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September 10, 2025Frontiers in Microbiology14 citationsOpen Access

Research progress on bacterial outer membrane vesicles in antibiotic resistance and clinical anti-infective therapy

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YLY. P. LuZWZhenzhen WenXLXiaoyan Liu

Key Points

  • Bacterial outer membrane vesicles enhance antibiotic resistance in pathogenic bacteria and contribute to adaptability.
  • These vesicles encapsulate proteins, lipids, and toxins, facilitating communication between bacteria and host cells.
  • Ongoing research is exploring their potential applications in vaccine development and targeted drug delivery.
  • Understanding the biogenesis and mechanisms of vesicles may lead to new antibacterial strategies against rising resistance.

Abstract

In recent years, bacterial outer membrane vesicles (OMVs)—nanoscale, bilayered membrane structures secreted by Gram-negative bacteria—have attracted considerable attention for their involvement in antibiotic resistance and potential in clinical anti-infective strategies. OMVs encapsulate diverse biomolecules, including proteins, lipids, toxins, and nucleic acids, thereby serving as critical mediators of communication between bacteria and host cells. They contribute to horizontal gene transfer, signal transduction, and biofilm formation, ultimately enhancing bacterial adaptability and resistance. Clinically, OMVs are regarded as promising therapeutic platforms owing to their excellent biocompatibility and intrinsic immunogenicity, with ongoing investigations exploring their roles in vaccine development, targeted drug delivery, and immune modulation. This review highlights the participation of OMVs in resistance mechanisms across common pathogenic bacteria and discusses their emerging applications in infection control. By elucidating the biogenesis and functional mechanisms of OMVs, novel antibacterial strategies may be developed, offering new avenues to address the escalating global challenge of antibiotic resistance.

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Cite This Study

Lu et al. (2025) studied this question.

synapsesocial.com/papers/68c18c109b7b07f3a0614d60https://doi.org/10.3389/fmicb.2025.1670307
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