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May 16, 2026Foods6 citationsOpen Access

Antibacterial Packaging for Cheese Based on Carboxymethyl Cellulose Composite with Zinc Oxide and Thyme Essential Oil

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LMLudmila MotelicăOOOvidiu-Cristian OpreaAFAnton Ficai

Key Points

  • This study aims to develop biodegradable packaging materials that enhance the shelf life of food products through active antibacterial properties.
  • Developed CMC-based composite films incorporating ZnO nanoparticles and thyme essential oil.
  • Tested films against E. coli and S. aureus to measure antibacterial efficacy and mechanical properties.
  • Conducted preliminary tests on soft cheese for shelf life extension at 4 °C.
  • Composite films eliminated planktonic cell viability of S. aureus and E. coli after 3 hours of contact.
  • Achieved inhibition zones of up to 30 mm, indicating strong antibacterial activity.
  • Extended cheese shelf life by up to 14 days at 4 °C, with S. aureus not detected after the 3rd day.

Abstract

The food-packaging sector is undergoing a major transition driven by the environmental burden associated with petroleum-based plastics and the increasing demand for sustainable alternatives. In this context, biodegradable packaging materials capable of extending food shelf life through active preservation functions have attracted considerable interest. Cellulose is the most abundant natural polymer and an attractive candidate for sustainable packaging; however, it lacks intrinsic antimicrobial activity. In the present study, innovative carboxymethyl cellulose (CMC)-based composite films were developed by incorporating zinc oxide (ZnO) nanoparticles (NPs) and thyme essential oil (TEO) as antibacterial active agents. The obtained films exhibited strong antibacterial activity against both Escherichia coli and Staphylococcus aureus, completely eliminating planktonic cell viability after 3 h of contact and producing inhibition zones of up to 30 mm. In addition to their biological performance, the composite films showed improved mechanical and functional properties. ZnO NPs appear to act as multifunctional junctions within the CMC matrix, while the dispersed TEO droplets contribute, together with the inorganic phase, to reduced water-vapor transfer. The films retained good transparency in the visible range while exhibiting UV-A transmittance below 7%, indicating enhanced light-barrier performance. Preliminary tests on soft cheese indicated shelf-life extension up to 14 days at 4 °C, while in inoculated cheese slices packed in the composite films, S. aureus was not detected from the 3rd day. Overall, these results demonstrate the potential of CMC/ZnO/TEO composite films as biodegradable active packaging materials for perishable food products.

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Cite This Study

Motelică et al. (2026) studied this question.

synapsesocial.com/papers/6a0809f1a487c87a6a40bdc3https://doi.org/10.3390/foods15101724
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