bmp2修饰PEEK支架眶骨折修复的成骨功能。

Yujie Wu, Cuihong Liu, Jinhua Liu, Wenwen Wang, Bixuan Qin, Honglei Liu
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引用次数: 0

摘要

目的:探讨骨形态发生蛋白2 (bone morphogenetic protein 2, BMP2)修饰聚醚醚酮(PEEK)支架的成骨功能及其用于眼眶骨折修复的可能性。方法:将3d打印的PEEK薄片与负载bmp2的透明质酸水凝胶(HAH)结合,制备PEEK- bmp2 -HAH复合支架。将骨髓间充质干细胞(BMSCs)植入PEEK或PEEK- bmp - hah支架上。采用透射电镜和CCK-8法检测细胞粘附和细胞增殖。采用碱性磷酸酶(ALP)显色、氮化红S染色和rt相关转录因子2 (Runx2)、胶原- i (Col-I)、Osterix和骨桥蛋白(OPN)的PCR分析来评估成骨活性。采用大鼠眼窝骨折缺损模型评价PEEK眼窝植入物的生物相容性、成骨整合和功能恢复。结果:与PEEK相比,PEEK- bmp2 - hah支架的细胞粘附和细胞增殖均有所增加。在成骨诱导的第14天,PEEK- bmp2 - hah支架中Runx2、Osterix、Col-I和OPN的mRNA表达比PEEK支架中增加。此外,骨缺损动物模型显示,bmp2 - ha修饰的PEEK支架可以有效促进眶骨缺损的修复,OPN和Runx2的表达增加。结论:载bmp - 2的HAH有效地增加了PEEK上BMSCs的粘附、增殖和成骨分化。PEEK-BMP2-HAH支架有望成为眼眶骨折修复的新材料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Osteogenic function of BMP2-modified PEEK scaffolds for orbital fracture repair.

This study aimed to investigate the osteogenic function of polyetheretherketone (PEEK) scaffolds modified with bone morphogenetic protein 2 (BMP2) and its possibility for orbital fracture repair. The 3D-printed PEEK sheets were combined with BMP2-loaded hyaluronic acid hydrogel (HAH) to fabricate PEEK-BMP2-HAH composite scaffolds. Bone marrow mesenchymal stem cells (BMSCs) were seeded onto PEEK or PEEK-BMP2-HAH scaffolds. Cell adhesion and cell proliferation were measured by transmission electron microscopy and CCK-8 assay. Alkaline phosphatase (ALP) chromogenic, alizarine red S staining, and PCR analysis of Runt-related transcription factor 2 (Runx2), collagen-I (Col-I), Osterix, and osteopontin (OPN) were performed to assess osteogenic activity. The rat orbital fracture defect model is proposed for evaluating the biocompatibility, osteogenic integration, and functional recovery of PEEK orbital implants. Compared with PEEK, cell adhesion and cell proliferation were increased in PEEK-BMP2-HAH scaffolds. ALP activity and mineralized nodule formation were increased in PEEK-BMP2-HAH scaffolds than that in PEEK the mRNA expression of Runx2, Osterix, Col-I and OPN was increased on PEEK-BMP2-HAH scaffolds than that on PEEK at 14 d of osteogenic induction. Besides, a bone defect animal model revealed that BMP2-HAH-modified PEEK scaffolds could effectively facilitate the repair of the orbital bone defect, with increased expression of OPN and Runx2. BMP2-loaded HAH effectively increased adhesion, proliferation, and osteogenic differentiation of BMSCs on PEEK. PEEK-BMP2-HAH scaffolds are expected to become new materials for orbital fracture repair.

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