# New combination approaches to combat methicillin-resistant Staphylococcus aureus (MRSA)

**Authors:** Mohamed H. Sharaf, Gamal M. El-Sherbiny, Saad A. Moghannem, Mohamed Abdelmonem, Islam A. Elsehemy, Ahmed M. Metwaly, Mohamed H. Kalaba

PMC · DOI: 10.1038/s41598-021-82550-4 · Scientific Reports · 2021-02-19

## TL;DR

This study explores combining herbal saponins from Zygophyllum album with penicillin to enhance its effectiveness against MRSA, a drug-resistant bacteria.

## Contribution

The study identifies a saponin-rich fraction from Zygophyllum album that synergizes with penicillin to combat MRSA.

## Key findings

- The saponin fraction from Zygophyllum album showed antibacterial activity against MRSA.
- Combining saponin fraction with penicillin significantly reduced MRSA colony-forming units.
- Three specific combinations demonstrated strong synergy, with one reducing CFU by 3.7 log10 units after 24 hours.

## Abstract

The herbal products proved to be more promising antimicrobials even though their antimicrobial activity is milder than commercially available antibiotics. Moreover, herbal drugs may act synergistically with antibiotics to kill microbes. In this study, we aimed to enhance the activity of penicillin against MRSA through combination with the active saponin fraction isolated from the Zygophyllum album plant. Three different types of metabolites (saponins, sterols, and phenolics) have been extracted from Zygophyllum album with ethanol and purified using different chromatographic techniques. The antibacterial activity of crude extract and the separated metabolites were checked against MRSA isolates, Saponin fraction (ZA-S) was only the active one followed by the crude extract. Therefore, the compounds in this fraction were identified using ultra-high-performance liquid chromatography connected to quadrupole time-of-flight mass spectrometry (UHPLC/QTOF-MS) operated in positive and negative ionization modes. UHPLC/QTOF-MS revealed the presence of major six ursane-type tritepenoidal saponins (Quinovic acid, Quinovic acid 3β-O-β-D-quinovopyranoside, Zygophylloside C, Zygophylloside G, Zygophylloside K and Ursolic acid), in addition to Oleanolic acid. Interaction studies between saponin fraction and penicillin against MRSA were performed through the checkerboard method and time-kill assay. According to checkerboard results, only three combinations showed a fractional inhibitory concentration index less than 0.5 at concentrations of (62.5 + 312.5, 62.5 + 156.25, and 62.5 + 78.125 of penicillin and ZA-S, respectively). Time kill assay results showed that the highest reduction in log10 colony-forming unit (CFU)/ml of initial inoculum of MRSA after 24 h occurred by 3.7 at concentrations of 62.5 + 312.5 (µg/µg)/ml of penicillin and ZA-S, respectively. Thus, the combination between saponin fraction of Zygophyllum album and penicillin with these concentrations could be a potential agent against MRSA that can serve as possible model for new antibacterial drug.

## Linked entities

- **Chemicals:** penicillin (PubChem CID 2349), Quinovic acid (PubChem CID 120678), Ursolic acid (PubChem CID 64945), Oleanolic acid (PubChem CID 10494)
- **Diseases:** MRSA (MONDO:0100073)
- **Species:** Staphylococcus aureus (taxon 1280)

## Full-text entities

- **Diseases:** infection (MESH:D007239), deaths (MESH:D003643), Cytotoxicity (MESH:D064420), malaria (MESH:D008288), MRSA (MESH:D013203), HAI (MESH:D003428), bacterial (MESH:D001424), Cancer (MESH:D009369)
- **Chemicals:** oils (MESH:D009821), amikacin (MESH:D000583), MTT (MESH:C070243), essential oil (MESH:D009822), Trimethoprime (MESH:D014295), Penicillin (MESH:D010406), ether (MESH:D004986), acetonitrile (MESH:C032159), Na (MESH:D012964), ethyl acetate (MESH:C007650), CO2 (MESH:D002245), ethanol (MESH:D000431), HCl (MESH:D006851), Chloramphenicol (MESH:D002701), ammonium (MESH:D064751), B (MESH:D001895), methanol (MESH:D000432), CHCl3 (MESH:D002725), Clindamycin (MESH:D002981), Metronidazole (MESH:D008795), amoxicillin/clavulanic acid (MESH:D019980), Gentamycin (MESH:D005839), Nalidixic acid (MESH:D009268), ammonium acetate (MESH:C018824), trimethoprim/sulfamethoxazole (MESH:D015662), Tetracycline (MESH:D013752), acetone (MESH:D000096), dichloromethane (MESH:D008752), M-1 (MESH:C400939), DMSO (MESH:D004121), H2O (MESH:D014867), Neomycin (MESH:D009355), Formic acid (MESH:C030544), C36H56O9 (-), 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide (MESH:C022616), sodium bicarbonate (MESH:D017693), cefuroxime (MESH:D002444), M-2 (MESH:C034584), Agar (MESH:D000362), sterols (MESH:D013261), Sephadex LH-20 (MESH:C025614), Kanamycin (MESH:D007612), Cefoxitin (MESH:D002440), SO3 (MESH:C011118), ammonium hydroxide (MESH:D064753), Ciprofloxacin (MESH:D002939), EDTA (MESH:D004492), isopropanol (MESH:D019840), oxacillin (MESH:D010068), Saponin (MESH:D012503), Rifampicin (MESH:D012293), formazan (MESH:D005562), Clavulanic acid (MESH:D019818), Quinovic acid (MESH:C472605), glucose (MESH:D005947), methicillin (MESH:D008712), Amoxicillin (MESH:D000658), fats (MESH:D005223), n-hexane (MESH:C026385), Ursolic acid (MESH:C005466)
- **Species:** Chlorocebus aethiops (African green monkey, species) [taxon 9534], Bacillus subtilis (species) [taxon 1423], Serratia marcescens (species) [taxon 615], Staphylococcus epidermidis (species) [taxon 1282], Mycobacterium tuberculosis (species) [taxon 1773], Escherichia coli (E. coli, species) [taxon 562], Tetraena alba (species) [taxon 90538], Staphylococcus aureus (species) [taxon 1280], Human immunodeficiency virus 1 (no rank) [taxon 11676], Homo sapiens (human, species) [taxon 9606]
- **Cell lines:** VERO — Chlorocebus sabaeus (Green monkey), Spontaneously immortalized cell line (CVCL_0059), HBF4 — Horabagrus brachysoma (Gunther's catfish), Spontaneously immortalized cell line (CVCL_1G89), WS1 — Homo sapiens (Human), Finite cell line (CVCL_2766), M-4 — Mus musculus (Mouse), Hybridoma (CVCL_C3QS), MRC-5 — Homo sapiens (Human), Finite cell line (CVCL_0440)

## Full text

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## Figures

7 figures with captions in the complete paper: https://tomesphere.com/paper/PMC7896049/full.md

## References

58 references — full list in the complete paper: https://tomesphere.com/paper/PMC7896049/full.md

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Source: https://tomesphere.com/paper/PMC7896049