Contact-killing antimicrobial cationic starch/PBAT blown films: Physicochemical properties, antimicrobial mechanism, and preservation capacity on beef

抗菌剂 化学 食品包装 食品科学 防腐剂 挤压 阳离子聚合 化学工程 活性包装 生物相容性 膜透性 食品防腐剂 水分 淀粉 磁导率 生物保留 保质期 溶剂 复合数 抗菌活性 食物腐败 细菌生长 食品保存 人体净化 金黄色葡萄球菌 细菌 公认安全 乳酸链球菌素 水活度 丙酮 食品工业 Zeta电位 山梨酸钾 枯草芽孢杆菌 透气比表面积 透氧性 杀生物剂 清洁剂
作者
Yuntong Wu,Shan Gao,Xiaolu Geng,Bing Wang,Shuqian Yang,Wentao Wang,Arif Rashid,Shenglin Sun,Hanxue Hou
出处
期刊:Food Chemistry [Elsevier BV]
卷期号:507: 148241-148241 被引量:1
标识
DOI:10.1016/j.foodchem.2026.148241
摘要

Packaging materials with intrinsic antimicrobial activity can promote food safety and reduce preservatives reliance. Herein, cationic starch (CS) was blended with poly(butylene adipate- co -terephthalate) (PBAT) via extrusion blowing to fabricate composite films. Increasing CS proportions enhanced deformation resistance (69.42%), surface hydrophilicity (32.65%), moisture permeability (70.16%), as well as gas barrier (oxygen permeability reduced by 91.99% and carbon dioxide permeability by 98.48%). CS/PBAT films exhibited contact-killing bactericidal efficiencies of 98.04% and 89.65% against S. aureus and E. coli , respectively, and continuously inhibited their growth within 12-h test. Furthermore, CS/PBAT films showed solvent resistance within 21 days, and no CS migration was observed during 24-h contact on culture medium. Mechanistic studies revealed such effect derived from the electrostatic interactions between quaternary ammonium groups and bacterial membranes, which induced membrane disruption and cytoplasmic leakage. Comprehensive biocompatibility and safety assessment confirmed the biosafety of the films. CS/PBAT films prolonged the shelf life of refrigerated beef to 14 days, suppressing microbial growth, protein degradation, and lipid oxidation. This study offers a novel strategy for designing contact-killing packaging for food preservation. • Cationic starch endowed the PBAT films with contact-killing antimicrobial capacity. • Higher cationic starch proportions enhanced gas barrier and deformation resistance. • Films with cationic starch disrupted bacterial membrane causing cytoplasmic leakage • The contact-killing packaging had reliable biosafety for food-contact applications. • Contact-killing packaging hindered quality decay of refrigerated beef in 14 days.
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