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首页> 外文期刊>Biomaterials >Dual growth factor delivery from bilayered, biodegradable hydrogel composites for spatially-guided osteochondral tissue repair
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Dual growth factor delivery from bilayered, biodegradable hydrogel composites for spatially-guided osteochondral tissue repair

机译:双层,可生物降解的水凝胶复合材料的双重生长因子递送,用于空间引导的骨软骨组织修复

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摘要

The present work investigated the use of biodegradable hydrogel composite scaffolds, based on the macromer oligo(poly(ethylene glycol) fumarate) (OPF), to deliver growth factors for the repair of osteochondral tissue in a rabbit model. In particular, bilayered OPF composites were used to mimic the structural layers of the osteochondral unit, and insulin-like growth factor-1 (IGF-1) and bone morphogenetic protein-2 (BMP-2) were loaded into gelatin microparticles and embedded within the OPF hydrogel matrix in a spatially controlled manner. Three different scaffold formulations were implanted in a medial femoral condyle osteochondral defect: 1) IGF-1 in the chondral layer, 2) BMP-2 in the subchondral layer, and 3) IGF-1 and BMP-2 in their respective separate layers. The quantity and quality of osteochondral repair was evaluated at 6 and 12 weeks with histological scoring and micro-computed tomography (micro-CT). While histological scoring results at 6 weeks showed no differences between experimental groups, micro-CT analysis revealed that the delivery of BMP-2 alone increased the number of bony trabecular islets formed, an indication of early bone formation, over that of IGF-1 delivery alone. At 12 weeks post-implantation, minimal differences were detected between the three groups for cartilage repair. However, the dual delivery of IGF-1 and BMP-2 had a higher proportion of subchondral bone repair, greater bone growth at the defect margins, and lower bone specific surface than the single delivery of IGF-1. These results suggest that the delivery of BMP-2 enhances subchondral bone formation and that, while the dual delivery of IGF-1 and BMP-2 in separate layers does not improve cartilage repair under the conditions studied, they may synergistically enhance the degree of subchondral bone formation. Overall, bilayered OPF hydrogel composites demonstrate potential as spatially-guided, multiple growth factor release vehicles for osteochondral tissue repair.
机译:本工作研究了基于大分子寡聚(富马酸聚乙二醇酯)(OPF)的可生物降解水凝胶复合支架的使用,以提供生长因子以修复兔模型中的软骨组织。特别是,双层OPF复合材料用于模拟骨软骨单元的结构层,并将胰岛素样生长因子1(IGF-1)和骨形态发生蛋白2(BMP-2)装入明胶微粒中并包埋在OPF水凝胶基质以空间控制的方式。将三种不同的支架制剂植入股内侧con骨软骨缺损中:1)软骨层中的IGF-1、2)软骨下层中的BMP-2,以及3)它们各自独立的层中的IGF-1和BMP-2。通过组织学评分和微计算机断层扫描(micro-CT)对第6周和第12周骨软骨修复的数量和质量进行评估。尽管第6周的组织学评分结果显示实验组之间没有差异,但微CT分析显示,单独递送BMP-2会增加形成的骨小梁胰岛的数量,这是早期骨形成的指标,超过了IGF-1递送单独。植入后12周,三组之间的软骨修复差异最小。然而,IGF-1和BMP-2的双重递送比单一递送的IGF-1具有更高的软骨下骨修复比例,在缺损处的骨生长更大和更低的骨比表面积。这些结果表明,BMP-2的递送增强了软骨下骨的形成,并且在所研究的条件下,尽管IGF-1和BMP-2在不同层中的双重递送不能改善软骨修复,但它们可以协同增强软骨下的程度。骨形成。总体而言,双层OPF水凝胶复合材料具有潜力,可作为空间引导的多种生长因子释放载体,用于骨软骨组织修复。

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