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Poly(ε-caprolactone) Scaffolds Fabricated by Melt Electrospinning for Bone Tissue Engineering

机译:熔融纺丝法制备的聚(ε-己内酯)支架在骨组织工程中的应用

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摘要

Melt electrospinning is a promising approach to manufacture biocompatible scaffolds for tissue engineering. In this study, melt electrospinning of poly(ε-caprolactone) onto structured, metallic collectors resulted in scaffolds with an average pore size of 250–300 μm and an average fibre diameter of 15 μm. Scaffolds were seeded with ovine osteoblasts in vitro. Cell proliferation and deposition of mineralised extracellular matrix was assessed using PicoGreen® (Thermo Fisher Scientific, Scoresby, Australia) and WAKO® HR II (WAKO, Osaka, Japan) calcium assays. Biocompatibility, cell infiltration and the growth pattern of osteoblasts on scaffolds was investigated using confocal microscopy and scanning electron microscopy. Osteoblasts proliferated on the scaffolds over an entire 40-day culture period, with excellent survival rates and deposited mineralized extracellular matrix. In general, the 3D environment of the structured melt electrospun scaffold was favourable for osteoblast cultures.
机译:熔体静电纺丝是制造用于组织工程的生物相容性支架的有前途的方法。在这项研究中,聚(ε-己内酯)熔融静电纺丝到结构化的金属收集器上,产生的支架的平均孔径为250–300μm,平均纤维直径为15μm。在体外将支架植入绵羊成骨细胞。使用PicoGreen ®(Thermo Fisher Scientific,Scoresby,澳大利亚)和WAKO ® HR II(WAKO,日本大阪)进行钙分析,评估细胞的增殖和矿化的细胞外基质的沉积。 。使用共聚焦显微镜和扫描电子显微镜研究了支架上成骨细胞的生物相容性,细胞浸润和生长模式。成骨细胞在整个40天的培养过程中都在支架上增殖,具有极好的存活率和矿化的细胞外基质沉积。通常,结构化熔融电纺丝支架的3D环境有利于成骨细胞培养。

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