Literature DB >> 1066331

[Utilization of glucose and fructose in human liver and muscle].

G Dietze, M Wicklmayr, J Grunst, S Stiegler, H Mehert.   

Abstract

Hepatic metabolic balances derived from arterio-hepatic-venous substrate differences and hepatic blood flow exhibited similar results during fructose infusion (10 g/5 min., 0.5 g/kg x h) as compared to those from the isolated perfused organ: a portion of 55% of splanchnic fructose uptake was accountable for splanchnic glucose production, 25% for splanchnic lactate and pyruvate production and 20% for glycogen - of fat - synthesis and endoxidation. In account of this hepatic metabolism of fructose, glucose homeostasis and insulin secretion almost maintained. However, the small insulin response did not reduce hepatic free fatty acid utilization to such an extent as to increase pyruvate oxidation. Accordingly, splanchnic production of lactate and pyruvate, descending from fructose was enhanced. Since hepatic-venous lactate: pyruvate substrate ratios did not change, the rise of the arterial redox couple could not be due to hepatic fructose metabolism. According to the findings from the isolated perfused organ, fructose seemed to be phosphorylated at a rate which was found to be 2 to 3-fold that of glucose as calculated from splanchnic utilization rates. This high rate of fructose uptake was reduced with increasing insulin levels. The rapid ATP breakdown was followed by an increment of splanchnic oxygen consumption. The larger energy demand seemed to be satisfied by an enhanced endoxidation of free fatty acids. Since diabetics failed to increase their insulin production, their hepatic fructose phosphorylation rate and consequently their hepatic oxygen demand were not limited. Preliminary results concerning metabolic balances from the human forearm during a steady state of fructose supply, underline the notion that fructose has some effects on intermediary metabolism of skeletal muscle. Accordingly, in juvenile diabetics an enhancement of glucose-, lactate- and pyruvate-uptake could be demonstrated.

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Year:  1976        PMID: 1066331

Source DB:  PubMed          Journal:  Int Z Vitam Ernahrungsforsch Beih        ISSN: 0373-0883


  4 in total

1.  Splanchnic and renal exchange of infused fructose in insulin-deficient type 1 diabetic patients and healthy controls.

Authors:  O Björkman; R Gunnarsson; E Hagström; P Felig; J Wahren
Journal:  J Clin Invest       Date:  1989-01       Impact factor: 14.808

2.  [Comparison of side effects of infusion of glucose and glucose substitutes at different doses].

Authors:  H Förster; S Boecker; D Zagel
Journal:  Z Ernahrungswiss       Date:  1978-12

Review 3.  Sucrose, high-fructose corn syrup, and fructose, their metabolism and potential health effects: what do we really know?

Authors:  James M Rippe; Theodore J Angelopoulos
Journal:  Adv Nutr       Date:  2013-03-01       Impact factor: 8.701

4.  The suppressive effect of the three-herb extract mixture on vascular and liver inflammation in atherogenic diet with high fructose-fed mice.

Authors:  Hae Seong Song; Hyun Jung Koo; Bong Kyun Park; Jeong Eun Kwon; Seon-A Jang; Hyun Jin Baek; Se Young Kim; Sung Ryul Lee; Se Chan Kang
Journal:  Pharm Biol       Date:  2018-12       Impact factor: 3.503

  4 in total

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