首页> 外文期刊>BioMed research international >Morphological Effects of HA on the Cell Compatibility of Electrospun HA/PLGA Composite Nanofiber Scaffolds
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Morphological Effects of HA on the Cell Compatibility of Electrospun HA/PLGA Composite Nanofiber Scaffolds

机译:HA对电纺HA / PLGA复合纳米纤维支架细胞相容性的形态学影响

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摘要

Tissue engineering is faced with an uphill challenge to design a platform with appropriate topography and suitable surface chemistry, which could encourage desired cellular activities and guide bone tissue regeneration. To develop such scaffolds, composite nanofiber scaffolds of nHA and sHA with PLGA were fabricated using electrospinning technique. nHA was synthesized using precipitation method, whereas sHA was purchased. The nHA and sHA were suspended in PLGA solution separately and electrospun at optimized electrospinning parameters. The composite nanofiber scaffolds were characterized by FE-SEM, EDX analysis, TEM, XRD analysis, FTIR, and X-ray photoelectron. The potential of the HA/PLGA composite nanofiber as bone scaffolds in terms of their bioactivity and biocompatibility was assessed by culturing the osteoblastic cells onto the composite nanofiber scaffolds. The results from in vitro studies revealed that the nHA/PLGA composite nanofiber scaffolds showed higher cellular adhesion, proliferation, and enhanced osteogenesis performance, along with increased Ca~(+2) ions release compared to the sHA/PLGA composite nanofiber scaffolds and pristine PLGA nanofiber scaffold. The results show that the structural dependent property of HA might affect its potential as bone scaffold and implantable materials in regenerative medicine and clinical tissue engineering.
机译:组织工程面临着艰巨的挑战,以设计具有合适的地形和合适的表面化学特性的平台,这可以促进所需的细胞活动并指导骨组织再生。为了开发这种支架,使用电纺丝技术制备了nHA和sHA与PLGA的复合纳米纤维支架。使用沉淀法合成nHA,而购买sHA。将nHA和sHA分别悬浮在PLGA溶液中,并在优化的电纺丝参数下进行电纺丝。通过FE-SEM,EDX分析,TEM,XRD分析,FTIR和X射线光电子对复合纳米纤维支架进行了表征。通过将成骨细胞培养到复合纳米纤维支架上,评估了HA / PLGA复合纳米纤维作为骨支架在生物活性和生物相容性方面的潜力。体外研究结果表明,与sHA / PLGA复合纳米纤维支架和原始PLGA相比,nHA / PLGA复合纳米纤维支架显示出更高的细胞粘附,增殖和增强的成骨性能,以及Ca〜(+2)离子释放增加。纳米纤维支架。结果表明,HA的结构依赖性可能会影响其在再生医学和临床组织工程中作为骨支架和可植入材料的潜力。

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