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Quantification of Monocyte Chemotactic Activity In Vivo and Characterization of Blood Monocyte Derived Macrophages
Published on: August 12, 2019
Platelet-derived CXCL12 regulates monocyte function, survival, differentiation into macrophages and foam cells
M Chatterjee1, S N I von Ungern-Sternberg1, P Seizer1
1Medizinische Klinik III, Kardiologie und Kreislauferkrankungen, Universität Tübingen, 72076 Tübingen, Germany.
Insights
Platelet-derived CXCL12 (chemokine C-X-C motif ligand 12) regulates monocyte and macrophage functions by differentially engaging CXCR4 and CXCR7 receptors. This interaction is crucial for inflammation at sites of platelet accumulation.
Area of Science:
- Immunology
- Cell Biology
- Hematology
Background:
- Platelets release CXCL12 (SDF-1), influencing hematopoietic progenitor differentiation.
- CXCL12 binds CXCR4 and CXCR7, modulating monocyte/macrophage functions.
- The distinct roles of CXCR4 and CXCR7 in platelet-CXCL12 signaling require elucidation.
Purpose of the Study:
- To determine the differential contributions of CXCR4 and CXCR7 in mediating platelet-derived CXCL12 effects on monocyte function, survival, and differentiation.
- To investigate the in vivo and in vitro mechanisms of platelet-CXCL12-monocyte-macrophage interactions.
Main Methods:
- In vivo peritonitis model in mice to assess platelet-macrophage accumulation.
- Flow cytometry and receptor trafficking analysis (internalization/externalization).
- Monocyte adhesion assays under static and dynamic flow conditions.
- Macrophage phagocytosis assays and differentiation studies (M1/M2, CD163+).
- Apoptosis assays and foam cell differentiation studies.
Main Results:
- Platelet and monocyte co-aggregation increased in peritoneal fluid during peritonitis.
- Platelet-derived CXCL12 induced monocyte chemotaxis via CXCR4.
- Monocyte adhesion to platelets was primarily mediated by CXCR7.
- CXCR7 promoted monocyte survival against apoptosis.
- Platelet-CXCL12 signaling via CXCR4/CXCR7 promoted M1-M2 macrophage differentiation and foam cell formation.
Conclusions:
- Platelet-derived CXCL12 differentially engages CXCR4 and CXCR7 to regulate monocyte and macrophage functions, including chemotaxis, adhesion, survival, and differentiation.
- CXCR4 mediates chemotaxis, while CXCR7 primarily drives adhesion and survival.
- These interactions play a significant role in inflammatory processes at sites of platelet accumulation.
Abstract:
Platelets store and release CXCL12 (SDF-1), which governs differentiation of hematopoietic progenitors into either endothelial or macrophage-foam cells. CXCL12 ligates CXCR4 and CXCR7 and regulates monocyte/macrophage functions. This study deciphers the relative contribution of CXCR4-CXCR7 in mediating the effects of platelet-derived CXCL12 on monocyte function, survival, and differentiation. CXCL12 and macrophage migration inhibitory factor (MIF) that ligate CXCR4-CXCR7 induced a dynamic bidirectional trafficking of the receptors, causing CXCR4 internalization and CXCR7 externalization during chemotaxis, thereby influencing relative receptor availability, unlike MCP-1. In vivo we found enhanced accumulation of platelets and platelet-macrophage co-aggregates in peritoneal fluid following induction of peritonitis in mice. The relative surface expression of CXCL12, CXCR4, and CXCR7 among infiltrated monocytes was also enhanced as compared with peripheral blood. Platelet-derived CXCL12 from collagen-adherent platelets and recombinant CXCL12 induced monocyte chemotaxis specifically through CXCR4 engagement. Adhesion of monocytes to immobilized CXCL12 and CXCL12-enriched activated platelet surface under static and dynamic arterial flow conditions were mediated primarily through CXCR7 and were counter-regulated by neutralizing platelet-derived CXCL12. Monocytes and culture-derived-M1-M2 macrophages phagocytosed platelets, with the phagocytic potential of culture-derived-M1 macrophages higher than M2 involving CXCR4-CXCR7 participation. CXCR7 was the primary receptor in promoting monocyte survival as exerted by platelet-derived CXCL12 against BH3-mimetic induced apoptosis (phosphatidylserine exposure, caspase-3 activation, loss of mitochondrial transmembrane potential). In co-culture experiments with platelets, monocytes predominantly differentiated into CD163(+) macrophages, which was attenuated upon CXCL12 neutralization and CXCR4/CXCR7 blocking antibodies. Moreover, OxLDL uptake by platelets induced platelet apoptosis, like other platelet agonists TRAP and collagen-related peptide (CRP). CXCL12 facilitated phagocytosis of apoptotic platelets by monocytes and M1-M2 macrophages, also promoted their differentiation into foam cells via CXCR4 and CXCR7. Thus, platelet-derived CXCL12 could regulate monocyte-macrophage functions through differential engagement of CXCR4 and CXCR7, indicating an important role in inflammation at site of platelet accumulation.
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