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March 6, 2026Scientific Reports1 citationsOpen Access

Camel milk extracellular vesicles as a promising antibiotic alternative: gastrointestinal stability, antimicrobial, and immunoregulatory activities

JFJiayin FuLFLongxia FuBZBintao Zhai

Key Points

  • The research aims to evaluate the stability and multifunctional benefits of camel milk extracellular vesicles as alternatives to antibiotics in animal production.
  • In vitro analysis of camel milk extracellular vesicles (CM-EVs)
  • Simulated gastrointestinal digestion experiments
  • Assessment of antioxidant activity and antimicrobial effects against specific bacteria
  • Evaluation of immunomodulatory effects in macrophage models
  • CM-EVs maintained structural integrity during gastrointestinal digestion
  • Exhibited significant dose-dependent antioxidant activity
  • Demonstrated effective antimicrobial properties against E. coli and Staphylococcus epidermidis
  • Enhanced cell viability and selectively reduced IL-1β and IL-6 levels in macrophages, while TNF-α levels remained unchanged

Abstract

The increasing demand for sustainable alternatives to in-feed antibiotics in animal production underscores the scarcity of thorough research on natural bioactive carriers that endure gastrointestinal digestion and offer multiple benefits. This study explored the potential of camel milk extracellular vesicles (CM-EVs) as natural alternatives to antibiotics in animal production. The research evaluated the gastrointestinal stability and multifunctional properties of CM-EVs through in vitro analysis. Simulated digestion experiments revealed that CM-EVs maintained their structural integrity throughout the gastrointestinal tract. Furthermore, they exhibited significant dose-dependent antioxidant activity and demonstrated effective antimicrobial properties against Escherichia coli and Staphylococcus epidermidis. In macrophage models, CM-EVs enhanced cell viability and selectively reduced the release of IL-1β and IL-6, without affecting TNF-α levels. These results indicate that CM-EVs are stable during digestion and possess antioxidant, antimicrobial, and immunomodulatory properties, highlighting their potential as a natural supplement to enhance animal health and reduce reliance on conventional antibiotics.

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Cite This Study

Fu et al. (2026) studied this question.

synapsesocial.com/papers/69aa6f0d531e4c4a9ff59245https://doi.org/10.1038/s41598-026-42021-0
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