Effect of fibrin degradation products on fibrinolytic process.
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Summary
Fibrin fragments formed during the clot lysis can bind and move out fibrinolytic system components from clot volume and in this way result in clot resistance to hydrolysis.
- Type
- article
- Published
- 2016-03-01
- Cited by
- 5
- References
- 25
- Access
- Open access
- OpenAlex
- https://openalex.org/W2344592861
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:8496798
Keywords
Fibrin, Plasmin, Chemistry, Lysis, Fibrinolysis
References
- Binding of fibrin fragments to one-chain and two-chain tissue-type plasminogen activator.
- Conformational Changes upon Conversion of Fibrinogen into Fibrin
- Interaction between complementary polymerization sites in the structural D and E domains of human fibrin.
- Primary soluble plasmic degradation product of human cross-linked fibrin. Isolation and stoichiometry of the (DD)E complex.
- On the properties of fibrin monomer prepared from fibrin clot with acetic acid.
- Characterization of the Interactions of Plasminogen and Tissue and Vampire Bat Plasminogen Activators with Fibrinogen, Fibrin, and the Complex of d-Dimer Noncovalently Linked to Fragment E*
- [Structure and functions of plasminogen/plasmin system].
- Plasminogen: Purification from Human Plasma by Affinity Chromatography
- Fibrin‐Mediated Plasminogen Activation
- Conversion of fibrinogen to fibrin: mechanism of exposure of tPA- and plasminogen-binding sites.
- Structure of fragment E species from human cross-linked fibrin.
- The Inflammatory Actions of Coagulant and Fibrinolytic Proteases in Disease
- Soluble fibrin degradation products potentiate tissue plasminogen activator-induced fibrinogen proteolysis.
- Thrombin-activable Fibrinolysis Inhibitor Attenuates (DD)E-mediated Stimulation of Plasminogen Activation by Reducing the Affinity of (DD)E for Tissue Plasminogen Activator
- Fibrin degradation product D‐dimer induces the synthesis and release of biologically active IL‐1β, IL‐6 and plasminogen activator inhibitors from monocytes in vitro
- Novel Aspects of Fibrin(ogen) Fragments during Inflammation
- Effect of fribrinigen degradation products on various stages of the fibrinolytic process
- Smooth muscle cell outgrowth stimulated by fibrin degradation products. The potential role of fibrin fragment E in restenosis and atherogenesis.
Cited by
- Ca(2+)-dependent regulation of fibrinolytic system activation on fibrin(ogen) D-domains
- Identification of and solution for false D‐dimer results
- Fibrinolysis Regulation: A Promising Approach to Promote Osteogenesis
- Comprehensive Review on the Degradation Chemistry and Toxicity Studies of Functional Materials.
- The Role of the Plasminogen/Plasmin System in Inflammation of the Oral Cavity
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