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首页> 外文期刊>Materials science & engineering >Bioinspired nanocomposite fibrous scaffold mediated delivery of ONO-1301 and BMP2 enhance bone regeneration in critical sized defect
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Bioinspired nanocomposite fibrous scaffold mediated delivery of ONO-1301 and BMP2 enhance bone regeneration in critical sized defect

机译:生物启发的纳米复合纤维支架介导的ONO-1301和BMP2的递送增强了关键尺寸缺损的骨再生

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摘要

Treatment aiming to enhance bone tissue regeneration can benefit from multiple growth factor or small molecule delivery. In the present study, the objective was to evaluate the feasibility of using nanocomposite fibrous scaffold to deliver prostacyclin I2 agonist ONO-1301 in combination with BMP2 for treating critical sized bone defect. For this, ONO-1301 at three different concentrations (1.67 mu g, 5 mu g, 15 mu g) and a fixed dose of BMP2 (5 mu g) was loaded on the scaffold via physical adsorption. The results showed fast release of ONO-1301 for two weeks, whereas BMP2 exhibited slow and sustained release for four weeks. The scaffold with dual factors promoted the migration and osteogenic differentiation of mesenchymal stem cells (MSCs) in vitro when compared to the scaffold with BMP2 alone. It also augmented bone tissue regeneration in critical sized rat calvarial defect at 12 weeks; mainly with lower dose of ONO-1301. However, synergistic effect on osteogenic differentiation and bone regeneration were not obtained through the concurrent release of BMP-2 and ONO-1301.
机译:旨在增强骨组织再生的治疗可受益于多种生长因子或小分子的输送。在本研究中,目的是评估使用纳米复合纤维支架递送前列环素I2激动剂ONO-1301与BMP2联合治疗临界尺寸骨缺损的可行性。为此,通过物理吸附将三种不同浓度(1.67μg,5μg,15μg)和固定剂量的BMP2(5μg)的ONO-1301装载在支架上。结果显示ONO-1301的快速释放持续了两周,而BMP2则显示了缓慢而持续的释放持续了四周。与单独使用BMP2的支架相比,具有双重因素的支架在体外促进了间充质干细胞(MSCs)的迁移和成骨分化。在12周的临界大小的大鼠颅骨缺损中,它还增强了骨组织的再生。主要是使用较低剂量的ONO-1301。然而,通过同时释放BMP-2和ONO-1301不能获得对成骨分化和骨再生的协同作用。

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