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An innovative cell-laden α-TCP/collagen scaffold fabricated using a two-step printing process for potential application in regenerating hard tissues

机译:使用两步印刷工艺制造的创新型载有细胞的α-TCP/胶原蛋白支架可潜在地用于再生硬组织

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摘要

Cell-laden scaffolds are widely investigated in tissue engineering because they can provide homogenous cell distribution after long culture periods, and deposit multiple types of cells into a designed region. However, producing a bioceramic 3D cell-laden scaffold is difficult because of the low processability of cell-loaded bioceramics. Therefore, designing a 3D bioceramic cell-laden scaffold is important for ceramic-based tissue regeneration. Here, we propose a new strategy to fabricate an alpha-tricalcium-phosphate (α-TCP)/collagen cell-laden scaffold, using preosteoblasts (MC3T3-E1), in which the volume fraction of the ceramic exceeded 70% and was fabricated using a two-step printing process. To fabricate a multi-layered cell-laden scaffold, we manipulated processing parameters, such as the diameter of the printing nozzle, pneumatic pressure, and volume fraction of α-TCP, to attain a stable processing region. A cell-laden pure collagen scaffold and an α-TCP/collagen scaffold loaded with cells via a simple dipping method were used as controls. Their pore geometry was similar to that of the experimental scaffold. Physical properties and bioactivities showed that the designed scaffold demonstrated significantly higher cellular activities, including metabolic activity and mineralization, compared with those of the controls. Our results indicate that the proposed cell-laden ceramic scaffold can potentially be used for bone regeneration.
机译:载有细胞的支架在组织工程中得到了广泛的研究,因为它们可以在长时间的培养后提供均匀的细胞分布,并将多种类型的细胞沉积到设计区域中。然而,由于载有细胞的生物陶瓷的可加工性低,因此难以生产载有生物陶瓷的3D细胞的支架。因此,设计3D的生物陶瓷细胞支架对于基于陶瓷的组织再生非常重要。在这里,我们提出了一种使用前成骨细胞(MC3T3-E1)来制备α-磷酸三钙(α-TCP)/胶原细胞的支架的新策略,其中陶瓷的体积分数超过70%,并且使用两步打印过程。为了制造多层带细胞的支架,我们操纵了加工参数,例如打印喷嘴的直径,气压和α-TCP的体积分数,以获得稳定的加工区域。使用通过简单的浸渍方法装载细胞的载有细胞的纯胶原支架和α-TCP/胶原支架作为对照。它们的孔几何形状与实验支架的孔几何形状相似。物理性质和生物活性表明,与对照相比,设计的支架表现出明显更高的细胞活性,包括代谢活性和矿化作用。我们的结果表明,提出的载有细胞的陶瓷支架可潜在地用于骨再生。

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