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用于组织工程和再生医学中3D生物打印的水凝胶:当前进展与挑战

Hydrogels for 3D bioprinting in tissue engineering and regenerative medicine: Current progress and challenges.

作者信息

Fang Wenzhuo, Yang Ming, Wang Liyang, Li Wenyao, Liu Meng, Jin Yangwang, Wang Yuhui, Yang Ranxing, Wang Ying, Zhang Kaile, Fu Qiang

机构信息

The Department of Urology, Affiliated Sixth People's Hospital, Shanghai JiaoTong University, Shanghai 200233, China.

School of Materials Science and Engineering, Shanghai University of Engineering Science, Shanghai 201620, China.

出版信息

Int J Bioprint. 2023 May 23;9(5):759. doi: 10.18063/ijb.759. eCollection 2023.

Abstract

Three-dimensional (3D) bioprinting is a promising and innovative biomanufacturing technology, which can achieve precise position controlling of cells and extracellular matrix components, and further create complex and functional multi-cellular tissues or organs in a 3D environment. Bioink in the form of the cell-loaded hydrogel is most commonly used in bioprinting, and it is vital to the process of bioprinting. The bionic scaffold should possess suitable mechanical strength, biocompatibility, cell proliferation, survival, and other biological characteristics. The disadvantages of natural polymer hydrogel materials include poor mechanical properties as well as low printing performance and shape fidelity. Over the past years, a series of synthetic, modified, and nanocomposite hydrogels have been developed, which can interact through physical interactions, chemical covalent bond crosslinking, and bioconjugation reactions to change the characteristics to satisfy the requirements. In this review, a comprehensive summary is provided on recent research regarding the unique properties of hydrogel bioinks for bioprinting, with optimized methods and technologies highlighted, which have both high-value research significance and potential clinical applications. A critical analysis of the strengths and weaknesses of each hydrogel-based biomaterial ink is presented at the beginning or end of each section, alongside the latest improvement strategies employed by current researchers to address their respective shortcomings. Furthermore, we propose potential repair sites for each hydrogel-based ink based on their distinctive repair features, while reflecting on current research limitations. Finally, we synthesize and analyze expert opinions on the future of these hydrogel-based bioinks in the broader context of tissue engineering and regenerative medicine, offering valuable insights for future investigations.

摘要

三维(3D)生物打印是一项前景广阔且具创新性的生物制造技术,它能够实现细胞和细胞外基质成分的精确位置控制,并进而在三维环境中创建复杂且具功能的多细胞组织或器官。载有细胞的水凝胶形式的生物墨水在生物打印中最为常用,并且对生物打印过程至关重要。仿生支架应具备合适的机械强度、生物相容性、细胞增殖能力、生存能力及其他生物学特性。天然聚合物水凝胶材料的缺点包括机械性能差以及打印性能和形状保真度低。在过去几年中,已开发出一系列合成、改性和纳米复合水凝胶,它们可通过物理相互作用、化学共价键交联和生物共轭反应相互作用以改变特性来满足要求。在本综述中,我们对用于生物打印的水凝胶生物墨水的独特性能的近期研究进行了全面总结,突出了优化方法和技术,这些研究具有高价值的研究意义和潜在的临床应用价值。在每一部分的开头或结尾对每种基于水凝胶的生物材料墨水的优缺点进行了批判性分析,同时介绍了当前研究人员为解决各自缺点而采用的最新改进策略。此外,我们根据每种基于水凝胶的墨水独特的修复特性提出了潜在的修复部位,同时反思了当前的研究局限性。最后,我们综合并分析了在组织工程和再生医学更广泛背景下关于这些基于水凝胶的生物墨水未来发展的专家意见,为未来的研究提供了有价值的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/da79/10339415/1a78a3a9a2be/IJB-9-5-759-g001.jpg

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