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March 26, 2026One Health Outlook0 citationsOpen Access

Chamomile oil and apigenin as novel modulators of mexA, mexB, mexR, and oprM efflux pump genes in multidrug-resistant Pseudomonas aeruginosa

HMH. R. MahdiSBSalah Tofik Jalal Balaky

Key Points

  • This research aims to evaluate the effects of chamomile oil and apigenin on the expression of efflux pump genes in Pseudomonas aeruginosa, particularly in multidrug-resistant strains.
  • Isolated 93 strains of Pseudomonas aeruginosa from clinical samples.
  • Conducted GC-MS analysis of chamomile oil to identify its components.
  • Determined minimum inhibitory concentration (MIC) of chamomile oil, apigenin, and ceftazidime for selected isolates.
  • Performed bacterial growth curve analysis after treatment with sub-MIC concentrations.
  • Evaluated gene expression of mexA, mexB, mexR, and oprM using quantitative PCR.
  • Chamomile oil significantly downregulated all four efflux pump genes with fold changes ranging from 2.28 to 14.3.
  • Apigenin downregulated most genes but upregulated mexA in some isolates and mexB in one isolate.
  • Bacterial growth decreased after treatment with chamomile oil and apigenin at sub-MIC levels.

Abstract

Recent studies have shown that antimicrobial resistance has become a great threat. This study focuses on and investigates the effect of some natural compounds on the expression of efflux pump genes that play an important role in antimicrobial resistance in Pseudomonas aeruginosa. Among the 93 Pseudomonas aeruginosa that were isolated from different clinical samples, 20% were multidrug-resistant, 32% were extensively drug-resistant, and 2% were pandrug-resistant. Identification of the isolates was done using 16S rRNA gene amplification and sequencing. GC-MS analysis of chamomile oil revealed (is-.beta.-Farnesene) as the major component. Minimum inhibitory concentration values of each of apigenin, chamomile oil, and ceftazidime were evaluated for five of the isolates. Bacterial growth curve analysis revealed a decline in bacterial growth after treatment with sub-MIC levels of chamomile oil and apigenin. The gene expression of each mexA, mexB, mexR, and oprM efflux pump gene in the bacterial isolates using quantitative PCR was evaluated in untreated and treated isolates with a sub-MIC value of apigenin and chamomile oil. Chamomile oil significantly reduced the expression of all four genes. On the other hand, apigenin downregulated most genes but upregulated mexA in two isolates and mexB in one isolate. Meanwhile, Chamomile oil exhibited stronger downregulation of efflux pump genes compared to apigenin, with fold changes ranging from 2.28 to 14.3. Accordingly, these novel findings suggest that chamomile oil and apigenin can have a significant effect on inhibiting efflux pump gene expression, thus combating multidrug-resistant P. aeruginosa, and offering new avenues for developing effective natural therapeutic adjuvants to overcome antibiotic resistance. This is preliminary evidence for the gene regulatory potential of chamomile oil and apigenin.

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Cite This Study

Mahdi et al. (2026) studied this question.

synapsesocial.com/papers/69c4cc75fdc3bde448917bb6https://doi.org/10.1186/s42522-026-00204-9
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