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Macrolides Decrease the Proinflammatory Activity of Macrolide-Resistant Streptococcus pneumoniae
Hisanori Domon1,2, Satoru Hirayama1, Toshihito Isono1
1Division of Microbiology and Infectious Diseases, Niigata University Graduate School of Medical and Dental Sciences, Niigata, Japan.
Abstract:
Over the past 2 decades, the prevalence of macrolide-resistant Streptococcus pneumoniae (MRSP) has increased considerably, due to widespread macrolide use. Although macrolide usage has been proposed to be associated with treatment failure in patients with pneumococcal diseases, macrolides may be clinically effective for treating these diseases, regardless of the susceptibility of the causative pneumococci to macrolides. As we previously demonstrated that macrolides downregulate the transcription of various genes in MRSP, including the gene encoding the pore-forming toxin pneumolysin, we hypothesized that macrolides affect the proinflammatory activity of MRSP. Using HEK-Blue cell lines, we found that the supernatants from macrolide-treated MRSP cultures induced decreased NF-κB activation in cells expressing Toll-like receptor 2 and nucleotide-binding oligomerization domain 2 compared to the supernatants from untreated MRSP cells, suggesting that macrolides inhibit the release of these ligands from MRSP. Real-time PCR analysis revealed that macrolides significantly downregulated the transcription of various genes encoding peptidoglycan synthesis-, lipoteichoic acid synthesis-, and lipoprotein synthesis-related molecules in MRSP cells. The silkworm larva plasma assay demonstrated that the peptidoglycan concentrations in the supernatants from macrolide-treated MRSP cultures were significantly lower than those from untreated MRSP cultures. Triton X-114 phase separation revealed that lipoprotein expression decreased in macrolide-treated MRSP cells compared to the lipoprotein expression in untreated MRSP cells. Consequently, macrolides may decrease the expression of bacterial ligands of innate immune receptors, resulting in the decreased proinflammatory activity of MRSP. IMPORTANCE To date, the clinical efficacy of macrolides in pneumococcal disease is assumed to be linked to their ability to inhibit the release of pneumolysin. However, our previous study demonstrated that oral administration of macrolides to mice intratracheally infected with macrolide-resistant Streptococcus pneumoniae resulted in decreased levels of pneumolysin and proinflammatory cytokines in bronchoalveolar lavage fluid samples compared to the levels in samples from untreated infected control mice, without affecting the bacterial load in the fluid. This finding suggests that additional mechanisms by which macrolides negatively regulate proinflammatory cytokine production may be involved in their efficacy in vivo. Furthermore, in this study, we demonstrated that macrolides downregulated the transcription of various proinflammatory-component-related genes in S. pneumoniae, which provides an additional explanation for the clinical benefits of macrolides.
Insights
Macrolides may treat pneumococcal disease by reducing the proinflammatory activity of macrolide-resistant Streptococcus pneumoniae (MRSP). This study shows macrolides downregulate genes involved in MRSP
Area of Science:
- Microbiology
- Immunology
- Pharmacology
Background:
- Macrolide resistance in Streptococcus pneumoniae is increasing globally.
- Macrolides are hypothesized to be effective in treating pneumococcal diseases, even in resistant strains.
- Previous research indicated macrolides downregulate pneumolysin gene transcription in MRSP.
Purpose of the Study:
- To investigate the effect of macrolides on the proinflammatory activity of macrolide-resistant Streptococcus pneumoniae (MRSP).
- To determine if macrolides modulate the expression of bacterial components that trigger innate immune responses.
Main Methods:
- HEK-Blue cell lines were used to assess NF-κB activation in response to MRSP supernatants.
- Real-time PCR was employed to analyze the transcription of genes related to cell wall synthesis.
- Silkworm larva plasma assay and Triton X-114 phase separation were used to quantify peptidoglycan and lipoprotein levels.
Main Results:
- Macrolide treatment of MRSP reduced NF-κB activation, indicating decreased release of Toll-like receptor ligands.
- Macrolides significantly downregulated genes involved in peptidoglycan and lipoteichoic acid synthesis.
- Reduced peptidoglycan concentrations and decreased lipoprotein expression were observed in macrolide-treated MRSP.
Conclusions:
- Macrolides decrease the expression of bacterial ligands for innate immune receptors in MRSP.
- This downregulation of ligands leads to reduced proinflammatory activity of MRSP.
- These findings provide an additional mechanism explaining the clinical efficacy of macrolides in pneumococcal disease, irrespective of resistance.
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