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Citations to this article

Acid-Base Alterations and Renal Gluconeogenesis: Effect of pH, Bicarbonate Concentration, and PCO2
Donald E. Kamm, … , A. David Goodman, George F. Cahill Jr.
Donald E. Kamm, … , A. David Goodman, George F. Cahill Jr.
Published July 1, 1967
Citation Information: J Clin Invest. 1967;46(7):1172-1177. https://doi.org/10.1172/JCI105610.
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Research Article

Acid-Base Alterations and Renal Gluconeogenesis: Effect of pH, Bicarbonate Concentration, and PCO2

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Abstract

In previous studies it was found that renal cortical slices from rats with induced metabolic acidosis have an increased capacity to produce glucose, whereas cortical slices from rats with metabolic alkalosis manifest decreased gluconeogenesis. To evaluate the relative influence of extracellular fluid pH, [HCO3-], and carbon dioxide tension on renal gluconeogenesis, we observed glucose production by cortex from rats with induced respiratory acidosis, and by cortex taken from normal animals and incubated in acid and alkaline media.

Authors

Donald E. Kamm, Robert E. Fuisz, A. David Goodman, George F. Cahill Jr.

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Total citations by year

Year: 2023 2022 2019 2018 2015 2014 2012 2009 2008 2007 2006 2005 1998 1995 1992 1986 1985 1984 1983 1982 1981 1980 1979 1977 1976 1975 1974 1973 1972 1971 1970 1969 1968 Total
Citations: 1 1 1 1 1 1 1 1 1 1 1 1 2 1 2 1 1 1 1 2 1 3 3 1 1 2 1 6 5 3 4 1 4 58
Citation information
This citation data is accumulated from CrossRef, which receives citation information from participating publishers, including this journal. Not all publishers participate in CrossRef, so this information is not comprehensive. Additionally, data may not reflect the most current citations to this article, and the data may differ from citation information available from other sources (for example, Google Scholar, Web of Science, and Scopus).

Citations to this article (58)

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S AbdulnourNakhoul, K HeringSmith, LL Hamm, NL Nakhoul
Physiological Reports 2019
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MA El-Esawi
2018
Measurements of Gluconeogenesis and Glycogenolysis: A Methodological Review
ST Chung, SK Chacko, AL Sunehag, MW Haymond
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Methods in Enzymology
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ZC Chroneos, Z Sever-Chroneos, VL Shepherd
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The metabolism of proline as microenvironmental stress substrate
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The Journal of nutrition 2008
Immunocytochemical localization of glucose 6-phosphatase and cytosolic phosphoenolpyruvate carboxykinase in gluconeogenic tissues reveals unsuspected metabolic zonation
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VO Rodriguez, R Arem, HJ Adrogué
Seminars in Dialysis 1995
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HJ Adrogué
Kidney International 1992
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BC Smith, LA Clotfelter, JY Cheung, KF LaNoue
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Regulatory Mechanism of Carbonic Acid Effect on Ammonium Nitrogen Utilization in Animals
DA Melnichuk
Archiv für Tierernaehrung 1986
Renal tubular biochemistry during acute and chronic metabolic alkalosis in the dog
G Lemieux, AL Kiss, C Lemieux, RJ Ibanez, MR Aranda, A Quenneville
Kidney International 1985
Response of ammonia metabolism to acute acidosis
RL Tannen, S Sastrasinh
Kidney International 1984
Effect of metabolic acidosis on phosphate transport by the renal brush-border membrane
B S Levine, K Ho, J A Kraut, J W Coburn, K Kurokawa
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Dissociation between renal gluconeogenesis and ammoniagenesis after acute liver intoxication
MJ Faus, ML Pita, JA Lupiánez, P Hortelano, F Sánchez-Medina
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DISTRIBUTION OF GAMMA-GLUTAMYL TRANSPEPTIDASE AND GLUTAMINASE ISOENZYMES IN THE RABBIT SINGLE NEPHRON
H SHIMADA, H ENDOU, F SARAI
The Japanese Journal of Pharmacology 1982
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S Adler, DS Fraley, B Zett
Kidney International 1981
Response of the rat and dog kidney to H+ concentration in vitro—A comparative study with slices and tubules
P Vinay, G Lemieux, A Gougoux, C Lemieux
International Journal of Biochemistry 1980
Effect of pH on metabolism of the glutamine carbon skeleton by renal cortical mitochondria
AS Kunin, RL Tannen
International Journal of Biochemistry 1980
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A role for bicarbonate in the regulation of mammalian glutamine metabolism
G Baverel, P Lund
Biochemical Journal 1979
Stimulation of renal gluconeogenesis by angiotensin II
WG Guder
Biochimica et Biophysica Acta (BBA) - General Subjects 1979
Renal Medicine
EN Wardle
1979
Diabetes mellitus • B
R Beckmann, M Berger, A Beringer, P Berchtold, J Beyer, A Bischoff, G Brehm, BF Clarke, GR Constam, LJ Duncan, FA Gries, A Hasselblatt, R Hild, K Irmscher, K Jahnke, J Kühnau, H Liebermeister, K Lundbaek, G Meyer-Schwickerath, S Napp-Mellinghoff, M Neubauer, F Nobbe, K Oberdisse, P Petrides, R Petzoldt, H Sauer, K Schöffling, M Spitznas, J Steinke, M Vogel, KH Vogelberg, A Wessing
1977
Isohydric regulation of plasma potassium by bicarbonate in the rat
DS Fraley, S Adler
Kidney International 1976
Effect of volume expansion on renal citrate and ammonia metabolism in KCl-deficient rats
S Adler, B Zett, B Anderson, DS Fraley
Journal of Clinical Investigation 1975
Metabolism of blood glucose by the intact functioning kidney of the dog
RF Pitts, MB MacLeod
Kidney International 1975
Regulation of citrate metabolism by cell pH in potassium-depleted rat diaphragm
S Adler, B Anderson, B Zett
Kidney International 1974
Evidence for Stimulation of Renal Gluconeogenesis by Catecholamines
K Kurokawa, SG Massry
Journal of Clinical Investigation 1973
The interrelationship of the concentration of hydrogen ions, bicarbonate ions, carbon dioxide and calcium ions in the regulation of renal gluconeogenesis in the rat
GA Alleyne, H Flores, A Roobol
Biochemical Journal 1973
Ionic control of renal gluconeogenesis: I. The interrelated effect of calcium and hydrogen ions
K Kurokawa, H Rasmussen
Biochimica et Biophysica Acta (BBA) - General Subjects 1973
Ionic control of renal gluconeogenesis III. The effects of changes in pH, pCO2, and bicarbonate concentration
K Kurokawa, H Rasmussen
Biochimica et Biophysica Acta (BBA) - General Subjects 1973
Ionic control of renal gluconeogenesis IV. Effect of extracellular phosphate concentration
K Kurokawa, H Rasmussen
Biochimica et Biophysica Acta (BBA) - General Subjects 1973
Stimulation of renal gluconeogenesis in methylacetamide diabetes: Studies on the role of acidosis
PB Iynedjian, G Peters
Naunyn-Schmiedeberg's Archives of Pharmacology 1973
The effects of acidosis and alkalosis on the metabolism of glutamine and glutamate in renal cortex slices
DE Kamm, GL Strope
Journal of Clinical Investigation 1972
Metabolic consequences of acid-base disorders
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Kidney International 1972
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Biochemical Journal 1972
Intraveneous hyperalimentation: indications, technique, and complications
MH Parsa, DV Habif, JM Ferrer, R Lipton, NN Yoshimura
Bulletin of the New York Academy of Medicine 1972
Impaired renal gluconeogenesis and energy metabolism in maleic acid-induced nephropathy in rats
K Schärer, T Yoshida, L Voyer, S Berlow, G Pietra, J Metcoff
Research in Experimental Medicine 1972
Effects of metabolic acidosis and starvation on the content of intermediary metabolites in rat kidney
DA Hems, JT Brosnan
Biochemical Journal 1971
Phosphoenolpyruvate carboxykinase of kidney. Subcellular distribution and response to acid-base changes
H Flores, GA Alleyne
Biochemical Journal 1971
Ionic and hormonal control of calcium homeostasis
H Rasmussen
The American Journal of Medicine 1971
Renal metabolic response to acid-base changes II. The early effects of metabolic acidosis on renal metabolism in the rat
GA Alleyne
Journal of Clinical Investigation 1970
The role of pH, PCO2, and bicarbonate in regulating rat diaphragm citrate content
S Adler
Journal of Clinical Investigation 1970
Relation of renal cortical gluconeogenesis, glutamate content, and production of ammonia
AS Pagliara, AD Goodman
Journal of Clinical Investigation 1970
Gluconeogenesis in the Isolated Perfused Rat Kidney
RH Bowman, W the technical assistance of Fern Barney
The Journal of biological chemistry 1970
Mammalian Protein Metabolism
J Mclaughlan, J Campbell
Mammalian Protein Metabolism 1969
The acidosis of renal disease
AS Relman
The American Journal of Medicine 1968
Excretion of Acid by the Kidney — Functional Organization and Cellular Aspects of Acidification
DS Feingold, EE Parris, PR Steinmetz
New England Journal of Medicine 1968
The consumption of fuels during prolonged starvation
GF Cahill, OE Owen, AP Morgan
Advances in Enzyme Regulation 1968
Parathyroid hormone and renal cell metabolism
N Nagata, H Rasmussen
Biochemistry 1968

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