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Antimicrobial activity of chitosan, organic acids and nano-sized solubilisates for potential use in smart antimicrobially-active packaging for potential food applications.

机译:壳聚糖,有机酸和纳米级增溶剂的抗菌活性可用于潜在食品应用的智能抗菌活性包装。

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Antimicrobial activity of low- and medium-molecular weight chitosan and organic acids (Benzoic acid and Sorbic acid and commercially-available nano-sized benzoic- and sorbic-acid solubilisate equivalents) was investigated and compared against commercial mixtures of organic acids used as meat coatings (Articoat DLP-02Reg. and Sulac-01Reg.). From the antimicrobials tested, both low molecular weight (LMW) and medium molecular weight (MMW) chitosan exhibited the highest antimicrobial activity against all bacterial cultures tested, with mean MIC values of 0.010 and 0.015% w/v, respectively. The results suggested that the MW of the chitosan used effected antimicrobial activity of the chitosan. Nano-sized solubilisates of benzoic acid and sorbic acid had significantly (P < 0.05) higher antimicrobial properties than their non-nano equivalents. The results found in this study open opportunities for the nano-sized solubilisates, derived from food compatible sources, to be used in smart and active antimicrobial packaging applications, as less of the antimicrobial substances in question is required to deliver the same antimicrobial effect
机译:研究了低分子量和中等分子量的壳聚糖和有机酸(苯甲酸和山梨酸以及市售的纳米级苯甲酸和山梨酸可溶物等效物)的抗菌活性,并将其与用作肉类涂料的有机酸的商业混合物进行了比较(Articoat DLP-02 Reg。 和Sulac-01 Reg。 )。从测试的抗菌剂来看,低分子量(LMW)和中等分子量(MMW)的壳聚糖对所有测试的细菌培养物均表现出最高的抗菌活性,平均MIC值分别为0.010和0.015%w / v。结果表明,所用壳聚糖的分子量影响了壳聚糖的抗菌活性。苯甲酸和山梨酸的纳米级增溶剂比非纳米级等效物具有显着(P <0.05)更高的抗菌性能。这项研究发现的结果为从食品相容性来源获得的纳米级增溶剂在智能和活性抗菌包装应用中使用提供了机会,因为要实现相同的抗菌效果,所需的抗菌物质较少

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