Unlocking the potential of Pseudomonas aeruginosa QS intermediates as antimicrobial synergists against three multidrug-resistant enteric bacteria
Saba Kiran, Alaa S. Alhegaili, Noura Al-Dayan, Zubera Naseem, Waqar Siddique, Itra Ayoub, Shoaib Iqbal, Sobia Jabeen, Fazal-E Habib, Saman Taj, Ashfaq Hussain, Rizwan Bashir, Yasra Sarwar, Aamir Ali, Waqar Rauf, Georg Jander, Mazhar Iqbal

TL;DR
This study explores how compounds from Pseudomonas aeruginosa can boost the effectiveness of antibiotics against drug-resistant bacteria.
Contribution
The paper identifies specific quorum sensing compounds that synergistically enhance antibiotic activity against multidrug-resistant enteric bacteria.
Findings
Pyocyanin and rhamnolipids showed strong antimicrobial activity against resistant strains.
Combination assays revealed significant synergy between QS effectors and antibiotics, reducing required dosages.
Growth curve analysis confirmed a dose-dependent reduction in bacterial growth with sub-inhibitory concentrations.
Abstract
Antimicrobial resistance in the Enterobacteriaceae poses a global health concern by jeopardizing the effectiveness of antibiotics. The scarcity of new antibiotics has prompted increased interest in natural bioactive secondary metabolites derived from microbial sources and their co-action with existing antimicrobials. In this study, we investigated the bioactivity of crude extracts from Pseudomonas aeruginosa MC9 (accession no. MK530186) and evaluated the in-vitro antimicrobial-augmenting efficacy of its quorum sensing (QS) effectors against multidrug-resistant strains of Salmonella Typhi (S. Typhi-29C), Salmonella Typhimurium (S. Typhimurium-W20), and Escherichia coli (E. coli SS1). Mass spectrometry was used to identify secondary metabolites, and combination assays followed by growth curve analysis were performed to assess interaction effects under sub-inhibitory conditions. The MC9…
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Taxonomy
TopicsBacterial biofilms and quorum sensing · Antibiotic Resistance in Bacteria · Escherichia coli research studies
