FABRICATION OF SILK FIBROIN AND FLUORESCENT SILK FIBROIN FIBERS VIA ELECTROSPINNING

P. Wanakamol, Auekan Boonchot, Chutimol Pongsiri, Pimtawan Sangjantip, Supitcha Supansomboon, A. Promboon
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Abstract

Fibroin, derived from cocoon, is a natural polymer used widely and increasingly in various fields. In recent years, the development of fluorescent fibroin has gained attention in the field of tissue engineering, because of its biocompatibility, oxygen and water vapor permeability, biodegradability, and ability to be tested non-invasively.  In this work, silk fibroin and fluorescent silk fibroin fibers were fabricated via electrospinning, a simple process through which continuous submicron fibers can be produced. Degummed silk was extracted by dissolving in calcium chloride solution. The fibroin powder was dissolved in formic acid to form 10, 12, and 14 wt.% solutions.  Fluorescent fibroin solutions were achieved with addition of fluoresceine sodium (FS) as fluorescent dye.  The fluorescent solutions were prepared at 10 wt.% fibroin with varying FS concentration at 0.1, 0.3, and 0.5 wt.%, and at 0.5 wt.% FS with varying fibroin concentration at 10, 12, and 14 wt.%.   The fibroin solutions were fabricated into fibers via electrospinning using an applied voltage of 20 kV.  The surface morphology of silk fibroin fibers and fluorescent fibroin fibers, observed by scanning electron microscope (SEM), showed long continuous fibers. The average fiber diameter, in sub-micron range, was found to increase with fibroin concentration. The fluorescence intensity observed by fluorescence spectrophotometer was found to increase with decreasing fluorescent dye concentration. The functional groups and chemical structure of silk fibroin fibers analyzed by infrared spectroscopy (IR) were not affected by the addition of the fluorescent dye.
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通过电纺丝制造丝纤维素和荧光丝纤维素纤维
从蚕茧中提取的纤维素是一种天然聚合物,在各个领域的应用越来越广泛。近年来,荧光纤维素因其生物相容性、氧气和水蒸气渗透性、生物可降解性以及可进行无创检测等特点,在组织工程领域的发展备受关注。 在这项研究中,蚕丝纤维素和荧光蚕丝纤维素纤维是通过电纺丝制造的,电纺丝是一种可以生产连续亚微米纤维的简单工艺。脱胶蚕丝在氯化钙溶液中溶解提取。将纤维素粉末溶解在甲酸中,形成 10、12 和 14 wt.% 的溶液。 加入荧光染料荧光素钠(FS),制成荧光纤维素溶液。 在 10 wt.% 的纤维素浓度下,制备了 0.1、0.3 和 0.5 wt.% 的不同 FS 浓度的荧光溶液;在 0.5 wt.% 的 FS 浓度下,制备了 10、12 和 14 wt.% 的不同纤维素浓度的荧光溶液。 使用 20 kV 的外加电压通过电纺丝将纤维素溶液制成纤维。 通过扫描电子显微镜(SEM)观察,丝纤维素纤维和荧光纤维素纤维的表面形态显示为长的连续纤维。纤维的平均直径在亚微米范围内,随着纤维素浓度的增加而增加。荧光分光光度计观察到的荧光强度随着荧光染料浓度的降低而增加。通过红外光谱(IR)分析,丝纤维素纤维的官能团和化学结构不受荧光染料添加量的影响。
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