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Updated: Jun 11, 2025

Development and Assessment of Intracellular Infection Models for Staphylococcus aureus
Published on: January 17, 2025
Staphylococcus aureus SaeRS impairs macrophage immune functions through bacterial clumps formation in the early stage
Mingzhang Li1, Boyong Wang1, Jiani Chen2
1Department of Orthopedics, Shanghai Sixth People's Hospital Affiliated to Shanghai Jiao Tong University School of Medicine, Shanghai Jiao Tong University, Shanghai, PR China.
Abstract:
The Staphylococcus aureus (S. aureus) SaeRS two-component system (TCS) regulates over 20 virulence factors. While its impact on chronic infection has been thoroughly discussed, its role in the early stage of infection remains elusive. Since macrophages serve as the primary immune defenders at the onset of infection, this study investigates the influence of SaeRS on macrophage functions and elucidates the underlying mechanisms. Macrophage expression of inflammatory and chemotactic factors, phagocytosis, and bactericidal activity against S. aureus were assessed, along with the evaluation of cellular oxidative stress. SaeRS was found to impair macrophage function. Mechanistically, SaeRS inhibited NF-κB pathway activation via toll-like receptor 2 (TLR2). Its immune-modulating effect could partially be explained by the strengthened biofilm formation. More importantly, we found SaeRS compromised macrophage immune functions at early infection stages even prior to biofilm formation. These early immune evasion effects were dependent on bacterial clumping as cytokine secretion, phagocytosis, and bactericidal activity were repaired when clumping was inhibited. We speculate that the bacterial clumping-mediated antigen mask is responsible for SaeRS-mediated immune evasion at the early infection stage. In vivo, ΔsaeRS infection was cleared earlier, accompanied by early pro-inflammatory cytokines production, and increased tissue oxidative stress. Subsequently, macrophages transitioned to an anti-inflammatory state, thereby promoting tissue repair. In summary, our findings underscore the critical role of the SaeRS TCS in S. aureus pathogenicity, particularly during early infection, which is likely initiated by SaeRS-mediated bacterial clumping.
Insights
The Staphylococcus aureus SaeRS system hinders early macrophage immune responses, primarily through bacterial clumping and antigen masking. This impairs bacterial clearance and influences infection progression.
Area of Science:
- Microbiology
- Immunology
- Bacterial Pathogenesis
Background:
- Staphylococcus aureus (S. aureus) utilizes the SaeRS two-component system (TCS) to control numerous virulence factors.
- The SaeRS TCS's role in early infection stages and its impact on host immune cells, particularly macrophages, is not well understood.
Purpose of the Study:
- To investigate the influence of the S. aureus SaeRS TCS on macrophage functions during the early stages of infection.
- To elucidate the mechanisms by which SaeRS affects macrophage activity and bacterial clearance.
Main Methods:
- Assessed macrophage inflammatory and chemotactic factor expression, phagocytosis, and bactericidal activity against S. aureus.
- Evaluated cellular oxidative stress and the impact of SaeRS on the NF-κB pathway via TLR2.
- Investigated the role of bacterial clumping and biofilm formation in SaeRS-mediated immune evasion.
- Conducted in vivo studies to assess infection clearance and host immune response.
Main Results:
- SaeRS impairs macrophage function, including phagocytosis and bactericidal activity, by inhibiting the NF-κB pathway via TLR2.
- SaeRS-mediated immune evasion occurs early in infection, even before significant biofilm formation, and is dependent on bacterial clumping.
- In vivo, S. aureus lacking SaeRS (ΔsaeRS) showed earlier clearance and increased pro-inflammatory cytokine production and tissue oxidative stress.
Conclusions:
- The SaeRS TCS is critical for S. aureus pathogenicity during early infection stages, primarily through SaeRS-mediated bacterial clumping.
- Bacterial clumping likely acts as an antigen mask, facilitating immune evasion by S. aureus.
- SaeRS manipulation of macrophage function and early immune evasion contributes significantly to S. aureus virulence.
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