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用于构建3D打印细胞相容性软骨支架的光固化水性聚氨酯材料的近似优化研究

Approximate Optimization Study of Light Curing Waterborne Polyurethane Materials for the Construction of 3D Printed Cytocompatible Cartilage Scaffolds.

作者信息

Chen Yi-Wen, Shie Ming-You, Chang Wen-Ching, Shen Yu-Fang

机构信息

x-Dimension Center for Medical Research and Translation, China Medical University Hospital, Taichung City 40447, Taiwan.

Graduate Institute of Biomedical Sciences, China Medical University, Taichung City 40447, Taiwan.

出版信息

Materials (Basel). 2021 Nov 11;14(22):6804. doi: 10.3390/ma14226804.

Abstract

Articular cartilage, which is a white transparent tissue with 1-2 mm thickness, is located in the interface between the two hard bones. The main functions of articular cartilage are stress transmission, absorption, and friction reduction. The cartilage cannot be repaired and regenerated once it has been damaged, and it needs to be replaced by artificial joints. Many approaches, such as artificial joint replacement, hyaluronic acid injection, microfracture surgery and cartilage tissue engineering have been applied in clinical treatment. Basically, some of these approaches are foreign material implantation for joint replacement to reach the goal of pain reduction and mechanism support. This study demonstrated another frontier in the research of cartilage reconstruction by applying regeneration medicine additive manufacturing (3D Printing) and stem cell technology. Light curing materials have been modified and tested to be printable and cytocompatible for stem cells in this research. Design of experiments (DOE) is adapted in this investigation to search for the optimal manufacturing parameter for biocompatible scaffold fabrication and stem cell attachment and growth. Based on the results, an optimal working process of biocompatible and printable scaffolds for cartilage regeneration is reported. We expect this study will facilitate the development of cartilage tissue engineering.

摘要

关节软骨是一种厚度为1 - 2毫米的白色透明组织,位于两块硬骨的界面处。关节软骨的主要功能是应力传递、吸收和减少摩擦。一旦受损,软骨无法修复和再生,需要通过人工关节进行置换。人工关节置换、透明质酸注射、微骨折手术和软骨组织工程等多种方法已应用于临床治疗。基本上,这些方法中的一些是通过植入外来材料进行关节置换,以达到减轻疼痛和提供机械支撑的目的。本研究通过应用再生医学增材制造(3D打印)和干细胞技术,展示了软骨重建研究的另一个前沿领域。在本研究中,对光固化材料进行了改性测试,使其可打印且对干细胞具有细胞相容性。本研究采用实验设计(DOE)来寻找用于生物相容性支架制造以及干细胞附着和生长的最佳制造参数。基于这些结果,报道了一种用于软骨再生的生物相容性和可打印支架的最佳工作流程。我们期望这项研究将推动软骨组织工程的发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4dad/8626041/38620cb2eb9d/materials-14-06804-g001.jpg

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