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Updated: Jan 29, 2026

Antibiotic Dereplication Using the Antibiotic Resistance Platform
Published on: October 17, 2019
An Unexpected Inverse Relationship Between Biofilm Formation and Antibiotic Resistance in Stenotrophomonas
Arianna Pompilio1,2, Giovanni Di Bonaventura1,2
1Department of Medical, Oral, and Biotechnological Sciences, "G. d'Annunzio" University of Chieti-Pescara, 66100 Chieti, Italy.
Abstract:
Background/Objectives: Stenotrophomonas maltophilia is an opportunistic pathogen causing severe infections, particularly in patients with cystic fibrosis (CF). Its intrinsic multidrug resistance and biofilm-forming capacity complicate treatment. Although biofilms are generally associated with antimicrobial tolerance, the relationship between biofilm formation and planktonic antibiotic resistance in S. maltophilia remains poorly understood. This study investigated the association between antibiotic resistance profiles and biofilm production in clinical isolates from CF and non-CF patients. Methods: A total of 86 clinical isolates (40 from CF airways and 46 from non-CF patients) were analyzed. Susceptibility to seven antibiotics was assessed by disk diffusion, and multidrug resistance profiles were defined using standard criteria. Biofilm formation was quantified after 24 h using a crystal violet microtiter plate assay and categorized by using a semiquantitative scale. Results: High resistance rates were observed, particularly to meropenem (87.2%), ciprofloxacin (80.2%), and rifampicin (72.1%). CF isolates exhibited significantly higher resistance to piperacillin/tazobactam and a greater prevalence of multidrug resistance. Biofilm formation was detected in 94.2% of isolates, with strong or powerful producers predominating. However, CF isolates formed significantly less biofilm than non-CF isolates. Notably, resistance to piperacillin/tazobactam and meropenem was associated with reduced biofilm biomass and a lower proportion of high biofilm producers. Across all isolates, an inverse correlation was observed between the number of antibiotic resistances and biofilm biomass. These trends persisted after stratification by clinical origin, although some comparisons did not reach statistical significance. Conclusions: This study reveals an unexpected inverse relationship between planktonic antibiotic resistance and biofilm-forming capacity in S. maltophilia. Enhanced biofilm production may represent an alternative persistence strategy in more antibiotic-susceptible strains, with important implications for infection management and therapeutic failure.
Insights
Stenotrophomonas maltophilia exhibits an inverse relationship between antibiotic resistance and biofilm formation. More resistant strains showed less biofilm, suggesting alternative survival strategies in this opportunistic pathogen.
Area of Science:
- Medical Microbiology
- Antimicrobial Resistance
- Bacterial Pathogenesis
Background:
- Stenotrophomonas maltophilia is an opportunistic pathogen frequently causing severe infections, especially in cystic fibrosis (CF) patients.
- Multidrug resistance and biofilm formation in S. maltophilia present significant treatment challenges.
- The interplay between planktonic antibiotic resistance and biofilm production in S. maltophilia is not well understood.
Purpose of the Study:
- To investigate the association between antibiotic resistance profiles and biofilm production in clinical isolates of S. maltophilia.
- To compare these characteristics between isolates from CF and non-CF patients.
Main Methods:
- Analyzed 86 clinical S. maltophilia isolates (40 CF, 46 non-CF).
- Assessed antibiotic susceptibility to seven antibiotics using disk diffusion.
- Quantified biofilm formation using crystal violet assay and categorized production levels.
Main Results:
- High resistance rates observed for meropenem (87.2%), ciprofloxacin (80.2%), and rifampicin (72.1%).
- CF isolates showed higher resistance to piperacillin/tazobactam and increased multidrug resistance.
- An inverse correlation was found between the number of antibiotic resistances and biofilm biomass across all isolates.
Conclusions:
- An unexpected inverse relationship exists between planktonic antibiotic resistance and biofilm-forming capacity in S. maltophilia.
- Reduced biofilm formation in highly resistant strains may indicate alternative persistence mechanisms.
- Findings have implications for managing S. maltophilia infections and understanding therapeutic failure.
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Relationship Formation
Development of Antibiotic Resistance
Antibiotic Selection
Ending Relationships
Inverse Trigonometric Functions
Biofilms

