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候选生物材料挤出式 3D 打印的“可打印性”:现状。

'Printability' of Candidate Biomaterials for Extrusion Based 3D Printing: State-of-the-Art.

机构信息

Reconstructive Surgery & Regenerative Medicine Group (ReconRegen), Institute of Life Sciences, Swansea University Medical School, Swansea, SA2 8PP, UK.

The Welsh Centre for Burns and Plastic Surgery, Morriston Hospital, Swansea, SA6 6NL, UK.

出版信息

Adv Healthc Mater. 2017 Aug;6(16). doi: 10.1002/adhm.201700264. Epub 2017 May 30.

Abstract

Regenerative medicine has been highlighted as one of the UK's 8 'Great Technologies' with the potential to revolutionize patient care in the 21st Century. Over the last decade, the concept of '3D bioprinting' has emerged, which allows the precise deposition of cell laden bioinks with the aim of engineering complex, functional tissues. For 3D printing to be used clinically, there is the need to produce advanced functional biomaterials, a new generation of bioinks with suitable cell culture and high shape/print fidelity, to match or exceed the physical, chemical and biological properties of human tissue. With the rapid increase in knowledge associated with biomaterials, cell-scaffold interactions and the ability to biofunctionalize/decorate bioinks with cell recognition sequences, it is important to keep in mind the 'printability' of these novel materials. In this illustrated review, we define and refine the concept of 'printability' and review seminal and contemporary studies to highlight the current 'state of play' in the field with a focus on bioink composition and concentration, manipulation of nozzle parameters and rheological properties.

摘要

再生医学被视为英国 8 大“伟大技术”之一,有可能彻底改变 21 世纪的患者护理。在过去的十年中,“3D 生物打印”的概念已经出现,它允许精确地沉积含有细胞的生物墨水,以工程复杂的、功能性的组织。为了使 3D 打印能够在临床上使用,需要生产先进的功能性生物材料,即用具有合适细胞培养和高形状/打印保真度的新一代生物墨水来匹配或超过人体组织的物理、化学和生物学特性。随着与生物材料、细胞支架相互作用以及用细胞识别序列对生物墨水进行生物功能化/修饰的能力相关的知识的快速增加,重要的是要记住这些新型材料的“可打印性”。在这篇有图的综述中,我们定义并细化了“可打印性”的概念,并回顾了开创性和当代的研究,重点介绍了该领域目前的“现状”,关注生物墨水的组成和浓度、喷嘴参数的操纵和流变特性。

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