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March 28, 2026Animals2 citationsOpen Access

Antibacterial Activity and Mechanism of Protocatechuic Acid Against Pathogens Isolated from Canine Endometritis

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XSXiaoyu SunGansu Agricultural UniversityJBJingwen BiGansu Agricultural UniversityDSDongxue Shi

Key Points

  • The study aims to assess the antibacterial activity of protocatechuic acid against bacterial pathogens linked to canine endometritis.
  • Evaluated antibacterial activity in vitro against clinical isolates of E. coli, S. aureus, and S. canis.
  • Determined minimum inhibitory concentrations (MICs) and minimum bactericidal concentrations (MBCs).
  • Conducted mechanistic analyses including membrane integrity and reactive oxygen species accumulation.
  • PCA inhibited growth of E. coli, S. aureus, and S. canis with MICs of 4 mg/mL and 2 mg/mL for S. canis.
  • MBCs for E. coli and S. aureus were equal to their MICs, while S. canis had an MBC of 4 mg/mL.
  • PCA disrupted bacterial membrane integrity and induced membrane depolarization.

Abstract

Canine endometritis is commonly associated with bacterial infections caused by Escherichia coli (E. coli), Staphylococcus aureus (S. aureus), and Streptococcus canis (S. canis), leading to reproductive disorders in dogs. With increasing concern regarding antimicrobial resistance, alternative therapeutic strategies are needed. This study evaluated the in vitro antibacterial activity and underlying mechanisms of protocatechuic acid (PCA) against clinical isolates of these pathogens obtained from dogs diagnosed with endometritis. The antibacterial efficacy of PCA was assessed by determining minimum inhibitory concentrations (MICs), minimum bactericidal concentrations (MBCs), and bacterial growth curves. PCA inhibited the growth of all three pathogens, with MIC values of 4 mg/mL for E. coli and S. aureus and 2 mg/mL for S. canis. The MBCs for E. coli and S. aureus were equal to their MICs, while the MBC for S. canis was twice the MIC, indicating bactericidal activity. Mechanistic analyses demonstrated that PCA disrupted bacterial membrane integrity, induced membrane depolarization, reduced intracellular ATP levels, and increased reactive oxygen species (ROS) accumulation. These effects were supported by SYTO9/PI fluorescence staining and scanning electron microscopy. In conclusion, PCA exhibits notable in vitro antibacterial activity against key pathogens associated with canine endometritis and represents a promising natural antimicrobial candidate.

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Cite This Study

Sun et al. (2026) studied this question.

synapsesocial.com/papers/69c7725e8bbfbc51511e2c48https://doi.org/10.3390/ani16071018
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