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Three-dimensional printing biotechnology for the regeneration of the tooth and tooth-supporting tissues

机译:三维印刷生物技术用于牙齿和牙齿支撑组织的再生

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摘要

The tooth and its supporting tissues are organized with complex three-dimensional (3D) architecture, including the dental pulp with a blood supply and nerve tissues, complex multilayer periodontium, and highly aligned periodontal ligament (PDL). Mimicking such 3D complexity and the multicellular interactions naturally existing in dental structures represents great challenges in dental regeneration. Attempts to construct the complex system of the tooth and tooth-supporting apparatus (i.e., the PDL, alveolar bone, and cementum) have made certain progress owing to 3D printing biotechnology. Recent advances have enabled the 3D printing of biocompatible materials, seed cells, and supporting components into complex 3D functional living tissue. Furthermore, 3D bioprinting is driving major innovations in regenerative medicine, giving the field of regenerative dentistry a boost. The fabrication of scaffolds via 3D printing is already being performed extensively at the laboratory bench and in clinical trials; however, printing living cells and matrix materials together to produce tissue constructs by 3D bioprinting remains limited to the regeneration of dental pulp and the tooth germ. This review summarizes the application of scaffolds for cell seeding and biofabricated tissues via 3D printing and bioprinting, respectively, in the tooth and its supporting tissues. Additionally, the key advantages and prospects of 3D bioprinting in regenerative dentistry are highlighted, providing new ideas for dental regeneration.
机译:牙齿及其支撑组织由复杂的三维(3D)结构组织,包括具有血液供应和神经组织的牙髓,复杂的多层玫瑰间悬垂性和高度对齐的牙周韧带(PDL)。模仿这种3D复杂性和牙科结构中天然存在的多细胞相互作用代表了牙科再生中的巨大挑战。试图构建牙齿和牙齿支撑装置的复杂系统(即,PDL,肺泡骨和豆类)由于3D印刷生物技术而产生了一定的进展。最近的进展使生物相容性材料,种子细胞和支撑组件的3D打印能够成为复杂的3D功能活组织。此外,3D Bioplinting正在推动再生医学的主要创新,使再生牙科的领域成为升压。通过3D打印制造支架已经在实验室长凳和临床试验中进行了广泛的方式进行;然而,将活细胞和基质材料一起产生3D BioPlint的组织构建体仍然仅限于牙科纸浆的再生和牙胚。本综述总结了在牙齿及其支持组织中分别通过3D印刷和生物制裁组织对细胞播种和生物燃烧组织的应用。此外,突出了再生牙科3D生物制版的关键优势和前景,为牙科再生提供了新的思路。

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