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首页> 外文期刊>Journal of Applied Polymer Science >Rapid formation of flexible silk fibroin gel-like films
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Rapid formation of flexible silk fibroin gel-like films

机译:快速形成柔性丝素蛋白凝胶状薄膜

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Flexible silk fibroin gel-like films with microporous morphology were prepared from B. mori silk fibroin fibers directly solubilized in formic acid/CaCl2 solvent. These films were characterized by several analysis techniques to determine the structure and properties of films. The pore size of gel-like films can be adjusted through SF concentration and Ca ions concentration. The controllable pore size in gel-like films was grew from 35 mu m to 100 mu m under the increase of fibroin concentration from 1.0 wt % to 8.0 wt %. At the same time, the water content of silk fibroin gel-like film decreased from 83.5 +/- 3.4% to 68.2 +/- 2.6%. With increasing Ca ions contents from 2.0 wt % to 10.0 wt % in dissolution process, the pore size and water content of silk fibroin gel-like films grew larger, especially its water content values reached 86.2 +/- 4.0% at 10.0 wt % Ca ions concentration. At wet condition, the gel-like film with beta-sheet structure showed higher breaking stress (4.26 +/- 0.31 MPa) and elongation (45.45 +/- 15.79%) at 8.0 wt % concentration. With the preparation method, the membrane is hydrophilic and the pore size is adjustable, which contributes to high toughness and favorable cell growth environment, suggesting that these silk fibroin gel-like films can be a potential candidate scaffold for biomedical applications, such as wound dressing, facial mask, contact lenses, etc. (C) 2014 Wiley Periodicals, Inc.
机译:用直接溶于甲酸/ CaCl2溶剂中的桑蚕丝素蛋白纤维制备具有微孔形态的柔性丝素蛋白凝胶状薄膜。这些膜通过几种分析技术来表征,以确定膜的结构和性能。可以通过SF浓度和Ca离子浓度来调节凝胶状膜的孔径。在纤维蛋白浓度从1.0重量%增加到8.0重量%的情况下,凝胶状膜中的可控制的孔径从35μm增加到100μm。同时,丝纤蛋白凝胶状膜的水含量从83.5 +/- 3.4%降低至68.2 +/- 2.6%。随着溶解过程中Ca离子含量从2.0 wt%增加到10.0 wt%,丝素蛋白凝胶状薄膜的孔径和水含量增大,特别是在10.0 wt%Ca时其水含量值达到86.2 +/- 4.0%离子浓度。在湿状态下,具有β-片状结构的凝胶状膜在8.0wt%浓度下显示出较高的断裂应力(4.26 +/- 0.31MPa)和伸长率(45.45 +/- 15.79%)。通过该制备方法,该膜是亲水的并且孔径是可调节的,这有助于高韧性和有利的细胞生长环境,表明这些丝心蛋白凝胶状膜可以作为生物医学应用如伤口敷料的潜在候选支架。 ,面膜,隐形眼镜等。(C)2014 Wiley Periodicals,Inc.

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