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开发一种3D细胞打印结构作为自体软骨用于耳廓重建的替代物。

Development of a 3D cell printed structure as an alternative to autologs cartilage for auricular reconstruction.

作者信息

Park Ju Young, Choi Yeong-Jin, Shim Jin-Hyung, Park Jeong Hun, Cho Dong-Woo

机构信息

Division of Integrative Biosciences and Biotechnology, Pohang University of Science and Technology (POSTECH), Pohang, Korea.

Department of Mechanical Engineering, Korea Polytechnic University, Siheung, Korea.

出版信息

J Biomed Mater Res B Appl Biomater. 2017 Jul;105(5):1016-1028. doi: 10.1002/jbm.b.33639. Epub 2016 Feb 28.

Abstract

Surgical technique using autologs cartilage is considered as the best treatment for cartilage tissue reconstruction, although the burdens of donor site morbidity and surgical complications still remain. The purpose of this study is to apply three-dimensional (3D) cell printing to fabricate a tissue-engineered graft, and evaluate its effects on cartilage reconstruction. A multihead tissue/organ building system is used to print cell-printed scaffold (CPS), then assessed the effect of the CPS on cartilage regeneration in a rabbit ear. The cell viability and functionality of chondrocytes were significantly higher in CPS than in cell-seeded scaffold (CSS) and cell-seeded hybrid scaffold (CSHS) in vitro. CPS was then implanted into a rabbit ear that had an 8 mm-diameter cartilage defect; at 3 months after implantation the CPS had fostered complete cartilage regeneration whereas CSS and autologs cartilage (AC) fostered only incomplete healing. This result demonstrates that cell printing technology can provide an appropriate environment in which encapsulated chondrocytes can survive and differentiate into cartilage tissue in vivo. Moreover, the effects of CPS on cartilage regeneration were even better than those of AC. Therefore, we confirmed the feasibility of CPS as an alternative to AC for auricular reconstruction. © 2016 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater, 105B: 1016-1028, 2017.

摘要

使用自体软骨的手术技术被认为是软骨组织重建的最佳治疗方法,尽管供体部位发病和手术并发症的负担仍然存在。本研究的目的是应用三维(3D)细胞打印技术制造组织工程移植物,并评估其对软骨重建的效果。使用多头组织/器官构建系统打印细胞打印支架(CPS),然后评估CPS对兔耳软骨再生的影响。体外实验中,CPS中软骨细胞的细胞活力和功能明显高于接种细胞的支架(CSS)和接种细胞的混合支架(CSHS)。然后将CPS植入直径为8mm的兔耳软骨缺损处;植入后3个月,CPS促进了完全软骨再生,而CSS和自体软骨(AC)仅促进了不完全愈合。这一结果表明,细胞打印技术可以提供一个合适的环境,使包裹的软骨细胞能够在体内存活并分化为软骨组织。此外,CPS对软骨再生的效果甚至优于AC。因此,我们证实了CPS作为AC替代物用于耳廓重建的可行性。©2016威利期刊公司。《生物医学材料研究杂志》B部分:应用生物材料,105B:1016 - 1028,2017。

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