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Development of FGF-2-loaded electrospun waterborne polyurethane fibrous membranes for bone regeneration

机译:用于骨再生FGF-2负载电动纺出水性聚氨酯纤维膜的研制

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摘要

Guided bone regeneration (GBR) membrane has been used to improve functional outcomes for periodontal regeneration. However, few studies have focused on the biomimetic membrane mimicking the vascularization of the periodontal membrane. This study aimed to fabricate waterborne polyurethane (WPU) fibrous membranes loaded fibroblast growth factor-2 (FGF-2) via emulsion electrospinning, which can promote regeneration of periodontal tissue via the vascularization of the biomimetic GBR membrane. A biodegradable WPU was synthesized by using lysine and dimethylpropionic acid as chain extenders according to the rule of green chemical synthesis technology. The WPU fibers with FGF-2 was fabricated via emulsion electrospinning. The results confirmed that controlled properties of the fibrous membrane had been achieved with controlled degradation, suitable mechanical properties and sustained release of the factor. The immunohistochemical expression of angiogenic-related factors was positive, meaning that FGF-2 loaded in fibers can significantly promote cell vascularization. The fiber scaffold loaded FGF-2 has the potential to be used as a functional GBR membrane to promote the formation of extraosseous blood vessels during periodontal repairing.
机译:引导骨再生(GBR)膜已被用于改善牙周再生功能结果。然而,很少有研究专注于模拟牙周膜血管化的仿生膜。该研究旨在通过乳液静力刺激制造水性聚氨酯(WPU)纤维膜的成纤维细胞生长因子-2(FGF-2),其可以通过仿生GBR膜的血管化促进牙周组织再生。根据绿色化学合成技术的规则,通过使用赖氨酸和二甲基丙酸作为扩链剂合成可生物降解的WPU。具有FGF-2的WPU纤维通过乳液静电纺丝制造。结果证实,通过受控的降解,合适的机械性能和持续释放的因子,已经实现了纤维膜的受控性能。血管生成相关因素的免疫组织化学表达是阳性的,这意味着纤维中的FGF-2可以显着促进细胞血管化。纤维支架负载的FGF-2具有用作官能GBR膜的电位,以在牙周修复过程中促进体外血管的形成。

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