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首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Mechanical, antibacterial and biodegradable properties of starch film containing bacteriocin immobilized crystalline nanocellulose
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Mechanical, antibacterial and biodegradable properties of starch film containing bacteriocin immobilized crystalline nanocellulose

机译:含有细菌固定的结晶纳米纤维素的淀粉膜的机械,抗菌和可生物降解性能

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摘要

We reported the preparation of antibacterial corn starch film (57% reduction in bacterial count) with enhanced tensile strength (69%) by incorporating immobilized bacteriocin. Whisker shaped crystalline nanocellulose (CNC, length 71.2 +/- 20.7 nm and width 27.8 +/- 11.2 nm) was prepared from cotton linters by bio-mechanical process, having the degree of polymerization 250. Bacteriocins extracted from broth cultures of P. acidilactici and E. faecium were immobilized on the surface of CNC and used to reinforce the starch film. The biodegradability of reinforced films was affected due to the use of bacteriocin in fillers. Surface morphology and roughness of reinforced films were studied by SEM and AFM. In an ambient environment, the films incorporated with bacteriocin immobilized CNC stayed fresh for 28 days while that of bacteriocin alone had fungal degradation in 14 days. This supports the requirement of CNC immobilization for better stability of bacteriocin on storage.
机译:我们通过掺入固定化的诱导的菌丝,我们报道了制备抗菌玉米淀粉膜(细菌计数降低57%),增强的拉伸强度(69%)。 通过生物机械方法制备晶须形晶纳米纤维素(CNC,长度71.2 +/- 20.7nm和宽度27.8 +/- 11.2nm),具有聚合度250.从P. acidilactici的肉汤培养物中提取的菌丝菌。 并且E. Faecium固定在CNC的表面上并用于加强淀粉膜。 由于在填料中使用菌丝,增强薄膜的生物降解性受到影响。 通过SEM和AFM研究了增强薄膜的表面形态和粗糙度。 在环境环境中,掺入菌丝固定的CNC的薄膜持续28天,同时仅在14天内具有真菌降解的细菌。 这支持CNC固定化的要求以更好地对储存的细菌霉素。

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