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A Facile Approach for the Mass Production of Submicro/Micro Poly (Lactic Acid) Fibrous Mats and Their Cytotoxicity Test towards Neural Stem Cells

机译:大量生产亚微/微聚乳酸纤维垫的简便方法及其对神经干细胞的细胞毒性测试

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摘要

Despite many of the studies being conducted, the electrospinning of poly (lactic acid) (PLA), dissolved in its common solvents, is difficult to be continuously processed for mass production. This is due to the polymer solution droplet drying. Besides, the poor stretching capability of the polymer solution limits the production of small diameter fibers. To address these issues, we have examined the two following objectives: first, using an appropriate solvent system for the mass production of fibrous mats with fine-tunable fiber diameters; second, nontoxicity of the mats towards Neural Stem Cell (NSC). To this aim, TFA (trifluoroacetic acid) was used as a cosolvent, in a mixture with DCM (dichloromethane), and the solution viscosity, surface tension, electrical conductivity, and the continuity of the electrospinning process were compared with the solutions prepared with common single solvents. The binary solvent facilitated PLA electrospinning, resulting in a long lasting, stable electrospinning condition, due to the low surface tension and high conductivity of the binary-solvent system. The fiber diameter was tailored from nano to micro by varying effective parameters and examined by scanning electron microscopy (SEM) and image-processing software. Laminin-coated electrospun mats supported NSC expansion and spreading, as examined using AlamarBlue assay and fluorescent microscopy, respectively.
机译:尽管进行了许多研究,但是溶解在其常用溶剂中的聚乳酸(PLA)的静电纺丝很难连续进行以进行批量生产。这归因于聚合物溶液液滴的干燥。此外,聚合物溶液的差的拉伸能力限制了小直径纤维的生产。为了解决这些问题,我们已经研究了以下两个目标:首先,使用适当的溶剂系统批量生产纤维直径可微调的纤维垫。第二,席子对神经干细胞(NSC)无毒。为此,将TFA(三氟乙酸)作为助溶剂与DCM(二氯甲烷)混合使用,并将溶液粘度,表面张力,电导率和电纺丝工艺的连续性与常规制备的溶液进行了比较。单一溶剂。由于二元溶剂体系的低表面张力和高电导率,二元溶剂促进了PLA的静电纺丝,从而导致了持久,稳定的静电纺丝条件。通过改变有效参数将纤维直径从纳米调整为微米,并通过扫描电子显微镜(SEM)和图像处理软件进行检查。分别使用AlamarBlue分析和荧光显微镜检查,层粘连蛋白涂层的电纺垫支持NSC的扩展和铺展。

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