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Impact of taurine on red blood cell metabolism and implications for blood storage.

Authors :
Bertolone L
Roy MK
Hay AM
Morrison EJ
Stefanoni D
Fu X
Kanias T
Kleinman S
Dumont LJ
Stone M
Nemkov T
Busch MP
Zimring JC
D'Alessandro A
Source :
Transfusion [Transfusion] 2020 Jun; Vol. 60 (6), pp. 1212-1226. Date of Electronic Publication: 2020 Apr 27.
Publication Year :
2020

Abstract

Background: Taurine is an antioxidant that is abundant in some common energy drinks. Here we hypothesized that the antioxidant activity of taurine in red blood cells (RBCs) could be leveraged to counteract storage-induced oxidant stress.<br />Study Design and Methods: Metabolomics analyses were performed on plasma and RBCs from healthy volunteers (n = 4) at baseline and after consumption of a whole can of a common, taurine-rich (1000 mg/serving) energy drink. Reductionistic studies were also performed by incubating human RBCs with taurine ex vivo (unlabeled or <superscript>13</superscript> C <superscript>15</superscript> N-labeled) at increasing doses (0, 100, 500, and 1000 μmol/L) at 37°C for up to 16 hours, with and without oxidant stress challenge with hydrogen peroxide (0.1% or 0.5%). Finally, we stored human and murine RBCs under blood bank conditions in additives supplemented with 500 μmol/L taurine, before metabolomics and posttransfusion recovery studies.<br />Results: Consumption of energy drinks increased plasma and RBC levels of taurine, which was paralleled by increases in glycolysis and glutathione (GSH) metabolism in the RBC. These observations were recapitulated ex vivo after incubation with taurine and hydrogen peroxide. Taurine levels in the RBCs from the REDS-III RBC-Omics donor biobank were directly proportional to the total levels of GSH and glutathionylated metabolites and inversely correlated to oxidative hemolysis measurements. Storage of human RBCs in the presence of taurine improved energy and redox markers of storage quality and increased posttransfusion recoveries in FVB mice.<br />Conclusion: Taurine modulates RBC antioxidant metabolism in vivo and ex vivo, an observation of potential relevance to transfusion medicine.<br /> (© 2020 AABB.)

Details

Language :
English
ISSN :
1537-2995
Volume :
60
Issue :
6
Database :
MEDLINE
Journal :
Transfusion
Publication Type :
Academic Journal
Accession number :
32339326
Full Text :
https://doi.org/10.1111/trf.15810