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首页> 外文期刊>Journal of Cleaner Production >Recycling of waste silk fibers towards silk fibroin fibers with different structures through wet spinning technique
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Recycling of waste silk fibers towards silk fibroin fibers with different structures through wet spinning technique

机译:通过湿纺技术将废丝纤维回收为具有不同结构的丝素蛋白纤维

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摘要

This study aims at dealing with a sustainable strategy and cleaner production through recycling of waste silk fibers towards regenerated silk fibroin fibers (RSFFs) with particular and interesting morphologies such as lumen-containing RSFF. This was implemented via wet-spinning of undialyzed solution using two coagulation baths. RSFF structure controlling process was accomplished through adjusting the production parameters. RSFFs with both irregular and circular cross-sections were produced. Coagulation at 23 and 35 degrees C led to RSFFs with bean- or U-shaped cross-sections. Isolated pores were observed within the cross-section of RSFF coagulated at 35 degrees C. Further increasing the coagulation bath temperature to 55 degrees C resulted in lumen-containing RSFF. The RSFFs showed increased wicking properties according to the order of: circular cross-section< bean-shaped cross-section< U-shaped cross-section< lumen-containing cross-section. The messy mass composed of beta-cyclodextrin-containing RSFFs showed not only biocompatibility without toxicity, but also significantly enhanced cell proliferation and directed cell growth and adhesion. (C) 2019 Elsevier Ltd. All rights reserved.
机译:这项研究旨在通过将废丝纤维回收为具有特殊和令人感兴趣的形态(例如含内腔的RSFF)的再生丝素蛋白纤维(RSFF)来应对可持续战略和清洁生产。这是通过使用两个混凝浴湿纺未透析溶液来实现的。 RSFF的结构控制过程是通过调整生产参数来完成的。产生了具有不规则横截面和圆形横截面的RSFF。在23和35摄氏度下进行混凝会产生具有豆形或U形横截面的RSFF。在35℃下凝结的RSFF的横截面内观察到孤立的孔。将凝结浴温度进一步升高至55℃导致含内腔的RSFF。 RSFF根据以下顺序显示出增加的芯吸特性:圆形横截面<豆形横截面<U形横截面<含管腔的横截面。由含β-环糊精的RSFF组成的混乱团块不仅显示出生物相容性,而且没有毒性,而且还显着增强了细胞增殖,并指导了细胞的生长和粘附。 (C)2019 Elsevier Ltd.保留所有权利。

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