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具有持续生长因子释放功能的仿生纳米纤维混合水凝胶膜用于引导骨再生。

Biomimetic nanofibrous hybrid hydrogel membranes with sustained growth factor release for guided bone regeneration.

作者信息

Yuan Qingyue, Li Lunhao, Peng Yiyu, Zhuang Ai, Wei Wei, Zhang Dandan, Pang Yan, Bi Xiaoping

机构信息

Department of Ophthalmology, Ninth People's Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, China.

Department of Ophthalmology, the First Affiliated Hospital of Zhejiang University, Zhejiang, China.

出版信息

Biomater Sci. 2021 Feb 23;9(4):1256-1271. doi: 10.1039/d0bm01821j.

Abstract

Bone regeneration, a complex physiological process, remains a challenge due to the susceptibility to the environment and absence of osteogenic growth factors around the defect region. Although autologous bone grafting is regarded as the gold standard for bone defect treatment, guided bone regeneration membranes in combination with multiple functional growth factors show a striking regeneration effect. Here, a biomimetic nanofibrous hybrid hydrogel composed of bacterial cellulose membranes and alginate/CaCl2 for sustained growth factor delivery was developed. The antibacterial peptide beta-defensin 2 served as an antibacterial, osteogenic, and angiogenic growth factor and was loaded into the aforementioned hydrogel. The mechanical and physical properties of the biomimetic nanofibrous hybrid hydrogel were investigated. Then, the in vitro osteogenic and angiogenic differentiation was confirmed by alkaline phosphatase (ALP) activity, Alizarin Red S staining, qPCR, western blot analysis and tube formation assays. After implantation into a rat calvarial defect model for 12 weeks, nanofibrous hybrid hydrogel membranes could adhere to the defect surface and promote new bone and vessel regeneration.

摘要

骨再生是一个复杂的生理过程,由于其对环境敏感且缺损区域周围缺乏成骨生长因子,仍然是一个挑战。尽管自体骨移植被视为骨缺损治疗的金标准,但引导骨再生膜与多种功能生长因子结合显示出显著的再生效果。在此,开发了一种由细菌纤维素膜和藻酸盐/氯化钙组成的用于持续递送生长因子的仿生纳米纤维混合水凝胶。抗菌肽β-防御素2作为一种抗菌、成骨和血管生成生长因子,被载入上述水凝胶中。研究了仿生纳米纤维混合水凝胶的力学和物理性能。然后,通过碱性磷酸酶(ALP)活性、茜素红S染色、qPCR、蛋白质印迹分析和管形成试验证实了体外成骨和血管生成分化。将其植入大鼠颅骨缺损模型12周后,纳米纤维混合水凝胶膜可粘附于缺损表面并促进新骨和血管再生。

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