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Published on: April 25, 2025
Interference of Immunosuppressive Therapies with Cellular Antimicrobial Activity Against Mycobacterium abscessus
Sara Blanco-Conde1, Miriam Retuerto-Guerrero2, Ramiro López-Medrano3
1Servicio Análisis Clínicos, Complejo Hospitalario de Vigo, 36213 Vigo, Pontevedra, Spain.
Insights
Common immunosuppressive drugs impair immune cells' ability to fight Mycobacterium abscessus, affecting bacterial growth and biofilm formation. Methotrexate unexpectedly boosted a neutrophil-attracting signal.
Area of Science:
- Immunology
- Microbiology
- Pharmacology
Background:
- Immunosuppressive therapies are known to increase infection risk.
- Limited data exists on their impact on cellular antimycobacterial activity.
Purpose of the Study:
- To investigate the in vitro effects of common immunosuppressive drugs on peripheral blood mononuclear cells (PBMCs), neutrophils (PMNs), and monocyte-derived macrophages (MDMs) controlling *Mycobacterium abscessus*.
Main Methods:
- Assessed biofilm formation by quantifying bacterial colonies in cellular cultures (BCCCs).
- Measured bacterial viability using colony-forming units (CFUs).
- Analyzed cytokine and chemokine expression in infected PBMCs.
Main Results:
- Tacrolimus, everolimus, methotrexate, and leflunomide impaired PBMCs' ability to restrict BCCC formation.
- Mycophenolic acid and everolimus increased LogCFU recovery in PMNs, while methotrexate decreased it.
- No significant overall effect of immunosuppressants was observed in MDM cultures; methotrexate unexpectedly promoted CXCL8 expression.
Conclusions:
- Common immunosuppressive drugs differentially modulate the antimycobacterial activity of PBMCs and innate immune cells.
- These drugs impact both mycobacterial viability and biofilm formation.
- Further research is needed to understand the clinical implications of these findings.
Abstract:
Immunosuppressive therapies increase the risk of infection, but there is little information regarding their effects on cellular antimycobacterial activity. In this context, the aim was to evaluate in vitro the impact of commonly used immunosuppressive drugs on the ability of peripheral blood mononuclear cells (PBMCs), neutrophils (polymorphonuclear cells, PMNs), and monocyte-derived macrophages (MDMs) to control Mycobacterium abscessus. Biofilm formation was assessed by quantifying bacterial colonies in cellular cultures (BCCCs) and bacterial viability by colony-forming units (CFUs). BCCCs showed significant differences among treatment conditions in PBMCs. The median (interquartile range) BCCC values for tacrolimus (TAC) 16.5 (41), everolimus (EVE) 11 (33), methotrexate (MTX) 12.5 (22) and leflunomide (LEF) 11 (29) were all significantly higher than the negative control (DMSO) 5 (14), indicating that these immunosuppressants impaired the ability of PBMCs to restrict BCCC formation. Log-transformed CFUs also varied across treatments in PMNs. Mycophenolic acid (MPA) 5.98 (2.61) and EVE 5.85 (2.77) increased LogCFU recovery compared with DMSO 5.58 (2.63), whereas MTX 5.18 (2.74) decreased it. In contrast, immunosuppressants had no significant overall effect in MDM cultures. Interestingly, 6-mercaptopurine (6MP) affected the size of colonies. Prednisolone, as expected, but also MTX and LEF, inhibited the expression in infected PBMCs of IL-1β, IL-1Ra, IL-6, CCL3, CCL5, CXCL8 and TIMP-2, whereas IL-10, CCL2 and CXCL7 expression remained essentially unchanged. Unexpectedly, methotrexate promoted CXCL8 expression, a chemokine for PMNs. These results show that commonly used immunosuppressive drugs can differentially modulate the antimycobacterial activity of PBMCs and innate immune cells, affecting both mycobacterial viability and biofilm formation.
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