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Flexible polymer microtubes and microchannels via electrospinning

机译:通过静电纺丝的柔性聚合物微管和微通道

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Here we report an approach to fabricate flexible polymer self standing films embedded with continuous aligned microtubes/microchannels via electrospinning. The scheme is to wash the electrospun fibers selectively to form either microtubes/microchannels. Optical microscope (OM) and Scanning electron microscope images are evident for the well aligned microtubes and microchannels respectively with a diameter of -8 um and a length of -4 cm. Meniscus of tetrahydrofuran in the microtubes can be observed explicitly in the OM images. Mutually perpendicular microtubes are also fabricated on a polymer film. Angular distribution of aligned microstructures indicates the standard deviation is not more than 1°. These tubes/ channels can be potential for tissue engineering as they could provide a directional template for the growth when a biodegradable polymer such as Poly(vinylalcohol) is used.
机译:在这里,我们报告了一种通过静电纺丝制造嵌入有连续排列的微管/微通道的柔性聚合物自支撑膜的方法。该方案是选择性地洗涤电纺纤维以形成微管/微通道。光学显微镜(OM)和扫描电子显微镜图像对于直径分别为-8 um且长度为-4 cm的排列良好的微管和微通道很明显。可以在OM图像中明确观察到微管中的四氢呋喃弯液面。相互垂直的微管也被制造在聚合物膜上。对齐的微结构的角度分布表明标准偏差不超过1°。这些管/通道对于组织工程可能具有潜力,因为当使用可生物降解的聚合物(例如聚乙烯醇)时,它们可以为生长提供方向模板。

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