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Assessment of fibrinogen macromolecules interaction with red blood cells membrane by means of laser aggregometry, flow cytometry, and optical tweezers combined with microfluidics

Тип публикацииJournal Article
Дата публикации2020-10-15
scimago Q1
wos Q1
БС1
SJR1.333
CiteScore9.2
Impact factor4.8
ISSN2218273X
Biochemistry
Molecular Biology
Краткое описание

An elevated concentration of fibrinogen in blood is a significant risk factor during many pathological diseases, as it leads to an increase in red blood cells (RBC) aggregation, resulting in hemorheological disorders. Despite the biomedical importance, the mechanisms of fibrinogen-induced RBC aggregation are still debatable. One of the discussed models is the non-specific adsorption of fibrinogen macromolecules onto the RBC membrane, leading to the cells bridging in aggregates. However, recent works point to the specific character of the interaction between fibrinogen and the RBC membrane. Fibrinogen is the major physiological ligand of glycoproteins receptors IIbIIIa (GPIIbIIIa or αIIββ3 or CD41/CD61). Inhibitors of GPIIbIIIa are widely used in clinics for the treatment of various cardiovascular diseases as antiplatelets agents preventing the platelets’ aggregation. However, the effects of GPIIbIIIa inhibition on RBC aggregation are not sufficiently well studied. The objective of the present work was the complex multimodal in vitro study of the interaction between fibrinogen and the RBC membrane, revealing the role of GPIIbIIIa in the specificity of binding of fibrinogen by the RBC membrane and its involvement in the cells’ aggregation process. We demonstrate that GPIIbIIIa inhibition leads to a significant decrease in the adsorption of fibrinogen macromolecules onto the membrane, resulting in the reduction of RBC aggregation. We show that the mechanisms underlying these effects are governed by a decrease in the bridging components of RBC aggregation forces.

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ГОСТ |
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Semenov S. et al. Assessment of fibrinogen macromolecules interaction with red blood cells membrane by means of laser aggregometry, flow cytometry, and optical tweezers combined with microfluidics // Biomolecules. 2020. Vol. 10. No. 10. pp. 1-20.
ГОСТ со всеми авторами (до 50) Скопировать
Semenov S., Lugovtsov A. E., Shirshin E. A., Yakimov B. P., Ermolinskiy P. B., Bikmulina P. Y., Kudryavtsev D. S., Timashev P. S., Muravyov A. V., Wagner C., Shin S., Priezzhev A. V. Assessment of fibrinogen macromolecules interaction with red blood cells membrane by means of laser aggregometry, flow cytometry, and optical tweezers combined with microfluidics // Biomolecules. 2020. Vol. 10. No. 10. pp. 1-20.
RIS |
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TY - JOUR
DO - 10.3390/biom10101448
UR - https://doi.org/10.3390/biom10101448
TI - Assessment of fibrinogen macromolecules interaction with red blood cells membrane by means of laser aggregometry, flow cytometry, and optical tweezers combined with microfluidics
T2 - Biomolecules
AU - Semenov, S.N.
AU - Lugovtsov, Andrei E.
AU - Shirshin, Evgeny A
AU - Yakimov, Boris P
AU - Ermolinskiy, Petr B.
AU - Bikmulina, Polina Y.
AU - Kudryavtsev, Denis S.
AU - Timashev, Peter S.
AU - Muravyov, Alexei V
AU - Wagner, Christian
AU - Shin, Sehyun
AU - Priezzhev, Alexander V.
PY - 2020
DA - 2020/10/15
PB - MDPI
SP - 1-20
IS - 10
VL - 10
PMID - 33076409
SN - 2218-273X
ER -
BibTex |
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BibTex (до 50 авторов) Скопировать
@article{2020_Semenov,
author = {S.N. Semenov and Andrei E. Lugovtsov and Evgeny A Shirshin and Boris P Yakimov and Petr B. Ermolinskiy and Polina Y. Bikmulina and Denis S. Kudryavtsev and Peter S. Timashev and Alexei V Muravyov and Christian Wagner and Sehyun Shin and Alexander V. Priezzhev},
title = {Assessment of fibrinogen macromolecules interaction with red blood cells membrane by means of laser aggregometry, flow cytometry, and optical tweezers combined with microfluidics},
journal = {Biomolecules},
year = {2020},
volume = {10},
publisher = {MDPI},
month = {oct},
url = {https://doi.org/10.3390/biom10101448},
number = {10},
pages = {1--20},
doi = {10.3390/biom10101448}
}
MLA
Цитировать
Semenov, S.N., et al. “Assessment of fibrinogen macromolecules interaction with red blood cells membrane by means of laser aggregometry, flow cytometry, and optical tweezers combined with microfluidics.” Biomolecules, vol. 10, no. 10, Oct. 2020, pp. 1-20. https://doi.org/10.3390/biom10101448.