-
1
-
-
85020240080
-
Continued decline in blood collection and transfusion in the United States-2015
-
Ellingson KD, Sapiano MR, Haass KA, et al. Continued decline in blood collection and transfusion in the United States-2015. Transfusion. 2017;57(Suppl 2):1588–1598.
-
(2017)
Transfusion
, vol.57
, pp. 1588-1598
-
-
Ellingson, K.D.1
Sapiano, M.R.2
Haass, K.A.3
-
2
-
-
84920933108
-
An update on red blood cell storage lesions, as gleaned through biochemistry and omics technologies
-
D’Alessandro A, Kriebardis AG, Rinalducci S, et al. An update on red blood cell storage lesions, as gleaned through biochemistry and omics technologies. Transfusion. 2015;55(1):205–219.
-
(2015)
Transfusion
, vol.55
, Issue.1
, pp. 205-219
-
-
D’Alessandro, A.1
Kriebardis, A.G.2
Rinalducci, S.3
-
3
-
-
84930842441
-
Widening our gaze of red blood storage haze: A role for metabolomics
-
Zimring JC. Widening our gaze of red blood storage haze: a role for metabolomics. Transfusion. 2015;55(6):1139–1142.
-
(2015)
Transfusion
, vol.55
, Issue.6
, pp. 1139-1142
-
-
Zimring, J.C.1
-
4
-
-
77953638866
-
Transfusion of red blood cells after prolonged storage produces harmful effects that are mediated by iron and inflammation
-
Hod EA, Zhang N, Sokol SA, et al. Transfusion of red blood cells after prolonged storage produces harmful effects that are mediated by iron and inflammation. Blood. 2010;115(21):4284–4292.
-
(2010)
Blood
, vol.115
, Issue.21
, pp. 4284-4292
-
-
Hod, E.A.1
Zhang, N.2
Sokol, S.A.3
-
5
-
-
85015094080
-
The red cell storage lesion(S): Of dogs and men
-
Klein HG. The red cell storage lesion(s): of dogs and men. Blood Transfus. 2017;15 (2):107–111.
-
(2017)
Blood Transfus
, vol.15
, Issue.2
, pp. 107-111
-
-
Klein, H.G.1
-
6
-
-
84855214147
-
Time-course investigation of SAGMstored leukocyte-filtered red bood cell concentrates: From metabolism to proteomics
-
D’Alessandro A, D’Amici GM, Vaglio S, Zolla L. Time-course investigation of SAGMstored leukocyte-filtered red bood cell concentrates: from metabolism to proteomics. Haematologica. 2012;97(1):107–115.
-
(2012)
Haematologica
, vol.97
, Issue.1
, pp. 107-115
-
-
D’Alessandro, A.1
D’Amici, G.M.2
Vaglio, S.3
Zolla, L.4
-
7
-
-
85028772638
-
Oxidative stress and antioxidant defenses during blood processing and storage of erythrocyte concentrates
-
S1246-7820(17)30489-5
-
Bardyn M, Tissot J-D, Prudent M. Oxidative stress and antioxidant defenses during blood processing and storage of erythrocyte concentrates. Transfus Clin Biol. 2017. pii: S1246-7820(17)30489-5.
-
(2017)
Transfus Clin Biol
-
-
Bardyn, M.1
Tissot, J.-D.2
Prudent, M.3
-
8
-
-
85027923838
-
Hemoglobin oxidation at functional amino acid residues during routine storage of red blood cells
-
Wither M, Dzieciatkowska M, Nemkov T, et al. Hemoglobin oxidation at functional amino acid residues during routine storage of red blood cells. Transfusion. 2016;56(2): 421–426.
-
(2016)
Transfusion
, vol.56
, Issue.2
, pp. 421-426
-
-
Wither, M.1
Dzieciatkowska, M.2
Nemkov, T.3
-
9
-
-
85015612019
-
Oxidative modifications of glyceraldehyde 3-phosphate dehydrogenase regulate metabolic reprogramming of stored red blood cells
-
Reisz JA, Wither MJ, Dzieciatkowska M, et al. Oxidative modifications of glyceraldehyde 3-phosphate dehydrogenase regulate metabolic reprogramming of stored red blood cells. Blood. 2016;128(12):e32-42.
-
(2016)
Blood
, vol.128
, Issue.12
, pp. e32-e42
-
-
Reisz, J.A.1
Wither, M.J.2
Dzieciatkowska, M.3
-
10
-
-
84921341790
-
Peroxiredoxin-2 recycling is inhibited during erythrocyte storage
-
Harper VM, Oh JY, Stapley R, et al. Peroxiredoxin-2 recycling is inhibited during erythrocyte storage. Antioxid Redox Signal. 2015;22(4):294–307.
-
(2015)
Antioxid Redox Signal
, vol.22
, Issue.4
, pp. 294-307
-
-
Harper, V.M.1
Oh, J.Y.2
Stapley, R.3
-
11
-
-
79960154426
-
Peroxiredoxin-2 as a candidate biomarker to test oxidative stress levels of stored red blood cells under blood bank conditions
-
Rinalducci S, D’Amici GM, Blasi B, et al. Peroxiredoxin-2 as a candidate biomarker to test oxidative stress levels of stored red blood cells under blood bank conditions. Transfusion. 2011;51(7):1439–1449.
-
(2011)
Transfusion
, vol.51
, Issue.7
, pp. 1439-1449
-
-
Rinalducci, S.1
D’Amici, G.M.2
Blasi, B.3
-
12
-
-
85041515119
-
Bioactive lipids are generated to micromolar levels during RBC storage, even in leukoreduced units
-
Fu X, Felcyn JR, Zimring JC. Bioactive lipids are generated to micromolar levels during RBC storage, even in leukoreduced units. Blood. 2015;126(23):2344–2344.
-
(2015)
Blood
, vol.126
, Issue.23
, pp. 2344-2345
-
-
Fu, X.1
Felcyn, J.R.2
Zimring, J.C.3
-
13
-
-
83455266742
-
Identification of lipids that accumulate during the routine storage of prestorage leukoreduced red blood cells and cause acute lung injury
-
Silliman CC, Moore EE, Kelher MR, et al. Identification of lipids that accumulate during the routine storage of prestorage leukoreduced red blood cells and cause acute lung injury. Transfusion. 2011;51(12):2549–2554.
-
(2011)
Transfusion
, vol.51
, Issue.12
, pp. 2549-2554
-
-
Silliman, C.C.1
Moore, E.E.2
Kelher, M.R.3
-
14
-
-
84996478408
-
Citrate metabolism in red blood cells stored in additive solution-3
-
D’Alessandro A, Nemkov T, Yoshida T, et al. Citrate metabolism in red blood cells stored in additive solution-3. Transfusion. 2017;57(2):325–336.
-
(2017)
Transfusion
, vol.57
, Issue.2
, pp. 325-336
-
-
D’Alessandro, A.1
Nemkov, T.2
Yoshida, T.3
-
15
-
-
85015043507
-
Duration of red blood cell storage and inflammatory marker generation
-
Sut C, Tariket S, Chou ML, et al. Duration of red blood cell storage and inflammatory marker generation. Blood Transfus. 2017;15(2):145–152.
-
(2017)
Blood Transfus
, vol.15
, Issue.2
, pp. 145-152
-
-
Sut, C.1
Tariket, S.2
Chou, M.L.3
-
16
-
-
84963543358
-
Identified metabolic signature for assessing red blood cell unit quality is associated with endothelial damage markers and clinical outcomes
-
Bordbar A, Johansson PI, Paglia G, et al. Identified metabolic signature for assessing red blood cell unit quality is associated with endothelial damage markers and clinical outcomes. Transfusion. 2016;56(4): 852–862.
-
(2016)
Transfusion
, vol.56
, Issue.4
, pp. 852-862
-
-
Bordbar, A.1
Johansson, P.I.2
Paglia, G.3
-
17
-
-
84930865842
-
Routine storage of red blood cell (RBC) units in additive solution-3: A comprehensive investigation of the RBC metabolome
-
D’Alessandro A, Nemkov T, Kelher M, et al. Routine storage of red blood cell (RBC) units in additive solution-3: a comprehensive investigation of the RBC metabolome. Transfusion. 2015;55(6):1155–1168.
-
(2015)
Transfusion
, vol.55
, Issue.6
, pp. 1155-1168
-
-
D’Alessandro, A.1
Nemkov, T.2
Kelher, M.3
-
19
-
-
84908690056
-
Biochemical assessment of red blood cells during storage by 1H nuclear magnetic resonance spectroscopy. Identification of a biomarker of their level of protection against oxidative stress
-
Pertinhez TA, Casali E, Lindner L, et al. Biochemical assessment of red blood cells during storage by 1H nuclear magnetic resonance spectroscopy. Identification of a biomarker of their level of protection against oxidative stress. Blood Transfus. 2014;12 (4):548–556.
-
(2014)
Blood Transfus
, vol.12
, Issue.4
, pp. 548-556
-
-
Pertinhez, T.A.1
Casali, E.2
Lindner, L.3
-
20
-
-
85015014709
-
The controversy over the age of blood: What do the clinical trials really teach us?
-
Belpulsi D, Spitalnik SL, Hod EA. The controversy over the age of blood: what do the clinical trials really teach us? Blood Transfus. 2017;15(2):112–115.
-
(2017)
Blood Transfus
, vol.15
, Issue.2
, pp. 112-115
-
-
Belpulsi, D.1
Spitalnik, S.L.2
Hod, E.A.3
-
21
-
-
85008325072
-
Prolonged red cell storage before transfusion increases extravascular hemolysis
-
Rapido F, Brittenham GM, Bandyopadhyay S, et al. Prolonged red cell storage before transfusion increases extravascular hemolysis. J. Clin. Invest. 2017;127(1):375–382.
-
(2017)
J. Clin. Invest
, vol.127
, Issue.1
, pp. 375-382
-
-
Rapido, F.1
Brittenham, G.M.2
Bandyopadhyay, S.3
-
22
-
-
84977660707
-
Red blood cells stored 35 days or more are associated with adverse outcomes in high-risk patients
-
Goel R, Johnson DJ, Scott AV, et al. Red blood cells stored 35 days or more are associated with adverse outcomes in high-risk patients. Transfusion. 2016;56(7):1690–1698.
-
(2016)
Transfusion
, vol.56
, Issue.7
, pp. 1690-1698
-
-
Goel, R.1
Johnson, D.J.2
Scott, A.V.3
-
23
-
-
85015079078
-
Modelling the effects of blood component storage lesions on the quality of haemostatic resuscitation in massive transfusion for trauma
-
Mays JA, Hess JR. Modelling the effects of blood component storage lesions on the quality of haemostatic resuscitation in massive transfusion for trauma. Blood Transfus. 2017;15(2):153–157.
-
(2017)
Blood Transfus
, vol.15
, Issue.2
, pp. 153-157
-
-
Mays, J.A.1
Hess, J.R.2
-
24
-
-
44849109612
-
Evaluation of proposed FDA criteria for the evaluation of radiolabeled red cell recovery trials
-
Dumont LJ, AuBuchon JP. Evaluation of proposed FDA criteria for the evaluation of radiolabeled red cell recovery trials. Transfusion. 2008;48(6):1053–1060.
-
(2008)
Transfusion
, vol.48
, Issue.6
, pp. 1053-1060
-
-
Dumont, L.J.1
Aubuchon, J.P.2
-
25
-
-
84941804929
-
Proceedings of the National Heart, Lung, and Blood Institute’s State of the Science in Transfusion Medicine symposium
-
Spitalnik SL, Triulzi D, Devine DV, et al. 2015 Proceedings of the National Heart, Lung, and Blood Institute’s State of the Science in Transfusion Medicine symposium. Transfusion. 2015;55(9):2282–2290.
-
(2015)
Transfusion
, vol.55
, Issue.9
, pp. 2282-2290
-
-
Spitalnik, S.L.1
Triulzi, D.2
Devine, D.V.3
-
26
-
-
0033843388
-
Successful storage of RBCs for 10 weeks in a new additive solution
-
Hess JR, Rugg N, Knapp AD, et al. Successful storage of RBCs for 10 weeks in a new additive solution. Transfusion. 2000;40(8):1012–1016.
-
(2000)
Transfusion
, vol.40
, Issue.8
, pp. 1012-1016
-
-
Hess, J.R.1
Rugg, N.2
Knapp, A.D.3
-
27
-
-
78049266816
-
Anaerobic storage of red blood cells
-
Yoshida T, Shevkoplyas SS. Anaerobic storage of red blood cells. Blood Transfus. 2010;8(4):220–236.
-
(2010)
Blood Transfus
, vol.8
, Issue.4
, pp. 220-236
-
-
Yoshida, T.1
Shevkoplyas, S.S.2
-
28
-
-
85003926005
-
Biomarkers defining the metabolic age of red blood cells during cold storage
-
Paglia G, D’Alessandro A, Rolfsson Ó, et al. Biomarkers defining the metabolic age of red blood cells during cold storage. Blood. 2016;128(13):e43-50.
-
(2016)
Blood
, vol.128
, Issue.13
, pp. e43-e50
-
-
Paglia, G.1
D’Alessandro, A.2
Rolfsson, Ó.3
-
29
-
-
85015094619
-
Omics markers of the red cell storage lesion and metabolic linkage
-
D’Alessandro A, Nemkov T, Reisz J, et al. Omics markers of the red cell storage lesion and metabolic linkage. Blood Transfus. 2017;15(2):137–144.
-
(2017)
Blood Transfus
, vol.15
, Issue.2
, pp. 137-144
-
-
D’Alessandro, A.1
Nemkov, T.2
Reisz, J.3
-
30
-
-
85020097248
-
Red blood cells ageing markers: A multiparametric analysis
-
Bardyn M, Rappaz B, Jaferzadeh K, et al. Red blood cells ageing markers: a multiparametric analysis. Blood Transfus. 2017;15(3):239–248.
-
(2017)
Blood Transfus
, vol.15
, Issue.3
, pp. 239-248
-
-
Bardyn, M.1
Rappaz, B.2
Jaferzadeh, K.3
-
31
-
-
84997418940
-
Hypoxanthine: A new paradigm to interpret the origin of transfusion toxicity
-
Casali E, Berni P, Spisni A, Baricchi R, Pertinhez TA. Hypoxanthine: a new paradigm to interpret the origin of transfusion toxicity. Blood Transfus. 2015;14(6):555–556.
-
(2015)
Blood Transfus
, vol.14
, Issue.6
, pp. 555-556
-
-
Casali, E.1
Berni, P.2
Spisni, A.3
Baricchi, R.4
Pertinhez, T.A.5
-
32
-
-
68149154604
-
A novel mouse model of red blood cell storage and posttransfusion in vivo survival
-
Gilson CR, Kraus TS, Hod EA, et al. A novel mouse model of red blood cell storage and posttransfusion in vivo survival. Transfusion. 2009;49(8):1546–1553.
-
(2009)
Transfusion
, vol.49
, Issue.8
, pp. 1546-1553
-
-
Gilson, C.R.1
Kraus, T.S.2
Hod, E.A.3
-
33
-
-
77954137780
-
Adenosine A1 receptors mediate local antinociceptive effects of acupuncture
-
Goldman N, Chen M, Fujita T, et al. Adenosine A1 receptors mediate local antinociceptive effects of acupuncture. Nat Neurosci. 2010;13(7):883–888.
-
(2010)
Nat Neurosci
, vol.13
, Issue.7
, pp. 883-888
-
-
Goldman, N.1
Chen, M.2
Fujita, T.3
-
34
-
-
84964714028
-
Metabolic pathways that correlate with post-transfusion circulation of stored murine red blood cells
-
de Wolski K, Fu X, Dumont LJ, et al. Metabolic pathways that correlate with post-transfusion circulation of stored murine red blood cells. Haematologica. 2016;101(5): 578–586.
-
(2016)
Haematologica
, vol.101
, Issue.5
, pp. 578-586
-
-
de Wolski, K.1
Fu, X.2
Dumont, L.J.3
-
35
-
-
85015004244
-
Enhancing uniformity and overall quality of red cell concentrate with anaerobic storage
-
Yoshida T, Blair A, D’Alessandro A, et al. Enhancing uniformity and overall quality of red cell concentrate with anaerobic storage. Blood Transfus. 2017;15(2):172–181.
-
(2017)
Blood Transfus
, vol.15
, Issue.2
, pp. 172-181
-
-
Yoshida, T.1
Blair, A.2
D’Alessandro, A.3
-
36
-
-
84990841758
-
AltitudeOmics: Red blood cell metabolic adaptation to high altitude hypoxia
-
D’Alessandro A, Nemkov T, Sun K, et al. AltitudeOmics: red blood cell metabolic adaptation to high altitude hypoxia. J. Proteome Res. 2016;15(10):3883–3895.
-
(2016)
J. Proteome Res
, vol.15
, Issue.10
, pp. 3883-3895
-
-
D’Alessandro, A.1
Nemkov, T.2
Sun, K.3
-
37
-
-
0031973525
-
Effect of superoxide anions on red blood cell rheologic properties
-
Baskurt OK, Temiz A, Meiselman HJ. Effect of superoxide anions on red blood cell rheologic properties. Free Radic Biol Med. 1998;24(1):102–110.
-
(1998)
Free Radic Biol Med
, vol.24
, Issue.1
, pp. 102-110
-
-
Baskurt, O.K.1
Temiz, A.2
Meiselman, H.J.3
-
38
-
-
85016012245
-
Red blood cell proteomics update: Is there more to discover?
-
D’Alessandro A, Dzieciatkowska M, Nemkov T, Hansen KC. Red blood cell proteomics update: is there more to discover? Blood Transfus. 2017;15(2):182–187.
-
(2017)
Blood Transfus
, vol.15
, Issue.2
, pp. 182-187
-
-
D’Alessandro, A.1
Dzieciatkowska, M.2
Nemkov, T.3
Hansen, K.C.4
-
40
-
-
84915751028
-
Off-line high-pH reversed-phase fractionation for indepth phosphoproteomics
-
Batth TS, Francavilla C, Olsen JV. Off-line high-pH reversed-phase fractionation for indepth phosphoproteomics. J Proteome Res. 2014;13(12):6176–6186.
-
(2014)
J Proteome Res
, vol.13
, Issue.12
, pp. 6176-6186
-
-
Batth, T.S.1
Francavilla, C.2
Olsen, J.V.3
-
41
-
-
84949968036
-
Metabolomics in transfusion medicine
-
Nemkov T, Hansen KC, Dumont LJ, D’Alessandro A. Metabolomics in transfusion medicine. Transfusion. 2016;56(4):980–993.
-
(2016)
Transfusion
, vol.56
, Issue.4
, pp. 980-993
-
-
Nemkov, T.1
Hansen, K.C.2
Dumont, L.J.3
D’Alessandro, A.4
-
42
-
-
85015699219
-
A three-minute method for high-throughput quantitative metabolomics and quantitative tracing experiments of central carbon and nitrogen pathways
-
Nemkov T, Hansen KC, D’Alessandro A. A three-minute method for high-throughput quantitative metabolomics and quantitative tracing experiments of central carbon and nitrogen pathways. Rapid Commun Mass Spectrom. 2017;31(8):663–673.
-
(2017)
Rapid Commun Mass Spectrom
, vol.31
, Issue.8
, pp. 663-673
-
-
Nemkov, T.1
Hansen, K.C.2
D’Alessandro, A.3
-
43
-
-
85041500237
-
The catabolism of the purine nucleotides: I. the relation to glycolysis in the blood of the rabbit
-
Eiler J, Worthington F. The catabolism of the purine nucleotides: I. the relation to glycolysis in the blood of the rabbit. J Biol Chem. 1938;123:655.
-
(1938)
J Biol Chem
, vol.123
, pp. 655
-
-
Eiler, J.1
Worthington, F.2
-
44
-
-
0035930568
-
Oxidative stress induces impairment of human erythrocyte energy metabolism through the oxygen radical-mediated direct activation of AMP-deaminase
-
Tavazzi B, Amorini AM, Fazzina G, et al. Oxidative stress induces impairment of human erythrocyte energy metabolism through the oxygen radical-mediated direct activation of AMP-deaminase. J Biol Chem. 2001;276(51):48083–48092.
-
(2001)
J Biol Chem
, vol.276
, Issue.51
, pp. 48083-48092
-
-
Tavazzi, B.1
Amorini, A.M.2
Fazzina, G.3
-
45
-
-
84891859782
-
Strain-specific red blood cell storage, metabolism, and eicosanoid generation in a mouse model
-
Zimring JC, Smith N, Stowell SR, et al. Strain-specific red blood cell storage, metabolism, and eicosanoid generation in a mouse model. Transfusion. 2014;54(1):137–148.
-
(2014)
Transfusion
, vol.54
, Issue.1
, pp. 137-148
-
-
Zimring, J.C.1
Smith, N.2
Stowell, S.R.3
-
46
-
-
0014802717
-
Adenylosuccinase activity in human and rabbit erythrocyte lysates
-
Lowy BA, Dorfman B-Z. Adenylosuccinase activity in human and rabbit erythrocyte lysates. J Biol Chem. 1970;245(12):3043–3046.
-
(1970)
J Biol Chem
, vol.245
, Issue.12
, pp. 3043-3046
-
-
Lowy, B.A.1
Dorfman, B.-Z.2
-
47
-
-
85017208176
-
Elucidating dynamic metabolic physiology through network integration of quantitative time-course metabolomics
-
Bordbar A, Yurkovich JT, Paglia G, et al. Elucidating dynamic metabolic physiology through network integration of quantitative time-course metabolomics. Sci Rep. 2017;7:46249.
-
(2017)
Sci Rep
, vol.7
, pp. 46249
-
-
Bordbar, A.1
Yurkovich, J.T.2
Paglia, G.3
-
48
-
-
74249101108
-
Hydrogen peroxide is the major oxidant product of xanthine oxidase
-
Kelley EE, Khoo NKH, Hundley NJ, et al. Hydrogen peroxide is the major oxidant product of xanthine oxidase. Free Radic Biol Med. 2010;48(4):493–498.
-
(2010)
Free Radic Biol Med
, vol.48
, Issue.4
, pp. 493-498
-
-
Kelley, E.E.1
Khoo, N.2
Hundley, N.J.3
-
49
-
-
0023910116
-
Hypoxanthine as an indicator of hypoxia: Its role in health and disease through free radical production
-
Saugstad OD. Hypoxanthine as an indicator of hypoxia: its role in health and disease through free radical production. Pediatr Res. 1988;23(2):143–150.
-
(1988)
Pediatr Res
, vol.23
, Issue.2
, pp. 143-150
-
-
Saugstad, O.D.1
-
50
-
-
85015334279
-
Red blood cell metabolic responses to refrigerated storage, rejuvenation and frozen storage
-
D’Alessandro A, Gray AD, Szczepiorkowski ZM, et al. Red blood cell metabolic responses to refrigerated storage, rejuvenation and frozen storage. Transfusion. 2017;57(4): 1019–1030.
-
(2017)
Transfusion
, vol.57
, Issue.4
, pp. 1019-1030
-
-
D’Alessandro, A.1
Gray, A.D.2
Szczepiorkowski, Z.M.3
-
51
-
-
85012009478
-
Reconciled rat and human metabolic networks for comparative toxicogenomics and biomarker predictions
-
Blais EM, Rawls KD, Dougherty BV, et al. Reconciled rat and human metabolic networks for comparative toxicogenomics and biomarker predictions. Nat Commun. 2017;8:14250.
-
(2017)
Nat Commun
, vol.8
, pp. 14250
-
-
Blais, E.M.1
Rawls, K.D.2
Dougherty, B.V.3
-
52
-
-
84885859577
-
On the appropriate use and interpretation of animal models in transfusion medicine research
-
Zimring JC, Spitalnik SL. On the appropriate use and interpretation of animal models in transfusion medicine research. Transfusion. 2013;53(10):2334–2339.
-
(2013)
Transfusion
, vol.53
, Issue.10
, pp. 2334-2339
-
-
Zimring, J.C.1
Spitalnik, S.L.2
-
53
-
-
40949102607
-
Duration of red-cell storage and complications after cardiac surgery
-
Koch CG, Li L, Sessler DI, et al. Duration of red-cell storage and complications after cardiac surgery. N Engl J Med. 2008;358(12): 1229–1239.
-
(2008)
N Engl J Med
, vol.358
, Issue.12
, pp. 1229-1239
-
-
Koch, C.G.1
Li, L.2
Sessler, D.I.3
-
54
-
-
85016012796
-
Red blood cell storage and clinical outcomes: New insights
-
D’Alessandro A, Liumbruno GM. Red blood cell storage and clinical outcomes: new insights. Blood Transfus. 2017;15(2):101–103.
-
(2017)
Blood Transfus
, vol.15
, Issue.2
, pp. 101-103
-
-
D’Alessandro, A.1
Liumbruno, G.M.2
-
55
-
-
28844488320
-
The energyless red blood cell is lost: Erythrocyte enzyme abnormalities of glycolysis
-
van Wijk R, van Solinge WW. The energyless red blood cell is lost: erythrocyte enzyme abnormalities of glycolysis. Blood. 2005;106(13):4034–4042.
-
(2005)
Blood
, vol.106
, Issue.13
, pp. 4034-4042
-
-
van Wijk, R.1
van Solinge, W.W.2
-
56
-
-
84906262077
-
The heritability of metabolite concentrations in stored human red blood cells
-
van ’t Erve TJ, Wagner BA, Martin SM, et al. The heritability of metabolite concentrations in stored human red blood cells. Transfusion. 2014;54(8):2055–2063.
-
(2014)
Transfusion
, vol.54
, Issue.8
, pp. 2055-2063
-
-
van ’T Erve, T.J.1
Wagner, B.A.2
Martin, S.M.3
-
57
-
-
84930870806
-
The heritability of hemolysis in stored human red blood cells
-
Van ’t Erve TJ, Wagner BA, Martin SM, et al. The heritability of hemolysis in stored human red blood cells. Transfusion. 2015;55(6):1178–1185.
-
(2015)
Transfusion
, vol.55
, Issue.6
, pp. 1178-1185
-
-
van ’T Erve, T.J.1
Wagner, B.A.2
Martin, S.M.3
-
58
-
-
0014508608
-
Restoration in vivo of erythrocyte adenosine triphosphate, 2,3- diphosphoglycerate, potassium ion, and sodium ion concentrations following the transfusion of acid-citrate-dextrose-stored human red blood cells
-
Valeri CR, Hirsch NM. Restoration in vivo of erythrocyte adenosine triphosphate, 2,3- diphosphoglycerate, potassium ion, and sodium ion concentrations following the transfusion of acid-citrate-dextrose-stored human red blood cells. Transl Res. 1969;73 (5):722–733.
-
(1969)
Transl Res
, vol.73
, Issue.5
, pp. 722-733
-
-
Valeri, C.R.1
Hirsch, N.M.2
-
59
-
-
0014561834
-
The in vivo regeneration of red cell 2,3 diphosphoglyceric acid (DPG) after transfusion of stored blood
-
Beutler E, Wood L. The in vivo regeneration of red cell 2,3 diphosphoglyceric acid (DPG) after transfusion of stored blood. J Lab Clin. Med. 1969;74(2):300–304.
-
(1969)
J Lab Clin. Med
, vol.74
, Issue.2
, pp. 300-304
-
-
Beutler, E.1
Wood, L.2
-
60
-
-
16844369577
-
Calcium activates erythrocyte AMP deaminase [isoform E (AMPD3)] through a protein-protein interaction between calmodulin and the N-terminal domain of the AMPD3 polypeptide
-
Mahnke DK, Sabina RL. Calcium activates erythrocyte AMP deaminase [isoform E (AMPD3)] through a protein-protein interaction between calmodulin and the N-terminal domain of the AMPD3 polypeptide. Biochemistry (Mosc.). 2005;44(14):5551–5559.
-
(2005)
Biochemistry (Mosc.)
, vol.44
, Issue.14
, pp. 5551-5559
-
-
Mahnke, D.K.1
Sabina, R.L.2
-
61
-
-
58449110030
-
Ca2+-CaM activation of AMP deaminase contributes to adenine nucleotide dysregulation and phosphatidylserine externalization in human sickle erythrocytes
-
Sabina RL, Wandersee NJ, Hillery CA. Ca2+-CaM activation of AMP deaminase contributes to adenine nucleotide dysregulation and phosphatidylserine externalization in human sickle erythrocytes. Br J Haematol. 2009;144(3):434–445.
-
(2009)
Br J Haematol
, vol.144
, Issue.3
, pp. 434-445
-
-
Sabina, R.L.1
Wandersee, N.J.2
Hillery, C.A.3
-
62
-
-
0037044753
-
N-terminal sequence and distal histidine residues are responsible for pH-regulated cytoplasmic membrane binding of human AMP deaminase isoform
-
Mahnke-Zizelman DK, Sabina RL. N-terminal sequence and distal histidine residues are responsible for pH-regulated cytoplasmic membrane binding of human AMP deaminase isoform E. J Biol Chem. 2002;277 (45):42654–42662.
-
(2002)
E. J Biol Chem
, vol.277
, Issue.45
, pp. 42654-42662
-
-
Mahnke-Zizelman, D.K.1
Sabina, R.L.2
-
63
-
-
0021974778
-
Influence of acidosis on AMP deaminase activity in contracting fast-twitch muscle
-
Dudley GA, Terjung RL. Influence of acidosis on AMP deaminase activity in contracting fast-twitch muscle. Am J Physiol. 1985;248(1 Pt 1):C43-50.
-
(1985)
Am J Physiol
, vol.248
, Issue.1
, pp. C43-C50
-
-
Dudley, G.A.1
Terjung, R.L.2
-
64
-
-
84995677797
-
Adenosine monophosphate deaminase 3 activation shortens erythrocyte half-life and provides malaria resistance in mice
-
Hortle E, Nijagal B, Bauer DC, et al. Adenosine monophosphate deaminase 3 activation shortens erythrocyte half-life and provides malaria resistance in mice. Blood. 2016;128(9):1290–1301.
-
(2016)
Blood
, vol.128
, Issue.9
, pp. 1290-1301
-
-
Hortle, E.1
Nijagal, B.2
Bauer, D.C.3
-
65
-
-
84884195485
-
AMP deaminase 3 deficiency enhanced 5-AMP induction of hypometabolism
-
Daniels IS, Iii WGO, Nath V, Zhao Z, Lee CC. AMP deaminase 3 deficiency enhanced 5-AMP induction of hypometabolism. PLOS One. 7; 8(9): e75418.
-
PLOS One
, vol.8
, Issue.9
-
-
Daniels, I.S.1
Iii, W.2
Nath, V.3
Zhao, Z.4
Lee, C.C.5
-
66
-
-
84938829797
-
CD73 and AMPD3 deficiency enhance metabolic performance via erythrocyte ATP that decreases hemoglobin oxygen affinity
-
O’Brien WG III, Berka V, Tsai A-L, Zhao Z, Lee CC. CD73 and AMPD3 deficiency enhance metabolic performance via erythrocyte ATP that decreases hemoglobin oxygen affinity. Sci. Rep. 2015;5: 13147.
-
(2015)
Sci. Rep
, vol.5
, pp. 13147
-
-
O’Brien, W.1
Berka, V.2
Tsai, A.-L.3
Zhao, Z.4
Lee, C.C.5
-
67
-
-
84964931617
-
Glucose 6-phosphate dehydrogenase deficient subjects may be better “storers” than donors of red blood cells
-
Tzounakas VL, Kriebardis AG, Georgatzakou HT, et al. Glucose 6-phosphate dehydrogenase deficient subjects may be better “storers” than donors of red blood cells. Free Radic Biol Med. 2016;96:152–165.
-
(2016)
Free Radic Biol Med
, vol.96
, pp. 152-165
-
-
Tzounakas, V.L.1
Kriebardis, A.G.2
Georgatzakou, H.T.3
-
68
-
-
84958906763
-
Glucose-6-phosphate dehydrogenase activity decreases during storage of leukoreduced red blood cells
-
Peters AL, van Bruggen R, de Korte D, Van Noorden CJ, Vlaar AP. Glucose-6-phosphate dehydrogenase activity decreases during storage of leukoreduced red blood cells. Transfusion. 2016;56(2):427–432.
-
(2016)
Transfusion
, vol.56
, Issue.2
, pp. 427-432
-
-
Peters, A.L.1
van Bruggen, R.2
de Korte, D.3
van Noorden, C.J.4
Vlaar, A.P.5
-
69
-
-
84874948877
-
Frequency of glucose-6-phosphate dehydrogenase- deficient red blood cell units in a metropolitan transfusion service
-
Francis RO, Jhang J, Hendrickson JE, et al. Frequency of glucose-6-phosphate dehydrogenase- deficient red blood cell units in a metropolitan transfusion service. Transfusion. 2013;53(3):606–611.
-
(2013)
Transfusion
, vol.53
, Issue.3
, pp. 606-611
-
-
Francis, R.O.1
Jhang, J.2
Hendrickson, J.E.3
-
70
-
-
0020656936
-
Red blood cell glucose-6-phosphate dehydrogenase activity in aged humans
-
Rodgers GP, Lichtman HC, Sheff MF. Red blood cell glucose-6-phosphate dehydrogenase activity in aged humans. J Am Geriatr Soc. 1983;31(1):8–11.
-
(1983)
J am Geriatr Soc
, vol.31
, Issue.1
, pp. 8-11
-
-
Rodgers, G.P.1
Lichtman, H.C.2
Sheff, M.F.3
-
71
-
-
84999027808
-
Association of blood donor age and sex with recipient survival after red blood cell transfusion
-
Chassé M, Tinmouth A, English SW, et al. Association of blood donor age and sex with recipient survival after red blood cell transfusion. JAMA Intern Med. 2016;176(9):1307–1314.
-
(2016)
JAMA Intern Med
, vol.176
, Issue.9
, pp. 1307-1314
-
-
Chassé, M.1
Tinmouth, A.2
English, S.W.3
-
72
-
-
85020742945
-
Association of donor age and sex with survival of patients receiving transfusions
-
Edgren G, Ullum H, Rostgaard K, et al. Association of donor age and sex with survival of patients receiving transfusions. JAMA Intern Med. 2017;177(6):854-860.
-
(2017)
JAMA Intern Med
, vol.177
, Issue.6
, pp. 854-860
-
-
Edgren, G.1
Ullum, H.2
Rostgaard, K.3
-
73
-
-
84924690365
-
Inability to maintain GSH pool in G6PD-deficient red cells causes futile AMPK sctivation and irreversible metabolic disturbance. Antioxid
-
Tang H, Ho H, Wu P, et al. Inability to maintain GSH pool in G6PD-deficient red cells causes futile AMPK sctivation and irreversible metabolic disturbance. Antioxid. Redox Signal. 2015;22(9):744–759.
-
(2015)
Redox Signal
, vol.22
, Issue.9
, pp. 744-759
-
-
Tang, H.1
Ho, H.2
Wu, P.3
-
74
-
-
85031920966
-
Purinergic control of red blood cell metabolism: Novel strategies to improve red cell storage quality
-
Sun K, D’Alessandro A, Xia Y. Purinergic control of red blood cell metabolism: novel strategies to improve red cell storage quality. Blood Transfus. 2017;15(6):535-542.
-
(2017)
Blood Transfus
, vol.15
, Issue.6
, pp. 535-542
-
-
Sun, K.1
D’Alessandro, A.2
Xia, Y.3
-
75
-
-
84982833640
-
Beneficial role of erythrocyte adenosine A2B receptormediated AMP-activated protein kinase activation in high-altitude hypoxia
-
Liu H, Zhang Y, Wu H, et al. Beneficial role of erythrocyte adenosine A2B receptormediated AMP-activated protein kinase activation in high-altitude hypoxia. Circulation. 2016;134(5):405–421.
-
(2016)
Circulation
, vol.134
, Issue.5
, pp. 405-421
-
-
Liu, H.1
Zhang, Y.2
Wu, H.3
-
76
-
-
84911466192
-
Ischaemic accumulation of succinate controls reperfusion injury through mitochondrial ROS
-
Chouchani ET, Pell VR, Gaude E, et al. Ischaemic accumulation of succinate controls reperfusion injury through mitochondrial ROS. Nature. 2014;515(7527):431–435.
-
(2014)
Nature
, vol.515
, Issue.7527
, pp. 431-435
-
-
Chouchani, E.T.1
Pell, V.R.2
Gaude, E.3
-
77
-
-
84977677142
-
Plasma hypoxanthine-guanine phosphoribosyl transferase activity in bottlenose dolphins contributes to avoiding accumulation of non-recyclable purines
-
López-Cruz RI, Crocker DE, Gaxiola-Robles R, et al. Plasma hypoxanthine-guanine phosphoribosyl transferase activity in bottlenose dolphins contributes to avoiding accumulation of non-recyclable purines. Front Physiol. 2016;7:213.
-
(2016)
Front Physiol
, vol.7
, pp. 213
-
-
López-Cruz, R.I.1
Crocker, D.E.2
Gaxiola-Robles, R.3
|