Abstract
The maintenance of hemostasis to ensure vascular integrity is dependent upon the rapid conversion of zymogen species of the coagulation cascade to their enzymatically active forms. This process culminates in the generation of the serine protease thrombin and polymerization of fibrin to prevent vascular leak at sites of endothelial cell injury or loss of cellular junctions. Thrombin generation can be initiated by the extrinsic pathway of coagulation through exposure of blood to tissue factor at sites of vascular damage, or alternatively by the coagulation factor (F) XII activated by foreign surfaces with negative charges, such as glass, through the contact activation pathway. Here, we used transient particle tracking microrheology to investigate the mechanical properties of fibrin in response to thrombin generation downstream of both coagulation pathways. We found that the structural heterogeneity of fibrin formation was dependent on the reaction kinetics of thrombin generation. Pharmacological inhibition of FXII activity prolonged the time to form fibrin and increased the degree of heterogeneity of fibrin, resulting in fibrin clots with reduced mechanical properties. Taken together, this study demonstrates a dependency of the physical biology of fibrin formation on activation of the contact pathway of coagulation.
| Original language | English (US) |
|---|---|
| Article number | 20220129 |
| Journal | Applied Rheology |
| Volume | 33 |
| Issue number | 1 |
| DOIs | |
| State | Published - Jan 1 2023 |
Funding
Funding Information: This material is based upon work that was supported by the National Science Foundation under Grant Nos. 1652958 and 1842580 and the National Institute of Health Grant HL101972.
| Funders | Funder number |
|---|---|
| Author National Science Foundation National Science Foundation National Institutes of Health National Institutes of Health National Institutes of Health National Institutes of Health National Science Foundation National Science Foundation | 1652958, 1842580 |
| Author National Institutes of Health National Institutes of Health National Institutes of Health National Institutes of Health The Bev Hartig Huntington's Disease Foundation National Institutes of Health | HL101972 |
Keywords
- coagulation
- heterogeneity
- microrheology
ASJC Scopus subject areas
- General Materials Science
- Condensed Matter Physics
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