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Effect of Molecular Weight, Acid, and Plasticizer on the Physicochemical and Antibacterial Properties of β-Chitosan Based Films

机译:分子量,酸和增塑剂对β-壳聚糖基薄膜理化和抗菌性能的影响

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摘要

Effects of chitosan molecular weight (1815 and 366 kDa), type of acid (1% acetic, formic, and propionic acid, or 0.5% lactic acid) and plasticizer (0, 25% glycerol or sorbital w/w chitosan) on the mechanical, water barrier, and antibacterial properties of β-chitosan films were investigated. Tensile strength (TS) of high molecular weight (Hw) films was 53% higher than that of low molecular weight (Lw) ones, acetate, and propionate films had the highest TS (43 and 40 MPa) among tested acids, and plasticizer-reduced film TS 34%. Film elongation at break (EL) was higher in Hw films than in Lw ones, in which formate and acetate films were the highest (9% and 8%, respectively), and plasticizer increased the film EL 128%. Molecular weight of chitosan did not influence water vapor permeability (WVP) of the films. Acetate and propionate films had lower WVP than other acid types of films, and plasticizer increased film WVP about 35%. No difference was found between glycerol and sorbitol films in terms of film mechanical and water barrier properties. Lw β-chitosan films showed significant antibacterial activity against E. coli and L. innocua. This study demonstrated that β-chitosan films are compatible to α-chitosan films in physicochemical properties and antibacterial activity, yet with simple sample preparation.
机译:壳聚糖分子量(1815和366 kDa),酸类型(1%乙酸,甲酸和丙酸或0.5%乳酸)和增塑剂(0、25%甘油或山梨醇(含壳聚糖))对机械性能的影响研究了β-壳聚糖薄膜的阻水,抗菌性能。高分子量(Hw)薄膜的拉伸强度(TS)比低分子量(Lw)薄膜的拉伸强度(TS)高53%,乙酸和丙酸酯薄膜在测试的酸中具有最高的TS(43和40 MPa),增塑剂是减少胶卷TS 34%。 Hw薄膜的薄膜断裂伸长率(EL)高于Lw薄膜,其中甲酸和醋酸盐薄膜最高(分别为9%和8%),而增塑剂使薄膜EL的伸长率为128%。壳聚糖的分子量不影响薄膜的水蒸气渗透性(WVP)。乙酸和丙酸酯薄膜的WVP低于其他酸类型的薄膜,增塑剂使薄膜WVP升高约35%。就膜的机械性能和阻水性能而言,甘油和山梨醇膜之间没有发现差异。 Lwβ-壳聚糖膜对大肠杆菌和无毒李斯特菌显示出显着的抗菌活性。这项研究表明,β-壳聚糖膜在理化特性和抗菌活性方面与α-壳聚糖膜相容,并且样品制备简单。

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