Wake Forest Institute for Regenerative Medicine, Wake Forest University, Winston-Salem, NC, USA.
Methods Mol Biol. 2020;2140:65-92. doi: 10.1007/978-1-0716-0520-2_5.
The field of bioengineering has long pursued the goal of fabricating large-scale tissue constructs for use both in vitro and in vivo. Recent technological advances have indicated that bioprinting will be a key technique in manufacturing these specimens. This chapter aims to provide an overview of what has been achieved to date through the use of microextrusion bioprinters and what major challenges still impede progress. Microextrusion printer configurations will be addressed along with critical design characteristics including nozzle specifications and bioink modifications. Significant challenges within the field with regard to achieving long-term cell viability and vascularization, and current research that shows promise in mitigating these challenges in the near future are discussed. While microextrusion is a broad field with many applications, this chapter aims to provide an overview of the field with a focus on its applications toward human-sized tissue constructs.
生物工程领域长期以来一直致力于制造用于体外和体内的大规模组织构建体。最近的技术进步表明,生物打印将成为制造这些标本的关键技术。本章旨在概述迄今为止通过使用微挤压生物打印机所取得的成果,以及仍然阻碍进展的主要挑战。将介绍微挤压打印机的配置以及关键设计特性,包括喷嘴规格和生物墨水的改进。讨论了在实现长期细胞活力和血管生成方面存在的重大挑战,以及目前在缓解这些挑战方面有前景的研究。虽然微挤压是一个具有广泛应用的领域,但本章旨在提供该领域的概述,重点是其在人类大小的组织构建体方面的应用。