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用于骨组织工程的3D打印聚己内酯基复合支架的最新进展。

Recent advances on 3D-printed PCL-based composite scaffolds for bone tissue engineering.

作者信息

Gharibshahian Maliheh, Salehi Majid, Beheshtizadeh Nima, Kamalabadi-Farahani Mohammad, Atashi Amir, Nourbakhsh Mohammad-Sadegh, Alizadeh Morteza

机构信息

Student Research Committee, School of Medicine, Shahroud University of Medical Sciences, Shahroud, Iran.

Department of Tissue Engineering, School of Medicine, Shahroud University of Medical Sciences, Shahroud, Iran.

出版信息

Front Bioeng Biotechnol. 2023 Jun 19;11:1168504. doi: 10.3389/fbioe.2023.1168504. eCollection 2023.

Abstract

Population ageing and various diseases have increased the demand for bone grafts in recent decades. Bone tissue engineering (BTE) using a three-dimensional (3D) scaffold helps to create a suitable microenvironment for cell proliferation and regeneration of damaged tissues or organs. The 3D printing technique is a beneficial tool in BTE scaffold fabrication with appropriate features such as spatial control of microarchitecture and scaffold composition, high efficiency, and high precision. Various biomaterials could be used in BTE applications. PCL, as a thermoplastic and linear aliphatic polyester, is one of the most widely used polymers in bone scaffold fabrication. High biocompatibility, low cost, easy processing, non-carcinogenicity, low immunogenicity, and a slow degradation rate make this semi-crystalline polymer suitable for use in load-bearing bones. Combining PCL with other biomaterials, drugs, growth factors, and cells has improved its properties and helped heal bone lesions. The integration of PCL composites with the new 3D printing method has made it a promising approach for the effective treatment of bone injuries. The purpose of this review is give a comprehensive overview of the role of printed PCL composite scaffolds in bone repair and the path ahead to enter the clinic. This study will investigate the types of 3D printing methods for making PCL composites and the optimal compounds for making PCL composites to accelerate bone healing.

摘要

近几十年来,人口老龄化和各种疾病增加了对骨移植的需求。使用三维(3D)支架的骨组织工程(BTE)有助于为细胞增殖以及受损组织或器官的再生创造适宜的微环境。3D打印技术是BTE支架制造中的一种有益工具,具有诸如微结构和支架组成的空间控制、高效率和高精度等合适特性。各种生物材料可用于BTE应用。聚己内酯(PCL)作为一种热塑性线性脂肪族聚酯,是骨支架制造中使用最广泛的聚合物之一。高生物相容性、低成本、易于加工、无致癌性、低免疫原性以及缓慢的降解速率使这种半结晶聚合物适用于承重骨。将PCL与其他生物材料、药物、生长因子和细胞相结合改善了其性能,并有助于治愈骨损伤。PCL复合材料与新的3D打印方法的结合使其成为有效治疗骨损伤的一种有前景的方法。本综述的目的是全面概述打印的PCL复合支架在骨修复中的作用以及进入临床的未来道路。本研究将调查用于制造PCL复合材料的3D打印方法类型以及用于制造PCL复合材料以加速骨愈合的最佳化合物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a766/10353441/edc78c5d029b/fbioe-11-1168504-g001.jpg

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