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首页> 外文期刊>Journal of tissue engineering and regenerative medicine >Design and characterization of a biodegradable double-layer scaffold aimed at periodontal tissue-engineering applications
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Design and characterization of a biodegradable double-layer scaffold aimed at periodontal tissue-engineering applications

机译:针对牙周组织工程应用的可生物降解双层支架的设计与表征

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摘要

The inefficacy of the currently used therapies in achieving the regeneration ad integrum of the periodontium stimulates the search for alternative approaches, such as tissue-engineering strategies. Therefore, the core objective of this study was to develop a biodegradable double-layer scaffold for periodontal tissue engineering. The design philosophy was based on a double-layered construct obtained from a blend of starch and poly-epsilon-caprolactone (30:70wt%; SPCL). A SPCL fibre mesh functionalized with silanol groups to promote osteogenesis was combined with a SPCL solvent casting membrane aiming at acting as a barrier against the migration of gingival epithelium into the periodontal defect. Each layer of the double-layer scaffolds was characterized in terms of morphology, surface chemical composition, degradation behaviour and mechanical properties. Moreover, the behaviour of seeded/cultured canine adipose-derived stem cells (cASCs) was assessed. In general, the developed double-layered scaffolds demonstrated adequate degradation and mechanical behaviour for the target application. Furthermore, the biological assays revealed that both layers of the scaffold allow adhesion and proliferation of the seeded undifferentiated cASCs, and the incorporation of silanol groups into the fibre-mesh layer enhance the expression of a typical osteogenic marker. This study allowed an innovative construct to be developed, combining a three-dimensional (3D) scaffold with osteoconductive properties and with potential to assist periodontal regeneration, carrying new possible solutions to current clinical needs. Copyright (c) 2013 John Wiley & Sons, Ltd.
机译:当前使用的疗法在实现牙周膜的完整整合中的无效性刺激了对诸如组织工程策略的替代方法的寻找。因此,这项研究的核心目标是开发一种可生物降解的双层牙周组织工程支架。该设计原理基于从淀粉和聚ε-己内酯(30:70wt%; SPCL)的混合物获得的双层构造。将以硅烷醇基官能化以促进成骨的SPCL纤维网与SPCL溶剂浇铸膜结合,旨在充当防止牙龈上皮迁移到牙周缺损的屏障。在形态,表面化学组成,降解行为和机械性能方面表征了双层支架的每一层。此外,评估了种子/培养的犬脂肪来源的干细胞(cASCs)的行为。通常,对于目标应用,开发的双层支架表现出足够的降解和机械性能。此外,生物学分析表明,支架的两层都允许种子未分化的cASC粘附和增殖,并且将硅烷醇基团并入纤维网层可增强典型成骨标记物的表达。这项研究允许开发出一种创新的构建体,将具有骨传导特性并具有辅助牙周再生潜力的三维(3D)支架相结合,为当前的临床需求提供了新的解决方案。版权所有(c)2013 John Wiley&Sons,Ltd.

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