Contribution of liver and skeletal muscle to alanine and lactate metabolism in humans
- PMID: 2240206
- DOI: 10.1152/ajpendo.1990.259.5.E677
Contribution of liver and skeletal muscle to alanine and lactate metabolism in humans
Erratum in
- Am J Physiol 1991 Nov;261(5 Pt 1):followi
Abstract
To quantitate alanine and lactate gluconeogenesis in postabsorptive humans and to test the hypothesis that muscle is the principal source of these precursors, we infused normal volunteers with [3-14C]lactate, [3-13C]alanine, and [6-3H]glucose and calculated alanine and lactate incorporation into plasma glucose corrected for tricarboxylic acid cycle carbon exchange, the systemic appearance of these substrates, and their forearm fractional extraction, uptake, and release. Forearm alanine and lactate fractional extraction averaged 37 +/- 3 and 27 +/- 2%, respectively; muscle alanine release (2.94 +/- 0.27 mumol.kg body wt-1.min-1) accounted for approximately 70% of its systemic appearance (4.18 +/- 0.31 mumol.kg body wt-1.min-1); muscle lactate release (5.51 +/- 0.42 mumol.kg body wt-1.min-1) accounted for approximately 40% of its systemic appearance (12.66 +/- 0.77 mumol.kg body wt-1.min-1); muscle alanine and lactate uptake (1.60 +/- 0.7 and 3.29 +/- 0.36 mumol.kg body wt-1.min-1, respectively) accounted for approximately 30% of their overall disappearance from plasma, whereas alanine and lactate incorporation into plasma glucose (1.83 +/- 0.20 and 4.24 +/- 0.44 mumol.kg body wt-1.min-1, respectively) accounted for approximately 50% of their disappearance from plasma. We therefore conclude that muscle is the major source of plasma alanine and lactate in postabsorptive humans and that factors regulating their release from muscle may thus exert an important influence on hepatic gluconeogenesis.
Comment in
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Correction of tricarboxylic acid cycle exchange in gluconeogenesis: why the y's are wrong.Am J Physiol. 1991 Nov;261(5 Pt 1):E673-6. doi: 10.1152/ajpendo.1991.261.5.E673. Am J Physiol. 1991. PMID: 1951694 No abstract available.
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