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首页> 外文期刊>Journal of Applied Polymer Science >Melt spun microporous fibers using poly(lactic acid) and sulfonated copolyester blends for tissue engineering applications
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Melt spun microporous fibers using poly(lactic acid) and sulfonated copolyester blends for tissue engineering applications

机译:使用聚乳酸和磺化共聚酯共混物熔融纺制微孔纤维,用于组织工程应用

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摘要

Microporous fibers can potentially increase diffusional properties of three-dimensional nonwoven scaffolds used for tissue engineering applications. We have investigated the use of a water-dispersible copolyester, sulfonated copolyester (SP), to create micropores in composite fibers containing a blend of SP and poly(lactic acid) (PLA) at 1, 3, 5, and 10% SP content. PLA and SP were blended at 175°C in a microcompounder followed by extrusion of composite fibers and removal of SP from composite fibers by using hydrodispersion to form micropores in the composite fibers. Differential scanning calorimetric studies on unhydrolysed composite fibers showed that SP was partially miscible in PLA. Fourier transform infrared mapping of composite fiber cross sections revealed that SP was randomly dispersed throughout the cross section where the degree of dispersion depended on the SP content. As revealed by the scanning electron micrographs, the size of the micropores was dependent on the SP content. Micropores on fiber cross sections were observed in fibers above 3% SP indicating that at least 3% SP content is needed to produce droplet morphology of SP in these fibers. These results show that SP can be successfully used in a blend with PLA to produce microporous fibers to fabricate three-dimensional nonwoven scaffolds for tissue engineering applications.
机译:微孔纤维可以潜在地增加用于组织工程应用的三维非织造支架的扩散性能。我们已经研究了使用水分散性共聚酯,磺化共聚酯(SP)在包含SP和聚乳酸(PLA)含量为1、3、5和10%的混合物的复合纤维中产生微孔的方法。将PLA和SP在175°C的微粉碎机中混合,然后挤出复合纤维,并通过水分散在复合纤维中形成微孔,从复合纤维中去除SP。对未水解的复合纤维的差示扫描量热研究表明,SP在PLA中可部分混溶。复合纤维横截面的傅立叶变换红外图谱显示,SP随机分布在整个横截面中,其中分散程度取决于SP含量。如扫描电子显微照片所揭示,微孔的大小取决于SP含量。在高于3%SP的纤维中观察到纤维截面上的微孔,这表明至少需要3%SP含量才能在这些纤维中产生SP的液滴形态。这些结果表明,SP可以成功地与PLA混合使用,以生产微孔纤维,从而制造用于组织工程应用的三维无纺布支架。

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