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首页> 外文期刊>Micron: The international research and review journal for microscopy >Structure and physico-mechanical properties of low temperature plasma treated electrospun nanofibrous scaffolds examined with atomic force microscopy
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Structure and physico-mechanical properties of low temperature plasma treated electrospun nanofibrous scaffolds examined with atomic force microscopy

机译:用原子力显微镜检查低温等离子体处理电纺纳米纤维支架的结构和物理 - 力学性能

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Electrospun nanofibrous scaffolds are willingly used in tissue engineering applications due to their tunable mechanical, chemical and physical properties. Additionally, their complex openworked architecture is similar to the native extracellular matrix of living tissue. After implantation such scaffolds should provide sufficient mechanical support for cells. Moreover, it is of crucial importance to ensure sterility and hydrophilicity of the scaffold. For this purpose, a low temperature surface plasma treatment can be applied.& para;& para;In this paper, we report physico-mechanical evaluation of stiffness and adhesive properties of electrospun mats after their exposition to low temperature plasma. Complex morphological and mechanical studies performed with an atomic force microscope were followed by scanning electron microscope imaging and a wettability assessment. The results suggest that plasma treatment can be a useful method for the modification of the surface of polymeric scaffolds in a desirable manner. Plasma treatment improves wettability of the polymeric mats without changing their morphology.
机译:由于可调谐机械,化学和物理性质,耐电纺纳米纤维支架清洁地用于组织工程应用。另外,它们的复杂的透造型架构类似于生物组织的天然细胞外基质。植入后,这种支架应为细胞提供足够的机械支撑。此外,确保支架的无菌和亲水性至关重要。为此目的,可以应用低温表面等离子体处理。&Para;&Para;在本文中,我们在阐述低温等离子体后报告了电纺垫的刚度和粘合性能的物理机械评估。用原子力显微镜进行的复杂形态和机械研究,然后扫描电子显微镜成像和润湿性评估。结果表明,等离子体处理可以是以期望的方式改变聚合物支架表面的有用方法。等离子体处理改善了聚合物垫的润湿性而不改变它们的形态。

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