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首页> 外文期刊>Journal of Bioscience and Bioengineering >Effects of nozzle type atmospheric dry air plasma on L929 fibroblast cells hybrid poly (epsilon-caprolactone)/chitosan/poly (epsilon-caprolactone) scaffolds interactions
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Effects of nozzle type atmospheric dry air plasma on L929 fibroblast cells hybrid poly (epsilon-caprolactone)/chitosan/poly (epsilon-caprolactone) scaffolds interactions

机译:喷嘴型大气干燥空气血浆对L929成纤维细胞混合聚(ε-己内酯)/壳聚糖/聚(ε-己内酯)支架相互作用的影响

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In the study presented here, in order to improve the surface functionality and topography of poly (epsilon-caprolactone) (PCL)/chitosan/PCL hybrid tissue scaffolds fabricated layer by layer with electrospinning technique, an atmospheric pressure nozzle type plasma surface modification was utilized. The optimization of the plasma process parameters was carried out by monitoring the changes in surface hydrophilicity by using contact angle measurements. SEM, AFM and XPS analyses were utilized to observe the changes in topographical and chemical properties of the modified surfaces. The results showed that applied plasma modification altered the nanotopography and the functionality of the surfaces of the scaffolds. The modification applied for 9 min from a distance of 17 cm was found to provide the possible contact angle value (75.163 +/- 0.083) closest to the target value which is the value of tissue culture polystyrene (TCPS) petri dishes (similar to 49.7 degrees), compared to the unmodified samples (84.46 +/- 3.86). In vitro cell culture was carried out by L929 mouse fibroblast cell line in order to examine the effects of plasma surface modification on cell material interactions. Standard MIT assay showed improved cell viability on/within modified scaffolds confirmed with the observations of the cell attachment and the morphology by means of SEM, fluorescence and confocal imaging. The experiments performed in the study proved the enhanced biocompatibility of the nozzle type dry air plasma modified scaffolds. (C) 2016, The Society for Biotechnology, Japan. All rights reserved.
机译:在本文提出的研究中,为了改善通过静电纺丝技术逐层制造的聚(ε-己内酯)(PCL)/壳聚糖/ PCL杂合组织支架的表面功能和形貌,利用了大气压喷嘴型等离子体表面改性。通过使用接触角测量监测表面亲水性的变化来进行等离子体工艺参数的优化。 SEM,AFM和XPS分析用于观察改性表面的形貌和化学性质的变化。结果表明,施加的等离子体改性改变了纳米形貌和支架表面的功能。发现从17厘米的距离进行9分钟的修改可提供最接近目标值的可能的接触角值(75.163 +/- 0.083),该目标值是组织培养聚苯乙烯(TCPS)培养皿的值(类似于49.7)与未修改的样本相比(84.46 +/- 3.86)。为了检查血浆表面修饰对细胞材料相互作用的影响,使用L929小鼠成纤维细胞系进行了体外细胞培养。标准的MIT分析表明,通过SEM,荧光和共聚焦成像观察到的细胞附着和形态,证实了在修饰的支架上/之内的细胞活力得到了改善。在研究中进行的实验证明了喷嘴型干空气等离子体改性的支架增强了生物相容性。 (C)2016年,日本生物技术学会。版权所有。

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