首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >Fabrication and characterization of polycaprolactone fumarate/gelatin-based nanocomposite incorporated with silicon and magnesium co-doped fluorapatite nanoparticles using electrospinning method
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Fabrication and characterization of polycaprolactone fumarate/gelatin-based nanocomposite incorporated with silicon and magnesium co-doped fluorapatite nanoparticles using electrospinning method

机译:用电刺素法掺入硅和镁共掺杂氟比特纳米粒子的聚己内酯富马酸盐/明胶基纳米复合材料的制备与表征

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The aim of this study was to fabricate and characterize biodegradable polycaprolactone fumarate(PCLF)/gelatin-based nanocomposite incorporated with the 0, 5 and 10 wt% silicon and magnesium co-doped fluorapatite nanoparticles (Si -Mg-FA) membranes using electrospinning process for guided bone regeneration (GBR) and guided tissue regeneration (GTR) applications. Results demonstrated the formation of randomly-oriented and defect-free fibers with various fiber sizes depending on the Si -Mg-FA content. Moreover, incorporation of 5 wt% Si -Mg-FA significantly improved the mechanical strength (1.5times) compared to the mechanical strength of PCLF/gelatin membrane and nanocomposite with 10 wt% nanoparticles. There was no clear difference between degradation rate of PCLF/gelatin and PCLF/gelatin with 5 wt% nanoparticles at 7, 14 and 28 days of immersion in phosphate buffer saline while 10 wt% nanoparticles significantly increased biodegradation of PCLF/gelatin, and no cytotoxic effect of membranes was seen. Finally, scanning electron microscopy (SEM) micrographs of fibroblast cells cultured on the samples demonstrated that the cells were completely attached and spread on the surface of nanocomposites. In summary, PCLF/gelatin membranes consisting of 5 wt% Si -Mg-FA nanoparticles could provide appropriate mechanical and biological properties and fairly good degradation rate, making it appropriate for GTR/GBR applications.
机译:本研究的目的是制造和表征可生物降解的聚己内酯富马酸薄物(PCLF)/明胶基纳米复合材料,其掺入0,5和10wt%硅和镁共掺杂的氟磷酸盐纳米粒子(Si-Mg-Fa)膜,使用静电纺丝工艺用于引导骨再生(GBR)和引导组织再生(GTR)应用。结果表明,根据Si -MG-FA含量,形成具有各种纤维尺寸的随机取向和无缺陷纤维。此外,与PCLF /明胶膜的机械强度和10wt%纳米颗粒的纳米复合材料的机械强度相比,掺入5wt%Si-Mg-Fa的掺入显着改善了机械强度(1.5倍)。 PCLF /明胶和PCLF /明胶的降解速率与7,14和28天的PCLF /明胶的降解速率没有明显差异,而在磷酸盐缓冲盐水中浸入磷酸盐缓冲盐水中,而10wt%纳米颗粒显着增加了PCLF /明胶的生物降解,没有细胞毒性看到膜的影响。最后,扫描电子显微镜(SEM)在样品上培养的成纤维细胞的显微照片证明细胞完全附着并在纳米复合材料表面上涂布。总之,由5wt%Si-Mg-Fa纳米颗粒组成的PCLF /明胶膜可以提供适当的机械和生物学性能并相当良好的降解速率,使得适用于GTR / GBR应用。

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