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Updated: May 25, 2026

A Tandem Liquid Chromatography–Mass Spectrometry-based Approach for Metabolite Analysis of Staphylococcus aureus
Published on: March 28, 2017
Apium graveolens-associated Aspergillus sp.: metabolomic profiling and anti-MRSA potential supported by in silico
Alshymaa Abdel-Rahman Gomaa1, Hesham A Abou-Zied2, Sara Mahmoud Farhan3
1Department of Pharmacognosy, Faculty of Pharmacy, Minia University, Minia, 61519, Egypt.
Abstract:
Methicillin-resistant Staphylococcus aureus (MRSA) is a significant pathogen associated with healthcare-related infections that are often challenging to treat. Conditions such as, skin and soft tissue infections, bloodstream infections, and pneumonia highlight the critical need for effective therapeutic strategies. Careful use of antibiotics under medical supervision is essential to prevent the further emergence of MRSA. Recent studies have documented the antibacterial efficacy of certain endophytic fungi extracts against MRSA, suggesting their potential as a source of novel treatments. This study investigates the metabolomic profiling of the endophytic fungus Aspergillus sp. SH1 using liquid chromatography-high-resolution electrospray ionization mass spectrometry (LC-HR-ESI-MS) and evaluates the anti-MRSA potential of the fungal extract. The metabolomic analysis identified 27 compounds (1-27) with diverse chemical natures, including polyketides, alkaloids, cyclic tripeptides, polypropionate derivatives, and sesquiterpenes. The fungal extract exhibited potent anti-MRSA activity, with an IC50 value of 9.8 µg/mL, compared to ciprofloxacin (IC50 = 25.7 µg/mL). To support these findings, in silico studies were performed to model the binding interactions of the identified compounds with key MRSA-related targets, including Toll-like receptor 2 (TLR2), von Willebrand factor (VWF), tumor necrosis factor (TNF), and penicillin-binding protein 2a (PBP2a). Compounds 2, 9, 15, 16, 20, 22, and 25 demonstrated enhanced binding affinities, suggesting their potential as lead molecules for developing new antibacterial agents targeting MRSA. In conclusion, this study highlights the promising anti-MRSA potential of Aspergillus sp. SH1 extract, providing a foundation for further exploration of its bioactive compounds in combating resistant bacterial infections.
Insights
This study found that an extract from the endophytic fungus Aspergillus sp. SH1 shows potent activity against Methicillin-resistant Staphylococcus aureus (MRSA). This fungal extract could lead to new treatments for challenging MRSA infections.
Area of Science:
- Microbiology
- Natural Product Chemistry
- Pharmacology
Background:
- Methicillin-resistant Staphylococcus aureus (MRSA) is a major cause of difficult-to-treat healthcare-associated infections.
- The emergence of antibiotic resistance necessitates the discovery of novel therapeutic agents.
- Endophytic fungi are recognized as a promising source of bioactive compounds with antimicrobial properties.
Purpose of the Study:
- To investigate the anti-MRSA potential of the endophytic fungus Aspergillus sp. SH1.
- To perform metabolomic profiling of the fungal extract to identify bioactive compounds.
- To evaluate the in silico binding interactions of identified compounds with MRSA-related targets.
Main Methods:
- Liquid chromatography-high-resolution electrospray ionization mass spectrometry (LC-HR-ESI-MS) for metabolomic profiling.
- In vitro anti-MRSA activity assay to determine IC50 values.
- In silico molecular docking studies against MRSA targets (TLR2, VWF, TNF, PBP2a).
Main Results:
- Metabolomic analysis identified 27 compounds from Aspergillus sp. SH1 extract.
- The fungal extract demonstrated potent anti-MRSA activity with an IC50 of 9.8 µg/mL, outperforming ciprofloxacin.
- Several compounds (2, 9, 15, 16, 20, 22, 25) showed significant binding affinities to MRSA targets in silico.
Conclusions:
- Aspergillus sp. SH1 extract possesses significant antibacterial activity against MRSA.
- The identified compounds show potential as lead molecules for developing novel anti-MRSA agents.
- This study supports the exploration of endophytic fungi as a source for combating antibiotic-resistant bacteria.
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