Case E, DICKENS F
Biochem J. 1948; 43(4):481-7.
PMID: 16748437
PMC: 1274761.
DOI: 10.1042/bj0430481.
KREBS H, EGGLESTON L
Biochem J. 1940; 34(10-11):1383-95.
PMID: 16747268
PMC: 1265425.
DOI: 10.1042/bj0341383.
KREBS H, EGGLESTON L
Biochem J. 1940; 34(3):442-59.
PMID: 16747180
PMC: 1265297.
DOI: 10.1042/bj0340442.
Lu G, Needham D
Biochem J. 1939; 33(10):1544-8.
PMID: 16747064
PMC: 1264612.
DOI: 10.1042/bj0331544.
Platt B, Lu G
Biochem J. 1939; 33(10):1525-37.
PMID: 16747062
PMC: 1264610.
DOI: 10.1042/bj0331525.
Studies on the metabolism of pyruvic acid in normal and vitamin B(1)-deficient states: Blood pyruvate levels in the rat, pigeon, rabbit and man. III. The relation of blood pyruvate to cardiac changes.
Lu G
Biochem J. 1939; 33(5):774-86.
PMID: 16746973
PMC: 1264445.
DOI: 10.1042/bj0330774.
The effect of calcium ion on tissue respiration; with a note on the estimation of oxaloacetic acid.
GREVILLE G
Biochem J. 1939; 33(5):718-22.
PMID: 16746965
PMC: 1264437.
DOI: 10.1042/bj0330718.
Microdetermination of glutamic acid.
Cohen P
Biochem J. 1939; 33(4):551-8.
PMID: 16746943
PMC: 1264410.
DOI: 10.1042/bj0330551.
Pyruvate oxidation in brain: The oxidation products of pyruvic acid.
Long C
Biochem J. 1938; 32(10):1711-7.
PMID: 16746803
PMC: 1264246.
DOI: 10.1042/bj0321711.
Phenazine compounds as carriers in the hexosemonophosphate system.
DICKENS F, McIlwain H
Biochem J. 1938; 32(9):1615-25.
PMID: 16746790
PMC: 1264229.
DOI: 10.1042/bj0321615.
The effect of CO(2) on the production of succinic acid by Bact. coli commune.
ELSDEN S
Biochem J. 1938; 32(1):187-93.
PMID: 16746592
PMC: 1264007.
DOI: 10.1042/bj0320187.
The role of fumarate in the respiration of Bacterium coli commune.
KREBS H
Biochem J. 1937; 31(11):2095-124.
PMID: 16746552
PMC: 1267183.
DOI: 10.1042/bj0312095.
Pyruvate oxidation in brain: Nature, specificity and course of oxidation catalysed by vitamin B(1).
McGowan G, Peters R
Biochem J. 1937; 31(9):1637-41.
PMID: 16746501
PMC: 1267124.
DOI: 10.1042/bj0311637.
Coenzyme-linked reactions between dehydrogenase systems.
Dewan J, Green D
Biochem J. 1937; 31(7):1074-85.
PMID: 16746436
PMC: 1267050.
DOI: 10.1042/bj0311074.
The metabolism of lactic and pyruvic acids in normal and tumour tissues: The formation of succinate.
Elliott K, GREIG M
Biochem J. 1937; 31(7):1021-32.
PMID: 16746428
PMC: 1267042.
DOI: 10.1042/bj0311021.
The metabolism of lactic and pyruvic acids in normal and tumour tissues: Rat liver, brain and testis.
Elliott K, GREIG M, Benoy M
Biochem J. 1937; 31(7):1003-20.
PMID: 16746427
PMC: 1267041.
DOI: 10.1042/bj0311003.
MALONIC ACID AS AN INHIBITOR OF MAIZE ROOT RESPIRATION.
Beevers H
Plant Physiol. 1952; 27(4):725-35.
PMID: 16654497
PMC: 547983.
DOI: 10.1104/pp.27.4.725.
Biological production of acid and alkali; quantitative relations of succinic and carbonic acids to the potassium and hydrogen ion exchange in fermenting yeast.
CONWAY E, BRADY T
Biochem J. 1950; 47(3):360-9.
PMID: 14800894
PMC: 1275220.
DOI: 10.1042/bj0470360.
pH values of the yeast cell.
CONWAY E, Downey M
Biochem J. 1950; 47(3):355-60.
PMID: 14800893
PMC: 1275219.
DOI: 10.1042/bj0470355.
An outer metabolic region of the yeast cell.
CONWAY E, Downey M
Biochem J. 1950; 47(3):347-55.
PMID: 14800892
PMC: 1275218.
DOI: 10.1042/bj0470347.