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首页> 外文期刊>Journal of polymer engineering >Electrospinning of poly(lactic acid)/ polycaprolactone blends: investigation of the governing parameters and biocompatibility
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Electrospinning of poly(lactic acid)/ polycaprolactone blends: investigation of the governing parameters and biocompatibility

机译:聚乳酸/聚己内酯共混物的静电纺丝:控制参数和生物相容性研究

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摘要

Blends of poly(lactic acid)/polycaprolactone (PLA/PCL) were electrospun under various conditions to study the influence of solution concentration, feed rate and voltage supply on the morphology of the nanofibers. To improve compatibility and to help produce fine electrospun nanofibers, an L-lactide/caprolactone (LACL) copolymer was introduced as a compatibilizer in the PLA/PCL blends. It was found that the solution concentration was a principal governing factor. The mean diameter of the fibers increased with the solution concentration, feed rate and voltage. Too high of a concentration and feed rate caused the fibers to stick to each other. A slow feed rate, 10% solution concentration, and 20 kV voltage were capable of producing thin, smooth and uniform fibers. Preliminary biocompatibility assays of the nanofibers were conducted with NIH 3T3 cells. The cells grown on the nanofiber blend exhibited spindle-like morphologies. The addition of PCL and LACL copolymer was found to improve the biocompatibility of PLA nanofibers, suggesting their potential application as cell culture scaffolds.
机译:在各种条件下对聚乳酸/聚己内酯(PLA / PCL)的混合物进行电纺丝,以研究溶液浓度,进料速度和供电电压对纳米纤维形态的影响。为了提高相容性并帮助生产精细的电纺纳米纤维,在PLA / PCL共混物中引入了L-丙交酯/己内酯(LACL)共聚物作为增容剂。发现溶液浓度是主要的控制因素。纤维的平均直径随溶液浓度,进料速度和电压而增加。浓度和进料速度太高会导致纤维彼此粘在一起。缓慢的进料速度,10%的溶液浓度和20 kV的电压能够生产细,光滑和均匀的纤维。用NIH 3T3细胞进行了纳米纤维的初步生物相容性测定。在纳米纤维混合物上生长的细胞表现出纺锤状的形态。发现添加PCL和LACL共聚物可改善PLA纳米纤维的生物相容性,表明它们作为细胞培养支架的潜在应用。

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