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Background: VWF (von Willebrand factor) is an endothelial-specific procoagulant protein with a major role in thrombosis. Aging is associated with increased circulating levels of VWF, which presents a risk factor for thrombus formation.
Methods: Circulating plasma, cellular protein, and mRNA levels of VWF were determined and compared in young and aged mice. Major organs were subjected to immunofluorescence analyses to determine the vascular pattern of VWF expression and the presence of platelet aggregates. An in vitro model of aging, using extended culture time of endothelial cells, was used to explore the mechanism of age-associated increased VWF levels.
Results: Increased circulating plasma levels of VWF with elevated levels of larger multimers, indicative of VWF functional activity, were observed in aged mice. VWF mRNA and cellular protein levels were significantly increased in the brains, lungs, and livers but not in the kidneys and hearts of aged mice. Higher proportion of small vessels in brains, lungs, and livers of aged mice exhibited VWF expression compared with young, and this was concomitant with increased platelet aggregate formation. Prolonged culture of endothelial cells resulted in increased cell senescence that correlated with increased VWF expression; VWF expression was specifically detected in senescent cultured endothelial cells and abolished in response to p53 knockdown. A significantly higher proportion of VWF expressing endothelial cells in vivo exhibited senescence markers SA-β-Gal (senescence-associated β-galactosidase) and p53 in aged mouse brains compared with that of the young.
Conclusions: Aging elicits a heterogenic response in endothelial cells with regard to VWF expression, leading to organ-specific increase in VWF levels and alterations in vascular tree pattern of expression. This is concomitant with increased platelet aggregate formation. The age-associated increase in VWF expression may be modulated through the process of cell senescence, and p53 transcription factor contributes to its regulation.
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http://dx.doi.org/10.1161/ATVBAHA.123.319255 | DOI Listing |
J Thromb Haemost
September 2025
Department of Immunology and Inflammation, Centre for Haematology, Imperial College, London, UK. Electronic address:
Background: The VWF Phe2561Tyr variant has been previously shown to exhibit gain-of-function like activity and increase the risk of repeated MI in patients below 55 years of age. It was hypothesised that altered stem dynamics enhanced the responsiveness of the molecule to shear stress. In this study we investigated the evolutionary significance of the amino acid at position 2561 and functional impacts of variants at this site.
View Article and Find Full Text PDFSci Rep
September 2025
The Systems Virology Laboratory, Division of Clinical Microbiology, Department of Laboratory Medicine, Karolinska Institutet, 141 52, Stockholm, Sweden.
Severe COVID-19 is characterized by immune-coagulation dysregulation, yet the contribution of related autoantibodies remains poorly understood. We investigated relationships between plasma autoantibody reactivities, whole-blood transcriptomics, plasma proteomics, and clinical laboratory parameters in a cohort of hospitalized COVID-19 patients. Transcriptomic analysis revealed that 42 curated coagulation and complement cascade genes were upregulated in severe cases compared to healthy controls, with 15 genes, including CR1L, ELANE, ITGA2B, ITGB3, VWF, TFPI, PROS1, MMRN1, and SELP (> 1.
View Article and Find Full Text PDFVascul Pharmacol
August 2025
Institute of Molecular Medicine and Bioengineering, National Yang Ming Chiao Tung University, Hsinchu City 300193, Taiwan, ROC; Department of Biological Science and Technology, National Yang Ming Chiao Tung University, Hsinchu City 300193, Taiwan, ROC; Drug Development and Value Creation Research Ce
Chronic venous disease (CVD) is a prevalent vascular disorder with a poorly characterized genetic basis. In this study, we employed an integrative omics strategy combining genome-wide association studies (GWAS), expression quantitative trait loci (eQTL) mapping, endothelial cell functional assays, and transcriptomic correlation analysis to elucidate the molecular architecture of CVD. A GWAS conducted in a Taiwanese population identified two CVD-associated single nucleotide polymorphisms: VSTM2L rs1998049 and DPYSL2 rs1442887.
View Article and Find Full Text PDFEur Heart J
August 2025
Department of Internal Medicine I, University Hospital of Augsburg, University Augsburg, Germany.
Background And Aims: Reticulated platelets (RPs), hyperreactive and RNA-rich, are associated with increased risk of cardiovascular events and suboptimal response to antiplatelet therapy in coronary artery disease (CAD). However, the underlying mechanisms remain poorly defined. This study aimed to characterise the molecular and functional phenotype of RPs in CAD and assess their potential as therapeutic targets.
View Article and Find Full Text PDFInt J Obes (Lond)
August 2025
Section of Internal Medicine, Endocrinology, Andrology and Metabolic Diseases, Department of Precision and Regenerative Medicine and Ionian Area, University of Bari Aldo Moro, Bari, Italy.
Background: Endothelial progenitor cells (EPCs) play an important role in angiogenic responses in multiple tissues and mediate a coordinate augmentation of the capillary network as adipose tissue (AT) expands in response to positive energy balance. However, the isolation and culture of EPCs from human AT has proven difficult so far. Here, we report the isolation and characterization of EPCs from human AT (AT-EPCs).
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