Ostrovidov Serge, Ramalingam Murugan, Bae Hojae, Orive Gorka, Fujie Toshinori, Shi Xuetao, Kaji Hirokazu
Department of Biomechanics, Institute of Biomaterials and Bioengineering (IBB), Tokyo Medical and Dental University (TMDU), Tokyo, Japan.
Institute of Tissue Regeneration Engineering, Dankook University, Cheonan, Republic of Korea.
Front Bioeng Biotechnol. 2023 Apr 14;11:991821. doi: 10.3389/fbioe.2023.991821. eCollection 2023.
Three dimensional (3D) bioprinting is a powerful tool, that was recently applied to tissue engineering. This technique allows the precise deposition of cells encapsulated in supportive bioinks to fabricate complex scaffolds, which are used to repair targeted tissues. Here, we review the recent developments in the application of 3D bioprinting to dental tissue engineering. These tissues, including teeth, periodontal ligament, alveolar bones, and dental pulp, present cell types and mechanical properties with great heterogeneity, which is challenging to reproduce . After highlighting the different bioprinting methods used in regenerative dentistry, we reviewed the great variety of bioink formulations and their effects on cells, which have been established to support the development of these tissues. We discussed the different advances achieved in the fabrication of each dental tissue to provide an overview of the current state of the methods. We conclude with the remaining challenges and future needs.
三维(3D)生物打印是一种强大的工具,最近已应用于组织工程。该技术允许将封装在支持性生物墨水内的细胞精确沉积,以制造用于修复目标组织的复杂支架。在此,我们综述了3D生物打印在牙科组织工程应用中的最新进展。这些组织,包括牙齿、牙周韧带、牙槽骨和牙髓,具有高度异质性的细胞类型和力学性能,这使得复制它们具有挑战性。在强调了再生牙科中使用的不同生物打印方法后,我们综述了种类繁多的生物墨水配方及其对细胞的影响,这些配方已被确立用于支持这些组织的发育。我们讨论了在每种牙科组织制造中取得的不同进展,以概述这些方法的当前状态。我们最后阐述了 remaining challenges 和未来需求。 (注:原文中“remaining challenges”表述有误,正确的可能是“remaining challenges”,可译为“剩余的挑战” )