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用于大鼠颅骨骨缺损原位骨形成的热触发型壳聚糖/丝素蛋白/生物活性玻璃纳米粒子水凝胶。

Thermally triggered injectable chitosan/silk fibroin/bioactive glass nanoparticle hydrogels for in-situ bone formation in rat calvarial bone defects.

机构信息

National Engineering Research Center for Nanomedicine, College of Life Science and Technology, Huazhong University of Science and Technology, Wuhan 430074, PR China.

Institute of Biomaterials, Department of Materials Science and Engineering, University of Erlangen-Nuremberg, Cauerstrasse 6, 91058 Erlangen, Germany.

出版信息

Acta Biomater. 2019 Jun;91:60-71. doi: 10.1016/j.actbio.2019.04.023. Epub 2019 Apr 13.

Abstract

Copper-containing bioactive glass nanoparticles (Cu-BG NPs) with designed compositions and sizes were synthesized and incorporated into chitosan (CH)/silk fibroin (SF)/glycerophosphate (GP) composites to prepare injectable hydrogels for cell-free bone repair. The resulting Cu-BG/CH/SF/GP gels were found to exhibit well-defined injectability and to undergo rapid gelation at physiological temperature and pH. They were highly porous and showed the ability to administer Si, Ca and Cu ions at their respective safe doses in a sustained and controlled manner. In vitro studies revealed that the gels supported the growth of seeded MC3T3-E1 and human umbilical vein endothelial cells, and effectively induced them toward osteogenesis and angiogenesis, respectively. In vivo bone repair based on a critical-size rat calvarial bone defect model demonstrated that the optimal Cu-BG/CH/SF/GP gel was able to fully restore the bone defect with formation of vascularized bone tissue and mineralized collagen deposition during a treatment period of 8 weeks without utilization of any cells and/or growth factors. The results suggest that the presently developed Cu-BG/CH/SF/GP composite hydrogels have great potential and translation ability for bone regeneration owing to their thermo-sensitive properties, cell-free bioactivity, and cost-effectiveness. STATEMENT OF SIGNIFICANCE: Hydrogels loaded with cells and/or growth factors exhibit potential in bone repair. However, they have been facing obstacles related to the clinic translation. Here, a novel type of hydrogel system consisting of copper-containing bioactive glass nanoparticles and chitosan/silk fibroin composite was developed. These gels showed injectability and thermally triggered in situ gelation properties and were able to administer the release of ions at safe but effective doses in a controlled manner while inducing the seeded cells toward osteogenesis and angiogenesis. The optimal gel showed the ability to fully repair critical-size rat calvarial bone defects without involving time consuming cell processing and/or the use of expensive growth factors, confirming that this novel hydrogel system has great potential for translation to the clinic.

摘要

含铜生物活性玻璃纳米颗粒(Cu-BG NPs)具有设计的组成和尺寸,被合成并掺入壳聚糖(CH)/丝素蛋白(SF)/甘油磷酸酯(GP)复合材料中,以制备用于无细胞骨修复的可注射水凝胶。结果表明,Cu-BG/CH/SF/GP 水凝胶具有良好的可注射性,并在生理温度和 pH 值下迅速凝胶化。它们具有高度的多孔性,并能够以持续和受控的方式给予各自安全剂量的 Si、Ca 和 Cu 离子。体外研究表明,这些凝胶支持接种的 MC3T3-E1 和人脐静脉内皮细胞的生长,并分别有效地诱导它们向成骨和血管生成方向分化。基于大鼠颅骨临界尺寸骨缺损模型的体内骨修复研究表明,最佳的 Cu-BG/CH/SF/GP 水凝胶能够在 8 周的治疗期间完全修复骨缺损,形成血管化的骨组织和矿化的胶原沉积,而无需使用任何细胞和/或生长因子。研究结果表明,由于其热敏感特性、无细胞生物活性和成本效益,目前开发的 Cu-BG/CH/SF/GP 复合水凝胶在骨再生方面具有巨大的潜力和转化能力。

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