PLASMA ARGININE AND CITRULLINE KINETICS IN ADULTS GIVEN ADEQUATE AND ARGININE-FREE DIETS

被引:185
作者
CASTILLO, L
CHAPMAN, TE
SANCHEZ, M
YU, YM
BURKE, JF
AJAMI, AM
VOGT, J
YOUNG, VR
机构
[1] SHRINERS BURNS INST,BOSTON,MA 02114
[2] MASSACHUSETTS GEN HOSP,DEPT SURG,BOSTON,MA 02114
[3] TRACER TECHNOL INC,SOMERVILLE,MA 02145
关键词
D O I
10.1073/pnas.90.16.7749
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
The fluxes of arginine and citrulline through plasma and the rate of conversion of labeled citrulline to arginine were estimated in two pilot studies (with a total of six adult subjects) and in a dietary study with five healthy young men. These latter subjects received an L-amino acid-based diet that was arginine-rich or arginine-free each for 6 days prior to conduct, on day 7, of an 8-hr (first 3 hr, fast; final 5 hr, fed) primed continuous intravenous infusion protocol using L-[guanidino-C-13]arginine, L-[5,5-H-2(2)]citrulline, and L-[5,5,5-H-2(3)]leucine, as tracers. A pilot study indicated that citrulline flux was about 20% higher (P < 0.05) when determined with [ureido-C-13]citrulline compared with [H-2(2)]citrulline, indicating recycling of the latter tracer. Mean citrulline fluxes were about 8-11 mumol.kg-1.hr-1 for the various metabolic/diet groups and did not differ significantly between fast and fed states or arginine-rich and arginine-free periods. Arginine fluxes (mean +/- SD) were 60.2 +/- 5.4 and 73.3 +/- 13.9 mumol.kg-1.hr-1 for fast and fed states during the arginine-rich period, respectively, and were significantly lowered (P < 0.05), by 20-40%, during the arginine-free period, especially for the fed state, where this was due largely to reduced entry of dietary arginine into plasma. The conversion of plasma citrulline to arginine approximated 5.5 mumol.kg-1.hr-1 for the various groups and also was unaffected by arginine intake. Thus, endogenous arginine synthesis is not markedly responsive to acute alterations in arginine intake in healthy adults. We propose that arginine homeostasis is achieved largely via modulating arginine intake and/or the net rate of arginine degradation.
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页码:7749 / 7753
页数:5
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