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鲍鱼壳生物增强羧甲基壳聚糖/胶原/PLGA 仿生杂化支架实现骨再生的生物矿化和成骨。

Abalone shells bioenhanced carboxymethyl chitosan/collagen/PLGA bionic hybrid scaffolds achieving biomineralization and osteogenesis for bone regeneration.

机构信息

Marine College, Shandong University, Weihai 264209, China.

College of Biological Science and Technology, Fuzhou University, Fuzhou 350108, China.

出版信息

Int J Biol Macromol. 2024 Nov;279(Pt 2):135018. doi: 10.1016/j.ijbiomac.2024.135018. Epub 2024 Aug 28.

DOI:10.1016/j.ijbiomac.2024.135018
PMID:39208911
Abstract

Inspired by the formation of natural abalone shells (AS) similar to calcium salt deposition in human orthodontics, AS is used as an emulsifier in the scaffold to solve the problem of coexistence of natural and synthetic polymers and promote new bone formation. In this study, AS-stabilized and reinforced carboxymethyl chitosan/collagen/PLGA porous bionic composite scaffolds (AS/CMCS/Col/PLGA) were fabricated through the emulsion polymerization and bionic hybrid technology. As the addition of AS increased from 0.75 to 3.0 wt%, homogeneous distribution of flower-like particles could be observed on the inner surface of the scaffold, and its mechanical properties were improved. Particularly, 3.0 wt% AS-doped scaffolds (S3 and C + S3) exhibited excellent inorganic mineral deposition and osteoblast proliferation and differentiation abilities in vitro. In a SD rat calvarial defect model, they effectively promoted new bone formation in the defect and accelerated expression of osteogenic-angiogenic related proteins (COLI, OCN, VEGF). By virtue of its combined merits including good mechanical properties, inducing mineralization crystallization and facilitating osteogenesis, the 3.0 wt% AS-doped scaffold promises to be employed as a novel bone repair material for bone tissue regeneration.

摘要

受天然鲍鱼壳(AS)形成方式的启发,类似于人类正畸学中钙盐的沉积,AS 被用作支架中的乳化剂,以解决天然和合成聚合物共存的问题,并促进新骨形成。在这项研究中,通过乳液聚合和仿生杂化技术制备了 AS 稳定和增强的羧甲基壳聚糖/胶原/PLGA 多孔仿生复合支架(AS/CMCS/Col/PLGA)。随着 AS 添加量从 0.75 增加到 3.0wt%,可以观察到支架内表面上均匀分布的花状颗粒,并且其机械性能得到了提高。特别是 3.0wt% AS 掺杂的支架(S3 和 C+S3)在体外表现出优异的无机矿物质沉积和成骨细胞增殖分化能力。在 SD 大鼠颅骨缺损模型中,它们有效地促进了缺损部位的新骨形成,并加速了成骨-血管生成相关蛋白(COLI、OCN、VEGF)的表达。由于其结合了良好的机械性能、诱导矿化结晶和促进成骨的优点,3.0wt% AS 掺杂的支架有望成为一种新型的骨修复材料,用于骨组织再生。

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