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A Tandem Liquid Chromatography–Mass Spectrometry-based Approach for Metabolite Analysis of Staphylococcus aureus
Published on: March 28, 2017
Epigenetic and Drug Response Modulation of Epigalocaten-In-3-Gallate in Staphylococcus aureus with Divergent
Ana Rita Mira1,2, Ana Sofia Zeferino3,4, Raquel Inácio5
1H&TRC-Health & Technology Research Center, ESTeSL-Escola Superior de Tecnologia da Saúde, Instituto Politécnico de Lisboa, Av. D. João II, lote 4.69.01, Parque das Nações, 1990-096 Lisboa, Portugal.
Abstract:
Healthcare-associated methicillin-resistant Staphylococcus aureus infections represent extremely high morbidity and mortality rates worldwide. We aimed to assess the antimicrobial potential and synergistic effect between Epigalocatenin-3-gallate (EGCG) and different antibiotics in S. aureus strains with divergent resistance phenotypes. EGCG exposure effects in epigenetic and drug resistance key modulators were also evaluated. S. aureus strains (n = 32) were isolated from infected patients in a Lisbon hospital. The identification of the S. aureus resistance phenotype was performed through automatized methods. The antibiotic synergistic assay was performed through disk diffusion according to EUCAST guidelines with co-exposure to EGCG (250, 100, 50 and 25 µg/mL). The bacteria's molecular profile was assessed through FTIR spectroscopy. The transcriptional expression of OrfX, SpdC and WalKR was performed by using qRT-PCR. FTIR-spectroscopy analysis enabled the clear discrimination of MRSA/MSSA strains and the EGCG exposure effect in the bacteria's molecular profiles. Divergent resistant phenotypes were associated with divergent transcriptional expression of the epigenetic modulator OrfX, particularly in MRSA strains, as well as the key drug response modulators SpdC and WalKR. These results clearly demonstrate that EGCG exposure alters the expression patterns of key epigenetic and drug response genes with associated divergent-resistant profiles, which supports its potential for antimicrobial treatment and/or therapeutic adjuvant against antibiotic-resistant microorganisms.
Insights
Epigallocatechin-3-gallate (EGCG) shows antimicrobial potential against methicillin-resistant Staphylococcus aureus (MRSA). EGCG alters key gene expression, supporting its use as a therapeutic adjuvant against antibiotic-resistant bacteria.
Area of Science:
- Microbiology
- Pharmacology
- Molecular Biology
Background:
- Healthcare-associated infections caused by methicillin-resistant Staphylococcus aureus (MRSA) lead to high morbidity and mortality.
- Antibiotic resistance in S. aureus necessitates the exploration of novel therapeutic strategies.
Purpose of the Study:
- To evaluate the antimicrobial activity and synergistic effects of Epigallocatechin-3-gallate (EGCG) with antibiotics against S. aureus strains.
- To investigate the impact of EGCG on epigenetic and drug resistance modulators in S. aureus.
Main Methods:
- Antibiotic susceptibility testing and synergy assays using disk diffusion with EGCG.
- Fourier-transform infrared (FTIR) spectroscopy for molecular profiling of bacterial strains.
- Quantitative real-time PCR (qRT-PCR) to assess the expression of key genes (OrfX, SpdC, WalKR).
Main Results:
- FTIR spectroscopy effectively differentiated MRSA and MSSA strains and revealed EGCG's effect on bacterial molecular profiles.
- EGCG exposure altered the transcriptional expression of epigenetic modulator OrfX and drug response modulators SpdC and WalKR.
- Divergent resistance phenotypes correlated with distinct gene expression patterns.
Conclusions:
- EGCG demonstrates antimicrobial potential and synergistic effects with antibiotics against S. aureus.
- EGCG modulates the expression of genes involved in epigenetics and drug response, offering a promising avenue for combating antibiotic resistance.
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