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April 14, 2026Letters in Applied Microbiology0 citations

Multifunctional bio-preservative potential of Lactobacillus plantarum postbiotics: thermal stability and efficacy in food models

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XLXiao-Lin LiYHYue‐Ying HuangMLMiao-Ting Li

Key Points

  • The aim is to evaluate the effectiveness of postbiotics from Lactobacillus plantarum in food preservation, focusing on stability and functional properties.
  • Analyzed antibacterial activity and stability of postbiotics under thermal and pH variations
  • Conducted experiments simulating gastrointestinal conditions
  • Investigated the correlation between fermentation duration and antioxidant capacity
  • Postbiotics retained antibacterial activity after 121°C treatments
  • Demonstrated stability under gastrointestinal conditions
  • Enhanced total antioxidant capacity over time
  • Completely inhibited Staphylococcus aureus in milk
  • Edible films with postbiotics showed potent antioxidant activity, preserving bananas and pork

Abstract

Abstract Rising health concerns over synthetic food additives have boosted demand for natural alternatives. While probiotics are known to inhibit various common food spoilage bacteria, their metabolites and inactivated cells, collectively defined as postbiotics, offer superior stability and safety. This study assessed the effectiveness of postbiotics in food preservation, focusing on environmental stress tolerance, stability, and functional traits, specifically antioxidant and antibacterial capacities. Using Lactobacillus plantarum 299 V as a model, we analyzed the antibacterial activity and stability of its postbiotics under varying thermal and pH conditions, as well as in a simulated gastrointestinal environment. Additionally, we investigated the correlation between fermentation duration and antioxidant capacity. Results indicated that postbiotics retained significant antibacterial activity after high-temperature treatment (121°C, 30 minutes) and demonstrated notable stability under gastrointestinal conditions. Significantly, postbiotics displayed consistent enhancement in total antioxidant capacity over time under various storage temperatures. Antioxidant activity peaked at 16 hours of fermentation, while antibacterial effects declined at pH levels above 5. Practically, they completely inhibited Staphylococcus aureus in milk. Moreover, when incorporated with the postbiotics, edible films incorporated with them showed potent antioxidant activity, effectively preserving bananas and pork. These postbiotics serve as stable, effective bio-preservatives, providing a natural, sustainable solution for food preservation.

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Cite This Study

Li et al. (2026) studied this question.

synapsesocial.com/papers/69ddd9cae195c95cdefd7268https://doi.org/10.1093/lambio/ovag042
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