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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Potential of novel electrospun core-shell structured polyurethane/starch (hyaluronic acid) nanofibers for skin tissue engineering: In vitro and in vivo evaluation
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Potential of novel electrospun core-shell structured polyurethane/starch (hyaluronic acid) nanofibers for skin tissue engineering: In vitro and in vivo evaluation

机译:用于皮肤组织工程的新型电纺核心壳结构聚氨酯/淀粉(透明质酸)纳米纤维的潜力:体外和体内评价

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The biomaterials with excellent biocompatibility and biodegradability -'can lead to satisfactory wound healing. In this study, core-shell structured PU (polyurethane)/St (Starch) and PU/St (Hyaluronic Acid (HA)) nanofibers were fabricated with coaxial electrospinning technique. The morphology characterization of the core-shell structure of nanofibers was investigated by scanning electron microscopy (SEM) and transmission electron microscopy (TEM) images. Contact-angle measurements were confirmed the core/shell structure of the electrospun nanofibers with shell and core feed rates of 0.675 L/min and <0.135 L/min, respectively. The average fiber diameter values were calculated for polyurethane nanofibers (836 +/- 172.13 nm), PU/St nanofibers (612 +/- 93.21 nm) and PU/St (HA) nanofibers (428 +/- 7832 nm). The average porosity values of scaffolds were determined for PU (1.251 +/- 0.235 mu m), PU/St (1.734 +/- 0.284 mu m) and PU/St (HA) (3.186 +/- 0.401 mu m). The core-shell PU/St and PU/St (HA) nanofibers were evaluated in vitro by using mouse fibroblasts (L929) cells. Cell morphology and viability results were exhibited significant enhancement in cell promoting and cell attachment Furthermore, in vivo studies was indicated Core-shell PU/St (HA) wound dressing can be an appropriate candidate for skin tissue engineering and wound healing. (C) 2019 Published by Elsevier B.V.
机译:具有优异的生物相容性和生物降解性的生物材料,导致伤口愈合令人满意。在该研究中,用同轴电纺丝技术制造核 - 壳结构PU(聚氨酯)/ ST(淀粉)和PU / ST(透明质酸(HA))纳米纤维。通过扫描电子显微镜(SEM)和透射电子显微镜(TEM)图像来研究纳米纤维核心壳结构的形态学表征。通过壳和核心进料率为0.675L / min和<0.135L / min的壳体纳米纤维的核心/壳结构。为聚氨酯纳米纤维(836 +/-172.13nm),PU / ST纳米纤维(612 +/- 93.21nm)和PU / St(HA)纳米纤维(428 +/- 7832nm)计算平均纤维直径值。测定支架的平均孔隙率值(1.251 +/-0.235μm),pu / st(1.734 +/- 0.284 mu m)和pu / st(ha)(3.186 +/- 0.401 mu m)。通过使用小鼠成纤维细胞(L929)细胞,在体外评估核 - 壳PU / ST和PU / ST(HA)纳米纤维。细胞形态和活力结果在细胞促进和细胞附着方面表现出显着的增强,在体内研究表明核心壳PU / ST(HA)伤口敷料可以是皮肤组织工程和伤口愈合的适当候选者。 (c)2019年由elestvier b.v发布。

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