High-throughput coating with biodegradable antimicrobial pullulan fibres extends shelf life and reduces weight loss in an avocado model

Food waste and food safety motivate the need for improved food packaging solutions. However, current films/coatings addressing these issues are often limited by inefficient release dynamics that require large quantities of active ingredients. Here we developed antimicrobial pullulan fibre (APF)-base...

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Veröffentlicht in:Nature food 2022-06, Vol.3 (6), p.428-436
Hauptverfasser: Chang, Huibin, Xu, Jie, Macqueen, Luke A, Aytac, Zeynep, Peters, Michael M, Zimmerman, John F, Xu, Tao, Demokritou, Philip, Parker, Kevin Kit
Format: Artikel
Sprache:eng
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Zusammenfassung:Food waste and food safety motivate the need for improved food packaging solutions. However, current films/coatings addressing these issues are often limited by inefficient release dynamics that require large quantities of active ingredients. Here we developed antimicrobial pullulan fibre (APF)-based packaging that is biodegradable and capable of wrapping food substrates, increasing their longevity and enhancing their safety. APFs were spun using a high-throughput system, termed focused rotary jet spinning, with water as the only solvent, allowing the incorporation of naturally derived antimicrobial agents. Using avocados as a representative example, we demonstrate that APF-coated samples had their shelf life extended by inhibited proliferation of natural microflora, and lost less weight than uncoated control samples. This work offers a promising technique to produce scalable, low-cost and environmentally friendly biodegradable antimicrobial packaging systems.
ISSN:2662-1355
2662-1355
DOI:10.1038/s43016-022-00523-w