首页> 外文会议>Chiang Mai International Conference on Biomaterials and Applications >A Novel Silk Sericin/Poly (Vinyl Alcohol) Composite Film Crosslinked with Genipin: Fabrication and Characterization for Tissue Engineering Applications
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A Novel Silk Sericin/Poly (Vinyl Alcohol) Composite Film Crosslinked with Genipin: Fabrication and Characterization for Tissue Engineering Applications

机译:用Genipin交联的新型丝绸丝氨酸/聚(乙烯醇)复合膜:组织工程应用的制造和表征

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Silk sericin, a gumming protein from silk cocoons, has been a considerable natural protein-based biopolymer for fabrication of desired constructs for potential tissue engineering applications. This study investigated the formulation of a novel biopolymeric silk sericin/poly (vinyl alcohol) film with genipin as crosslinking agent and its physical properties. Silk sericin itself forms a fragile material, adding other polymers such as poly (vinyl alcohol) and glycerin, a plasticizer, resulting in a strong and flexible matrix. The results indicated that at higher concentration of genipin (0.1% w/v), the percentages of crosslinking in sericin/poly (vinyl alcohol) films was significantly higher. The matrices also exhibited higher tensile modulus value and higher elasticity at higher genipin concentration which can be inferred to higher integrity of the structure compared to matrices with genipin at low concentration (0.01% w/v). On the other hand, the reverse patterns were found in percentages of light transmission and the releasing profile of sericin from the composite films. Adding genipin into the matrices resulted in a lower percentage of light transmission indicated the increase in opacity. The releasing profile of sericin from the films showed that high genipin concentrations reduced the peak of protein released and trended to provide the sustain-released profile of protein. These findings indicated that silk sericin film can be formed and the concentrations of crosslinking agents really affect its physical properties.
机译:来自丝茧的胶凝蛋白的丝丝蛋白是一种相当大的基于天然蛋白质的生物聚合物,用于制造用于潜在的组织工程应用的所需构建体。本研究研究了具有Genipin作为交联剂的新型生物聚合物丝丝蛋白/聚(乙烯醇)膜及其物理性质。丝霉素本身形成脆性材料,加入其他聚合物,例如聚(乙烯醇)和甘油,增塑剂,导致强且柔性的基质。结果表明,在较高浓度的Genipin(0.1%w / v)下,硅蛋白/聚(乙烯醇)膜中交联的百分比显着高。在更高的Genipin浓度下,矩阵还表现出更高的拉伸模量值和更高的弹性,与低浓度的Genipin(0.01%w / v)的矩阵相比,可以推断出结构的更高完整性。另一方面,在复合膜的光传输百分比和硅蛋白的释放轮廓中发现了反向模式。将Genipin添加到基质中导致较低的光传输百分比表明不透明度的增加。从薄膜释放丝氨酸的释放谱表明,高Genipin浓度降低了释放的蛋白质的峰值并趋势,以提供释放的蛋白质的易受释放的曲线。这些发现表明,可以形成丝丝膜膜,交联剂的浓度真正影响其物理性质。

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