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3D bioprinting for biomedical devices and tissue engineering: A review of recent trends and advances

机译:用于生物医学设备和组织工程的3D生物打印:近期趋势和进展回顾

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摘要

3D printing, an additive manufacturing based technology for precise 3D construction, is currently widely employed to enhance applicability and function of cell laden scaffolds. Research on novel compatible biomaterials for bioprinting exhibiting fast crosslinking properties is an essential prerequisite toward advancing 3D printing applications in tissue engineering. Printability to improve fabrication process and cell encapsulation are two of the main factors to be considered in development of 3D bioprinting. Other important factors include but are not limited to printing fidelity, stability, crosslinking time, biocompatibility, cell encapsulation and proliferation, shear-thinning properties, and mechanical properties such as mechanical strength and elasticity. In this review, we recite recent promising advances in bioink development as well as bioprinting methods. Also, an effort has been made to include studies with diverse types of crosslinking methods such as photo, chemical and ultraviolet (UV). We also propose the challenges and future outlook of 3D bioprinting application in medical sciences and discuss the high performance bioinks.
机译:3D打印是一种用于精确3D构造的基于增材制造的技术,目前已广泛用于增强含细胞支架的适用性和功能。具有快速交联特性的新型生物打印兼容生物材料的研究是推进组织工程中3D打印应用的必要前提。改善制造工艺和细胞封装的可印刷性是3D生物打印开发中要考虑的两个主要因素。其他重要因素包括但不限于印刷保真度,稳定性,交联时间,生物相容性,细胞封装和增殖,剪切稀化性质以及机械性质,例如机械强度和弹性。在这篇综述中,我们列举了生物墨水开发以及生物印刷方法的最新发展前景。另外,已经努力包括使用多种类型的交联方法的研究,例如光,化学和紫外线(UV)。我们还提出了3D生物打印在医学中的应用所面临的挑战和未来展望,并讨论了高性能生物墨水。

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