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Diabetes, Vol 37, Issue 10 1365-1372, Copyright © 1988 by American Diabetes Association
Measurement of L-[1-14C]leucine kinetics in splanchnic and leg tissues in humans. Effect of amino acid infusion
RA Gelfand, MG Glickman, P Castellino, RJ Louard and RA DeFronzo
Clinical Research Center, Yale University School of Medicine, New Haven, CT 06510.
Although whole-body leucine flux is widely measured to study body protein
turnover in humans, the contribution of specific tissues to the total-body
measurement remains unknown. By combining the organ-balance technique with
the systemic infusion of L-[1-14C]leucine, we quantitated leucine
production and disposal by splanchnic and leg tissues and by the whole
body, simultaneously, in six normal men before and during amino acid
infusion. At steady state, disposal of arterial leucine by splanchnic and
leg tissues was calculated from the percent extraction (E) of
L-[1-14C]leucine counts: uptake = E x [Leu]a x flow. Tissue release of cold
leucine (from protein turnover) into vein was calculated as the difference
between leucine uptake and the net tissue leucine balance. In the
postabsorptive state, despite substantial (P less than .01) extraction of
L-[1-14C]leucine by splanchnic (23 +/- 1%) and leg (18 +/- 2%) tissues, net
leucine balance across both tissue beds was small, indicating active
simultaneous disposal and production of leucine at nearly equivalent rates.
Splanchnic tissues accounted for approximately 50% of the measured
total-body leucine flux. During amino acid infusion, the net leucine
balance across splanchnic and leg tissues became positive, reflecting not
only an increase in leucine uptake but also a marked suppression (by
approximately 50%, P less than .02) of cold leucine release. This reduction
in splanchnic and leg leucine release was indicated by a sharp decline in
whole-body endogenous leucine flux.(ABSTRACT TRUNCATED AT 250 WORDS)

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Copyright © 1988 by the American Diabetes Association.
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