Abstract
Polylactide (PLA) is the most mature biobased and biodegradable polymer. Due to its inherent brittleness, the polymer cannot be used as a packaging material without plasticizer. An attempt was made to develop antimicrobial plasticized PLA film by incorporating polyethylene glycol (PEG) and 3 essential oils (EO), namely cinnamon, garlic, and clove by solvent casting method. Physical, thermal, and rheological properties of those films were evaluated for practical applications whereas the antimicrobial properties were tested against Staphylococcus aureus and Campylobacter jejuni-pathogens related to poultry industry. Both PEG and EOs led to the formation of flexible PLA/PEG/EO films with significant drop in the glass transition temperature (Tg), and mechanical property. Time-temperature superposition (TTS) principle was employed to melt rheology of EO-based films at selected temperature, and rheological moduli superimposed well in an extended frequency range. Among EOs, cinnamon and clove oil-based films (PLA/PEG/CIN and PLA/PEG/CLO) exhibited a complete zone of inhibition against C. jejuni at the maximum concentration (1.6 mL per 2 g PLA/PEG blend) whereas the garlic oil-based film (PLA/PEG/GAR) had the lowest activity. Practical Application: Antimicrobial packaging could significantly improve product safety and add value for producers by preserving product shelf life. The developed essential oil-incorporated polylactide films exhibited excellent flexibility and good antimicrobial activity against Gram-negative and Gram-positive bacteria. The developed film could be a potential nature derived active packaging with controlled release of antimicrobial compounds, and such films could potentially be used in retail food packaging to control pathogens commonly associated with poultry meats.
| Original language | English |
|---|---|
| Pages (from-to) | E419-E429 |
| Journal | Journal of Food Science |
| Volume | 81 |
| Issue number | 2 |
| DOIs | |
| State | Published - 1 Feb 2016 |
Keywords
- Antimicrobial packaging
- C. jejuni
- Cinnamon oil
- Clove oil
- Nanoparticles
- Rheological
- Thermal
Funding Agency
- Kuwait Foundation for the Advancement of Sciences
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