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PMID: 3281473 Published · ppublish English Journal Article

Importance of intrahepatic mechanisms to gluconeogenesis from alanine during exercise and recovery.

The American journal of physiology ·Vol. 254 ·No. 4 Pt 1 ·1988-04-00 ·Pages E518-25

Wasserman DH, Williams PE, Lacy DB, Green DR, Cherrington AD

Abstract

These studies were performed to assess the importance of intrahepatic mechanisms to gluconeogenesis in the dog during 150 min of treadmill exercise and 90 min of recovery. Sampling catheters were implanted in an artery and portal and hepatic veins 16 days before experimentation. Infusions of [U-14C]alanine, [3-3H]glucose, and indocyanine green were used to assess gluconeogenesis. During exercise, a decline in arterial and portal vein plasma alanine and in hepatic blood flow led to a decrease in hepatic alanine delivery. During recovery, hepatic blood flow was restored to basal, causing an increase in hepatic alanine delivery beyond exercise rates but still below resting rates. Hepatic fractional alanine extraction increased from 0.26 +/- 0.02 at rest to 0.64 +/- 0.03 during exercise and remained elevated during recovery. Net hepatic alanine uptake was 2.5 +/- 0.2 mumol.kg-1.min-1 at rest and remained unchanged during exercise but was increased during recovery. The conversion rate of [14C]alanine to glucose had increased by 248 +/- 38% by 150 min of exercise and had increased further during recovery. The efficiency with which alanine was channeled into glucose in the liver was accelerated to a rate of 338 +/- 55% above basal by 150 min of exercise but declined slightly during recovery. In conclusion, 1) gluconeogenesis from alanine is accelerated during exercise, due to an increase in the hepatic fractional extraction of the amino acid and through intrahepatic mechanisms that more efficiently channel it into glucose.(ABSTRACT TRUNCATED AT 250 WORDS)

MeSH Terms
Alanine/metabolism Animals Carbon Radioisotopes Dogs Epinephrine/blood Glucagon/blood Gluconeogenesis Glucose/metabolism Insulin/blood Liver/metabolism Norepinephrine/blood Physical Exertion Tritium
Chemicals
Carbon Radioisotopes Insulin Tritium Glucagon Glucose Alanine Norepinephrine Epinephrine
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Wasserman D H
Department of Molecular Physiology, Vanderbilt University School of Medicine, Nashville, Tennessee 37232.
Williams P E
Lacy D B
Green D R
Cherrington A D
Article Info
Journal
The American journal of physiology
Abbr.
Am J Physiol
ISSN
0002-9513
Published
1988-04-00
Pages
E518-25
Language
English
Region
United States
NLM ID
0370511
Subset
IM
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