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Effects of Process Parameters on Structure and Properties of Melt-Blown Poly(Lactic Acid) Nonwovens for Skin Regeneration

机译:工艺参数对皮肤再生熔喷聚(乳酸)非织造织物结构与性能的影响

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摘要

Skin regeneration requires a three-dimensional (3D) scaffold for cell adhesion, growth and proliferation. A type of the scaffold offering a 3D structure is a nonwoven material produced via a melt-blown technique. Process parameters of this technique can be adapted to improve the cellular response. Polylactic acid (PLA) was used to produce a nonwoven scaffold by a melt-blown technique. The key process parameters, i.e., the head and air temperature, were changed in the range from 180–270 °C to obtain eight different materials (MB1–MB8). The relationships between the process parameters, morphology, porosity, thermal properties and the cellular response were explored in this study. The mean fiber diameters ranged from 3 to 120 µm. The average material roughness values were between 47 and 160 µm, whereas the pore diameters ranged from 5 to 400 µm. The calorimetry thermograms revealed a correlation between the temperature parameters and crystallization. The response of keratinocytes and macrophages exhibited a higher cell viability on thicker fibers. The cell-scaffold interaction was observed via SEM after 7 days. This result proved that the features of melt-blown nonwoven scaffolds depended on the processing parameters, such as head temperature and air temperature. Thanks to examinations, the most suitable scaffolds for skin tissue regeneration were selected.
机译:皮肤再生需要一种用于细胞粘附,生长和增殖的三维(3D)支架。提供3D结构的脚手架是通过熔喷技术生产的非织造材料。该技术的工艺参数可以适于改善蜂窝响应。聚乳酸(PLA)用于通过熔喷技术生产非织造支架。关键过程参数,即头部和空气温度,在180-270°C的范围内更换为八种不同的材料(MB1-MB8)。本研究探讨了过程参数,形态,孔隙率,热性能和细胞反应之间的关系。平均纤维直径范围为3至120μm。平均材料粗糙度值在47和160μm之间,而孔径范围为5至400μm。量热量图揭示了温度参数和结晶之间的相关性。角质形成细胞和巨噬细胞的响应在较厚的纤维上表现出更高的细胞活力。通过7天后通过SEM观察细胞 - 支架相互作用。结果证明了熔喷非织造支架的特征依赖于处理参数,例如头部温度和空气温度。由于考试,选择了用于皮肤组织再生的最合适的支架。

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