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Updated: Sep 23, 2025

Development and Assessment of Intracellular Infection Models for Staphylococcus aureus
Published on: January 17, 2025
Regulatory relationship between macrophage autophagy and PVL-positive methicillin-resistant Staphylococcus aureus
Yulin Zhu1, Zhen Tang1, Shaohu Huo1
1Department of Pediatrics, The First Affiliated Hospital of Anhui Medical University, 218 Jixi Road, Shushan District, Hefei City 230022, Anhui Province, China.
Abstract:
The present study intends to clarify the hypothesis that PVL-positive Methicillin-resistant S. aureus strain (PVL+-MRSA)-infected macrophages regulate autophagy and thus in turn inhibit phagocytosis through the in vitro and in vivo experiments. The autophagy of mouse macrophage cell line RAW264.7 was observed by fluorescence microscopy, and counted based on the number of each cell dot-like structure GFP-LC3. The protein levels of the phagocytic factors associated with autophagy were determined by western blotting. The phagocytosis of RAW264.7 on MRSA was determined by counting the colony. The clinically isolated and identified PVL+-MRSA strain was used to infect BALB/c mice (left nasal drip) to establish a mouse pneumonia model. PVL+-MRSA mice were then treated with 3-MA or linezolid. Bronchoalveolar lavage fluid (BALF) from mice was collected for macrophage counting by Flow cytometry assay. The right lung was aseptically isolated for counting the amount of bacteria. The results showed that PVL+-MRSA could induced the autophagy of macrophages, which in turn reduced the damage from macrophages, which were respectively alleviated by 3-MA and aggravated by rapamycin. Exogenous rPVL administrated into PVL--MRSA-infected macrophages caused the autophagy of macrophage. Exogenous rPVL, particularly A-Luk S-PV, administrated into macrophages also caused the autophagy of macrophage, which was reversed by PMX53, a C5aR antagonist. In a mouse pneumonia model, PVL+-MRSA could induced the autophagy of macrophages, which in turn reduced the damage from macrophages, which were respectively alleviated by 3-MA or linezolid. In conclusion, this study indicated PVL+-MRSA regulated macrophage autophagy, which in turns inhibit the phagocytosis of S. aureus by macrophage. This study may provide a potential target against S. aureus infection.
Insights
Methicillin-resistant Staphylococcus aureus (MRSA) strains expressing Panton-Valentine leukocidin (PVL) induce macrophage autophagy, inhibiting bacterial phagocytosis. This mechanism offers a potential therapeutic target for MRSA infections.
Area of Science:
- Immunology
- Microbiology
- Cell Biology
Background:
- Methicillin-resistant Staphylococcus aureus (MRSA) poses a significant public health threat.
- The role of Panton-Valentine leukocidin (PVL) in MRSA pathogenesis is critical.
- Macrophage autophagy is a key cellular process in host defense against bacterial infections.
Purpose of the Study:
- To investigate the effect of PVL-positive MRSA (PVL+-MRSA) on macrophage autophagy.
- To determine if PVL+-MRSA-induced autophagy inhibits macrophage phagocytosis.
- To explore potential therapeutic strategies targeting this pathway.
Main Methods:
- In vitro experiments using RAW264.7 macrophage cell line and PVL+-MRSA.
- Western blotting to analyze autophagy-related protein levels.
- In vivo mouse pneumonia model infected with PVL+-MRSA.
- Treatment with autophagy inhibitors (3-MA) and antibiotics (linezolid).
Main Results:
- PVL+-MRSA infection induced significant autophagy in macrophages.
- Induced autophagy led to decreased macrophage phagocytosis of MRSA.
- Autophagy inhibition (3-MA) or linezolid treatment alleviated MRSA-induced damage in vivo.
- Exogenous PVL and its components (A-Luk S-PV) also induced macrophage autophagy.
Conclusions:
- PVL+-MRSA actively regulates macrophage autophagy.
- This regulation results in the inhibition of phagocytosis, promoting bacterial survival.
- Targeting macrophage autophagy presents a promising therapeutic avenue against PVL+-MRSA infections.
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