Thrombin Generation Potential Is Enhanced In Systemic Sclerosis: Impact Of Selected Endothelial Biomarkers

CLINICAL AND EXPERIMENTAL RHEUMATOLOGY(2021)

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摘要
Objective. Systemic sclerosis (SSc) is a rare immune-mediated heterogenous entity characterised by excessive tissue fibrosis and vascular injury. Recently, increased risk of thromboembolic events has been documented in that disease. Our aim was to investigate pro-thrombotic plasma properties together with selected laboratory biomarkers of endothelial injury in SSc.Methods. In 56 clinically stable SSc patients and 67 well-matched controls we assessed plasma thrombin generation profile and measured circulating vascular cell adhesion molecule-1 (VCAM-1), cellular fibronectin (cFN), and thrombomodulin, as well as analysed their relationships with disease clinical parameters and autoimmune antibody profile.Results. SSc was characterised by 183% increased endogenous thrombin potential (ETP), 14.5% higher thrombin peak (p<0.001 both, also after adjustment for potential confounders), and similar endothelial damage biomarkers, as compared to controls. Surprisingly, raised thrombin generation was related to the lower thrombomodulin and VCAM-1. Inflammatory markers, factor VIII activity, and blood eosinophilia predicted positively ETP, whereas platelet count and thrombomodulin had negative impact on that parameter in a multiple regression model. Intriguingly, patient group had also 6.7% extended lag-time (p=0.01 after adjustment for confounders) which was independently determined by higher thrombomodulin and cFN, as well as lower VCAM-1. Former cyclophosphamide therapy, thus more severe type of the disease was referred to the increased thrombin generation.Conclusion. SSc is characterised by enhanced thrombin generation potential which might contribute to the higher risk of thromboembolic events in that disease. Endothelium may play hereby an additional role, although large observational and experimental studies are needed to verify this hypothesis.
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关键词
systemic sclerosis, thrombin generation, thrombosis
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