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Interplay Between Plasma Membrane Lipid Alteration, Oxidative Stress and Calcium-Based Mechanism for Extracellular Vesicle Biogenesis From Erythrocytes During Blood Storage

The shedding of extracellular vesicles (EVs) from the red blood cell (RBC) surface is observed during senescence in vivo and RBC storage in vitro. Two main models for EV shedding, respectively based on calcium rise and oxidative stress, have been proposed in the literature but the role of the plasma...

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Autores principales: Cloos, Anne-Sophie, Ghodsi, Marine, Stommen, Amaury, Vanderroost, Juliette, Dauguet, Nicolas, Pollet, Hélène, D’Auria, Ludovic, Mignolet, Eric, Larondelle, Yvan, Terrasi, Romano, Muccioli, Giulio G., Van Der Smissen, Patrick, Tyteca, Donatienne
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7350142/
https://www.ncbi.nlm.nih.gov/pubmed/32719614
http://dx.doi.org/10.3389/fphys.2020.00712
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author Cloos, Anne-Sophie
Ghodsi, Marine
Stommen, Amaury
Vanderroost, Juliette
Dauguet, Nicolas
Pollet, Hélène
D’Auria, Ludovic
Mignolet, Eric
Larondelle, Yvan
Terrasi, Romano
Muccioli, Giulio G.
Van Der Smissen, Patrick
Tyteca, Donatienne
author_facet Cloos, Anne-Sophie
Ghodsi, Marine
Stommen, Amaury
Vanderroost, Juliette
Dauguet, Nicolas
Pollet, Hélène
D’Auria, Ludovic
Mignolet, Eric
Larondelle, Yvan
Terrasi, Romano
Muccioli, Giulio G.
Van Der Smissen, Patrick
Tyteca, Donatienne
author_sort Cloos, Anne-Sophie
collection PubMed
description The shedding of extracellular vesicles (EVs) from the red blood cell (RBC) surface is observed during senescence in vivo and RBC storage in vitro. Two main models for EV shedding, respectively based on calcium rise and oxidative stress, have been proposed in the literature but the role of the plasma membrane lipid composition and properties is not understood. Using blood in K(+)/EDTA tubes stored for up to 4 weeks at 4°C as a relevant RBC vesiculation model, we showed here that the RBC plasma membrane lipid composition, organization in domains and biophysical properties were progressively modified during storage and contributed to the RBC vesiculation. First, the membrane content in cholesterol and linoleic acid decreased whereas lipid peroxidation and spectrin:membrane occupancy increased, all compatible with higher membrane rigidity. Second, phosphatidylserine surface exposure showed a first rapid rise due to membrane cholesterol decrease, followed by a second calcium-dependent increase. Third, lipid domains mainly enriched in GM1 or sphingomyelin strongly increased from the 1st week while those mainly enriched in cholesterol or ceramide decreased during the 1st and 4th week, respectively. Fourth, the plasmatic acid sphingomyelinase activity considerably increased upon storage following the sphingomyelin-enriched domain rise and potentially inducing the loss of ceramide-enriched domains. Fifth, in support of the shedding of cholesterol- and ceramide-enriched domains from the RBC surface, the number of cholesterol-enriched domains lost and the abundance of EVs released during the 1st week perfectly matched. Moreover, RBC-derived EVs were enriched in ceramide at the 4th week but depleted in sphingomyelin. Then, using K(+)/EDTA tubes supplemented with glucose to longer preserve the ATP content, we better defined the sequence of events. Altogether, we showed that EV shedding from lipid domains only represents part of the global vesiculation mechanistics, for which we propose four successive events (cholesterol domain decrease, oxidative stress, sphingomyelin/sphingomyelinase/ceramide/calcium alteration and phosphatidylserine exposure).
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spelling pubmed-73501422020-07-26 Interplay Between Plasma Membrane Lipid Alteration, Oxidative Stress and Calcium-Based Mechanism for Extracellular Vesicle Biogenesis From Erythrocytes During Blood Storage Cloos, Anne-Sophie Ghodsi, Marine Stommen, Amaury Vanderroost, Juliette Dauguet, Nicolas Pollet, Hélène D’Auria, Ludovic Mignolet, Eric Larondelle, Yvan Terrasi, Romano Muccioli, Giulio G. Van Der Smissen, Patrick Tyteca, Donatienne Front Physiol Physiology The shedding of extracellular vesicles (EVs) from the red blood cell (RBC) surface is observed during senescence in vivo and RBC storage in vitro. Two main models for EV shedding, respectively based on calcium rise and oxidative stress, have been proposed in the literature but the role of the plasma membrane lipid composition and properties is not understood. Using blood in K(+)/EDTA tubes stored for up to 4 weeks at 4°C as a relevant RBC vesiculation model, we showed here that the RBC plasma membrane lipid composition, organization in domains and biophysical properties were progressively modified during storage and contributed to the RBC vesiculation. First, the membrane content in cholesterol and linoleic acid decreased whereas lipid peroxidation and spectrin:membrane occupancy increased, all compatible with higher membrane rigidity. Second, phosphatidylserine surface exposure showed a first rapid rise due to membrane cholesterol decrease, followed by a second calcium-dependent increase. Third, lipid domains mainly enriched in GM1 or sphingomyelin strongly increased from the 1st week while those mainly enriched in cholesterol or ceramide decreased during the 1st and 4th week, respectively. Fourth, the plasmatic acid sphingomyelinase activity considerably increased upon storage following the sphingomyelin-enriched domain rise and potentially inducing the loss of ceramide-enriched domains. Fifth, in support of the shedding of cholesterol- and ceramide-enriched domains from the RBC surface, the number of cholesterol-enriched domains lost and the abundance of EVs released during the 1st week perfectly matched. Moreover, RBC-derived EVs were enriched in ceramide at the 4th week but depleted in sphingomyelin. Then, using K(+)/EDTA tubes supplemented with glucose to longer preserve the ATP content, we better defined the sequence of events. Altogether, we showed that EV shedding from lipid domains only represents part of the global vesiculation mechanistics, for which we propose four successive events (cholesterol domain decrease, oxidative stress, sphingomyelin/sphingomyelinase/ceramide/calcium alteration and phosphatidylserine exposure). Frontiers Media S.A. 2020-07-03 /pmc/articles/PMC7350142/ /pubmed/32719614 http://dx.doi.org/10.3389/fphys.2020.00712 Text en Copyright © 2020 Cloos, Ghodsi, Stommen, Vanderroost, Dauguet, Pollet, D’Auria, Mignolet, Larondelle, Terrasi, Muccioli, Van Der Smissen and Tyteca. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Physiology
Cloos, Anne-Sophie
Ghodsi, Marine
Stommen, Amaury
Vanderroost, Juliette
Dauguet, Nicolas
Pollet, Hélène
D’Auria, Ludovic
Mignolet, Eric
Larondelle, Yvan
Terrasi, Romano
Muccioli, Giulio G.
Van Der Smissen, Patrick
Tyteca, Donatienne
Interplay Between Plasma Membrane Lipid Alteration, Oxidative Stress and Calcium-Based Mechanism for Extracellular Vesicle Biogenesis From Erythrocytes During Blood Storage
title Interplay Between Plasma Membrane Lipid Alteration, Oxidative Stress and Calcium-Based Mechanism for Extracellular Vesicle Biogenesis From Erythrocytes During Blood Storage
title_full Interplay Between Plasma Membrane Lipid Alteration, Oxidative Stress and Calcium-Based Mechanism for Extracellular Vesicle Biogenesis From Erythrocytes During Blood Storage
title_fullStr Interplay Between Plasma Membrane Lipid Alteration, Oxidative Stress and Calcium-Based Mechanism for Extracellular Vesicle Biogenesis From Erythrocytes During Blood Storage
title_full_unstemmed Interplay Between Plasma Membrane Lipid Alteration, Oxidative Stress and Calcium-Based Mechanism for Extracellular Vesicle Biogenesis From Erythrocytes During Blood Storage
title_short Interplay Between Plasma Membrane Lipid Alteration, Oxidative Stress and Calcium-Based Mechanism for Extracellular Vesicle Biogenesis From Erythrocytes During Blood Storage
title_sort interplay between plasma membrane lipid alteration, oxidative stress and calcium-based mechanism for extracellular vesicle biogenesis from erythrocytes during blood storage
topic Physiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7350142/
https://www.ncbi.nlm.nih.gov/pubmed/32719614
http://dx.doi.org/10.3389/fphys.2020.00712
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