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3D 生物打印处理参数对生物墨水细胞活性的影响。

Effects of Processing Parameters of 3D Bioprinting on the Cellular Activity of Bioinks.

机构信息

J. Adhikari, A. Das, Dr. A. Sinha, M. N. Dastur School of Materials Science and Engineering, Indian Institute of Engineering Science and Technology, Shibpur, Howrah, 711103, India.

A. Roy, Dr. M. Ghosh, Department of Metallurgy and Materials Engineering, Indian Institute of Engineering Science and Technology, Shibpur, Howrah, 711103, India.

出版信息

Macromol Biosci. 2021 Jan;21(1):e2000179. doi: 10.1002/mabi.202000179. Epub 2020 Oct 5.

Abstract

In this review, few established cell printing techniques along with their parameters that affect the cell viability during bioprinting are considered. 3D bioprinting is developed on the principle of additive manufacturing using biomaterial inks and bioinks. Different bioprinting methods impose few challenges on cell printing such as shear stress, mechanical impact, heat, laser radiation, etc., which eventually lead to cell death. These factors also cause alteration of cells phenotype, recoverable or irrecoverable damages to the cells. Such challenges are not addressed in detail in the literature and scientific reports. Hence, this review presents a detailed discussion of several cellular bioprinting methods and their process-related impacts on cell viability, followed by probable mitigation techniques. Most of the printable bioinks encompass cells within hydrogel as scaffold material to avoid the direct exposure of the harsh printing environment on cells. However, the advantages of printing with scaffold-free cellular aggregates over cell-laden hydrogels have emerged very recently. Henceforth, optimal and favorable crosslinking mechanisms providing structural rigidity to the cell-laden printed constructs with ideal cell differentiation and proliferation, are discussed for improved understanding of cell printing methods for the future of organ printing and transplantation.

摘要

在这篇综述中,我们考虑了一些已建立的细胞打印技术及其在生物打印过程中影响细胞活力的参数。3D 生物打印是基于使用生物材料墨水和生物墨水的增材制造原理开发的。不同的生物打印方法对细胞打印施加了一些挑战,如剪切应力、机械冲击、热、激光辐射等,这些最终会导致细胞死亡。这些因素还会导致细胞表型的改变、细胞的可恢复或不可恢复损伤。这些挑战在文献和科学报告中没有详细讨论。因此,本综述详细讨论了几种细胞生物打印方法及其与细胞活力相关的过程影响,随后讨论了可能的缓解技术。大多数可打印的生物墨水将细胞包含在水凝胶中作为支架材料,以避免细胞直接暴露在恶劣的打印环境中。然而,最近出现了打印无支架细胞聚集体而不是细胞负载水凝胶的优势。因此,讨论了最佳和有利的交联机制,为细胞负载的打印结构提供结构刚性,并实现理想的细胞分化和增殖,以提高对细胞打印方法的理解,为器官打印和移植的未来发展奠定基础。

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