Search bioRxiv⌕ Search

bioRxiv · 10.1101/2024.07.21.604499

Inhibiting monocyte migration reduces arterial thrombosis and facilitates thrombolysis

Abstract

BackgroundMonocytes contribute to the initiation and propagation of venous thrombosis. Little is known about the roles monocytes play in arterial thrombosis, the cause of stroke and MI. MethodsWe investigated how chemokine receptor 2 (CCR2) knockout (-/-) affects platelet function, blood coagulation, thrombus volume, and thrombolytic susceptibility in 627 mice with FeCl3-mediated carotid arterial thrombosis: three CX3CR1-GFP mice, 326 C57BL/6 mice, and 288 CCR2-/- mice. We performed i) intravital microscopy imaging of leukocyte recruitment to carotid thrombus, ii) flow cytometry-based quantification of leukocytes in blood vs. thrombus and leukocyte-platelet aggregates in blood, iii) platelet aggregometry, iv) coagulation assays, v) micro-computed tomography (microCT)-based thrombus imaging using gold nanoparticles after tissue plasminogen activator (tPA) therapy with or without either a) CCR2 siRNA pretreatment (for 3 days) or post-treatment or b) clopidogrel pretreatment (for 7 days), and vi) histology including scanning electron microscopy. ResultsIntravital microscopy and flow cytometry showed that both neutrophils and monocytes were recruited to the acute arterial thrombus, as observed 30 minutes post-thrombosis. Platelet function tests demonstrated platelet aggregation to be lower in the whole blood of CCR2-/- mice (vs. C57BL/6 mice) but not in their leukocyte-free platelet rich plasma, suggesting this platelet dysfunction is cell-mediated. Flow cytometry experiments revealed lower numbers of monocyte - platelet aggregates (MPAs), a marker of platelet activity, in the blood of CCR2-/- mice, compared to C57BL/6 mice. Blood levels of FXIII and monocyte levels of FXIII-A were increased after carotid thrombosis in C57BL/6 mice but not CCR2-/- mice. Further, in vivo microCT and histology, respectively, showed that CCR2-/- mice had smaller and more porous thrombi with less fibrin cross-linking, compared with C57BL/6 mice. MicroCT also demonstrated that tPA-mediated thrombolysis was faster in CCR2-/- mice and CCR2 siRNA-treated mice, compared to C57BL/6 mice. In addition, clopidogrel had a greater effect on inducing thrombus formation with smaller sizes after FeCl3 application, while CCR2-/- had a greater effect on dissolving thrombus faster after tPA administration. ConclusionsCCR2 antagonism decreases platelet aggregation and reduces FXIII levels in blood and monocytes, thus driving arterial thrombosis towards the generation of a relatively small, porous, more lysable clot. Novelty and SignificanceO_ST_ABSWhat Is Known?C_ST_ABSO_LIIn venous thrombosis, monocytes cooperate with platelets and neutrophils to promote thrombus formation; however, few studies have investigated the roles of monocytes in arterial thrombosis. C_LIO_LIAn in vitro study using arterial blood samples from patients with acute coronary syndrome showed that P-selectin on activated platelets upregulated monocyte chemokine receptor 2 (CCR2) expression, which was higher in monocyte-platelet aggregates (MPAs) than in monocytes without platelets. C_LIO_LIIn a mouse study using an in vivo model of FeCl3-induced arterial thrombosis, the time to thrombotic occlusion was prolonged in CC chemokine ligand 2 (CCL2) knockout (-/-) mice compared with wild-type mice. C_LI What New Information Does This Article Contribute?O_LIThis study is the first to demonstrate that CCR2-/--mediated monocyte deficiency exerts antithrombotic and tissue plasminogen activator (tPA)-facilitating effects in acute arterial thrombosis. C_LIO_LICCR2-/- mice had a) decreased platelet aggregability, probably due in part to reduced post-thrombosis MPA numbers, and b) lower blood and monocyte levels of Factor XIII (FXIII), compared to those of C57BL/6 mice. C_LIO_LIMicro-computed tomography (microCT) thrombus imaging showed that i) CCR2-/- mice, compared to C57BL/6 mice, had smaller thrombi, with more porosity and less fibrin cross-linking on histology and ii) CCR2-/- or CCR2 siRNA facilitates tPA-mediated thrombolysis. C_LI The majority of ischemic strokes occur due to thromboembolic occlusion of cerebral arteries. Tissue plasminogen activator (tPA), which is the only FDA-approved drug for acute ischemic stroke, has only a moderate efficacy rate regarding early recanalization, which is closely associated with thrombus volume and thrombolytic resistance. Monocytes, in cooperation with platelets and neutrophils, contribute to thrombus formation in venous thrombosis. To date, only a few studies have detailed potential prothrombotic roles for monocytes in arterial thrombosis. In the present study, using a mouse model of FeCl3-mediated carotid artery thrombosis and high-resolution microCT thrombus imaging, we demonstrate that CCR2-/--mediated monocyte deficiency exerts antithrombotic and tPA-facilitating effects. Compared to C57BL/6 mice, CCR2-/- mice exhibited decreased platelet aggregability along with lower numbers of circulating MPAs (a marker of platelet activity) and reduced monocyte recruitment to arterial thrombi. Moreover, CCR2-/- mice had lower levels of both circulating FXIII and monocyte FXIII-A, which are known to strengthen and stabilize thrombi. In line with these findings, i) CCR2-/- mice had smaller, more porous thrombi with less fibrin cross-linking and ii) tPA-mediated thrombolysis was faster in CCR2-/- mice or with CCR2 siRNA.

Source connections

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

JANG, H. J., Kim, J., Kim, H., Chung, J., Kim, T., Cremer, S., Krohn-Grimberghe, M., Schellingerhout, D., Nahrendorf, M., Kim, D.-E.. 2024-07-23. Inhibiting monocyte migration reduces arterial thrombosis and facilitates thrombolysis. https://doi.org/10.1101/2024.07.21.604499

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related preprints

Common viral infections seed regionally distinct resident memory T cells in the human CNS

T cells persist in the central nervous system (CNS) and can drive both protection and neurological disease. How these cells are organized in humans and what they recognize is largely unknown. Here, we profiled CD8 T cells across anatomically distinct CNS regions, obtained through on-site autopsies and temporal lobe resection surgeries, using single-cell RNA sequencing, paired T cell receptor sequencing, and DNA-barcoded tetramers. Resident memory T cells (TRM) specific for Epstein-Barr virus, cytomegalovirus, influenza A, and SARS-CoV-2 were identified across CNS compartments. Anatomical location was the strongest correlate of TRM cell state, with leptomeningeal cells adopting a cytokine-poised TRM program, whereas brain TRM cells were transcriptionally restrained. Cells of the same clonotype spanned tissues yet adopted local transcriptional states. Viral specificity added another layer of TRM heterogeneity with GZMK/GZMA-expressing EBV-specific populations and interferon-stimulated gene signatures in SARS-CoV-2 and Influenza A-specific cells. The human CNS thus harbors regionally distinct CD8+ TRM shaped by common viral exposures.

immunology↗

A regulatory T cell signature provides a shared molecular basis for the therapeutic window of opportunity in rheumatic disease

Rheumatic diseases, including rheumatoid arthritis (RA), spondyloarthritis (SpA) and osteoarthritis (OA), show distinct phenotypes yet respond to overlapping therapies, implicating shared immune mechanisms. In the Transimmunom cohort, we profiled peripheral blood from 240 individuals (47 healthy, 44 OA, 91 RA, 58 SpA) across deep immunophenotyping, immunoproteomics and Treg-Teff transcriptomics. Single-layer analyses revealed broader Treg than Teff remodeling, along with a shared pattern of reduced activated Tregs and expanded Helios+ Tregs across all diseases, alongside a decrease in functional Treg subpopulations, including CTLA4+ and CD45RA- Tregs. In RA specifically, LAG3+ Tregs were also expanded. Combining omics layers outperformed single-layer approaches for disease classification. Among individual layers, Treg transcriptomes were most discriminative, and integration uncovered disease-specific programs. Unsupervised clustering identified a cross-disease cluster independent of activity, treatment and age, mapping to early disease (<= years) and dominated by a Treg dysfunction-associated program. These results provide a biological rationale for the therapeutic "window of opportunity" concept and duration-stratified Treg-directed trials.

immunology↗

Inhibitory Fc Receptor sets a time limit on macrophage response to IgG

Antibodies engage both activating Fc Receptors and the inhibitory receptor Fc{gamma}RIIB. Why macrophages need a dedicated inhibitory receptor rather than simply tuning activating receptor signaling is unclear. Using DNA-based chimeric receptors and in silico modeling, we independently controlled activating and inhibitory Fc Receptors. We found that Fc{gamma}RIIB imposed a time limit on macrophage phagocytosis and ERK signaling. The time limit is due to activating Fc Receptors converting PI(4,5)P2 to PI(3,4,5)P3, which is subsequently converted to PI(3,4)P2 by Fc{gamma}RIIB. This leads to a pulse of active signaling, which is sufficient for phagocytosis of small bacteria-sized targets but not phagocytosis of large targets and TNF secretion. Unlike engaging Fc{gamma}RIIB, reducing activating Fc Receptor signaling decreased initiation of phagocytosis, the speed of PI(3,4,5)P3 generation, and the amplitude of ERK signaling. Our results demonstrate that Fc{gamma}RIIB controls the duration of IgG signaling, while the activating Fc Receptors control sensitivity.

immunology↗