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Preparation of Antimicrobial Membranes: Coextrusion of Poly(lactic acid) and Nisaplin in the Presence of Plasticizers

机译:抗菌膜的制备:在增塑剂存在下共挤出聚乳酸和尼沙普林

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摘要

Nisin is a naturally occurring antimicrobial polypeptide and is popularly used in the food and food-packaging industries. Nisin is deactivated at temperatures higher than 120 °C and, therefore, cannot be directly incorporated into poly(L-lactic acid) (PLA), a biomass-derived biodegradable polymer, by coextrusion because PLA melts at temperatures around 160 °C or above. However, PLA can remain in a melt state at temperatures below the T_m in the presence of lactic acid or other plasticizers. In the present study, PLA was coextruded with lactic acid, or lactide, or glycerol triacetate at 160 °C. After the PLA was melted, the temperature of the barrels was reduced to 120 °C, and then Nisaplin, the commercial formulation of nisin, was added and the extrusion was continued. The resultant extrudates possess the capability to suppress the growth of the pathogenic bacterial Listeria monocytogenes, demonstrating a significant antimicrobial activity. The present study provides a simple method to produce PLA-based antimicrobial membranes. The method can also be used for the coextrusion of other heat-sensitive substances and thermoplastics with high melting temperature.
机译:乳链菌肽是一种天然存在的抗菌多肽,广泛用于食品和食品包装行业。乳链菌肽在高于120°C的温度下会失活,因此,由于PLA在160°C或更高的温度下会熔化,因此无法通过共挤出直接掺入生物质衍生的可降解聚合物聚L-乳酸(PLA)中。 。但是,在乳酸或其他增塑剂的存在下,PLA可以在低于T_m的温度下保持熔融状态。在本研究中,PLA与乳酸,丙交酯或三乙酸甘油酯在160°C下共挤出。将PLA熔融后,将料筒温度降至120°C,然后加入尼沙普林(一种乳链菌肽的工业配方)并继续进行挤出。所得的挤出物具有抑制病原性细菌单核细胞增生性李斯特氏菌生长的能力,显示出显着的抗菌活性。本研究提供了一种生产基于PLA的抗菌膜的简单方法。该方法还可以用于具有高熔融温度的其他热敏物质和热塑性塑料的共挤出。

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