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Studies on the formation of Heinz bodies. II. The nature and significance of Heinz bodies.
Blood. 1961 Apr;17:418-33
PMID: 13711607
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The glutathione instability of drug-sensitive red cells; a new method for the in vitro detection of drug sensitivity.
J Lab Clin Med. 1957 Jan;49(1):84-95
PMID: 13385579
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Studies on glutathione stability in erythrocytes of cases with past history of favism or sulfa-drug-induced hemolysis.
Blood. 1958 Apr;13(4):348-58
PMID: 13522837
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Relationship between reduced glutathione content and spontaneous haemolysis in shed blood.
Nature. 1952 Oct 11;170(4328):624-5
PMID: 13002390
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A modification of the nitroprusside method of analysis for glutathione.
Arch Biochem. 1951 Feb;30(2):217-25
PMID: 14811490
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Sodium and potassium movements in human red cells.
J Physiol. 1956 Nov 28;134(2):278-310
PMID: 13398911
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The effect of the anomalous osmotic coefficient of haemoglobin on the osmotic behaviour of erythrocytes.
Exp Cell Res. 1958 Jun;14(3):608-11
PMID: 13562088
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The relationship between the glutathione content of rat erythrocytes and their hemolysis by various agents in vitro.
Can J Biochem Physiol. 1960 Sep;38:981-7
PMID: 13839634
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[Instability of blood glutathione in favism; utilization of a selective test and introduction of the genetic problem].
Boll Soc Ital Biol Sper. 1957 Jul;33(7):1057-60
PMID: 13510424
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Membrane adenosine triphosphatase as a participant in the active transport of sodium and potassium in the human erythrocyte.
J Biol Chem. 1960 Jun;235:1796-802
PMID: 14434402
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Agglutination of sensitized red cells by large anisometric molecules.
J Lab Clin Med. 1956 May;47(5):669-85
PMID: 13319873
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Adenosine triphosphate and maintenance of shape of the human red cells.
Nature. 1960 Sep 10;187:945-6
PMID: 13727655
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The inhibition of hemolysis, as studied by the technique used for investigating progressive reactions, and by a technique using radioactive hemolysins.
J Gen Physiol. 1956 Sep 20;40(1):37-46
PMID: 13357736
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The agglutination and sensitization of red cells by metallic cations: interactions between multivalent metals and the red-cell membrane.
Br J Haematol. 1957 Jan;3(1):19-38
PMID: 13413090
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Distribution of phosphatases in human erythrocytes.
J Physiol. 1952 Jan 28;116(1):112-28
PMID: 14898542
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Potassium exchange in human erythrocytes. I. General aspects of the fluoride effect.
J Cell Physiol. 1958 Feb;51(1):81-108
PMID: 13563564
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Hemolysis of human erythrocytes by a sulfhydryl inhibitor, p-chloromercuribenzoic acid.
Proc Soc Exp Biol Med. 1956 Mar;91(3):423-7
PMID: 13322956
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Effects of Primaquine and other related compounds on the red blood cell membrane. I. Sodium ion and potassium ion permeability in normal human cells.
J Clin Invest. 1961 Jan;40:130-9
PMID: 13783698
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The incorporation of labeled glycine into erythrocyte glutathione.
J Biol Chem. 1956 Jan;218(1):261-7
PMID: 13278333
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THE MECHANISM OF GROWTH INHIBITION BY HEXENOLACTONE.
Science. 1945 Apr 13;101(2624):383-5
PMID: 17780324
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Metabolic abnormalities of erythrocytes from patients with congenital nonspherocytic hemolytic anemia.
J Pediatr. 1959 Sep;55:319-36
PMID: 13847572
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Factors in the active transport of cations.
J Physiol. 1951 Jan;112(1-2):59-83
PMID: 14825181
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Relation between erythrocyte integrity and sulfhydryl groups.
Arch Biochem Biophys. 1954 Jan;48(1):38-42
PMID: 13125568
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The sulfur chemistry of proteins.
Adv Protein Chem. 1959;14:255-389
PMID: 13808708
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[Cardiac glycosides as inhibitors of active potassium and sodium transport by erythrocyte membrane].
Helv Physiol Pharmacol Acta. 1953;11(4):346-54
PMID: 13142506
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Sulphydryl groups in haemoglobins.
Biochem J. 1955 Apr;59(4):653-61
PMID: 14363161
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A reversible effect on the metabolism of human erythrocytes by p-chloromercuribenzoic acid and N-ethyl maleimide.
J Lab Clin Med. 1958 Jul;52(1):138-43
PMID: 13549859
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Determination of glutathione.
Methods Biochem Anal. 1955;2:259-78
PMID: 14393570
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The hemolytic effect of primaquine. VII. Biochemical studies of drug-sensitive erythrocytes.
J Lab Clin Med. 1955 Feb;45(2):286-95
PMID: 13233657
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Glutathione stability and pyrophosphatase activity in reticulocytes; direct evidence for the importance of glutathione for the enzyme status in intact cells.
Nature. 1960 Jun 18;186:967-8
PMID: 14436273
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Oxidative hemolysis and precipitation of hemoglobin. II. Role of thiols in oxidant drug action.
J Clin Invest. 1961 Mar;40:454-75
PMID: 13682509
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Cell membrane as site of action of heavy metals.
Fed Proc. 1959 Dec;18:1026-38
PMID: 14439475
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Enzyme deficiency in erythrocytes in congenital nonspherocytic hemolytic anemia.
Pediatrics. 1959 Aug;24(2):245-53
PMID: 13674822
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The permeability of the human erythrocyte to sodium and potassium.
J Gen Physiol. 1952 May;36(1):57-110
PMID: 12981235
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The interaction of muscle phosphorylase with p-chloromercuribenzoate. III. The reversible dissociation of phosphorylase.
J Biol Chem. 1956 Dec;223(2):1075-87
PMID: 13385255
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Red cell membrane structure and ion transport.
J Gen Physiol. 1960 May;43:1-15
PMID: 13832652
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Oxidative hemolysis and precipitation of hemoglobin. I. Heinz body anemias as an acceleration of red cell aging.
J Clin Invest. 1960 Dec;39:1818-36
PMID: 13789379
-
The effect of metabolic poisons on potassium loss from rabbit red cells.
J Cell Comp Physiol. 1953 Oct;42(2):191-202
PMID: 13096527
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Synthesis of peptides in enzymic reactions involving glutathione.
Nature. 1950 Aug 19;166(4216):288-92
PMID: 15439292
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Effect of antibody and complement on permeability control in ascites tumor cells and erythrocytes.
J Exp Med. 1959 Nov 1;110:699-713
PMID: 13851485
-
Glutathione, a prosthetic group of glyceraldehyde-3-phosphate dehydrogenase.
J Biol Chem. 1952 Oct;198(2):721-9
PMID: 12999789