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Coagulation Factor Xa Has No Effects on the Expression of PAR1, PAR2, and PAR4 and No Proinflammatory Effects on HL-1
Lukas Ruf1, Alicja Bukowska1, Andreas Gardemann1
1Institute of Clinical Chemistry and Pathobiochemistry, Department of Pathobiochemistry, Otto-von-Guericke-University Magdeburg, Leipziger Str. 44, 39120 Magdeburg, Germany.
Insights
FXa does not directly affect atrial cardiomyocyte function via PAR signaling. Further research is needed to understand FXa
Area of Science:
- Cardiology
- Hematology
- Cell Biology
Background:
- Atrial fibrillation (AF) is increasing in prevalence, leading to thromboembolic complications.
- AF involves atrial remodeling, including dilation and fibrosis, creating a procoagulant state.
- Coagulation factors, like FXa, may influence AF development via protease-activated receptors (PARs).
Purpose of the Study:
- To investigate the direct effects of FXa on murine atrial cardiomyocytes (HL-1 cells).
- To determine if FXa influences PAR expression, inflammatory signaling, or cell adhesion molecule mRNA expression in HL-1 cells.
Main Methods:
- HL-1 cells were incubated with FXa or PAR1/PAR2 agonists.
- PAR expression, MAP kinase phosphorylation (ERK1/2, p65 NF-κB), and mRNA expression of ICAM-1, VCAM-1, and fibronectin were analyzed.
Main Results:
- No changes in PAR expression were observed after FXa or agonist treatment.
- No time- or concentration-dependent changes in ERK1/2 or p65 NF-κB phosphorylation occurred.
- No alterations in the mRNA expression of cell adhesion molecules were detected.
Conclusions:
- FXa does not exert direct PAR-dependent effects on HL-1 cells.
- Future studies should explore FXa's influence on human cardiomyocytes and other cardiac cell types.
Abstract:
Atrial fibrillation (AF), characterised by irregular high-frequency contractions of the atria of the heart, is of increasing clinical importance. The reasons are the increasing prevalence and thromboembolic complications caused by AF. So-called atrial remodelling is characterised, among other things, by atrial dilatation and fibrotic remodelling. As a result, AF is self-sustaining and forms a procoagulant state. But hypercoagulation not only appears to be the consequence of AF. Coagulation factors can exert influence on cells via protease-activated receptors (PAR) and thereby the procoagulation state could contribute to the development and maintenance of AF. In this work, the influence of FXa on Heart Like-1 (HL-1) cells, which are murine adult atrial cardiomyocytes (immortalized), was investigated. PAR1, PAR2, and PAR4 expression was detected. After incubations with FXa (5-50 nM; 4-24 h) or PAR1- and PAR2-agonists (20 µM; 4-24 h), no changes occurred in PAR expression or in the inflammatory signalling cascade. There were no time- or concentration-dependent changes in the phosphorylation of the MAP kinases ERK1/2 or the p65 subunit of NF-κB. In addition, there was no change in the mRNA expression of the cell adhesion molecules (ICAM-1, VCAM-1, fibronectin). Thus, FXa has no direct PAR-dependent effects on HL-1 cells. Future studies should investigate the influence of FXa on human cardiomyocytes or on other cardiac cell types like fibroblasts.
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