首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >A green salt-leaching technique to produce sericin/PVA/glycerin scaffolds with distinguished characteristics for wound-dressing applications
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A green salt-leaching technique to produce sericin/PVA/glycerin scaffolds with distinguished characteristics for wound-dressing applications

机译:一种绿色盐浸技术,可生产具有独特特性的丝胶/ PVA /甘油支架,可用于创面护理

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Sericin/PVA/glycerin scaffolds could be fabricated using the freeze-drying technique; they showed good physical and biological properties and can be applied as wound dressings. However, freeze-drying is an energy- and time-consuming process with a high associated cost. In this study, an alternative, solvent-free, energy- and time-saving, low-cost salt-leaching technique is introduced as a green technology to produce sericin/PVA/glycerin scaffolds. We found that sericin/PVA/glycerin scaffolds were successfully fabricated without any crosslinking using a salt-leaching technique. The salt-leached sericin/PVA/glycerin scaffolds had a porous structure with pore interconnectivity. The sericin in the salt-leached scaffolds had a crystallinity that was as high as that of the freeze-dried scaffolds. Compared to the freeze-dried scaffolds with the same composition, the salt-leached sericin/PVA/glycerin scaffolds has larger pores, a lower Young's modulus, and faster rates of biodegradation and sericin release. When cultured with L929 mouse fibroblast cells, a higher number of cells were found in the salt-leached scaffolds. Furthermore, the salt-leached scaffolds were less adhesive to the wound, which would reduce pain upon removal. Therefore, salt-leached sericin/PVA/glycerin scaffolds with distinguished characteristics were introduced as another choice of wound dressing, and their production process was simpler, more energy efficient, and saved time and money compared to the freeze-dried scaffolds. (c) 2014 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater, 103B: 915-924, 2015.
机译:Sericin / PVA /甘油支架可以使用冷冻干燥技术制造;它们表现出良好的物理和生物学特性,可用作伤口敷料。然而,冷冻干燥是耗能和耗时的过程,并且具有较高的相关成本。在这项研究中,一种替代的,无溶剂,节省能源和时间的低成本盐浸技术被引入作为绿色技术来生产丝胶蛋白/ PVA /甘油支架。我们发现,使用盐浸技术无需任何交联即可成功制备丝胶/ PVA /甘油支架。盐浸出的丝胶/ PVA /甘油支架具有带孔互连性的多孔结构。盐沥滤支架中的丝胶蛋白的结晶度与冻干支架的结晶度一样高。与具有相同组成的冻干支架相比,盐浸丝胶/ PVA /甘油支架具有更大的孔,更低的杨氏模量以及更快的生物降解和丝胶释放速度。当用L929小鼠成纤维细胞培养时,在盐浸支架中发现了更多的细胞。此外,盐浸支架对伤口的粘附性较小,这将减少移除后的疼痛。因此,引入具有独特特性的盐浸丝胶/ PVA /甘油支架作为伤口包扎的另一种选择,与冻干支架相比,它们的生产过程更简单,更节能,节省时间和金钱。 (c)2014 Wiley Periodicals,Inc. J Biomed Mater Res B部分:Appl Biomater,103B:915-924,2015。

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