的宿主和不溶性信号传导分子相关联。在这里,我们开发了一种新的生物链,将可印刷的藻酸盐(3%w / v)水凝胶与牙本质基质的可溶性和不溶性级分混合。我们已经优化了印刷参数和生物链的各个组分的浓度,以进行印刷精度,细胞活力和渡外阴潜力。我们发现,在含有较高浓度的藻酸盐的制剂中,粘度和生物链的可印刷性更大,较高比例的不溶性牙本质基质蛋白显着提高了细胞活力;其中1:1藻酸盐和牙本质(1:1 Alg-Dent)的比例最合适。我们进一步证明了在1:1的Alg-Dent水凝胶混合物中的可溶性牙本质分子的高保留,证明了这些分子与牙本质基质之间的再生相互作用。此外,在100μgmm(-1)的浓度下,这些可溶性牙本质分子显着增强了在生物布林林水凝胶中包封的顶端乳头的干细胞的常肠病分化。总之,所提出的新型生物链具有明显的细胞膜相容性和天然牙科能力,可以是用于可重复制造与复杂的三维微体系结构的支架,以便在未来再生牙科进行再生牙科。

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