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首页> 外文期刊>Journal of biomaterials applications >Bombyx mori silk-based materials with implication in skin repair: Sericin versus regenerated silk fibroin
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Bombyx mori silk-based materials with implication in skin repair: Sericin versus regenerated silk fibroin

机译:Bombyx Mori丝绸的丝网含有皮肤修复的含义:绢毛与再生丝素蛋白

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摘要

Recently, regenerated silk fibroin is one of the most investigated silk-based materials for tissue engineering. However, it needs complex preparation process and will irresistibly denature to solid state with time, which is the biggest challenge to produce in large scale and widely use it as commercial material. In this work, industrially produced sericin, silk fibroin amino acid, and silk fibroin powder were investigated on its physico-chemical and biological properties compared with laboratory prepared regenerated silk fibroin, in order to excavate the potential application in biomedical and therapeutical fields. The results showed that sericin may be the most suitable silk materials to use as an alternative in tissue engineering compared with regenerated silk fibroin. It was found that sericin can absorb UV in the range of 223-300 nm, inhibit tyrosinase, resist to free radicals, and retain water capacity similar to hyaluronic acid. Importantly, cell experiment on human fibroblast showed that sericin (0.05 wt%) could stimulate cell proliferation and obviously up-regulate the expression of collagen type I, collagen type III, and hyaluronidase I compared with the control at seven days, which is the closest equivalent to regenerated silk fibroin. These results suggested that sericin might be a valuable ingredient for skin repair on tissue engineering.
机译:最近,再生丝素蛋白是用于组织工程最受研究的丝绸材料之一。然而,它需要复杂的制备过程,并且与时间的固态不可抗拒,这是大规模生产的最大挑战,并广泛使用它作为商业材料。在这项工作中,与实验室制备的再生丝素蛋白相比,在工业上产生的丝素,丝素蛋白氨基酸和丝素蛋白粉末,以挖掘生物医学和治疗领域的潜在应用,研究了其物理化学和生物学特性。结果表明,与再生丝素蛋白相比,丝氨酸可以是用作组织工程的替代品的最合适的丝绸材料。发现丝氨氨酸可以吸收紫外线在223-300nm的范围内,抑制酪氨酸酶,抵抗自由基,并保持与透明质酸类似的水容量。重要的是,人成纤维细胞对细胞实验表明,血清素(0.05wt%)可以刺激细胞增殖,明显上调胶原蛋白I,胶原蛋白III型,透明质酸酶I的表达与七天的控制相比,这是最接近的相当于再生丝素蛋白。这些结果表明,Sericin可能是组织工程皮肤修复的有价值的成分。

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