International Journal of Molecular Sciences (Apr 2022)

Combination of Sanguisorbigenin and Conventional Antibiotic Therapy for Methicillin-Resistant <i>Staphylococcus aureus</i>: Inhibition of Biofilm Formation and Alteration of Cell Membrane Permeability

  • Shu Wang,
  • Xiang-Qian Liu,
  • Ok-Hwa Kang,
  • Dong-Yeul Kwon

DOI
https://doi.org/10.3390/ijms23084232
Journal volume & issue
Vol. 23, no. 8
p. 4232

Abstract

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Methicillin-resistant Staphylococcus aureus (MRSA) infection is challenging to eradicate because of antibiotic resistance and biofilm formation. Novel antimicrobial agents and alternative therapies are urgently needed. This study aimed to evaluate the synergy of sanguisorbigenin (SGB) isolated from Sanguisorba officinalis L. with six conventional antibiotics to achieve broad-spectrum antibacterial action and prevent the development of resistance. A checkerboard dilution test and time-to-kill curve assay were used to determine the synergistic effect of SGB combined with antibiotics against MRSA. SGB showed significant synergy with antibiotics and reduced the minimum inhibitory concentration of antibiotics by 2–16-fold. Biofilm inhibition assay, quantitative RT-PCR, crystal violet absorption, and transmission electron microscopy were performed to evaluate the synergy mechanism. The results indicated that SGB could inhibit biofilm formation and alter cell membrane permeability in MRSA. In addition, SGB was found to exhibit quite low cytotoxicity and hemolysis. The discovery of the superiority of SGB suggests that SGB may be an antibiotic adjuvant for use in combination therapy and as a plant-derived antibacterial agent targeting biofilms.

Keywords