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用于承重骨再生应用的三维氧化锆基支架:前景与挑战

Three-Dimensional Zirconia-Based Scaffolds for Load-Bearing Bone-Regeneration Applications: Prospects and Challenges.

作者信息

Sakthiabirami Kumaresan, Soundharrajan Vaiyapuri, Kang Jin-Ho, Yang Yunzhi Peter, Park Sang-Won

机构信息

Department of Prosthodontics, Dental Science Research Institute, School of Dentistry, Chonnam National University, Gwangju 61186, Korea.

Department of Materials Science and Engineering, Chonnam National University, Gwangju 61186, Korea.

出版信息

Materials (Basel). 2021 Jun 10;14(12):3207. doi: 10.3390/ma14123207.

Abstract

The design of zirconia-based scaffolds using conventional techniques for bone-regeneration applications has been studied extensively. Similar to dental applications, the use of three-dimensional (3D) zirconia-based ceramics for bone tissue engineering (BTE) has recently attracted considerable attention because of their high mechanical strength and biocompatibility. However, techniques to fabricate zirconia-based scaffolds for bone regeneration are in a stage of infancy. Hence, the biological activities of zirconia-based ceramics for bone-regeneration applications have not been fully investigated, in contrast to the well-established calcium phosphate-based ceramics for bone-regeneration applications. This paper outlines recent research developments and challenges concerning numerous three-dimensional (3D) zirconia-based scaffolds and reviews the associated fundamental fabrication techniques, key 3D fabrication developments and practical encounters to identify the optimal 3D fabrication technique for obtaining 3D zirconia-based scaffolds suitable for real-world applications. This review mainly summarized the articles that focused on in vitro and in vivo studies along with the fundamental mechanical characterizations on the 3D zirconia-based scaffolds.

摘要

利用传统技术设计用于骨再生应用的氧化锆基支架已得到广泛研究。与牙科应用类似,由于其高机械强度和生物相容性,三维(3D)氧化锆基陶瓷在骨组织工程(BTE)中的应用最近引起了相当大的关注。然而,用于骨再生的氧化锆基支架的制造技术尚处于起步阶段。因此,与用于骨再生应用的成熟的磷酸钙基陶瓷相比,用于骨再生应用的氧化锆基陶瓷的生物活性尚未得到充分研究。本文概述了有关众多三维(3D)氧化锆基支架的最新研究进展和挑战,并回顾了相关的基本制造技术、关键的3D制造进展和实际经验,以确定获得适用于实际应用的3D氧化锆基支架的最佳3D制造技术。本综述主要总结了专注于体外和体内研究以及对3D氧化锆基支架的基本力学表征的文章。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f8a6/8230534/1e5f43d91ed3/materials-14-03207-sch001.jpg

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