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具有双细胞因子时空递释功能的 3D 仿生人工骨支架用于大承重骨缺损修复。

3D biomimetic artificial bone scaffolds with dual-cytokines spatiotemporal delivery for large weight-bearing bone defect repair.

机构信息

Department of Orthopedic Surgery, Changzheng Hospital, Naval Medical University, 415 Fengyang Road, Shanghai, 200003, People's Republic of China.

Longhua Hospital, Shanghai University of Traditional Chinese Medicine, 725 South Wanping Road, Shanghai, 200032, People's Republic of China.

出版信息

Sci Rep. 2017 Aug 10;7(1):7814. doi: 10.1038/s41598-017-08412-0.

Abstract

It is a great challenge to prepare "functional artificial bone" for the repair of large segmental defect, especially in weight-bearing bones. In this study, bioactive HA/PCL composite scaffolds that possess anatomical structure as autogenous bone were fabricated by CT-guided fused deposition modeling technique. The scaffolds can provide mechanical support and possess osteoconduction property. Then the VEGF-165/BMP-2 loaded hydrogel was filled into biomimetic artificial bone spatially to introduce osteoinduction and angioinduction ability via sustained release of these cytokines. It has been revealed that the cytokine-loaded hydrogel possessed good biodegradability and could release the VEGF-165/BMP-2 sustainedly and steadily. The synergistic effect of these two cytokines showed significant stimulation on the osteogenic gene expresssion of osteoblast in vitro and ectopic ossification in vivo. The scaffolds were then implanted into the rabbit tibial defect sites (1.2 cm) for bone regeneration for 12 weeks, indicating the best repair of defect in vivo, which was superior to the pure hydrogel/scaffolds or one-cytokine loaded hydrogel/scaffolds and close to autogenous bone graft. The strategy to construct an "anatomy-structure-function" trinity system as functional artificial bone shows great potential in replacing autogenous bone graft and applying in large bone defect repair clinically in future.

摘要

制备用于修复大段骨缺损的“功能性人工骨”,特别是承重骨,是一项巨大的挑战。本研究采用 CT 引导下的熔融沉积成型技术制备了具有自体骨解剖结构的生物活性 HA/PCL 复合支架,该支架可为骨组织提供机械支撑,并具有骨传导性。然后将负载 VEGF-165/BMP-2 的水凝胶空间填充到仿生人工骨中,通过这些细胞因子的持续释放来引入成骨诱导和血管生成诱导能力。研究表明,负载细胞因子的水凝胶具有良好的生物降解性,能够持续稳定地释放 VEGF-165/BMP-2。这两种细胞因子的协同作用在体外对成骨细胞的成骨基因表达和体内异位成骨表现出显著的刺激作用。将支架植入兔胫骨缺损部位(1.2cm)进行 12 周的骨再生,表明在体内的缺损修复效果最佳,优于单纯水凝胶/支架或单一细胞因子负载水凝胶/支架,与自体骨移植物接近。构建“解剖结构-功能”三位一体系统作为功能性人工骨的策略,在未来替代自体骨移植并应用于大骨缺损修复方面具有巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/24ad/5552682/43add415c650/41598_2017_8412_Fig1_HTML.jpg

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