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A Macrophage Reporter Cell Assay to Examine Toll-Like Receptor-Mediated NF-kB/AP-1 Signaling on Adsorbed Protein Layers on Polymeric Surfaces
Published on: January 7, 2020
Toll-like receptor 7 protects from atherosclerosis by constraining "inflammatory" macrophage activation
Maria Salagianni1, Ioanna E Galani, Anna M Lundberg
1Center for Immunology and Transplantation, Biomedical Research Foundation, Academy of Athens, Soranou Efesiou 4, Athens 11527, Greece.
Background:
Toll-like receptors (TLRs) have long been considered to be major culprits in the development of atherosclerosis, contributing both to its progression and clinical complications. However, evidence for most TLRs beyond TLR2 and TLR4 is lacking.
Methods And Results:
We used experimental mouse models, human atheroma cultures, and well-established human biobanks to investigate the role of TLR7 in atherosclerosis. We report the unexpected finding that TLR7, a receptor recognizing self-nucleic acid complexes, is protective in atherosclerosis. In Apoe(-/-) mice, functional inactivation of TLR7 resulted in accelerated lesion development, increased stenosis, and enhanced plaque vulnerability as revealed by Doppler ultrasound and/or histopathology. Mechanistically, TLR7 interfered with macrophage proinflammatory responses to TLR2 and TLR4 ligands, reduced monocyte chemoattractant protein-1 production, and prevented expansion of Ly6C(hi) inflammatory monocytes and accumulation of inflammatory M1 macrophages into developing atherosclerotic lesions. In human carotid endarterectomy specimens TLR7 levels were consistently associated with an M2 anti-inflammatory macrophage signature (interleukin [IL]-10, IL-1RA, CD163, scavenger and C-type lectin receptors) and collagen genes, whereas they were inversely related or unrelated to proinflammatory mediators (IL-12/IL-23, interferon beta, interferon gamma, CD40L) and platelet markers. Moreover, in human atheroma cultures, TLR7 activation selectively suppressed the production of key proatherogenic factors such as monocyte chemoattractant protein-1 and tumor necrosis factor without affecting IL-10.
Conclusions:
These findings provide evidence for a beneficial role of TLR7 in atherosclerosis by constraining inflammatory macrophage activation and cytokine production. This challenges the prevailing concept that all TLRs are pathogenic and supports the exploitation of the TLR7 pathway for therapy.
Insights
Toll-like receptor 7 (TLR7) unexpectedly protects against atherosclerosis by reducing inflammation. This finding challenges the view of TLRs as solely detrimental and suggests TLR7 as a potential therapeutic target for cardiovascular disease.
Area of Science:
- Immunology
- Cardiovascular Biology
- Molecular Medicine
Background:
- Toll-like receptors (TLRs) are implicated in atherosclerosis development and complications.
- Evidence for the role of most TLRs, beyond TLR2 and TLR4, in atherosclerosis is limited.
Purpose of the Study:
- To investigate the role of Toll-like receptor 7 (TLR7) in the pathogenesis of atherosclerosis.
Main Methods:
- Experimental mouse models (Apoe(-/-) mice) and human atheroma cultures were utilized.
- Doppler ultrasound and histopathology assessed lesion development and plaque vulnerability.
- Human biobanks and carotid endarterectomy specimens were analyzed for TLR7 expression and inflammatory markers.
Main Results:
- TLR7 inactivation accelerated lesion development, increased stenosis, and enhanced plaque vulnerability in mice.
- TLR7 reduced macrophage inflammatory responses to TLR2/TLR4 ligands, decreased monocyte chemoattractant protein-1, and limited inflammatory monocyte/macrophage accumulation.
- In human samples, TLR7 levels correlated with anti-inflammatory M2 macrophage markers and collagen genes, inversely with pro-inflammatory mediators.
Conclusions:
- TLR7 plays a protective role in atherosclerosis by limiting inflammatory macrophage activation and cytokine production.
- This challenges the paradigm that all TLRs are pathogenic in atherosclerosis.
- The TLR7 pathway represents a potential therapeutic target for atherosclerosis treatment.
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