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Demineralized Dentin Matrix Particle-Based Bio-Ink for Patient-Specific Shaped 3D Dental Tissue Regeneration

机译:用于患者特异性形状的3D牙科组织再生的脱矿质牙本质基质颗粒基生物墨

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摘要

Demineralized dentin matrix (DDM)-based materials have been actively developed and are well-known for their excellent performance in dental tissue regeneration. However, DDM-based bio-ink suitable for fabrication of engineered dental tissues that are patient-specific in terms of shape and size, has not yet been developed. In this study, we developed a DDM particle-based bio-ink (DDMp bio-ink) with enhanced three-dimensional (3D) printability. The bio-ink was prepared by mixing DDM particles and a fibrinogen–gelatin mixture homogeneously. The effects of DDMp concentration on the 3D printability of the bio-ink and dental cell compatibility were investigated. As the DDMp concentration increased, the viscosity and shear thinning behavior of the bio-ink improved gradually, which led to the improvement of the ink’s 3D printability. The higher the DDMp content, the better were the printing resolution and stacking ability of the 3D printing. The printable minimum line width of 10% w/v DDMp bio-ink was approximately 252 μm, whereas the fibrinogen–gelatin mixture was approximately 363 μm. The ink’s cytocompatibility test with dental pulp stem cells (DPSCs) exhibited greater than 95% cell viability. In addition, as the DDMp concentration increased, odontogenic differentiation of DPSCs was significantly enhanced. Finally, we demonstrated that cellular constructs with 3D patient-specific shapes and clinically relevant sizes could be fabricated through co-printing of polycaprolactone and DPSC-laden DDMp bio-ink.
机译:已经积极开发出脱矿质的牙本质基质(DDM)的材料,并且以其在牙科组织再生中具有优异性能的众所周知。然而,尚未开发出适用于在形状和尺寸方面患者特异性的工程化牙科组织的基于DDM的生物墨水。在这项研究中,我们开发了一种具有增强的三维(3D)可印刷性的DDM粒子基生物墨水(DDMP生物墨水)。通过将DDM颗粒和纤维蛋白原 - 明胶混合物混合均匀地制备生物墨水。研究了DDMP浓度对生物墨水和牙科相容性的3D可印刷性的影响。随着DDMP浓度的增加,生物墨水的粘度和剪切稀疏行为逐渐提高,从而改善了油墨的3D可印刷性。 DDMP内容越高,3D打印的打印分辨率和堆叠能力越好。 10%w / v ddmp生物墨水的可印刷最小线宽约为252μm,而纤维蛋白原 - 明胶混合物约为363μm。墨水的墨水纸浆干细胞(DPSC)的细胞型相容性测试表现出大于95%的细胞活力。此外,随着DDMP浓度的增加,DPSCs的odontogencic分化明显增强。最后,我们证明,可以通过相互印刷聚己内酯和DPSC-LADEN DDMP生物墨水来制造具有3D患者特异性形状和临床相关尺寸的细胞构建体。

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