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The effect of reagents mimicking oxidative stress on fibrinogen function
J. Štikarová, R. Kotlín, T. Riedel, J. Suttnar, K. Pimková, L. Chrastinová, JE. Dyr,
Jazyk angličtina Země Anglie, Velká Británie
Typ dokumentu časopisecké články, práce podpořená grantem
NLK
Directory of Open Access Journals
od 2001
Free Medical Journals
od 2000
PubMed Central
od 2000
Europe PubMed Central
od 2000
ProQuest Central
od 2012-01-01
Open Access Digital Library
od 2001-01-01
Open Access Digital Library
od 2011-01-01
Open Access Digital Library
od 2012-01-03
Medline Complete (EBSCOhost)
od 2012-01-01
Health & Medicine (ProQuest)
od 2012-01-01
Wiley-Blackwell Open Access Titles
od 2000
ROAD: Directory of Open Access Scholarly Resources
od 2001
PubMed
24235886
DOI
10.1155/2013/359621
Knihovny.cz E-zdroje
- MeSH
- adhezivita trombocytů účinky léků fyziologie MeSH
- chlornan sodný farmakologie MeSH
- fibrinogen chemie metabolismus farmakologie MeSH
- indikátory a reagencie chemie farmakologie MeSH
- kultivované buňky MeSH
- kyselina peroxydusitá chemie MeSH
- lidé MeSH
- malondialdehyd chemie farmakologie MeSH
- oxidační stres účinky léků fyziologie MeSH
- trombocyty účinky léků metabolismus MeSH
- vztahy mezi strukturou a aktivitou MeSH
- Check Tag
- lidé MeSH
- Publikační typ
- časopisecké články MeSH
- práce podpořená grantem MeSH
Fibrinogen is one of the plasma proteins most susceptible to oxidative modification. It has been suggested that modification of fibrinogen may cause thrombotic/bleeding complications associated with many pathophysiological states of organism. We exposed fibrinogen molecules to three different modification reagents-malondialdehyde, sodium hypochlorite, and peroxynitrite-that are presented to various degrees in different stages of oxidative stress. We studied the changes in fibrin network formation and platelet interactions with modified fibrinogens under flow conditions. The fastest modification of fibrinogen was caused by hypochlorite. Fibers from fibrinogen modified with either reagent were thinner in comparison with control fibers. We found that platelet dynamic adhesion was significantly lower on fibrinogen modified with malondialdehyde and significantly higher on fibrinogen modified either with hypochlorite or peroxynitrite reflecting different prothrombotic/antithrombotic properties of oxidatively modified fibrinogens. It seems that, in the complex reactions ongoing in living organisms at conditions of oxidation stress, hypochlorite modifies proteins (e.g., fibrinogen) faster and more preferentially than malondialdehyde. It suggests that the prothrombotic effects of prior fibrinogen modifications may outweigh the antithrombotic effect of malondialdehyde-modified fibrinogen in real living systems.
Citace poskytuje Crossref.org
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