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Bioprintability: Physiomechanical and Biological Requirements of Materials for 3D Bioprinting Processes

机译:BioplIntability:3D生物印刷工艺材料的生物机械和生物学要求

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摘要

Three-dimensional (3D) bioprinting is an additive manufacturing process that utilizes various biomaterials that either contain or interact with living cells and biological systems with the goal of fabricating functional tissue or organ mimics, which will be referred to as bioinks. These bioinks are typically hydrogel-based hybrid systems with many specific features and requirements. The characterizing and fine tuning of bioink properties before, during, and after printing are therefore essential in developing reproducible and stable bioprinted constructs. To date, myriad computational methods, mechanical testing, and rheological evaluations have been used to predict, measure, and optimize bioinks properties and their printability, but none are properly standardized. There is a lack of robust universal guidelines in the field for the evaluation and quantification of bioprintability. In this review, we introduced the concept of bioprintability and discussed the significant roles of various physiomechanical and biological processes in bioprinting fidelity. Furthermore, different quantitative and qualitative methodologies used to assess bioprintability will be reviewed, with a focus on the processes related to pre, during, and post printing. Establishing fully characterized, functional bioink solutions would be a big step towards the effective clinical applications of bioprinted products.
机译:三维(3D)生物制品是一种添加剂制造方法,其利用各种生物材料,其含有或与生物细胞和生物系统相互作用,其目的是制造功能组织或器官模拟物,这将被称为生物链。这些生物链通常是具有许多特定特征和要求的水凝胶的混合系统。因此,在印刷之前,期间和后,在印刷之前和之后的表征和微调在开发可再现和稳定的生物印刷构建体中必不可少。迄今为止,已用于预测,测量和优化生物链接性及其可印刷性的无数计算方法,机械测试和流变评估,但无需正确标准化。该领域缺乏稳健的通用指导,用于评估和量化生物可燃性。在本次审查中,我们介绍了生物印刷品的概念,并讨论了各种生物机械和生物过程在生生物监测保真度中的重要作用。此外,将审查用于评估生物可燃性的不同的定量和定性方法,重点关注与前印刷期间和印刷后相关的过程。建立完全表征的功能性生物链接解决方案将是生物印刷产品的有效临床应用的重要阶梯。

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