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用于组织工程的 3D 生物打印丝素水凝胶。

3D bioprinted silk fibroin hydrogels for tissue engineering.

机构信息

Nano-Bio Regenerative Medical Institute, College of Medicine, Hallym University, Chuncheon, Republic of Korea.

Departments of Otorhinolaryngology-Head and Neck Surgery, Chuncheon Sacred Heart Hospital, School of Medicine, Hallym University, Chuncheon, Republic of Korea.

出版信息

Nat Protoc. 2021 Dec;16(12):5484-5532. doi: 10.1038/s41596-021-00622-1. Epub 2021 Oct 29.

Abstract

The development of biocompatible and precisely printable bioink addresses the growing demand for three-dimensional (3D) bioprinting applications in the field of tissue engineering. We developed a methacrylated photocurable silk fibroin (SF) bioink for digital light processing 3D bioprinting to generate structures with high mechanical stability and biocompatibility for tissue engineering applications. Procedure 1 describes the synthesis of photocurable methacrylated SF bioink, which takes 2 weeks to complete. Digital light processing is used to fabricate 3D hydrogels using the bioink (1.5 h), which are characterized in terms of methacrylation, printability, mechanical and rheological properties, and biocompatibility. The physicochemical properties of the bioink can be modulated by varying photopolymerization conditions such as the degree of methacrylation, light intensity, and concentration of the photoinitiator and bioink. The versatile bioink can be used broadly in a range of applications, including nerve tissue engineering through co-polymerization of the bioink with graphene oxide, and for wound healing as a sealant. Procedure 2 outlines how to apply 3D-printed SF hydrogels embedded with chondrocytes and turbinate-derived mesenchymal stem cells in one specific in vivo application, trachea tissue engineering, which takes 2-9 weeks.

摘要

开发具有生物相容性和精确可打印性的生物墨水,满足了组织工程领域对三维(3D)生物打印应用日益增长的需求。我们开发了一种用于数字光处理 3D 生物打印的甲基丙烯酰化光固化丝素(SF)生物墨水,以生成具有高机械稳定性和生物相容性的结构,用于组织工程应用。步骤 1 描述了光固化甲基丙烯酰化 SF 生物墨水的合成,需要 2 周时间完成。数字光处理用于制造 3D 水凝胶(1.5 小时),并对其进行甲基丙烯酰化、可打印性、机械和流变性能以及生物相容性进行了表征。通过改变光聚合条件,如甲基丙烯酰化程度、光强度以及光引发剂和生物墨水的浓度,可以调节生物墨水的理化性质。这种多功能生物墨水可以广泛应用于各种应用,包括通过与氧化石墨烯共聚用于神经组织工程,以及作为密封剂用于伤口愈合。步骤 2 概述了如何在一个特定的体内应用(气管组织工程)中应用 3D 打印的 SF 水凝胶,该应用需要 2-9 周时间。该应用中嵌入了软骨细胞和鼻甲衍生间充质干细胞。

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