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Updated: Oct 31, 2025

Quantifying the Cytotoxicity of Staphylococcus aureus Against Human Polymorphonuclear Leukocytes
Published on: January 3, 2020
Virulence alterations in staphylococcus aureus upon treatment with the sub-inhibitory concentrations of antibiotics
Juan Chen1, Huyue Zhou1, Jingbin Huang1
1Department of Pharmacy, The Second Affiliated Hospital, Army Medical University, Chongqing 400037, PR China.
Background:
The treatment of patients with Staphylococcus aureus infections mainly relies on antistaphylococcal regimens that are established with effective antibiotics. In antibiotic therapy or while living in nature, pathogens often face the sub-inhibitory concentrations (sub-MICs) of antibiotics due to drug pharmacokinetics, diffusion barriers, waste emission, resistant organism formation, and farming application. Different categories of antibiotics at sub-MICs have diverse effects on the physiological and chemical properties of microorganisms. These effects can result in virulence alterations. However, the mechanisms underlying the actions of antibiotics at sub-MICs on S. aureus virulence are obscure.
Aim Of Review:
In this review, we focus on the effects of sub-MICs of antibiotics on S. aureus virulence from the aspects of cell morphological change, virulence factor expression, bacterial adherence and invasion, staphylococcal biofilm formation, and small-colony variant (SCV) production. The possible mechanisms of antibiotic-induced S. aureus virulence alterations are also addressed.
Key Scientific Concepts Of Review:
Five main aspects of bacterial virulence can be changed in S. aureus exposure to the sub-MIC levels of antibiotics, resulting in deformed bacterial cells to stimulate abnormal host immune responses, abnormally expressed virulence factors to alter disease development, changed bacterial adhesion and invasion abilities to affect colonization and diffusion, altered biofilm formation to potentate material-related infections, and increased SCV formation to achieve persistent infection and recurrence. These advanced findings expand our knowledge to rethink the molecular signaling roles of antibiotics beyond their actions as antimicrobial agents.
Insights
Sub-inhibitory concentrations (sub-MICs) of antibiotics can alter Staphylococcus aureus virulence, affecting cell morphology, virulence factors, and biofilm formation. Understanding these mechanisms is crucial for managing persistent S. aureus infections.
Area of Science:
- Microbiology
- Infectious Diseases
- Antimicrobial Resistance
Background:
- Staphylococcus aureus infections are treated with antistaphylococcal antibiotics.
- Pathogens encounter sub-inhibitory concentrations (sub-MICs) of antibiotics in various settings.
- Sub-MIC antibiotics can alter microbial physiology and virulence, but mechanisms in S. aureus are unclear.
Purpose of the Study:
- To review the effects of sub-MIC antibiotics on Staphylococcus aureus virulence.
- To explore alterations in cell morphology, virulence factor expression, adherence, invasion, biofilm formation, and small-colony variant (SCV) production.
- To address the mechanisms underlying antibiotic-induced virulence changes.
Main Methods:
- Literature review focusing on studies investigating sub-MIC antibiotic effects on S. aureus.
- Analysis of research on bacterial cell morphology, virulence factor expression, adherence, invasion, biofilm formation, and SCV production.
- Synthesis of findings to elucidate potential mechanisms of virulence alteration.
Main Results:
- Sub-MIC antibiotics can induce morphological changes in S. aureus, potentially affecting host immune responses.
- Alterations in virulence factor expression, bacterial adherence, and invasion capabilities are observed.
- Sub-MIC exposure can modify biofilm formation and increase the production of small-colony variants (SCVs), contributing to persistent infections.
Conclusions:
- Antibiotics at sub-MIC levels significantly impact S. aureus virulence through multiple pathways.
- These effects challenge the traditional view of antibiotics solely as antimicrobial agents.
- Understanding these non-canonical roles is vital for developing new strategies against persistent S. aureus infections.
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