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  5. Vesiculation of Red Blood Cells in the Blood Bank: A Multi-Omics Approach towards Identification of Causes and Consequences

Vesiculation of Red Blood Cells in the Blood Bank: A Multi-Omics Approach towards Identification of Causes and Consequences

Author(s)
Freitas Leal, Joames K
Lasonder, Edwin
Sharma, Vikram
Schiller, Jürgen
Fanelli, Giuseppina  
more
Date Issued
2020
Type
article
Volume
8
Issue
2
DOI
10.3390/proteomes8020006
Journal
PROTEOMES  
Abstract
Microvesicle generation is an integral part of the aging process of red blood cells in vivo and in vitro. Extensive vesiculation impairs function and survival of red blood cells after transfusion, and microvesicles contribute to transfusion reactions. The triggers and mechanisms of microvesicle generation are largely unknown. In this study, we combined morphological, immunochemical, proteomic, lipidomic, and metabolomic analyses to obtain an integrated understanding of the mechanisms underlying microvesicle generation during the storage of red blood cell concentrates. Our data indicate that changes in membrane organization, triggered by altered protein conformation, constitute the main mechanism of vesiculation, and precede changes in lipid organization. The resulting selective accumulation of membrane components in microvesicles is accompanied by the recruitment of plasma proteins involved in inflammation and coagulation. Our data may serve as a basis for further dissection of the fundamental mechanisms of red blood cell aging and vesiculation, for identifying the cause-effect relationship between blood bank storage and transfusion complications, and for assessing the role of microvesicles in pathologies affecting red blood cells.
Handle
http://hdl.handle.net/2067/42806
File(s)
Thumbnail Image
Name

Proteomes 2020_RBC microvesicles_Bosman.pdf

Size

980.29 KB

Format

Adobe PDF

Checksum (MD5)

311b899f62d126390e97ecaafa48c689

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