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Background: Methicillin-resistant Staphylococcus aureus (MRSA) biofilms exhibit high levels of drug resistance and cause nosocomial infections in humans, thus posing a sustainable global health threat. This underscores the critical need to develop novel antibiofilm therapeutics with high efficacy...

2025-09-18 | MTBLS13012 | MetaboLights
Brevibacillus sp. SPR20 produced potentially antibacterial substances against MRSA. The synthe-sis of these substances is controlled by their biosynthetic gene clusters. Several mutagenesis methods are used to overcome the restriction of gene regulations when genetic information is ab-sent. Atmosphe...
ORGANISM(S): Brevibacillus sp. 
2023-08-31 | PXD043954 | Pride
S aureus was treated in triplicate with 3-O-alpha-L-(2",3"-di-p-coumaroyl)rhamnoside (KCR), oxacillin or vehicle and quantitative proteomic analysis was carried out using isobaric tags and mass spectrometry. 1190 proteins were identified and 552 were affected by KCR (q<0.01). Ontology analysis ide...
ORGANISM(S): Staphylococcus Aureus (ncbitaxon:1280) 
Novel anti-virulence compounds disrupt exotoxin expression in MRSA
Hemolysins are lytic exotoxins expressed in most strains of S. aureus, but hemolytic activity varies between strains. We have previously reported several novel anti-virulence compounds that disrupt the S. aureus transcriptome, including hemolysin gene expression. This report delves further into our ...
ORGANISM(S): Staphylococcus aureus 
2024-05-15 | GSE267020 | GEO
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