Evidence that the degree of band 3 phosphorylation modulates human erythrocytes nitric oxide efflux – in vitro model of hyperfibrinogenemia
Author(s) -
José Pedro Almeida,
T. Freitas-Santos,
Carlota Saldanha
Publication year - 2011
Publication title -
clinical hemorheology and microcirculation
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.546
H-Index - 54
eISSN - 1875-8622
pISSN - 1386-0291
DOI - 10.3233/ch-2011-1490
Subject(s) - nitric oxide , band 3 , fibrinogen , efflux , in vitro , whole blood , nitrite , chemistry , phosphorylation , red blood cell , erythrocyte deformability , biochemistry , platelet , medicine , endocrinology , nitrate , immunology , membrane , erythrocyte membrane , organic chemistry
Recent evidence has shown that plasma fibrinogen, a major cardiovascular risk factor, interacts with the erythrocyte membrane and acts to influence blood flow via erythrocyte nitric oxide (NO) modulation. In the present pioneer in-vitro study, whole blood samples were harvested from healthy subjects and aliquots were incubated in the absence (control aliquots) and presence of fibrinogen at different degrees of band 3 phosphorylation, and the levels of NO, nitrite, nitrate and S-nitroglutathione (GSNO) were determined. Hyperfibrinogenemia interferes with erythrocyte NO mobilization without changing its efflux in a way that seems to be dependent of the degree of band 3 phosphorylation. In presence of higher fibrinogen concentrations the NO efflux is reinforced when band 3 is phosphorylated (p < 0.001). Higher levels of nitrite, nitrate and GSNO were documented (p < 0.05). However, the mechanisms by which fibrinogen signalling modulates erythrocyte function remain to be clarified and are currently under study. These conditions may be considered an approach to be followed in blood storage for transfusions.
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