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首页> 外文期刊>LWT-Food Science & Technology >Effect of calcium and/or barium crosslinking on the physical and antimicrobial properties of natamycin-loaded alginate films.
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Effect of calcium and/or barium crosslinking on the physical and antimicrobial properties of natamycin-loaded alginate films.

机译:钙和/或钡交联对纳他霉素海藻酸盐薄膜的物理和抗菌性能的影响。

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摘要

The preparation of alginate films with suitable properties requires a two-step contact with reticulating agents: initially a weakly structured pre-film is formatted which is further crosslinked in a second stage by immersion in a more concentrated solution. The present work evaluated the effects of a combined crosslinking procedure using calcium and barium ions on the physical and morphological properties of alginate-based films containing natamycin as antimicrobial agent. The release behavior of natamycin in water was evaluated as well as the antimicrobial activity against four target microorganisms, which are common cheese product contaminants. Films attributes were affected by the type of ion used in the second stage while the natamycin release rate and the antimicrobial activity were influenced by the ion used in the first stage. Films crosslinked with Ba2+ in the first and Ca2+ in the second stage (Ba-Ca films) exhibited physical properties very similar to films crosslinked with calcium in both stages. Release kinetics of natamycin in water fitted well to Fick's second law diffusional model, with effective diffusivity values ranging from 0.40 x 10-11 to 1.74 x 10-11 cm2/s. Ba-Ca films presented the lowest natamycin diffusion coefficient and the smallest inhibition zone diameter against the four microorganisms tested
机译:具有合适性能的藻酸盐薄膜的制备需要与网状剂进行两步接触:首先将结构较弱的预膜形成胶体,然后在第二阶段通过浸入更浓的溶液中使其进一步交联。本工作评估了使用钙和钡离子联合交联程序对含有纳他霉素作为抗微生物剂的藻酸盐基薄膜的物理和形态学特性的影响。评价了游霉素在水中的释放行为以及对四种目标微生物的抗菌活性,这四种微生物是干酪的常见污染物。膜的属性受第二阶段使用的离子类型的影响,而游霉素的释放速率和抗菌活性受第一阶段使用的离子的影响。在第一阶段中与Ba 2 + 交联的膜和在第二阶段中与Ca 2 + 交联的膜(Ba-Ca膜)的物理性质与两个阶段中与钙交联的膜非常相似。纳他霉素在水中的释放动力学非常符合Fick的第二定律扩散模型,其有效扩散系数范围为0.40 x 10 -11 到1.74 x 10 -11 cm 2 / s。 Ba-Ca膜对四种被测微生物呈现最低的纳他霉素扩散系数和最小的抑菌圈直径

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