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Electrospun poly(d/l-lactide-co-l-lactide) hybrid matrix: a novel scaffold material for soft tissue engineering

机译:电纺聚(d / l-丙交酯-co-l-丙交酯)混合基质:一种用于软组织工程的新型支架材料

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摘要

Electrospinning is a long-known polymer processing technique that has received more interest and attention in recent years due to its versatility and potential use in the field of biomedical research. The fabrication of three-dimensional (3D) electrospun matrices for drug delivery and tissue engineering is of particular interest. In the present study, we identified optimal conditions to generate novel electrospun polymeric scaffolds composed of poly-d/l-lactide and poly-l-lactide in the ratio 50:50. Scanning electron microscopic analyses revealed that the generated poly(d/l-lactide-co-l-lactide) electrospun hybrid microfibers possessed a unique porous high surface area mimicking native extracellular matrix (ECM). To assess cytocompatibility, we isolated dermal fibroblasts from human skin biopsies. After 5 days of in vitro culture, the fibroblasts adhered, migrated and proliferated on the newly created 3D scaffolds. Our data demonstrate the applicability of electrospun poly(d/l-lactide-co-l-lactide) scaffolds to serve as substrates for regenerative medicine applications with special focus on skin tissue engineering.
机译:电纺丝是一种众所周知的聚合物加工技术,由于其多功能性和在生物医学研究领域的潜在应用,近年来受到越来越多的关注和关注。用于药物递送和组织工程的三维(3D)电纺丝基质的制造特别令人关注。在本研究中,我们确定了产生新型电纺聚合物支架的最佳条件,该支架由聚-d / l-丙交酯和聚-1-丙交酯以50:50的比例组成。扫描电子显微镜分析表明,所产生的聚(d / l-丙交酯-co-l-丙交酯)电纺杂种超细纤维具有独特的多孔高表面积,可模仿天然细胞外基质(ECM)。为了评估细胞相容性,我们从人皮肤活检组织中分离了真皮成纤维细胞。体外培养5天后,成纤维细胞在新创建的3D支架上粘附,迁移并增殖。我们的数据表明,静电纺丝聚(d / l-丙交酯-co-l-丙交酯)支架可作为再生医学应用的底物,特别关注皮肤组织工程。

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