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Effects of transglutaminase on sorption, mechanical and moisture-related properties of gelatin films.

机译:转谷氨酰胺酶对明胶薄膜的吸附,机械和水分相关性质的影响。

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摘要

Biodegradable and edible protein films have received considerable research interest due to the increase in environment protection consciousness. However, protein films always have poor mechanical properties and water-resistant ability compared with synthetic films. Thus, the effects of transglutaminase on sorption characteristics including adsorption kinetics and sorption isotherms, mechanical properties, moisture content, total soluble matter and surface hydrophobicity of gelatin films were analysed. Relative humidity and plasticizer content significantly affected moisture equilibration time. The lower the relative humidity and plasticizer content, the shorter the moisture equilibration time. Transglutaminase treatment significantly decreased moisture adsorption rate and balance moisture content of gelatin films. The sorption isotherm data were mathematically fitted to the GAB model. Transglutaminase treatment increased the tensile strength value and the mean contact angle by 8.4-25.6% and 2.1-2.3 degrees , respectively; while decreasing the moisture content value by 2.6-9%. These results show that transglutaminase treatment could be an effective and practical method to modify moisture sorption characteristics, moisture content and surface hydrophobicity of gelatin films, which suggests that the water-barrier ability of gelatin films can be improved by transglutaminase treatment.
机译:由于环境保护意识的提高,可生物降解和可食用的蛋白质膜已引起了广泛的研究兴趣。然而,与合成膜相比,蛋白质膜总是具有较差的机械性能和耐水性。因此,分析了转谷氨酰胺酶对明胶膜吸附特性的影响,包括吸附动力学和吸附等温线,机械性能,水分含量,总可溶性物质和表面疏水性。相对湿度和增塑剂含量会显着影响水分平衡时间。相对湿度和增塑剂含量越低,水分平衡时间越短。转谷氨酰胺酶处理显着降低了明胶薄膜的水分吸收率并平衡了水分含量。吸附等温线数据在数学上适合于GAB模型。转谷氨酰胺酶处理分别使抗张强度值和平均接触角分别提高了8.4-25.6%和2.1-2.3度;同时将水分含量值降低2.6-9%。这些结果表明,转谷氨酰胺酶处理可能是改变明胶膜的水分吸收特性,水分含量和表面疏水性的有效方法,这表明通过转谷氨酰胺酶处理可以提高明胶膜的阻水能力。

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