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October 16, 2025Applied Biosciences9 citationsOpen Access

Nanoformulated Curcumin for Food Preservation: A Natural Antimicrobial in Active and Smart Packaging Systems

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EDEdith DubeWalter Sisulu University

Key Points

  • Nanoformulated curcumin enhances microbial safety and shelf life in various food products, including meats and dairy.
  • Its application in active packaging tackles issues of food spoilage while maintaining nutritional quality and eco-friendliness.
  • The review highlights curcumin’s mechanisms, such as membrane disruption and oxidative stress inhibition, ensuring effective food preservation.
  • Future research should address challenges like scale-up, migration safety, and potential antimicrobial resistance gene transfer.

Abstract

Food spoilage and contamination remain pressing global challenges, undermining food security and safety while driving economic losses. Conventional preservation strategies, including thermal treatments, refrigeration, and synthetic additives, often compromise nutritional quality and raise sustainability concerns, thereby necessitating natural, effective alternatives. Curcumin, a polyphenolic compound derived from Curcuma longa, has demonstrated broad-spectrum antimicrobial, antioxidant, and anti-inflammatory activities, making it a promising candidate for food preservation. However, its poor solubility, instability, and low bioavailability limit direct applications in food systems. Advances in nanotechnology have enabled the development of nanoformulated curcumin, enhancing solubility, stability, controlled release, and functional efficacy. This review examines the antimicrobial mechanisms of curcumin and its nanoformulations, including membrane disruption, oxidative stress via reactive oxygen species, quorum sensing inhibition, and biofilm suppression. Applications in active and smart packaging are highlighted, where curcumin nanoformulation not only extends shelf life but also enables freshness monitoring through pH-responsive color changes. Evidence across meats, seafood, fruits, dairy, and beverages shows improved microbial safety, oxidative stability, and sensory quality. Multifunctional systems, such as hybrid composites and stimuli-responsive carriers, represent next-generation tools for sustainable packaging. However, challenges remain with scale-up, migration safety, cytotoxicity, and potential promotion of antimicrobial resistance gene (ARG) transfer. Future research should focus on safety validation, advanced nanocarriers, ARG-aware strategies, and regulatory frameworks. Overall, nanoformulated curcumin offers a natural, versatile, and eco-friendly approach to food preservation that aligns with clean-label consumer demand.

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Cite This Study

Edith Dube (2025) studied this question.

synapsesocial.com/papers/68f0f51d8dd8ea469b1d6f29https://doi.org/10.3390/applbiosci4040046
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