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Gelatin-assisted conglutination of aligned polycaprolactone nanofilms into a multilayered fibre-guiding scaffold for periodontal ligament regeneration

机译:明胶辅助将对齐的聚己内甲酮纳米菌纳米啉酶纳入多层纤维引导支架中的牙周韧带再生

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摘要

The repair or regeneration of well-aligned periodontal ligaments (PDL) remains a challenging clinical task in reconstructive surgeries and regenerative medicine. Topographical cell guidance has been utilized as a tissue-engineering bionic technique and facilitates the geometric design of composite materials. In this investigation, we manufactured multilayered scaffolds by cementing aligned polycaprolactone (PCL) electrospun films together using gelatin; the fibre-guiding scaffold mimicked the natural structure of periodontal ligaments and was aimed at promoting the growth of functionally oriented ligamentous fibres in vivo . Experiments in vitro demonstrated that this scaffold could provide good attachment and tissue-mimicking microenvironments for “seeding cells”, that is, human periodontal ligament mesenchyme cells (PDLSCs). Histological and immunofluorescence results indicated that a three-dimensional aligned construct could significantly enhance the angulation of new-born PDL-like tissue and facilitate collagen formation and maturation at periodontal fenestration defects compared to an amorphous PCL embedded scaffold. Multilayered fibre-guiding scaffold made of PCL and gelatin was demonstrated to be applicable for oriented neogenesis of periodontium, and it may represent an important potential application for dental stem cell delivery for periodontal regenerative medicine.
机译:对准良好的牙周韧带(PDL)的修复或再生仍然是重建手术和再生医学中的挑战性临床任务。地形细胞引导已被用作组织工程仿生技术,并促进复合材料的几何设计。在该研究中,我们通过使用明胶将取向的聚己内酯(PCL)电纺膜固定在一起制造多层支架;纤维引导支架模仿牙周韧带的自然结构,旨在促进体内功能取向的韧带纤维的生长。体外实验表明,该支架可以为“播种细胞”提供良好的附着和组织模拟微环境,即人牙周韧带间充质细胞(PDLSC)。组织学和免疫荧光结果表明,与无定形PCL嵌入的支架相比,三维排列构建体可以显着增强新出生的PDL样组织的角度,并促进牙周性衰对缺陷处的胶原形成和成熟。由PCL和明胶制成的多层纤维引导支架被证明是适用于牙周的导向的新发生,并且可能代表牙周再生医学的牙科干细胞递送的重要潜在应用。

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