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生物打印中光交联的基本原理与应用

Fundamentals and Applications of Photo-Cross-Linking in Bioprinting.

作者信息

Lim Khoon S, Galarraga Jonathan H, Cui Xiaolin, Lindberg Gabriella C J, Burdick Jason A, Woodfield Tim B F

机构信息

Christchurch Regenerative Medicine and Tissue Engineering (CReaTE) Group, Department of Orthopaedic Surgery and Musculoskeletal Medicine, Centre for Bioengineering & Nanomedicine, University of Otago, Christchurch 8011, New Zealand.

Medical Technologies Centre of Research Excellence (MedTech CoRE), Auckland 1010, New Zealand.

出版信息

Chem Rev. 2020 Oct 14;120(19):10662-10694. doi: 10.1021/acs.chemrev.9b00812. Epub 2020 Apr 17.

Abstract

This review provides a detailed overview of the rapidly advancing field of biofabrication, particularly with regards to the use of photo-cross-linking (i.e., light-based) techniques. The major emphasis of this review is on the fundamentals of photo-cross-linking and key criteria identified for the successful design and implementation of photo-cross-linked bioinks and bioresins in extrusion-based and lithography-based bioprinting. The general mechanisms associated with photo-cross-linking (e.g., free-radical chain polymerization, thiol-ene, photomediated redox) of natural and synthetic materials are described to inform bioink and bioresin design, which includes the selection of polymers, functional group modifications, photoinitiators, and light sources that enable facile and cytocompatible photo-cross-linking. Depending on material selection and the bioprinting technique of interest, we describe the specific bioink or bioresin properties and criteria that must be achieved to ensure optimal printability and utility. Finally, examples of current state-of-the-art applications of light-based bioprinting for tissue models, tissue engineering, and regenerative medicine are provided to further motivate future opportunities within the bioprinting landscape that are facilitated with light.

摘要

本综述详细概述了快速发展的生物制造领域,特别是关于光交联(即基于光的)技术的应用。本综述的主要重点是光交联的基本原理以及为在基于挤出和基于光刻的生物打印中成功设计和应用光交联生物墨水和生物树脂所确定的关键标准。描述了天然和合成材料与光交联相关的一般机制(如自由基链式聚合、硫醇-烯、光介导的氧化还原),以为生物墨水和生物树脂的设计提供参考,这包括聚合物的选择、官能团修饰、光引发剂以及能够实现简便且具有细胞相容性的光交联的光源。根据材料选择和感兴趣的生物打印技术,我们描述了为确保最佳可打印性和实用性而必须实现的特定生物墨水或生物树脂的特性和标准。最后,提供了基于光的生物打印在组织模型、组织工程和再生医学方面的当前先进应用实例,以进一步激发光辅助生物打印领域未来的机遇。

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