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Water sensitivity, antimicrobial, and physicochemical analyses of edible films based on HPMC and/or chitosan

机译:基于HPMC和/或壳聚糖的可食用薄膜的水敏感性,抗微生物性和理化分析

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Several properties of chitosan films associated or not with hydroxypropylmethylcellulose polymer (HPMC) and HPMC films incorporating or not nisin and/or milk fat were studied. Nisin addition at a level of 250 microg mL-1 and likewise chitosan at 1% (w/v) concentration were efficient for total inhibiting Aspergillus niger and Kocuria rhizophila food deterioration microorganisms. HPMC and chitosan films were transparent, whereas nisin and/or fat incorporation induced a 2-fold lightness parameter increase and, consequently, involved more white films. Measurements of tensile strength, as well as ultimate elongation, showed that chitosan and HPMC initial films were elastic and flexible. High thermal treatments and additive incorporation induced less elastic and more plastic films. Water vapor transmission as far as total water desorption rates suggested that chitosan films were slightly sensitive to water. Water transfer was decreased by <60% as compared with other biopolymer films. Regarding its hydrophobic property, the capacity of fat to improve film water barrier was very limited.
机译:研究了与羟丙基甲基纤维素聚合物(HPMC)相关或不相关的壳聚糖膜以及掺入或不含乳链菌肽和/或乳脂的HPMC膜的几种性能。添加250微克mL-1的乳链菌肽和同样浓度为1%(w / v)的脱乙酰壳多糖对抑制黑曲霉和嗜热小穗菌食物变质微生物具有有效的抑制作用。 HPMC和壳聚糖薄膜是透明的,而乳链菌肽和/或脂肪的掺入会导致亮度参数增加2倍,因此,涉及的白色薄膜更多。拉伸强度以及极限伸长率的测量结果表明,壳聚糖和HPMC初始薄膜具有弹性和柔韧性。较高的热处理和添加剂的掺入可减少弹性,增加塑料薄膜。达到总的水解吸速率的水蒸气透过率表明壳聚糖膜对水稍微敏感。与其他生物聚合物薄膜相比,水的传递减少了<60%。关于其疏水性,脂肪改善膜水阻隔性的能力非常有限。

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