Tag Archives: coagulation
Hemostatic system imbalance in the pre-eclampsia model in rats
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1SI “Institute of Pharmacology and Toxicology, National Academy
of Medical Sciences of Ukraine”, Kyiv;
2Palladin Institute of Biochemistry, National Academy
of Sciences of Ukraine, Kyiv;
3Shupyk National Medical Academy of Postgraduate Education, Kyiv, Ukraine.
*e-mail: anna_shayakhmetova@yahoo.com
Received: 03 June 2026; Revised: 17 June 2026;
Accepted: 27 July 2026; Available on-line: 04 August 2026
Background. Preeclampsia (PE) is a multisystem disorder in pregnancy, that results from placental ischemia, oxidative stress-induced placental damage and placental factors dissemination that cause systemic endothelial dysfunction. Patients with preeclampsia often develop a severe prothrombotic state, the mechanisms of which are not fully elucidated. Objectives. The aim of this study was to assess the informativeness of hemostatic system parameters that characterize the degree of coagulation pathway activation and anticoagulant pathway capacity capacity in experimental preeclampsia model in rats for predicting the development of thrombotic complications in PE. Methods. Wistar females rats were used in the study. To induce a preeclampsia-like syndrome, N(ω)-nitro-L-arginine methyl ester (L-NAME), at a concentration of 0.3 g/l in the drinking water was administered ad libitum from the 8th to the 14th day of gestation. On gestational day 21 the rats were anesthetized and blood samples were collected. Urinary and serum concentrations of creatinine, urea, and uric acid were determined using a fully automated Chemistry Analyzer and commercially available kits. Fibrinogen, soluble fibrin monomeric complexes and protein C concentrations, prothrombin time and antithrombin III activity in the blood plasma were estimated with a standard spectrophotometric methods. Results. Increased plasma fibrinogen, significant shortening of plasma clotting time, decrease in both protein C and AT III and increase in SFMCs plasma levels were detected in rats with experimentally L-NAME induced preeclampsia, indicating not only activation of the coagulation system but also disruption of the balance between procoagulant and anticoagulant pathways. Conclusions. L-NAME-induced PE in rats resulted in a pronounced imbalance of the hemostatic system and reproduced key pathophysiological features of PE, including excessive procoagulant shift, intravascular thrombin generation and impairment of anticoagulant mechanisms, making this model a valuable tool for studying mechanisms of disease progression. Analysis of hemostasis parameters in this model, indicates that soluble fibrin, protein C and antithrombin III are the most informative markers for assessing the risk of intravascular coagulation during preeclampsia.
Markers of prothrombotic state of patients recovered after COVID-19
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1Palladin Institute of Biochemistry, National Academy of Sciences of Ukraine, Kyiv;
2Ivan Horbachevsky Ternopil Medical University, Ternopil, Ukraine;
3International Research and Innovation in Medicine Program, CSMC, Los-Angeles, CA, USA;
*e-mail: d.korolova@gmail.com
Received: 08 May 2026; Revised: 18 July 2026;
Accepted: 27 July 2026; Available on-line: 04 August 2026
Background. In recent period the attention of scientists and doctors was focused mainly on methods of COVID-19 treatment. However, clinical course of coronavirus disease strongly affects blood coagulation with the tendency for venous and arterial thrombosis, leading to long-term imbalance between coagulation and anticoagulation systems, which can cause serious danger for health of post-COVID-19 (PCD) patients. Objective. In our work we focused on the analysis of the molecular markers of hemostasis system activation in blood plasma of patients recovered after COVID-19. Methods. Blood plasma samples of 119 seropositive patients recovered from COVID-19 were analysed. The patients were divided into a high-risk group (HRG, n = 163) and a non-risk group (NRG, n = 28) according to WHO recommendations. Patients were examined in a recovery time scale of 1-30; 31-60 days and more than 2 months. Blood plasma samples of seronegative healthy volunteers were collected as the reference group (n = 19). The concentration of soluble fibrin (SF) and D-dimer was measured with sandwich ELISA, generation of activated protein C (PC) and prethrombin-1 (Pre-1)) level with assay using specific chromogenic substrates, and fibrinogen concentration with spectrophotometric method after initiation of coagulation by Ancistron-H. Results. Concentration of fibrinogen, SF and Pre-1 were increased in a blood plasma of patients of NRG and HRG groups in comparison to the reference group. Increasing of fibrinogen and Pre-1 concentrations correlated with COVID-19 stage. The fibrinogen and SF concentrations remained high more than 2 months after recovery in HRG group and elevated after 2 months after recovery in NRG group. D-dimer and protein C levels were elevated in 8% and 11% of PCD patients respectively. Conclusions. Long-term prethrombotic state was more expressed in HRG group of PCD patients. Monitoring of the main coagulation markers can indicate the risk of intravascular thrombus formation in PCD patients. SF, Pre-1 and elevated fibrinogen concentrations were selected as useful thrombosis markers in PCD patients.
Determination of thrombin and plasmin activity using the turbidimetric analysis of clot formation and dissolution in human blood plasma
A. Udovenko*, Ye. Makogonenko, O. Hornytska,
G. Gogolinska, O. Yusova, V. Chernyshenko
Palladin Institute of Biochemistry, National Academy of Sciences of Ukraine, Kyiv;
*e-mail: nudovenko26@gmail.com
Received: 05 February 2024; Revised: 17 March 2024;
Accepted: 17 March 2024; Available on-line: 30 April 2024
Based on the turbidimetric curve of formation and dissolution of a blood plasma clot initiated by the activated partial thromboplastin time reagent, a method for determining the coagulation component of thrombin activity and fibrinolytic activity of plasmin is proposed. The activity of thrombin was calculated by the value of the lag period, and plasmin by its amidase activity at the moment of complete dissolution of the clot. At the end of the lag period, about 0.45% of the available prothrombin was activated, and at the moment of complete dissolution of the clot 1.05% of the available plasminogen was activated. This method makes it possible to determine the ratio of the thrombin generation rate to that of plasmin, the time of clot formation to the time of its dissolution, as well as the overall hemostasis potential and coagulation and fibrinolytic components and their ratio.







