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Determination of the Procoagulant Activity of Extracellular Vesicle (EV) Using EV-Activated Clotting Time (EV-ACT)
Published on: August 4, 2023
P-selectin and leukocyte microparticles are associated with venous thrombogenesis
Daniel D Myers1, Angela E Hawley, Diana M Farris
1Department of Surgery, University of Michigan, Ann Arbor, 48109-0654, USA. ddmyers@umich.edu
Objectives:
P-selectin inhibition has been found to limit venous thrombosis. We hypothesize that elevated levels of P-selectin will amplify thrombosis, mediated by procoagulant microparticles (MPs).
Methods:
Male mice (Mus musculus, n659), 20 to 25 grams, underwent IVC ligation to induce thrombosis. Groups consisted of wild type (WT) C57BL/6 controls, mice with high circulating levels of soluble P-selectin (CT), P-selectin gene-interrupted knockout mice (PKO), and E- and P-selectin gene-interrupted mice (EPKO). Additional groups were used to evaluate the ability of a P-sel antagonist (rPSGL-Ig) and an antibody directed against PSGL-1 to downregulate the effects of P-sel in CT mice and WT mice administered soluble P-sel at time of thrombosis. Animals were sacrificed on days 2 and 6 after IVC ligation. Thrombus mass (TM), vein wall morphometrics, and serum leukocyte/platelet microparticles (MPs) were evaluated by means of double-stained fluorescence-activated cell scanning analysis, and soluble P- and E-sel protein determination by ELISA.
Results:
At days 2 and 6 in phase I of the experiment, significant differences (P <.01) in TM were noted between groups, with CT animals having the largest thrombi (50% and 57% increase in TM compared to WT at days 2 and 6) while EPKO mice had the smallest thrombi. Statistically, greater levels of neutrophils and total inflammatory cells were noted in the vein walls of CT animals at day 2 compared with WT and PKO animals. A significant difference was noted between CT and EPKO for neutrophils, monocytes, and total inflammatory cells, also at day 2. At day 6, the only statistically significant difference was found for monocytes, with a higher number in the CT animals than in WT animals. The evaluation of MPs revealed that the CT mice had a mixed leukocyte (MAC-1) and platelet (CD41) MP population that was also present in WT and PKO mice on day 2 and day 6. EPKO mice revealed a primarily platelet-derived MP population. Of interest, the CT mice with the highest TM showed a high amount of mean channel fluorescence for MAC-1 (phycoerythrin) antibody, indicative of leukocyte MPs. CT mice revealed statistically higher levels of soluble P-selectin at days 2 and 6. In phase 2, an antibody directed against PSGL-1 was more effective than rPSGL-Ig in decreasing TM and limiting leukocyte-derived MP fluorescence.
Conclusions:
This study demonstrates that high circulating levels of P-selectin are associated with increased thrombosis, whereas a lack of P-selectin and E-selectin is associated with a lessening of thrombosis. Additionally, leukocyte MPs are associated with venous thrombus formation. These data suggest the importance of selectins to venous thrombogenesis and show that P-selectin and leukocyte-derived MPs should be good targets to limit venous thrombus formation.
Insights
Elevated P-selectin amplifies venous thrombosis, while its absence lessens it. Leukocyte microparticles (MPs) are linked to thrombus formation, suggesting selectins and MPs as therapeutic targets.
Area of Science:
- Vascular Biology
- Thrombosis Research
- Immunology
Background:
- P-selectin plays a role in limiting venous thrombosis.
- Elevated P-selectin levels are hypothesized to amplify thrombosis.
- Procoagulant microparticles (MPs) are implicated as mediators.
Purpose of the Study:
- To investigate the role of elevated P-selectin in amplifying venous thrombosis.
- To determine the involvement of procoagulant microparticles (MPs) in P-selectin-mediated thrombosis.
- To evaluate the therapeutic potential of targeting P-selectin and MPs.
Main Methods:
- Venous thrombosis induced via IVC ligation in mice (WT, high soluble P-selectin (CT), P-selectin knockout (PKO), E/P-selectin knockout (EPKO)).
- Evaluation of thrombus mass, vein wall morphometrics, and serum MPs (leukocyte/platelet) using flow cytometry.
- Assessment of P-selectin antagonist (rPSGL-Ig) and anti-PSGL-1 antibody efficacy.
Main Results:
- CT mice exhibited significantly larger thrombi (50-57% increase) compared to WT mice.
- EPKO mice showed the smallest thrombi, indicating a protective effect of lacking E/P-selectins.
- Leukocyte-derived MPs were significantly elevated in CT mice with higher thrombus burden.
Conclusions:
- High circulating P-selectin levels correlate with increased venous thrombosis.
- Absence of P-selectin and E-selectin reduces thrombosis.
- Leukocyte MPs are associated with venous thrombus formation, highlighting them as potential therapeutic targets.
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