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Updated: Jun 17, 2026

Comprehensive Analysis of Procoagulant Platelets Exhibiting Features of Necrosis, Apoptosis and Platelet Activation
Published on: May 23, 2025
Targeting ACKR3/CXCR7 enhances platelet anticoagulant acylcarnitines and modulates procoagulant function
Xiaoqing Fu1,2, Adrian Brun1, Kristina Dittrich1
1Institute of Pharmaceutical Sciences, University of Tübingen, Tübingen, Germany.
Abstract:
Targeting ACKR3/CXCR7 regulates enzymatic generation of prothrombotic lipids while favoring antithrombotic lipids that inhibit platelets through the AC-cAMP-PKA pathway in coordination with prostacyclin IP receptor. This investigation validated the effect of CXCR7 in modulating nonenzymatic lipid (per)oxidation, platelet response to lipoproteins, mitochondrial metabolism, and procoagulant functions. CXCR7 agonist VUF11207 preserved mitochondrial membrane integrity, counteracted activation-induced mitochondrial superoxide generation, and reduced nonenzymatic lipid (per)oxidation. Moreover, it regulated lipoprotein-induced platelet adhesion to thrombogenic matrices, degranulation, αIIbβIII-integrin activation, aggregation, and thrombotic responses by reducing lipoprotein uptake through CD36 and ApoER2. CXCR7 ligation triggered the activation of AMP-dependent kinaseSer-172 and prompted AMPK-mediated inhibitory phosphorylation of acetyl-coenzyme A carboxylaseSer-79 to foster lipolysis over lipogenesis. Consequently, the AMPKSer-172-ACCSer-79 pathway increased generation of anticoagulant FXa-inhibitory long-chain acylcarnitines (LC-CAR) in platelets of healthy subjects and patients with coronary artery disease. Enrichment of intraplatelet LC-CARs was not attributable to dysregulated mitochondrial respiration because VUF11207 improved maximal respiration, spare respiratory capacity, and ATP-linked respiration in thrombin-activated platelets, suggesting sustained mitochondrial metabolism. Exerting a 2-pronged effect on procoagulant function, VUF11207 downregulated phosphatidylserine exposure on activated platelets and reduced FX/FXa binding, while platelet-derived anticoagulant LC-CARs regulated thrombin generation. VUF11207 administration reduced thrombus formation, platelet degranulation, αIIbβIII-integrin activation, procoagulant activity, and circulating platelet-leukocyte aggregates in murine venous thrombosis model, also decreased plasma procoagulant lipids derived from platelet cyclooxygenase-1 and 12-lipooxygenase (LOX), and leukocyte 5/15-LOX, decreased thromboinflammatory mediators (IL-1β, IL-6, IFN-γ, TNF-α, and MCP-1), and increased plasma LC-CAR levels. Therefore, pharmacological targeting of CXCR7 could regulate (non)enzymatic lipid processing and promote anticoagulant LC-CAR generation to limit platelet-driven thrombotic propensity and hypercoagulability, also replenish reduced levels of circulatory LC-CARs in patients with STEMI and VTE.
Insights
Targeting ACKR3/CXCR7 with agonists reduces pro-thrombotic lipids and enhances anti-thrombotic lipids, improving platelet function and mitochondrial metabolism. This approach offers a novel strategy for managing thrombotic disorders.
Area of Science:
- Biochemistry and Molecular Biology
- Cardiovascular Research
- Hematology
Background:
- ACKR3/CXCR7 plays a role in regulating lipid metabolism and platelet activation, which are critical in thrombotic processes.
- Dysregulation of lipid processing and platelet function contributes to cardiovascular diseases like STEMI and venous thromboembolism (VTE).
- Existing therapeutic strategies may not fully address the complex interplay between lipids, platelets, and coagulation.
Purpose of the Study:
- To investigate the role of ACKR3/CXCR7 in modulating lipid metabolism, platelet function, and mitochondrial activity in the context of thrombosis.
- To evaluate the therapeutic potential of pharmacological CXCR7 agonism in regulating pro-thrombotic and anti-thrombotic pathways.
- To explore the impact of CXCR7 targeting on anticoagulatory lipid generation and hypercoagulation.
Main Methods:
- Utilized a pharmacological CXCR7 agonist (VUF11207) in in vitro platelet studies and in vivo murine venous thrombosis models.
- Assessed mitochondrial function (membrane integrity, superoxide generation, respiration), lipid (per)oxidation, and lipoprotein uptake.
- Measured platelet activation markers (degranulation, integrin activation, aggregation), coagulation parameters (phosphatidylserine exposure, thrombin generation), and plasma mediator levels.
Main Results:
- CXCR7 agonism preserved mitochondrial integrity, reduced oxidative stress and lipid peroxidation, and inhibited lipoprotein-induced platelet activation and aggregation.
- Activation of the AMPK-ACC pathway by CXCR7 ligation promoted lipolysis and increased the generation of anti-thrombotic long-chain acylcarnitines (LC-CARs).
- In vivo, CXCR7 agonist treatment reduced thrombus formation, inflammatory mediators, and procoagulant lipids while increasing plasma LC-CAR levels.
Conclusions:
- Pharmacological targeting of CXCR7 effectively regulates lipid processing and promotes anticoagulatory LC-CAR generation, mitigating platelet-driven thrombotic propensity.
- CXCR7 agonism offers a dual benefit by reducing pro-thrombotic factors and enhancing anti-thrombotic mechanisms, including sustained mitochondrial function.
- This strategy holds promise for replenishing reduced anticoagulant levels in patients with STEMI and VTE, suggesting a novel therapeutic avenue.
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