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Layer-by-layer electrospun membranes of polyurethane/silk fibroin based on mimicking of oral soft tissue for guided bone regeneration

机译:聚氨酯/丝素蛋白的层逐层电纺膜,基于模拟口腔软组织引导骨再生

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摘要

Guided bone regeneration is an effective method that can enhance bone volume at a defect site of the mandible before material implantation. Layer-by-layer electrospun membranes of polyurethane/silk fibroin (SF) were fabricated to mimic oral soft tissue. The electrospun polyurethane fibers were initially fabricated into a membrane. Next, the polyurethane layer was covered with electrospun SF fibers at different thicknesses. Then, the SF layer was covered with electrospun polyurethane fibers. Afterward, the morphologies of the membranes were observed and analyzed by scanning electron microscopy. The physical properties of the membranes were evaluated from the contact angle and mechanical properties. The biological performances were evaluated by observing cell adhesion, viability and proliferation, alkaline phosphatase activity, and calcium content. The results demonstrated that the membrane with a thin SF core showed better physical properties and mechanical performance than the thicker SF cores. Finally, the results deduced that the membrane with a thin SF core was promising for guided bone regeneration.
机译:引导骨再生是一种有效的方法,可以在材料植入前增强下颌骨缺陷部位的骨骼体积。将聚氨酯/丝素蛋白(SF)的逐层电纺膜(SF)制成模仿口腔软组织。将静电纺纤维最初制造成膜。接下来,用不同厚度的电纺SF纤维覆盖聚氨酯层。然后,使用ElectromatOM聚氨酯纤维覆盖SF层。之后,通过扫描电子显微镜观察和分析膜的形态。从接触角和机械性能评价膜的物理性质。通过观察细胞粘附,活力和增殖,碱性磷酸酶活性和钙含量来评估生物学性能。结果表明,具有薄的SF芯的膜显示出比厚的SF芯更好的物理性能和机械性能。最后,结果推断出具有薄的SF核心的膜对引导骨再生有前途。

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