Antibacterial apple cider vinegar eradicates methicillin resistant Staphylococcus aureus and resistant Escherichia

Darshna Yagnik1, Malcolm Ward2, Ajit J Shah2

  • 1Department of Natural Sciences, School of Science and Technology, Middlesex University, The Burroughs, London, NW4 4BT, England, UK. d.yagnik@mdx.ac.uk.

Scientific Reports
|January 21, 2021
PubMed

Insights

Apple cider vinegar shows promise in combating antibiotic-resistant bacteria like MRSA and E. coli. This natural treatment effectively inhibits bacterial growth and enhances immune cell activity against these infections.

Area of Science:

  • Microbiology
  • Immunology
  • Natural Products

Background:

  • Antibiotic resistance in bacteria such as Methicillin-resistant Staphylococcus aureus (MRSA) and resistant Escherichia coli (rE.coli) poses a significant global health threat.
  • Current treatment strategies often involve multiple ineffective antibiotic courses with adverse effects, necessitating the exploration of alternative therapies.

Purpose of the Study:

  • To investigate the antimicrobial efficacy of apple cider vinegar (ACV) against MRSA and rE.coli.
  • To evaluate the impact of ACV on immune cell function in the context of these resistant bacterial infections.
  • To elucidate the molecular mechanisms underlying ACV's action against resistant bacteria.

Main Methods:

  • Determining the minimum inhibitory dilution of ACV against MRSA and rE.coli.
  • Assessing monocyte phagocytosis in co-culture models with ACV and bacteria.
  • Utilizing label-free quantitative proteomics to analyze microbial protein expression changes post-ACV treatment.

Main Results:

  • ACV demonstrated antimicrobial activity against both MRSA and rE.coli at a 1/25 dilution (liquid) or 200 µg/ml (tablets).
  • ACV significantly increased monocyte phagocytosis by 21.2% (vs. MRSA) and 33.5% (vs. rE.coli).
  • Proteomic analysis revealed ACV penetrates bacterial cells, altering protein expression and significantly reducing total protein levels, with specific proteins identified in treated MRSA and rE.coli.

Conclusions:

  • Apple cider vinegar exhibits potent antimicrobial effects against antibiotic-resistant bacteria.
  • ACV enhances immune cell phagocytic activity, suggesting an immunomodulatory role.
  • ACV acts at a molecular level by disrupting essential protein expression within resistant bacterial cells.

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