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Development of Printable Natural Cartilage Matrix Bioink for 3D Printing of Irregular Tissue Shape

机译:用于组织不规则形状的3D打印的可打印天然软骨基质生物墨水的开发

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摘要

The extracellular matrix (ECM) is known to provide instructive cues for cell attachment, proliferation, differentiation, and ultimately tissue regeneration. The use of decellularized ECM scaffolds for regenerative-medicine approaches is rapidly expanding. In this study, cartilage acellular matrix (CAM)-based bioink was developed to fabricate functional biomolecule-containing scaffolds. The CAM provides an adequate cartilage tissue–favorable environment for chondrogenic differentiation of cells. Conventional manufacturing techniques such as salt leaching, solvent casting, gas forming, and freeze drying when applied to CAM-based scaffolds cannot precisely control the scaffold geometry for mimicking tissue shape. As an alternative to the scaffold fabrication methods, 3D printing was recently introduced in the field of tissue engineering. 3D printing may better control the internal microstructure and external appearance because of the computer-assisted construction process. Hence, applications of the 3D printing technology to tissue engineering are rapidly proliferating. Therefore, printable ECM-based bioink should be developed for 3D structure stratification. The aim of this study was to develop printable natural CAM bioink for 3D printing of a tissue of irregular shape. Silk fibroin was chosen to support the printing of the CAM powder because it can be physically cross-linked and its viscosity can be easily controlled. The newly developed CAM-silk bioink was evaluated regarding printability, cell viability, and tissue differentiation. Moreover, we successfully demonstrated 3D printing of a cartilage-shaped scaffold using only this CAM-silk bioink. Future studies should assess the efficacy of in vivo implantation of 3D-printed cartilage-shaped scaffolds.
机译:已知细胞外基质(ECM)可为细胞附着,增殖,分化以及最终组织再生提供指导。将脱细胞的ECM支架用于再生医学方法的应用正在迅速扩大。在这项研究中,基于软骨脱细胞基质(CAM)的生物墨水被开发来制造功能性含生物分子的支架。 CAM为软骨形成细胞的分化提供了充足的软骨组织有利环境。当应用于基于CAM的支架时,诸如盐浸,溶剂浇铸,气体形成和冷冻干燥之类的常规制造技术无法精确地控制支架的几何形状以模仿组织形状。作为支架制造方法的替代方法,最近在组织工程领域引入了3D打印。由于计算机辅助的构建过程,3D打印可以更好地控制内部微结构和外观。因此,3D打印技术在组织工程中的应用正在迅速增加。因此,应开发可打印的基于ECM的生物墨水用于3D结构分层。这项研究的目的是开发可打印的天然CAM生物墨水,用于3D打印不规则形状的组织。选择丝素蛋白以支持CAM粉的印刷,因为它可以物理交联并且可以轻松控制其粘度。对新开发的CAM-silk生物墨水进行了可印刷性,细胞生存力和组织分化方面的评估。此外,我们仅使用这种CAM丝生物墨水就成功地演示了软骨形支架的3D打印。未来的研究应评估3D打印的软骨形支架在体内的植入效果。

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