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基于分配的机械功能混合支架的生物打印,具有用于组织工程应用的管状通道 - 简要回顾。

Dispensing-based bioprinting of mechanically-functional hybrid scaffolds with vessel-like channels for tissue engineering applications - A brief review.

机构信息

Division of Biomedical Engineering, College of Engineering, University of Saskatchewan, Saskatoon, SK, Canada.

Division of Biomedical Engineering, College of Engineering, University of Saskatchewan, Saskatoon, SK, Canada; Department of Surgery, College of Medicine, University of Saskatchewan, Saskatoon, SK, Canada; Department of Mechanical Engineering, College of Engineering, University of Saskatchewan, Saskatoon, SK, Canada.

出版信息

J Mech Behav Biomed Mater. 2018 Feb;78:298-314. doi: 10.1016/j.jmbbm.2017.11.037. Epub 2017 Nov 26.

Abstract

Over the past decades, significant progress has been achieved in the field of tissue engineering (TE) to restore/repair damaged tissues or organs and, in this regard, scaffolds made from biomaterials have played a critical role. Notably, recent advances in biomaterials and three-dimensional (3D) printing have enabled the manipulation of two or more biomaterials of distinct, yet complementary, mechanical and/or biological properties to form so-called hybrid scaffolds mimicking native tissues. Among various biomaterials, hydrogels synthesized to incorporate living cells and/or biological molecules have dominated due to their hydrated tissue-like environment. Moreover, dispensing-based bioprinting has evolved to the point that it can now be used to create hybrid scaffolds with complex structures. However, the complexities associated with multi-material bioprinting and synthesis of hydrogels used for hybrid scaffolds pose many challenges for their fabrication. This paper presents a brief review of dispensing-based bioprinting of hybrid scaffolds for TE applications. The focus is on the design and fabrication of hybrid scaffolds, including imaging techniques, potential biomaterials, physical architecture, mechanical properties, cell viability, and the importance of vessel-like channels. The key issues and challenges for dispensing-based bioprinting of hybrid scaffolds are also identified and discussed along with recommendations for future research directions. Addressing these issues will significantly enhance the design and fabrication of hybrid scaffolds to and pave the way for translating them into clinical applications.

摘要

在过去的几十年中,组织工程(TE)领域取得了重大进展,能够恢复/修复受损的组织或器官,在这方面,生物材料制成的支架发挥了关键作用。值得注意的是,生物材料和三维(3D)打印技术的最新进展使得可以操纵两种或更多具有不同但互补的机械和/或生物学特性的生物材料,以形成模仿天然组织的所谓混合支架。在各种生物材料中,由于其水合组织样环境,合成以包含活细胞和/或生物分子的水凝胶占据主导地位。此外,分配式生物打印技术已经发展到可以现在用于创建具有复杂结构的混合支架。然而,用于混合支架的多材料生物打印和水凝胶合成的复杂性给它们的制造带来了许多挑战。本文简要回顾了用于 TE 应用的基于分配的混合支架生物打印。重点介绍了混合支架的设计和制造,包括成像技术、潜在生物材料、物理结构、机械性能、细胞活力以及血管样通道的重要性。还确定并讨论了基于分配的混合支架生物打印的关键问题和挑战,并提出了未来研究方向的建议。解决这些问题将显著增强混合支架的设计和制造,并为将其转化为临床应用铺平道路。

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