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Published on: September 26, 2013
Azithromycin targets the CD27 pathway to modulate CD27hi T-lymphocyte expansion and type-1 effector phenotype
Abdul Wahid Ansari1,2, Manju Nidagodu Jayakumar1, Fareed Ahmad2
1Research Institute for Medical and Health Sciences, University of Sharjah, Sharjah, United Arab Emirates.
Abstract:
Macrolide antibiotic azithromycin is widely used in clinical practice to treat respiratory tract infections and inflammatory diseases. However, its mechanism of action is not fully understood. Given the involvement of the CD27 pathway in the pathophysiology of various T-lymphocyte-mediated inflammatory, autoimmune, and lymphoproliferative diseases, we examined the impact of AZM on CD27 regulation and potential consequences on CD4+ and CD8+ T-cell phenotypes. Using cellular immunology approaches on healthy donors' peripheral blood mononuclear cells, we demonstrate AZM-mediated downregulation of surface CD27 expression as well as its extracellular release as soluble CD27. Notably, AZM-exposed CD27high (hi) cells were defective in their ability to expand compared to CD27intermediate (Int) and CD27low (lo) subsets. The defective CD27hi subset expansion was found to be associated with impaired cell proliferation and cell division. At the molecular level, the CD27hi subset exhibited lower mTOR activity than other subsets. Functionally, AZM treatment resulted in marked depletion of helper CD4+ (Th1) and cytotoxic CD8+ T-lymphocyte (Tc1)-associated CXCR3+CD27hi effector cells and inhibition of inflammatory cytokine IFN-γ production. These findings provide mechanistic insights on immunomodulatory features of AZM on T-lymphocyte by altering the CD27 pathway. From a clinical perspective, this study also sheds light on potential clinical benefits observed in patients on prophylactic AZM regimens against various respiratory diseases and opens avenues for future adjunct therapy against Th1- and Tc1-dominated inflammatory and autoimmune diseases.
Insights
Azithromycin (AZM) alters T-cell responses by downregulating CD27, impacting T-lymphocyte function and inflammatory cytokine production. This reveals mechanisms behind AZM
Area of Science:
- Immunology
- Pharmacology
- Cell Biology
Background:
- Azithromycin (AZM) is a widely used macrolide antibiotic for infections and inflammatory conditions.
- Its precise immunomodulatory mechanisms, particularly on T-lymphocytes, remain incompletely understood.
- The CD27 pathway is implicated in T-lymphocyte-mediated inflammatory and autoimmune diseases.
Purpose of the Study:
- To investigate the impact of azithromycin on CD27 expression and regulation in T-lymphocytes.
- To explore the functional consequences of AZM-induced CD27 changes on CD4+ and CD8+ T-cell phenotypes.
Main Methods:
- Utilized cellular immunology techniques on peripheral blood mononuclear cells from healthy donors.
- Assessed surface CD27 expression, soluble CD27 levels, T-cell expansion, proliferation, and cell division.
- Analyzed mTOR activity and inflammatory cytokine (IFN-γ) production.
Main Results:
- Azithromycin downregulated surface CD27 and induced soluble CD27 release.
- AZM-exposed CD27high T-cells showed defective expansion, proliferation, and cell division, linked to lower mTOR activity.
- AZM treatment depleted CXCR3+CD27high effector T-cells (Th1 and Tc1) and inhibited IFN-γ production.
Conclusions:
- Azithromycin modulates T-lymphocyte function by altering the CD27 pathway.
- Findings offer mechanistic insights into AZM's immunomodulatory effects.
- Suggests potential clinical benefits of AZM in inflammatory/autoimmune diseases dominated by Th1/Tc1 responses.
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