Efficacy of β-Lactam-plus-Macrolide Combination Therapy in a Mouse Model of Lethal Pneumococcal Pneumonia
Daisuke Yoshioka1, Chiaki Kajiwara2, Yoshikazu Ishii2
1Department of Microbiology and Infectious Diseases, Toho University School of Medicine, Ota-ku, Tokyo, Japan Department of Respiratory Medicine and Infectious Diseases, Oita University Faculty of Medicine, Yufu, Oita, Japan.
Abstract:
Community-acquired pneumonia is a common disease with considerable morbidity and mortality, for which Streptococcus pneumoniae is accepted as a leading cause. Although β-lactam-plus-macrolide combination therapy for this disease is recommended in several guidelines, the clinical efficacy of this strategy against pneumococcal pneumonia remains controversial. In this study, we examined the effects of β-lactam-plus-macrolide combination therapy on lethal mouse pneumococcal pneumonia and explored the mechanisms of action in vitro and in vivo We investigated survival, lung bacterial burden, and cellular host responses in bronchoalveolar lavage fluids obtained from mice infected with pneumonia and treated with ceftriaxone, azithromycin, or both in combination. Although in vitro synergy was not observed, significant survival benefits were demonstrated with combination treatment. Lung neutrophil influx was significantly lower in the ceftriaxone-plus-azithromycin-treated group than in the ceftriaxone-treated group, whereas no differences in the lung bacterial burden were observed on day 3 between the ceftriaxone-plus-azithromycin-treated group and the ceftriaxone-treated group. Notably, the analysis of cell surface markers in the ceftriaxone-plus-azithromycin combination group exhibited upregulation of presumed immune checkpoint ligand CD86 and major histocompatibility complex class II in neutrophils and CD11b-positive CD11c-positive (CD11b(+) CD11c(+)) macrophages and dendritic cells, as well as downregulation of immune checkpoint receptors cytotoxic-T lymphocyte-associated antigen 4 and programmed death 1 in T helper and T regulatory cells. Our data demonstrate that the survival benefits of ceftriaxone-plus-azithromycin therapy occur through modulation of immune checkpoints in mouse pneumococcal pneumonia. In addition, immune checkpoint molecules may be a novel target class for future macrolide research.
Insights
Combination therapy with ceftriaxone and azithromycin improved survival in mouse pneumococcal pneumonia by modulating immune checkpoints, not by reducing bacterial load.
Area of Science:
- Immunology
- Pharmacology
- Microbiology
Background:
- Community-acquired pneumonia (CAP) poses significant health risks, with Streptococcus pneumoniae as a primary pathogen.
- Current guidelines suggest β-lactam-plus-macrolide therapy for CAP, but its effectiveness against pneumococcal pneumonia is debated.
Purpose of the Study:
- To evaluate the efficacy of ceftriaxone plus azithromycin combination therapy in a lethal mouse model of pneumococcal pneumonia.
- To elucidate the underlying mechanisms of this combination therapy in vivo and in vitro.
Main Methods:
- Mice with lethal pneumococcal pneumonia were treated with ceftriaxone, azithromycin, or both.
- Survival rates, lung bacterial burden, and host cellular responses (including immune checkpoint molecule expression) were analyzed.
Main Results:
- Combination therapy significantly improved survival compared to monotherapy, despite a lack of in vitro synergy.
- No significant difference in lung bacterial burden was observed between combination and ceftriaxone monotherapy groups.
- Combination treatment modulated immune checkpoints, upregulating CD86 and MHC class II while downregulating CTLA-4 and PD-1 on immune cells.
Conclusions:
- Ceftriaxone-azithromycin combination therapy enhances survival in pneumococcal pneumonia via immune checkpoint modulation.
- Immune checkpoint molecules represent a potential new therapeutic target for macrolide-based research in pneumonia.
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