An overview of nasal cartilage bioprinting: from bench to bedside.

IF 3.6 4区 医学 Q2 ENGINEERING, BIOMEDICAL
Hosein Rostamani, Omid Fakhraei, Niloufar Zamirinadaf, Mehran Mahjour
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引用次数: 0

Abstract

Nasal cartilage diseases and injuries are known as significant challenges in reconstructive medicine, affecting a substantial number of individuals worldwide. In recent years, the advent of three-dimensional (3D) bioprinting has emerged as a promising approach for nasal cartilage reconstruction, offering potential breakthroughs in the field of regenerative medicine. This paper provides an overview of the methods and challenges associated with 3D bioprinting technologies in the procedure of reconstructing nasal cartilage tissue. The process of 3D bioprinting entails generating a digital 3D model using biomedical imaging techniques and computer-aided design to integrate both internal and external scaffold features. Then, bioinks which consist of biomaterials, cell types, and bioactive chemicals, are applied to facilitate the precise layer-by-layer bioprinting of tissue-engineered scaffolds. After undergoing in vitro and in vivo experiments, this process results in the development of the physiologically functional integrity of the tissue. The advantages of 3D bioprinting encompass the ability to customize scaffold design, enabling the precise incorporation of pore shape, size, and porosity, as well as the utilization of patient-specific cells to enhance compatibility. However, various challenges should be considered, including the optimization of biomaterials, ensuring adequate cell viability and differentiation, achieving seamless integration with the host tissue, and navigating regulatory attention. Although numerous studies have demonstrated the potential of 3D bioprinting in the rebuilding of such soft tissues, this paper covers various aspects of the bioprinted tissues to provide insights for the future development of repair techniques appropriate for clinical use.

鼻软骨生物打印概述:从工作台到床边。
众所周知,鼻软骨疾病和损伤是重建医学的重大挑战,影响着全世界相当多的人。近年来,三维(3D)生物打印技术的出现为鼻软骨重建提供了一种前景广阔的方法,为再生医学领域带来了潜在的突破。本文概述了三维生物打印技术在鼻软骨组织重建过程中的相关方法和挑战。三维生物打印过程需要利用生物医学成像技术和计算机辅助设计生成数字三维模型,以整合内部和外部支架特征。然后,应用由生物材料、细胞类型和生物活性化学物质组成的生物墨水,促进组织工程支架的逐层精确生物打印。在经过体外和体内实验后,该过程可形成具有生理功能的完整组织。三维生物打印技术的优势在于能够定制支架设计,从而精确融入孔的形状、大小和孔隙率,并利用患者特异性细胞提高兼容性。然而,需要考虑各种挑战,包括生物材料的优化、确保足够的细胞活力和分化、实现与宿主组织的无缝整合,以及应对监管部门的关注。尽管已有大量研究证明了三维生物打印在重建此类软组织方面的潜力,但本文仍将从多方面论述生物打印组织,为未来开发适合临床使用的修复技术提供见解。
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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来源期刊
Journal of Biomaterials Science, Polymer Edition
Journal of Biomaterials Science, Polymer Edition 工程技术-材料科学:生物材料
CiteScore
7.10
自引率
5.60%
发文量
117
审稿时长
1.5 months
期刊介绍: The Journal of Biomaterials Science, Polymer Edition publishes fundamental research on the properties of polymeric biomaterials and the mechanisms of interaction between such biomaterials and living organisms, with special emphasis on the molecular and cellular levels. The scope of the journal includes polymers for drug delivery, tissue engineering, large molecules in living organisms like DNA, proteins and more. As such, the Journal of Biomaterials Science, Polymer Edition combines biomaterials applications in biomedical, pharmaceutical and biological fields.
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