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骨科转化研究中的 3D 生物打印。

3D bioprinting in orthopedics translational research.

机构信息

a Department of Orthopaedics , The Second Affiliated Hospital and Yuying Children's Hospital of Wenzhou Medical University, Zhejiang Provincial Key Laboratory of Orthopaedics , Wenzhou , China.

b Wenzhou Institute of Biomaterials and Engineering, CNITECH, Chinese Academy of Sciences , Wenzhou , China.

出版信息

J Biomater Sci Polym Ed. 2019 Sep;30(13):1172-1187. doi: 10.1080/09205063.2019.1623989. Epub 2019 Jun 13.

Abstract

The repair of critical-size bone defect remains a challenge for orthopedic surgeons. With the advent of an aging society and their accompanying chronic diseases, it is becoming more difficult to treat bone defects, especially large segmental bone defects that are caused by trauma, tumors, infections, and congenital malformations. New materials and technologies need to be developed to address these conditions. 3D bioprinting is a novel technology that bridges the biomaterial and living cells and is an important method in tissue engineering projects. 3D bioprinting has the advantages of replacing or repairing damaged tissue and organs. The progress in material science and 3D printing devices make 3D bioprinting a technology which can be used to create various scaffolds with a large range of advanced material and cell types. However, in regard to the widespread use of bioprinting, biosafety, immunogenicity and rising costs are rising to be concerned. This article reviews the developments and applications of 3D bioprinting and highlights newly applied techniques and materials and the recent achievements in the orthopedic field. This paper also briefly reviews the difference between the methods of 3D bioprinting. The challenges are also elaborated with the aim to research materials, manufacture scaffolds, promote vascularization and maintain cell viability.

摘要

治疗临界尺寸骨缺损仍然是骨科医生面临的挑战。随着老龄化社会的出现及其伴随的慢性疾病,治疗骨缺损变得更加困难,尤其是由创伤、肿瘤、感染和先天畸形引起的大节段骨缺损。需要开发新材料和新技术来解决这些问题。3D 生物打印是一种将生物材料和活细胞结合起来的新技术,是组织工程项目中的一种重要方法。3D 生物打印具有替代或修复受损组织和器官的优势。材料科学和 3D 打印设备的进步使 3D 生物打印成为一种可以用于创建具有各种先进材料和细胞类型的各种支架的技术。然而,就生物打印的广泛应用而言,生物安全性、免疫原性和不断上升的成本引起了人们的关注。本文综述了 3D 生物打印的发展和应用,并重点介绍了新应用的技术和材料以及在骨科领域的最新成果。本文还简要回顾了 3D 生物打印方法之间的差异。阐述了挑战,旨在研究材料、制造支架、促进血管化和维持细胞活力。

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