Literature DB >> 25108189

Heritability of glutathione and related metabolites in stored red blood cells.

Thomas J van 't Erve1, Claire M Doskey1, Brett A Wagner2, John R Hess3, Benjamin W Darbro4, Kelli K Ryckman5, Jeffrey C Murray6, Thomas J Raife7, Garry R Buettner8.   

Abstract

Red blood cells (RBCs) collected for transfusion deteriorate during storage. This deterioration is termed the "RBC storage lesion." There is increasing concern over the safety, therapeutic efficacy, and toxicity of transfusing longer-stored units of blood. The severity of the RBC storage lesion is dependent on storage time and varies markedly between individuals. Oxidative damage is considered a significant factor in the development of the RBC storage lesion. In this study, the variability during storage and heritability of antioxidants and metabolites central to RBC integrity and function were investigated. In a classic twin study, we determined the heritability of glutathione (GSH), glutathione disulfide (GSSG), the status of the GSSG,2H(+)/2GSH couple (Ehc), and total glutathione (tGSH) in donated RBCs over 56 days of storage. Intracellular GSH and GSSG concentrations both decrease during storage (median net loss of 0.52 ± 0.63 mM (median ± SD) and 0.032 ± 0.107 mM, respectively, over 42 days). Taking into account the decline in pH, Ehc became more positive (oxidized) during storage (median net increase of 35 ± 16 mV). In our study population heritability estimates for GSH, GSSG, tGSH, and Ehc measured over 56 days of storage are 79, 60, 67, and, 75%, respectively. We conclude that susceptibility of stored RBCs to oxidative injury due to variations in the GSH redox buffer is highly variable among individual donors and strongly heritable. Identifying the genes that regulate the storage-related changes in this redox buffer could lead to the development of new methods to minimize the RBC storage lesion.
Copyright © 2014 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Erythrocyte; Glutathione; Heritability; Red blood cells; Storage lesion; Transfusion medicine; Twin study

Mesh:

Substances:

Year:  2014        PMID: 25108189      PMCID: PMC4252477          DOI: 10.1016/j.freeradbiomed.2014.07.040

Source DB:  PubMed          Journal:  Free Radic Biol Med        ISSN: 0891-5849            Impact factor:   7.376


  49 in total

1.  Storage lesion: role of red blood cell breakdown.

Authors:  Daniel B Kim-Shapiro; Janet Lee; Mark T Gladwin
Journal:  Transfusion       Date:  2011-04       Impact factor: 3.157

2.  Red blood cells as a physiological source of glutathione for extracellular fluids.

Authors:  Daniela Giustarini; Aldo Milzani; Isabella Dalle-Donne; Ranieri Rossi
Journal:  Blood Cells Mol Dis       Date:  2007-10-25       Impact factor: 3.039

3.  Effects of erythrocyte aging on nitric oxide and nitrite metabolism.

Authors:  Benjamin Y Owusu; Ryan Stapley; Jaideep Honavar; Rakesh P Patel
Journal:  Antioxid Redox Signal       Date:  2013-03-04       Impact factor: 8.401

4.  Studies on the preservation of human blood. II. The relationship of erythrocyte adenosine triphosphate levels and other in vitro measures to red cell storageability.

Authors:  R J Dern; G J Brewer; J J Wiorkowski
Journal:  J Lab Clin Med       Date:  1967-06

5.  The influence of storage period on the antioxidants level of red blood cells and the plasma before transfusion.

Authors:  P S Ogunro; T O Ogungbamigbe; M A Muhibi
Journal:  Afr J Med Med Sci       Date:  2010-06

6.  Cellular redox potential and hemoglobin S-glutathionylation in human and rat erythrocytes: A comparative study.

Authors:  Graziano Colombo; Isabella Dalle-Donne; Daniela Giustarini; Nicoletta Gagliano; Nicola Portinaro; Roberto Colombo; Ranieri Rossi; Aldo Milzani
Journal:  Blood Cells Mol Dis       Date:  2009-12-06       Impact factor: 3.039

7.  Catalase and glutathione peroxidase are equally active in detoxification of hydrogen peroxide in human erythrocytes.

Authors:  G F Gaetani; S Galiano; L Canepa; A M Ferraris; H N Kirkman
Journal:  Blood       Date:  1989-01       Impact factor: 22.113

Review 8.  Current issues relating to the transfusion of stored red blood cells.

Authors:  A B Zimrin; J R Hess
Journal:  Vox Sang       Date:  2009-02       Impact factor: 2.144

9.  Hydrogen ion dynamics in human red blood cells.

Authors:  Pawel Swietach; Teresa Tiffert; Jakob M A Mauritz; Rachel Seear; Alessandro Esposito; Clemens F Kaminski; Virgilio L Lew; Richard D Vaughan-Jones
Journal:  J Physiol       Date:  2010-10-20       Impact factor: 5.182

Review 10.  Inborn errors in the metabolism of glutathione.

Authors:  Ellinor Ristoff; Agne Larsson
Journal:  Orphanet J Rare Dis       Date:  2007-03-30       Impact factor: 4.123

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  21 in total

1.  Established and theoretical factors to consider in assessing the red cell storage lesion.

Authors:  James C Zimring
Journal:  Blood       Date:  2015-02-04       Impact factor: 22.113

Review 2.  Omics markers of the red cell storage lesion and metabolic linkage.

Authors:  Angelo D'alessandro; Travis Nemkov; Julie Reisz; Monika Dzieciatkowska; Matthew J Wither; Kirk C Hansen
Journal:  Blood Transfus       Date:  2017-03       Impact factor: 3.443

Review 3.  Purinergic control of red blood cell metabolism: novel strategies to improve red cell storage quality.

Authors:  Kaiqi Sun; Angelo D'alessandro; Yang Xia
Journal:  Blood Transfus       Date:  2017-04-12       Impact factor: 3.443

4.  Multi-omics Evidence for Inheritance of Energy Pathways in Red Blood Cells.

Authors:  Erin M M Weisenhorn; Thomas J van T Erve; Nicholas M Riley; John R Hess; Thomas J Raife; Joshua J Coon
Journal:  Mol Cell Proteomics       Date:  2016-10-24       Impact factor: 5.911

Review 5.  Red blood cell storage lesion: causes and potential clinical consequences.

Authors:  Tatsuro Yoshida; Michel Prudent; Angelo D'alessandro
Journal:  Blood Transfus       Date:  2019-01       Impact factor: 3.443

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

Authors:  Karen de Wolski; Xiaoyoun Fu; Larry J Dumont; John D Roback; Hayley Waterman; Katherine Odem-Davis; Heather L Howie; James C Zimring
Journal:  Haematologica       Date:  2016-02-26       Impact factor: 9.941

7.  CO2 -dependent metabolic modulation in red blood cells stored under anaerobic conditions.

Authors:  Larry J Dumont; Angelo D'Alessandro; Zbigniew M Szczepiorkowski; Tatsuro Yoshida
Journal:  Transfusion       Date:  2015-10-19       Impact factor: 3.157

8.  Methylation of protein aspartates and deamidated asparagines as a function of blood bank storage and oxidative stress in human red blood cells.

Authors:  Julie A Reisz; Travis Nemkov; Monika Dzieciatkowska; Rachel Culp-Hill; Davide Stefanoni; Ryan C Hill; Tatsuro Yoshida; Andrew Dunham; Tamir Kanias; Larry J Dumont; Michael Busch; Elan Z Eisenmesser; James C Zimring; Kirk C Hansen; Angelo D'Alessandro
Journal:  Transfusion       Date:  2018-10-12       Impact factor: 3.157

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.

Authors:  Angelo D'Alessandro; Rachel Culp-Hill; Julie A Reisz; Mikayla Anderson; Xiaoyun Fu; Travis Nemkov; Sarah Gehrke; Connie Zheng; Tamir Kanias; Yuelong Guo; Grier Page; Mark T Gladwin; Steve Kleinman; Marion Lanteri; Mars Stone; Michael Busch; James C Zimring
Journal:  Transfusion       Date:  2018-10-24       Impact factor: 3.157

10.  The heritability of hemolysis in stored human red blood cells.

Authors:  Thomas J Van 't Erve; Brett A Wagner; Sean M Martin; C Michael Knudson; Robyn Blendowski; Mignon Keaton; Tracy Holt; John R Hess; Garry R Buettner; Kelli K Ryckman; Benjamin W Darbro; Jeffrey C Murray; Thomas J Raife
Journal:  Transfusion       Date:  2015-02-02       Impact factor: 3.157

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