Literature DB >> 26271632

Red blood cell storage in additive solution-7 preserves energy and redox metabolism: a metabolomics approach.

Angelo D'Alessandro1, Travis Nemkov1, Kirk C Hansen1, Zbigniew M Szczepiorkowski2, Larry J Dumont2.   

Abstract

BACKGROUND: Storage and transfusion of red blood cells (RBCs) has a huge medical and economic impact. Routine storage practices can be ameliorated through the implementation of novel additive solutions (ASs) that tackle the accumulation of biochemical and morphologic lesion during routine cold liquid storage in the blood bank, such as the recently introduced alkaline solution AS-7. Here we hypothesize that AS-7 might exert its beneficial effects through metabolic modulation during routine storage. STUDY DESIGN AND METHODS: Apheresis RBCs were resuspended either in control AS-3 or experimental AS-7, before ultrahigh-performance liquid chromatography-mass spectrometry metabolomics analysis.
RESULTS: Unambiguous assignment and relative quantitation was achieved for 229 metabolites. AS-3 and AS-7 results in many similar metabolic trends over storage, with AS-7 RBCs being more metabolically active in the first storage week. AS-7 units had faster fueling of the pentose phosphate pathway, higher total glutathione pools, and increased flux through glycolysis as indicated by higher levels of pathway intermediates. Metabolite differences are especially observed at 7 days of storage, but were still maintained throughout 42 days.
CONCLUSION: AS-7 formulation (chloride free and bicarbonate loading) appears to improve energy and redox metabolism in stored RBCs in the early storage period, and the differences, though diminished, are still appreciable by Day 42. Energy metabolism and free fatty acids should be investigated as potentially important determinants for preservation of RBC structure and function. Future studies will be aimed at identifying metabolites that correlate with in vitro and in vivo circulation times.
© 2015 AABB.

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Year:  2015        PMID: 26271632      PMCID: PMC5823509          DOI: 10.1111/trf.13253

Source DB:  PubMed          Journal:  Transfusion        ISSN: 0041-1132            Impact factor:   3.157


  45 in total

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Review 4.  An update on red blood cell storage lesions, as gleaned through biochemistry and omics technologies.

Authors:  Angelo D'Alessandro; Anastasios G Kriebardis; Sara Rinalducci; Marianna H Antonelou; Kirk C Hansen; Issidora S Papassideri; Lello Zolla
Journal:  Transfusion       Date:  2014-08-06       Impact factor: 3.157

5.  Additive solution-7 reduces the red blood cell cold storage lesion.

Authors:  Jose A Cancelas; Larry J Dumont; Lou A Maes; Neeta Rugg; Louise Herschel; Pamela H Whitley; Zbigniew M Szczepiokowski; Alan H Siegel; John R Hess; Majid Zia
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Review 9.  The red blood cell proteome and interactome: an update.

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  31 in total

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2.  Metabolic effect of alkaline additives and guanosine/gluconate in storage solutions for red blood cells.

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Review 3.  Omics markers of the red cell storage lesion and metabolic linkage.

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Review 6.  Red blood cell storage lesion: causes and potential clinical consequences.

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7.  Metabolic pathways that correlate with post-transfusion circulation of stored murine red blood cells.

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Review 8.  Red blood cell storage time and transfusion: current practice, concerns and future perspectives.

Authors:  María García-Roa; María Del Carmen Vicente-Ayuso; Alejandro M Bobes; Alexandra C Pedraza; Ataúlfo González-Fernández; María Paz Martín; Isabel Sáez; Jerard Seghatchian; Laura Gutiérrez
Journal:  Blood Transfus       Date:  2017-05       Impact factor: 3.443

9.  Heterogeneity of blood processing and storage additives in different centers impacts stored red blood cell metabolism as much as storage time: lessons from REDS-III-Omics.

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10.  A Role for Tryptophan-2,3-dioxygenase in CD8 T-cell Suppression and Evidence of Tryptophan Catabolism in Breast Cancer Patient Plasma.

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