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Controlled release of antimicrobial compounds from highly swellable polymers

机译:从高度溶胀的聚合物中控制释放抗菌化合物

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摘要

The suitability of antimicrobial release films made from highly swellable polymers for use in food packaging was evaluated. The possibility of modulating the release kinetics of active compounds either by regulating the degree of cross-link of the polymer matrix or by using multilayer structures was addressed. The release kinetics of lysozyme, nisin, and sodium benzoate (active compounds with different molecular weights) were determined at ambient temperature (25degreesC). The effectiveness of the proposed active films in inhibiting microbial growth was addressed by determining the antimicrobial efficiency of the released active compounds. Micrococcus lysodeikticus, Alicyclobacillus acidoterrestris, and Saccharomyces cerevisiae were used to test the antimicrobial efficiency of released lysozyme, nisin, and sodium benzoate, respectively. Results indicate that the release kinetics of both lysozyme and nisin can be modulated through the degree of cross-link of the polymer matrix, whereas multilayer structures need to be used to control the release kinetics of sodium benzoate. All the active compounds released from the investigated active films were effective in inhibiting microbial growth.
机译:评价了由高度可溶胀的聚合物制成的抗菌释放膜在食品包装中的适用性。解决了通过调节聚合物基质的交联程度或使用多层结构来调节活性化合物释放动力学的可能性。在环境温度(25℃)下测定溶菌酶,乳链菌肽和苯甲酸钠(具有不同分子量的活性化合物)的释放动力学。通过确定释放的活性化合物的抗菌效率,可以解决建议的活性薄膜抑制微生物生长的有效性。溶菌微球菌,酸热脂环酸杆菌和酿酒酵母分别用于测试释放的溶菌酶,乳链菌肽和苯甲酸钠的抗菌效果。结果表明,可以通过聚合物基质的交联度来调节溶菌酶和乳链菌肽的释放动力学,而需要使用多层结构来控制苯甲酸钠的释放动力学。从研究的活性膜释放的所有活性化合物均有效抑制微生物生长。

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