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- BENESCH R. E., BENESCH R. Relation between erythrocyte integrity and sulfhydryl groups. Arch Biochem Biophys. 1954 Jan;48(1):38–42. doi: 10.1016/0003-9861(54)90302-1. [DOI] [PubMed] [Google Scholar]
- BHATTACHARYA S. K., ROBSON J. S., STEWART C. P. The determination of glutathione in blood and tissues. Biochem J. 1955 Aug;60(4):696–702. doi: 10.1042/bj0600696. [DOI] [PMC free article] [PubMed] [Google Scholar]
- BORNSTEIN J., PARK C. R. Inhibition of glucose uptake by the serum of diabetic rats. J Biol Chem. 1953 Nov;205(1):503–511. [PubMed] [Google Scholar]
- BUEDING E., MACKINNON J. A. Hexokinases of Schistosoma mansoni. J Biol Chem. 1955 Aug;215(2):495–506. [PubMed] [Google Scholar]
- COLLIER H. B., McRAE S. C. The amperometric determination of glutathione reductase activity in human erythrocytes. Can J Biochem Physiol. 1955 May;33(3):404–407. [PubMed] [Google Scholar]
- DIMANT E., LANDSBERG E., LONDON I. M. The metabolic behavior of reduced glutathione in human and avian erythrocytes. J Biol Chem. 1955 Apr;213(2):769–776. [PubMed] [Google Scholar]
- DONOHUE D. M., FINCH C. A., GABRIO B. W. Erythrocyte preservation. VI. The storage of blood with purine nucleosides. J Clin Invest. 1956 May;35(5):562–567. doi: 10.1172/JCI103309. [DOI] [PMC free article] [PubMed] [Google Scholar]
- ELDER H. A., MORTENSEN R. A. The incorporation of labeled glycine into erythrocyte glutathione. J Biol Chem. 1956 Jan;218(1):261–267. [PubMed] [Google Scholar]
- FEGLER G. Relationship between reduced glutathione content and spontaneous haemolysis in shed blood. Nature. 1952 Oct 11;170(4328):624–625. doi: 10.1038/170624a0. [DOI] [PubMed] [Google Scholar]
- FISHMAN I. Y., HUNTER F. R. Hemolysis of erythrocytes incubated under a variety of circumstances. Arch Biochem. 1951 Feb;30(2):469–470. [PubMed] [Google Scholar]
- FRANCOEUR M., DENSTEDT O. F. Metabolism of mammalian erythrocytes. VII. The glutathione reductase of the mammalian erythrocyte. Can J Biochem Physiol. 1954 Nov;32(6):663–669. [PubMed] [Google Scholar]
- GABRIO B. W., DONOHUE D. M., FINCH C. A. Erythrocyte preservation. V. Relationship between chemical changes and viability of stored blood treated with adenosine. J Clin Invest. 1955 Oct;34(10):1509–1512. doi: 10.1172/JCI103202. [DOI] [PMC free article] [PubMed] [Google Scholar]
- GABRIO B. W., FINCH C. A., HUENNEKENS F. M. Erythrocyte preservation: a topic in molecular biochemistry. Blood. 1956 Feb;11(2):103–113. [PubMed] [Google Scholar]
- GABRIO B. W., HENNESSEY M., THOMASSON J., FINCH C. A. Erythrocyte preservation. IV. In vitro reversibility of the storage lesion. J Biol Chem. 1955 Jul;215(1):357–367. [PubMed] [Google Scholar]
- GABRIO B. W., HUENNEKENS F. M. The role of nucleoside phosphorylase in erythrocyte preservation. Biochim Biophys Acta. 1955 Dec;18(4):585–586. doi: 10.1016/0006-3002(55)90163-3. [DOI] [PubMed] [Google Scholar]
- GLASER L., BROWN D. H. Purification and properties of d-glucose-6-phosphate dehydrogenase. J Biol Chem. 1955 Sep;216(1):67–79. [PubMed] [Google Scholar]
- GRUNERT R. R., PHILLIPS P. H. A modification of the nitroprusside method of analysis for glutathione. Arch Biochem. 1951 Feb;30(2):217–225. [PubMed] [Google Scholar]
- HARPUR R. P., QUASTEL J. H. Phosphorylation of d-glucosamine by brain extracts. Nature. 1949 Oct 22;164(4173):693–693. doi: 10.1038/164693a0. [DOI] [PubMed] [Google Scholar]
- Jowett M., Quastel J. H. The glyoxalase activity of the red blood cell: The function of glutathione. Biochem J. 1933;27(2):486–498. [PMC free article] [PubMed] [Google Scholar]
- KLEBANOFF S. J. Glutathione metabolism. 1. The glyoxalase activity of mature mammalian erythrocytes. Biochem J. 1956 Nov;64(3):425–430. doi: 10.1042/bj0640425. [DOI] [PMC free article] [PubMed] [Google Scholar]
- KRAHL M. E. Incorporation of C14-amino acids into glutathione and protein fractions of normal and diabetic rat tissues. J Biol Chem. 1953 Jan;200(1):99–109. [PubMed] [Google Scholar]
- Keilin D., Wang Y. L. Stability of haemoglobin and of certain endoerythrocytic enzymes in vitro. Biochem J. 1947;41(4):491–500. doi: 10.1042/bj0410491. [DOI] [PMC free article] [PubMed] [Google Scholar]
- Meldrum N. U., Tarr H. L. The reduction of glutathione by the Warburg-Christian system. Biochem J. 1935;29(1):108–115. doi: 10.1042/bj0290108. [DOI] [PMC free article] [PubMed] [Google Scholar]
- Meldrum N. U. The reduction of glutathione in mammalian erythrocytes. Biochem J. 1932;26(3):817–828. doi: 10.1042/bj0260817. [DOI] [PMC free article] [PubMed] [Google Scholar]
- NAKADA H. I., MORITA T. N., WICK A. N. Studies on the relationships between insulin, glucosamine, and glucose in rat diaphragms. J Biol Chem. 1955 Aug;215(2):803–808. [PubMed] [Google Scholar]
- PRANKERD T. A., ALTMAN K. I. A study of the metabolism of phosphorus in mammalian red cells. Biochem J. 1954 Dec;58(4):622–633. doi: 10.1042/bj0580622. [DOI] [PMC free article] [PubMed] [Google Scholar]
- Proceedings of the Biochemical Society. Biochem J. 1955 Dec;61(4):xix–xxv. [PMC free article] [PubMed] [Google Scholar]
- RACKER E. Glutathione reductase from bakers' yeast and beef liver. J Biol Chem. 1955 Dec;217(2):855–865. [PubMed] [Google Scholar]
- RALL T. W., LEHNINGER A. L. Glutathione reductase of animal tissues. J Biol Chem. 1952 Jan;194(1):119–130. [PubMed] [Google Scholar]
- RUBINSTEIN D., KASHKET S., DENSTEDT O. F. Studies on the preservation of blood. IV. The influence of adenosine on the glycolytic activity of the erythrocyte during storage at 4 degrees C. Can J Biochem Physiol. 1956 Jan;34(1):61–74. [PubMed] [Google Scholar]
- SHEETS R. F., HAMILTON H. E., DEGOWIN E. L. Hemolysis of human erythrocytes by a sulfhydryl inhibitor, p-chloromercuribenzoic acid. Proc Soc Exp Biol Med. 1956 Mar;91(3):423–427. doi: 10.3181/00379727-91-22283. [DOI] [PubMed] [Google Scholar]
- WICK A. N., DRURY D. R., NAKADA H. I., BARNET H. N., MORITA T. N. Glucosamine and the action of insulin. J Biol Chem. 1955 Apr;213(2):907–911. [PubMed] [Google Scholar]