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Studies of P(L/D)LA 96/4 non-woven scaffolds and fibres; properties, wettability and cell spreading before and after intrusive treatment methods

机译:P(L / D)LA 96/4非织造脚手架和纤维的研究;侵入性处理方法前后的性能,润湿性和细胞扩散

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摘要

Poly(L/D)lactide 96/4 fibres with diameters of 50 and 80 microm were produced. The smaller diameter fibres were carded and needle punched to form a non-woven mat. Fibres and non-woven mats were hydrolysed for a period of 20 weeks. Fibres and pressed non-woven discs were treated with low-temperature oxygen plasma and alkaline KOH hydrolysis and ethanol washing was used as a reference treatment. The non-wovens lost 50% of their tear strength after 8 weeks in vitro while the fibres still retained 65% tensile strength after 20 weeks. Hydrolysation time in KOH, treatment time and power settings of the oxygen plasma were all directly proportional to the mechanical properties of the fibres. Increasing time (and power) resulted in lower tensile properties. Rapid wetting of the scaffolds was achieved by oxygen plasma, KOH hydrolysation and ethanol washing. Cell culturing using fibroblast cell line was carried out for the treated and non-treated non-woven scaffolds. In terms of adhesion and the spreading of the cells into the scaffold, best results after 3-day culturing were obtained for the oxygen plasma treated scaffolds.
机译:生产了直径为50和80微米的聚(L / D)丙交酯96/4纤维。将较小直径的纤维梳理并针刺以形成非织造垫。纤维和非织造垫要水解20周。将纤维和压制的非织造圆盘用低温氧等离子体处理,并进行碱KOH水解和乙醇洗涤作为参考处理。在体外8周后,非织造布的撕裂强度降低了50%,而在20周后,纤维仍保留了65%的拉伸强度。 KOH中的水解时间,氧等离子体的处理时间和功率设置均与纤维的机械性能成正比。时间(和功率)的增加导致拉伸性能降低。通过氧等离子体,KOH水解和乙醇洗涤实现了支架的快速润湿。对于处理过的和未处理的非织造支架,进行了使用成纤维细胞系的细胞培养。就粘附和细胞向支架中的扩散而言,经过3天的氧等离子体处理的支架获得了最佳结果。

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