Krümmel Aline, Pagno Carlos Henrique, Malheiros Patrícia da Silva
Laboratory of Microbiology and Food Hygiene, Institute of Food Science and Technology, Federal University of Rio Grande do Sul (UFRGS), Porto Alegre 91501-970, Brazil.
Laboratory of Phenolic Compounds, Institute of Food Science and Technology, Federal University of Rio Grande do Sul (UFRGS), Porto Alegre 91501-970, Brazil.
Foods. 2024 Apr 9;13(8):1141. doi: 10.3390/foods13081141.
The synthesis of active films with natural antimicrobials from renewable sources offers an alternative to conventional non-biodegradable packaging and synthetic additives. This study aimed to develop cassava starch films with antimicrobial activity by incorporating either free carvacrol or chia mucilage nanocapsules loaded with carvacrol (CMNC) and assess their impact on the physical, mechanical, and barrier properties of the films, as well as their efficacy against foodborne pathogens. The addition of free carvacrol led to a reduction in mechanical properties due to its hydrophobic nature and limited interaction with the polymeric matrix. Conversely, CMNC enhanced elongation at break and reduced light transmission, with a more uniform distribution in the polymeric matrix. Films containing 8% carvacrol exhibited inhibitory effects against and , further potentiated when encapsulated in chia mucilage nanocapsules. These findings suggest that such films hold promise as active packaging materials to inhibit bacterial growth, ensuring food safety and extending shelf life.
用可再生资源中的天然抗菌剂合成活性薄膜,为传统的不可生物降解包装和合成添加剂提供了一种替代方案。本研究旨在通过加入游离香芹酚或负载香芹酚的奇亚籽黏液纳米胶囊(CMNC)来制备具有抗菌活性的木薯淀粉薄膜,并评估它们对薄膜物理、机械和阻隔性能的影响,以及它们对食源性病原体的功效。由于游离香芹酚的疏水性及其与聚合物基质的有限相互作用,其添加导致机械性能下降。相反,CMNC提高了断裂伸长率并降低了透光率,在聚合物基质中的分布更均匀。含有8%香芹酚的薄膜对[具体细菌1]和[具体细菌2]表现出抑制作用,当封装在奇亚籽黏液纳米胶囊中时,这种抑制作用进一步增强。这些发现表明,此类薄膜有望作为活性包装材料来抑制细菌生长,确保食品安全并延长保质期。