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Citations to this article

Effect of Intermittent Endogenous Hyperglucagonemia on Glucose Homeostasis in Normal and Diabetic Man
Robert Rizza, … , F. John Service, John Gerich
Robert Rizza, … , F. John Service, John Gerich
Published June 1, 1979
Citation Information: J Clin Invest. 1979;63(6):1119-1123. https://doi.org/10.1172/JCI109404.
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Research Article

Effect of Intermittent Endogenous Hyperglucagonemia on Glucose Homeostasis in Normal and Diabetic Man

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Abstract

Infusion of glucagon causes only a transient increase in glucose production in normal and diabetic man. To assess the effect of intermittent endogenous hyperglucagonemia that might more closely reflect physiologic conditions, arginine (10 g over 30 min) was infused four times to 8 normal subjects and 13 insulin-dependent diabetic subjects (4 of whom were infused concomitantly with somatostatin to examine effects of arginine during prevention of hyperglucagonemia). Each arginine infusion was separated by 60 min. Diabetic subjects were infused throughout the experiments with insulin at rates (0.07-0.48 mU/kg per min) that had normalized base-line plasma glucose and rates of glucose appearance (Ra) and disappearance (Rd). Basal plasma glucagon and arginine-induced hyperglucagonemia were similar in both groups; basal serum insulin in the diabetics (16±1 μU/ml, P < 0.05) exceeded those of the normal subjects (10±1 μU/ml, P < 0.05) but did not increase with arginine. Serum insulin in normal subjects increased 15-20 μU/ml with each arginine infusion. In both groups each arginine infusion increased plasma glucose and Ra. Increments of Ra in the diabetics exceeded those of normal subjects, (P < 0.02); Rd was similar in both groups. In normal subjects, plasma glucose returned to basal levels after each arginine infusion, whereas in the diabetics hyperglycemia persisted reaching 151±15 mg/dl after the last arginine infusion. When glucagon responses were prevented by somatostatin, arginine infusions did not alter plasma glucose or Ra.

Authors

Robert Rizza, Carlos Verdonk, John Miles, F. John Service, John Gerich

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Total citations by year

Year: 2021 2020 2015 2014 2013 2012 2011 2010 2008 2007 1998 1996 1995 1992 1989 1988 1987 1986 1984 1983 1982 1981 1980 1979 Total
Citations: 1 2 1 2 1 1 1 2 2 1 1 1 3 1 2 2 4 4 1 5 2 3 3 1 47
Citation information
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Citations to this article (47)

Title and authors Publication Year
Do sodium‐glucose co‐transporter‐2 inhibitors increase plasma glucagon by direct actions on the alpha cell? And does the increase matter for the associated increase in endogenous glucose production?
RE Kuhre, C F., NJ Albrechtsen, JJ Holst
Diabetes, obesity & metabolism 2021
Increase in Endogenous Glucose Production With SGLT2 Inhibition Is Unchanged by Renal Denervation and Correlates Strongly With the Increase in Urinary Glucose Excretion
C Solis-Herrera, G Daniele, M Alatrach, C Agyin, C Triplitt, J Adams, R Patel, A Gastaldelli, H Honka, , M Abdul-Ghani, E Cersosimo, SD Prato, R DeFronzo
Diabetes care 2020
Practical application of short-term intensive insulin therapy based on the concept of “treat to target” to reduce hypoglycaemia in routine clinical site
K Nakashima, N Okamura, H Sanefuji, H Kaneto
Scientific Reports 2020
Diabetes mellitus and burns. Part I-basic science and implications for management
Ioannis Goutos, Rebecca Spenser Nicholas, Atisha A Pandya, Sudip J Ghosh
International Journal of Burns and Trauma 2015
Comprehensive Physiology
SN Cheuvront, RW Kenefick
Comprehensive Physiology 2014
Minimizing Morbidity of Hypoglycemia in Diabetes: A Review of Mini-Dose Glucagon
ST Chung, MW Haymond
Journal of diabetes science and technology 2014
Intra-islet glucagon secretion and action in the regulation of glucose homeostasis
Q Wang, X Liang, S Wang
Frontiers in physiology 2013
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A Maharaj, L Zhu, F Huang, H Qiu, H Li, CY Zhang, T Jin, Q Wang
Diabetologia 2012
Diminished glucagon suppression after β-cell reduction is due to impaired α-cell function rather than an expansion of α-cell mass
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American journal of physiology. Endocrinology and metabolism 2011
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Metabolism 1998
Extended physiological models for the simulation of the glucose metabolism
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Mathematical Modelling of Systems 1996
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Failure of glucagon suppression contributes to postprandial hyperglycaemia in IDDM
S Dinneen, A Alzaid, D Turk, R Rizza
Diabetologia 1995
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Journal of Clinical Investigation 1989
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1989
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Journal of Clinical Investigation 1987
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Journal of Clinical Investigation 1987
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L Saccà
Diabetes / Metabolism Reviews 1987
Basal glucose homeostasis with and without fixed concentrations of glucagon and insulin
RA Jackson, JB Hamling, BM Sim, PM Blix, JB Jaspan, S Markanday, JD Nabarro
Metabolism 1987
Effects of aging on glucose-mediated glucose disposal and glucose transport
RI Fink, P Wallace, JM Olefsky
Journal of Clinical Investigation 1986
Interactions of stress hormones on lipid and carbohydrate metabolism in man with partial insulin deficiency
A Pernet, D Johnston, V Hammond, H Ørskov, K Alberti
European Journal of Clinical Investigation 1986
The Role of Glucagon, Catecholamines and Cortisol in Counterregulation of Insulin-induced Hypoglycemia in Normal Man
PE Lins, U Adamson, N Clausen, B Hamberger, S Efendić
Acta Medica Scandinavica 1986
Strict nocturnal diabetic control diminishes subsequent glycemic escape during acute insulin withdrawal
NJ Vaughan, RH Rao, AB Kurtz, HM Buckell, GS Spathis
Metabolism 1986
Abnormal meal carbohydrate disposition in insulin-dependent diabetes. Relative contributions of endogenous glucose production and initial splanchnic uptake and effect of intensive insulin therapy
G Pehling, P Tessari, JE Gerich, MW Haymond, FJ Service, RA Rizza
Journal of Clinical Investigation 1984
Mechanisms of postprandial glucose counterregulation in man. Physiologic roles of glucagon and epinephrine vis-a-vis insulin in the prevention of hypoglycemia late after glucose ingestion
TF Tse, WE Clutter, SD Shah, PE Cryer
Journal of Clinical Investigation 1983
Insulin-counteracting hormones: Their impact on glucose metabolism
PR Bratusch-Marrain
Diabetologia 1983
Chronic hyperglucagonemia in rats: Effects on insulin, substrates, and hepatic enzymes of intermediary metabolism
PA Gruppuso, JB Susa, M Domenech, CJ Cha, R Schwartz
Metabolism 1983
[LeuB24]insulin is an insulin agonist at the liver in vivo
DP Figlewicz, JD Best, HS Tager, GJ Taborsky
American journal of physiology. Endocrinology and metabolism 1983
Glucagon II
PJ Lefebvre
1983
Theophylline potentiates glucagon-induced hepatic glucose production in man but does not prevent hepatic downregulation to glucagon
RA Rizza, MW Haymond, JE Gerich
Metabolism 1982
Regulation of Phosphate and Mineral Metabolism
SG Massry, JM Letteri, E Ritz
1982
Effect of intermittent physiologic hyperglucagonemia on postprandial plasma glucose levels in normal man
K Mackes, R Rizza, J Gerich
Metabolism 1981
Glucagon and the a Cell: Physiology and Pathophysiology
RH Unger, L Orci
New England Journal of Medicine 1981
Dose-kinetics of pancreatic glucagon responses to arginine and glucose in subjects with normal and impaired pancreatic B cell function
R Assan, S Efendic, R Luft, E Cerasi
Diabetologia 1981
Adrenergic Mechanisms for the Effects of Epinephrine on Glucose Production and Clearance in Man
RA Rizza, PE Cryer, MW Haymond, JE Gerich
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Hormonal mechanisms in acute glucose counterregulation: The relative roles of glucagon, epinephrine, norepinephrine, growth hormone, and cortisol
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Effect of alpha-adrenergic stimulation and its blockade on glucose turnover in man
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American journal of physiology. Endocrinology and metabolism 1980
Contemporary Metabolism
N Freinkel
1979

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