Various methods of 3D and Bio-printing

V. Jokanović, B. Čolović, Đorđe Antonijević, M. Micic, S. Živković
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引用次数: 2

Abstract

Summary There is growing need for synthetic tissue replacement materials designed in a way that mimic complex structure of tissues and organs. Among various methods for fabrication of implants (scaffolds), 3D printing is very powerful technique because it enables creation of scaffolds with complex internal structures and high resolution, based on medical data sets. This method allows fabrication of scaffolds with desired macro- and micro-porosity and fully interconnected pore network. Rapid development of 3D printing technologies has enabled various applications from the creation of anatomical training models for complex surgical procedures to the printing of tissue engineering constructs. The aim of current investigations was to develop compatible printers and materials (bioinks) to obtain biomimetic scaffolds, which allow printing of living cells without significant loss of cell viability. The advanced level of such printing assumes “in situ” printing, i.e. printing cells and biomaterials directly onto or in a patient that will reduce recovery time.
3D和生物打印的各种方法
对模拟复杂组织和器官结构的合成组织替代材料的需求日益增长。在制造植入物(支架)的各种方法中,3D打印是一种非常强大的技术,因为它可以根据医疗数据集创建具有复杂内部结构和高分辨率的支架。这种方法允许制造具有所需的宏观和微观孔隙率和完全互连的孔隙网络的支架。3D打印技术的快速发展使各种应用成为可能,从复杂外科手术的解剖训练模型的创建到组织工程结构的打印。目前研究的目的是开发兼容的打印机和材料(生物墨水),以获得仿生支架,使打印活细胞而不显着丧失细胞活力。这种打印的高级水平是“原位”打印,即直接将细胞和生物材料打印到患者身上或患者体内,从而缩短恢复时间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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