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Electrospraying and electrospinning of polymers for biomedical applications. poly(LACTIC-C0-GLYCOLIC ACID) and poly(ETHYLENE-CO-vinylacetate)

机译:用于生物医学应用的聚合物电喷雾和静电纺丝。聚(乳酸-CO-乙醇酸)和聚(乙烯 - 乙烯基乙酸乙酯)

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Significant opportunities exist for the processing of polymers (homopolymers and blends) using electric fields. Specific attention is given here to electrospinning, but we note that electroaerosol formation and field-modulated film casting represent additional processing options. Of particular interest is the ability to generate polymer fibers of sub-micron dimensions using electrospinning, down to about 0.05 microns (50 nm), a size range that has been traditionally difficult to access. In our work, poly(lactic-co-glycolic acid), PLA/PGA, poly(lactic acid) PLA, and poly(ethylene-co-vinylacetate) (PEVA) have been deposited from solutions in methylene chloride or chloroform by electrospraying or electrospinning to afford morphologically tailored materials for tissue engineering and related applications. Low solution concentrations tend to favor electrostatic spraying ('electro-aerosolization') while higher concentrations lead to spinning on fibrous mats. Preliminary observations of muscle cell growth on PLA electrospun mats are reported.
机译:使用电场处理聚合物(均聚物和混合物)的重要机会。在这里给出特定的注意力以静电纺丝,但我们注意到电氢形成和现场调制的薄膜铸件代表额外的处理选项。特别令人兴趣的是使用静电纺丝产生亚微米尺寸的聚合物纤维,低至约0.05微米(50nm),传统难以进入的尺寸范围。在我们的工作中,通过电喷雾或电喷雾或氯化二氯甲酸酯或氯仿溶液沉积了聚(乳酸 - 共乙醇酸),PLA / PGA,聚(PEVA)(PEVA)(乙烯 - 共乙烯基乙酸酯)(PEVA)。静电纺丝,为组织工程和相关应用提供形态定制的材料。低溶液浓度倾向于有利于静电喷涂('电雾器化'),而较高浓度导致纤维垫上的纺丝。报道了PLA Electromun垫上肌细胞生长的初步观察。

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