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Polymer blending or fiber blending: A comparative study using chitosan and poly(epsilon-caprolactone) electrospun fibers

机译:聚合物混合或纤维混合:使用壳聚糖和聚(ε-己内酯)电纺纤维的对比研究

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摘要

Nonwoven membranes of poly(epsilon-caprolactone) (PCL) and chitosan (CS) were produced according to the two methods: by blending the polymers in solution followed by electrospinning - polymer blending method - and by simultaneous deposition of fibers electrospun from separate solutions - fiber blending (FB) method. The two production methods were compared by assessing fiber morphology, mass loss, swelling degree, water contact angle, and mechanical properties of the resulting electrospun membranes. Furthermore, the adhesion, proliferation, and morphology of human dermal fibroblasts on the eight types of scaffold produced were evaluated to assess if the blending method used would influence cell-scaffold interaction. Cell adhesion to the different scaffolds lied in the interval 40-60%, with the CS scaffold presenting the lowest value. Interestingly, cell proliferation was the same when comparing polymer blending and FB scaffolds having 3:1 or 1:3 PCL/CS ratios but very different when the ratio was 1:1 - the FB scaffold sustained a proliferation rate double that of the polymer blending scaffold. This work shows that, when blending polymers to improve the properties of a scaffold for tissue engineering or 3D cell culture, their spatial distribution may considerably affect scaffold's properties and should be considered as another parameter requiring optimization. (c) 2018 Wiley Periodicals, Inc.
机译:根据两种方法制备聚(ε-己内酯)(PCL)和壳聚糖(CS)的非织造膜:通过将聚合物在溶液中混合,然后通过静电纺丝 - 聚合物混合方法和通过从单独的溶液中同时沉积纤维电纺器 - 纤维混合(FB)方法。通过评估所得的Electrom膜的纤维形态,质量损失,溶胀度,水接触角和机械性能来进行两种生产方法。此外,评估人皮肤成纤维细胞对产生的八种支架上的粘合,增殖和形态,以评估使用的混合方法是否会影响细胞支架相互作用。细胞粘附到不同的支架中呈现在40-60%的间隔中,CS支架呈现最低值。有趣的是,当比较聚合物混合和具有3:1或1:3的Fb支架时,细胞增殖是相同的,但是当比例为1:1时非常不同 - Fb支架持续增殖速率增加了聚合物混合的增加脚手架。该工作表明,当混合聚合物以改善组织工程或3D细胞培养的支架的性质时,它们的空间分布可能会显着影响支架的性质,并且应该被认为是需要优化的另一个参数。 (c)2018 Wiley期刊,Inc。

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