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S C Kalhan

Publications and source records attributed to S C Kalhan.

At least 37 records · Page 2Linked to original sources

Defective nonoxidative leucine degradation and endogenous leucine flux in cirrhosis during an amino acid infusion.

The metabolic fate of leucine's first and second carbon may be different depending on the tissue in which leucine is metabolized, as well as the prevailing hormonal milieu of that tissue. However, previous studies of leucine kinetics in humans have used only leucine labeled (as tracer) at the first carbon position. Because cirrhosis is associated with factors (such as insulin resistance and altered fuel substrate utilization) that may influence how leucine is degraded, the kinetics of leucine's first and second carbon using a simultaneous infusion of [1-14C] leucine and [2-13C] leucine were studied in the postabsorptive state and during an amino acid infusion in 6 stable cirrhotic patients and 6 matched controls. The data were normalized for different body compartments that were quantified from the dilution of H2 [180] and bromide. The body cell mass, but not body weight or fat-free body mass, was decreased in cirrhosis (P < .001). In response to the amino acid infusion, total leucine appearance from proteolysis and leucine's incorporation into protein increased significantly in both groups, but were higher in cirrhotic patients. Endogenous protein breakdown decreased in normals but remained unchanged in cirrhosis. These alterations in leucine metabolism became more prominent when data were expressed based on the body cell mass rather than on body weight. The oxidation of leucine's first carbon (C1) was decreased in cirrhosis, but the oxidation of leucine's second carbon (C2) did not differ between groups during both the postabsorptive period and the amino acid infusion, while nonoxidative leucine degradation [the difference between the oxidation of leucine's (C1) and (C2)] was also decreased in cirrhosis. In addition, there was a positive correlation between nonoxidative leucine degradation (which represents leucine incorporation into fat), and the respiratory quotient obtained from indirect calorimetry (r = .87; P < .001). These data suggest that the extent of leucine carbon oxidation is dependent on whether fat or carbohydrate is the prevailing fuel substrate. In addition, cirrhotic patients have decreased nonoxidative leucine degradation and are unable to suppress endogenous protein breakdown normally in response to amino acid administration. These abnormalities may contribute to the diminished fat stores and body cell mass commonly observed in cirrhosis.

Adult↗

The effect of oral terbutaline on maternal glucose metabolism and energy expenditure in pregnancy.

OBJECTIVE: Terbutaline, a selective beta2-agonist, is a frequently used tocolytic known to affect maternal metabolism. The purpose of this study was to evaluate the effect of oral terbutaline on maternal glucose metabolism and energy expenditure. STUDY DESIGN: Six healthy pregnant women with normal glucose tolerance were evaluated between 30 and 34 weeks' gestation. Oral terbutaline was administered to determine the effects on hepatic glucose production with [6-6(2)H2] glucose tracer, insulin sensitivity (hyperinsulinemic-euglycemic clamp), and energy expenditure (indirect calorimetry). Terbutaline, insulin, and glucagon levels were also obtained. Subjects were randomly assigned to either oral terbutaline 5 mg every 6 hours for 24 hours or no medication. Repeat studies were conducted 1 week apart, each subject serving as her own control. RESULTS: In the basal state terbutaline was associated with a trend toward increased basal glucose levels (81.6 +/- 6.6 vs 93.7 +/- 12.0 mg/dl, p = 0.06) but no significant increase in hepatic glucose production (3.2 +/- 0.3 vs 3.6 +/- 0.4 mg/kg fat-free mass/min, p = 0.23). However, there was a significant increase in basal insulin concentration (17.6 +/- 9.2 vs 25.6 +/- 10.4 microU/ml, p = 0.02). There was a 28% decrease in insulin sensitivity as measured by the glucose infusion rate during the euglycemic clamp plus residual hepatic glucose turnover (5.78 +/- 1.91 vs 4.16 +/- 1.49 mg/kg fat-free mass/min, p = 0.005). Glucagon concentration was significantly decreased both in the basal state (163 +/- 26 vs 144 +/- 27 pg/ml, p = 0.0007) and during the clamp (144 +/- 27 vs 133 +/- 27 pg/ml, p = 0.003). Basal oxygen consumption increased 9% (270 +/- 49 vs 294 +/- 50 ml oxygen/min, p = 0.007) and caloric expenditure 14% (1.32 +/- 0.23 vs 1.50 +/- 0.31 kcal/min, p = 0.025) or 260 kcal/day with terbutaline. CONCLUSION: Decreased peripheral insulin sensitivity, and to a lesser degree increased endogenous glucose production, may represent the pathophysiology of abnormal glucose tolerance observed in many women treated with oral terbutaline. Common side effects such as tremors and tachycardia experienced by many women on a regimen of terbutaline are consistent with our finding of a significant increase in basal energy expenditure.

Adrenergic beta-Agonists↗

Gender-dependent alterations in serum leptin in alcoholic cirrhosis.

BACKGROUND & AIMS: Leptin is a peptide that decreases food intake and increases energy expenditure. It is produced in fat cells, is stimulated by cytokines, and its levels in serum are higher in females. Because anorexia, hypermetabolism, and elevated cytokine levels are frequently observed in cirrhosis, we hypothesized that the serum leptin level would be elevated in cirrhosis. The aim of this study was to investigate the relationship of serum leptin to gender, body composition, and tumor necrosis factor (TNF). METHODS: Male (n = 18) and female (n = 10) abstinent alcoholic cirrhotic patients were studied and compared with control subjects (15 male and 8 female). Fat mass, fat-free body mass, and body cell mass were calculated by using H2[18O] and bromide dilution methodology. Serum leptin and TNF concentrations were measured by immunoassays. RESULTS: Fat mass was decreased only in male cirrhotics (P < 0.05), whereas body cell mass was decreased in both male and female cirrhotics (P < 0.01). Leptin levels were elevated in female (P < 0. 001) but not male cirrhotics compared with controls. When expressed per kilogram of fat mass, leptin was elevated in both male (P < 0. 01) and female (P < 0.01) cirrhotics. Women in both cirrhotic and control groups had higher leptin levels than men. TNF was elevated in both male and female cirrhotics and did not correlate with leptin levels. CONCLUSIONS: Cirrhotics have elevated serum leptin levels, which are related to both gender- and gender-dependent alterations in body composition.

Adult↗

Plasma leptin in children: relationship to puberty, gender, body composition, insulin sensitivity, and energy expenditure.

Leptin has been demonstrated to reflect body fat mass (FM) in humans, but the regulation of leptin levels during childhood growth and development is poorly understood. We studied the relation between plasma leptin, fasting insulin, insulin sensitivity, and resting energy expenditure in 22 healthy prepubertal children and 27 adolescents. Body composition was assessed by the H2(18)O-dilution principle, insulin sensitivity by a hyperinsulinemic (40 mU/m2/min)-euglycemic clamp, and energy expenditure by indirect calorimetry. Plasma leptin in prepubertal children (9.3 +/- 2.0 ng/mL) was not different from that in pubertal adolescents (10.9 +/- 2.2 ng/mL). Plasma leptin correlated with FM (r = .77, P < .001). There were no gender differences in leptin after controlling for FM differences. In prepubertal and pubertal subjects, plasma leptin correlated with fasting insulin independently of FM (r = .60, P < .001), but did not correlate with insulin sensitivity independently of body fat content. Leptin showed no relationship to resting energy expenditure after adjusting for body composition. The present cross-sectional evaluation of normal children shows that (1) plasma leptin reflects body fat content, (2) leptin concentrations are similar between prepubertal children and pubertal adolescents, (3) there are no gender differences in leptin independent of adiposity, and (4) leptin correlates with fasting insulin but not with insulin sensitivity. Contrary to animal data, our cross-sectional results in healthy children do not suggest a role for leptin in puberty or a female-related leptin resistance as reported in adults. It remains to be determined at which stage of human development the sexual dimorphism in leptin becomes evident.

Adolescent↗

Estimation of total body water in very-low-birth-weight infants by using anthropometry with and without bioelectrical impedance and H2[(18)O].

The usefulness of bioelectrical impedance (BI) with anthropometry to measure total body water (TBW) was evaluated in very-low-birth-weight (VLBW) infants. A specific regression equation to measure TBW in a VLBW population was developed by simultaneously using the H2[(18)O] dilution method and BI in 12 infants with a gestational age of 24-30 wk and weighing <1200 g at birth. After an oral dose of H2[(18)O], the tracer dilution was measured in expired carbon dioxide. BI measurements were made with a model BIA-101 apparatus (RJL Systems, Detroit). Electrodes were placed in the standard position as well as proximally on the leg and the forearm. The best correlation was observed between body weight and TBW (r = 0.989). For BI, the best correlation was obtained when gestational age was used as a covariable along with body weight and crown-heel length (r = 0.985). The correlation was comparable with proximal electrode placement (r = 0.985). The new correlation was evaluated in 6 infants weighing < 1008 g. A significant correlation between BI and H2[(18)O]-measured TBW was observed (r = 0.988). Published regression equations for infants consistently gave higher estimates of TBW in another group of 14 infants weighing <1200 g than did the new correlations. TBW represented 84-95% of body weight in these VLBW infants. TBW could be computed simply from body weight alone. Use of BI and length as covariables did not add significantly to the estimate of TBW in VLBW infants.

Anthropometry↗

Glycemia-lowering effect of cobalt chloride in the diabetic rat: role of decreased gluconeogenesis.

Results of previous studies indicated that treatment of diabetic rats (induced by streptozotocin) with cobalt chloride (CoCl2) resulted in a significant decrement in serum glucose concentration. The present study was designed to determine the potential role of enhanced glucose uptake vs. decreased glucose production in the above response. The rate of systemic appearance of glucose, measured under fasting conditions using [3-3H]glucose tracer, was reduced from 35.5 +/- 2.5 to 17.5 +/- 1.8 micromol . kg-1 . min-1 in diabetic rats treated with 2 mM CoCl2 added to the drinking water for 10-14 days (P < 0.01). Tissue accumulation of intravenously administered 2-deoxy-[14C]glucose was significantly reduced in kidney and eye of diabetic rats treated with CoCl2, whereas the uptake remained unchanged in several other tissues including cerebrum, red and white skeletal muscle, heart, and liver. The relative content of phosphoenolpyruvate carboxykinase (PEPCK) mRNA was increased 3.1-fold in livers of diabetic compared with normal rats (P < 0.001), and treatment of diabetic rats with CoCl2 decreased hepatic PEPCK mRNA levels to normal. The content of PEPCK mRNA in the liver was decreased by 33% in CoCl2-treated normal rats (P < 0.05). Treatment with CoCl2 resulted in no change in cAMP levels in the livers of either diabetic or normal rats. These results suggest that the glycemia-lowering effect of CoCl2 is mediated by reductions in the rate of systemic appearance of glucose and hepatic gluconeogenesis.

Animals↗

Relation between transamination of branched-chain amino acids and urea synthesis: evidence from human pregnancy.

Protein and nitrogen (N) accretion by the mother is a major adaptive response to pregnancy in humans and animals to meet the demands of the growing conceptus. Quantitative changes in whole body N metabolism were examined during normal pregnancy by measuring the rates of leucine N (QN) and carbon (QC) kinetics with the use of [1-13C,15N]leucine. Rate of synthesis of urea was measured by [15N2]urea tracer. Pregnancy-related change in total body water was quantified by H2[18O] dilution, and respiratory calorimetry was performed to quantify substrate oxidation. A significant decrease in the rate of urea synthesis was evident in the 1st trimester (nonpregnant 4.69 +/- 1.14 vs. pregnant 3.44 +/- 1.11 micromol . kg-1 . min-1; means +/- SD, P < 0.05). The lower rate of urea synthesis was sustained through the 2nd and 3rd trimesters. QN was also lower in the 1st trimester during fasting; however, it reached a significant level only in the 3rd trimester (nonpregnant 166 +/- 35 vs. 3rd trimester 135 +/- 16 micromol . kg-1 . h-1; P < 0.05). There was no significant change in QC during pregnancy. A significant decrease in the rate of transamination of leucine was evident in the 3rd trimester both during fasting and in response to nutrient administration (P < 0.05). The rate of deamination of leucine was correlated with the rate of urea synthesis during fasting (r = 0.59, P = 0.001) and during feeding (r = 0.407, P = 0. 01). These data show that pregnancy-related adaptations in maternal N metabolism are evident early in gestation before any significant increase in fetal N accretion. It is speculated that the lower transamination of branched-chain amino acids may be due to decreased availability of N acceptors such as alpha-ketoglutarate as a consequence of resistance to insulin action evident in pregnancy.

Adult↗

Protein and nitrogen metabolism in gestational diabetes.

Metabolic perturbations associated with gestational diabetes mellitus (GDM) have been shown to result in significant clinical morbidity, both for the mother and the neonate. Although a number of studies have documented the changes in glucose metabolism in GDM, the data on nitrogen and protein metabolism remain scant. Recent data in GDM show that 1) the rate of irreversible nitrogen loss as measured by the rate of urea synthesis in GDM is similar to that in normal pregnancy and is less than that in nonpregnant women; and 2) possibly related to the magnitude of metabolic decompensation as assessed by the nature of therapeutic intervention (diet or diet plus insulin), the rate of protein turnover measured by leucine kinetics is increased in insulin-treated GDM. Whether the decompensation in protein turnover contributes to the persistent fetal macrosomia, even in rigorously managed GDM, remains speculative.

Amino Acids↗

Beta 1-adrenoreceptors regulate resting metabolic rate.

This was a randomized, cross-over experiment designed to determine which beta-adrenergic receptors, beta 1, beta 2, or both, regulate metabolic rate in humans. All subjects (3 women, 4 men) were administered a 7-d therapeutic dose of a selective beta 1-antagonist (atenolol 50 mg BID), a combined beta 1, beta 2-antagonist (propranolol 80 mg BID), and a placebo control (BID). Indirect calorimetry was determined before and after 1 h of submaximal exercise. Exercise was performed at 50% of the trial specific VO2peak because maximal exercise was significantly decreased in the presence of the nonselective beta 1, beta 2-antagonist (VO2peak placebo: 44.90 +/- 4.40 mL.kg-1.min-1 vs beta 1, beta 2-antagonism: 39.20 +/- 3.00 mL.kg-1.min-1; P < 0.05). Both the beta 1 and the combined beta 1, beta 2-adrenoreceptor antagonists reduced resting oxygen consumption to a similar extent (0.247 +/- 0.007 L.min-1 placebo, vs 0.218 +/- 0.007 L.min-1 beta 1-antagonism, vs 0.226 +/- 0.007 L.min-1 beta 1, beta 2-antagonism; P < 0.05). However, the 30-min and 60-min excess post-exercise oxygen consumption (mean EPOC) remained unchanged. It is concluded that the beta 1-receptors are regulating the effects of the sympathetic nervous system on resting but not exercise recovery metabolic rate. These metabolic side effects may suggest that changes need to be made in the nutritional requirements of patients using beta-adrenergic antagonists.

Adrenergic beta-Antagonists↗

Quantifying gluconeogenesis during fasting.

The use of 2H2O in estimating gluconeogenesis' contribution to glucose production (%GNG) was examined during progressive fasting in three groups of healthy subjects. One group (n = 3) ingested 2H2O to a body water enrichment of approximately 0.35% 5 h into the fast. %GNG was determined at 2-h intervals from the ratio of the enrichments of the hydrogens at C-5 and C-2 of blood glucose, assayed in hexamethylenetetramine. %GNG increased from 40 +/- 8% at 10 h to 93 +/- 6% at 42 h. Another group ingested 2H2O over 2.25 h, beginning at 11 h (n = 7) and 19 h (n = 7) to achieve approximately 0.5% water enrichment. Enrichment in plasma water and at C-2 reached steady state approximately 1 h after completion of 2H2O ingestion. The C-5-to-C-2 ratio reached steady state by the completion of 2H2O ingestion. %GNG was 54 +/- 2% at 14 h and 64 +/- 2% at 22 h. A 3-h [6,6-2H2]glucose infusion was also begun to estimate glucose production from enrichments at C-6, again in hexamethylenetetramine. Glucose produced by gluconeogenesis was 0.99 +/- 0.06 mg.kg-1.min-1 at both 14 and 22 h. In a third group (n = 3) %GNG reached steady state approximately 2 h after 2H2O ingestion to only approximately 0.25% enrichment. In conclusion, %GNG by 2 h after 2H2O ingestion and glucose production using [6,6-2H2]glucose infusion, begun together, can be determined from hydrogen enrichments at blood glucose C-2, C-5, and C-6. %GNG increases gradually from the postabsorptive state to 42 h of fasting, without apparent change in the quantity of glucose produced by gluconeogenesis at 14 and 22 h.

Adult↗

Contributions of gluconeogenesis to glucose production in the fasted state.

Healthy subjects ingested 2H2O and after 14, 22, and 42 h of fasting the enrichments of deuterium in the hydrogens bound to carbons 2, 5, and 6 of blood glucose and in body water were determined. The hydrogens bound to the carbons were isolated in formaldehyde which was converted to hexamethylenetetramine for assay. Enrichment of the deuterium bound to carbon 5 of glucose to that in water or to carbon 2 directly equals the fraction of glucose formed by gluconeogenesis. The contribution of gluconeogenesis to glucose production was 47 +/- 49% after 14 h, 67 +/- 41% after 22 h, and 93 +/- 2% after 42 h of fasting. Glycerol's conversion to glucose is included in estimates using the enrichment at carbon 5, but not carbon 6. Equilibrations with water of the hydrogens bound to carbon 3 of pyruvate that become those bound to carbon 6 of glucose and of the hydrogen at carbon 2 of glucose produced via glycogenolysis are estimated from the enrichments to be approximately 80% complete. Thus, rates of gluconeogenesis can be determined without corrections required in other tracer methodologies. After an overnight fast gluconeogenesis accounts for approximately 50% and after 42 h of fasting for almost all of glucose production in healthy subjects.

Adult↗

Effect of parenteral amino acids on leucine and urea kinetics in preterm infants.

OBJECTIVE: To examine the effect of two commonly used parenteral alimentation amino acid mixtures on whole-body leucine and urea kinetics. METHODS: Ten stable preterm infants were studied during the first 4 weeks after birth. Six infants received a mixture containing higher branched-chain amino acids, lower glycine plus added dicarboxylic acids formulation (Trophamine), and four received a standard amino acid mixture (Aminosyn). Whole-body protein turnover was measured with (1-13C)leucine tracer, and the rate of oxidation of protein was calculated by quantifying the appearance of carbon 13 from leucine in carbon dioxide as well as from rates of urea synthesis estimated by using (15N2)urea tracer. Energy consumption and substrate oxidation were quantified by indirect respiratory calorimetry. Infants were given similar quantities of energy (approximately 61 kcal/kg per day), glucose (approximately 10.7 mg/kg per minute) and protein (approximately 2.1 gm/kg per day). RESULTS: There was no significant difference in the rate of appearance of leucine in the two groups. However, the fraction of leucine oxidized (p = 0.002) and total rte of oxidation of leucine was higher in the Trophamine group. Thus additional branched-chain amino acids resulted in an increased contribution of C-1 of leucine to expired CO2. The rate of urea N synthesis was also similar in the two groups (Trophamine: 2.92 +/- 0.87 mg N/kg per hour; Aminosyn: 2.70 +/- 1.18 mg N/kg per hour). CONCLUSIONS: Although the use of Trophamine normalizes the blood amino acid pattern, it does not appear to improve nitrogen/protein kinetics. Furthermore, the additional branched-chain amino acids are disposed of by increased oxidation.

Amino Acids↗

Protein turnover during puberty in normal children.

To investigate whether insulin resistance of puberty involves protein metabolism, we compared whole body leucine kinetics in 20 prepubertal Tanner I (TI), and 21 pubertal Tanner II-IV (TII-IV) healthy children. Leucine flux (LRa), oxidation (LOX), and nonoxidative disposal (NOXLD) were measured during primed constant infusion of [1-13C]leucine at baseline and during a stepwise hyperinsulinemic (10 and 40 mU.m-2.min-1)euglycemic clamp in combination with indirect calorimetry. At baseline LRa and LOX were lower in TII-IV vs. TI [LRa: 3.59 +/- 0.17 vs. 4.05 +/- 0.18 mumol.min-1.kg-1 fat-free mass (FFM), P = 0.036; LOX: 0.45 +/- 0.03 vs. 0.59 +/- 0.04 mumol.min-1. FFM-1, P = 0.005], but NOXLD was similar. Insulin-like growth factor I (IGF-I) levels correlated inversely with LRa, NOXLD, and LOX. Energy expenditure correlated positively with LRa, LOX, and NOXLD. During the clamp absolute and percent suppression in LRa were significantly lower in TII-IV than TI. In conclusion, 1) proteolysis and protein oxidation are lower during puberty compared with prepuberty, whereas protein synthesis is unchanged; 2) insulin action in inhibiting proteolysis is decreased during puberty; and 3) increased pubertal IGF-I levels may play a role in decreased protein degradation.

Adolescent↗

Relative kinetics of phenylalanine and leucine in low birth weight infants during nutrient administration.

The effect of the route of nutrient administration on the relative rates of leucine and phenylalanine kinetics was examined in 30 low birth weight (LBW) infants using L-[1-(13)C]leucine, L-[2H5]phenylalanine, and L-[2H2]tyrosine tracers. The infants received special premature formula (PF, n = 10, 117 +/- 8 kcal.kg-1.d-1 and 3.2 +/- 0.2 g protein.kg-1.d-1) or fortified human milk (HM, n = 10, 106 +/- 6 kcal.kg-1.d-1 and 3.0 +/- 0.2 g protein.kg-1.d-1), or parenteral nutrition (PN, n = 10, 80 +/- 25 kcal.kg-1.d-1 and 1.8 +/- 0.3 g protein.kg-1.d-1). The rate of appearance (Ra) of leucine (RaLeu), was significantly higher in group PF as compared with groups HM and PN (434 +/- 51 versus 377 +/- 33 and 359 +/- 50 mumol.kg-1.h-1, p < 0.05). The Ra of phenylalanine (RaPhe) was lower in group HM as compared with group PF (94 +/- 18 versus 115 +/- 16, p < 0.05), RaPhe in group PN (108 +/- 24 mumol.kg-1.h-1) was in between group PF and HM. The relative rate of RaPhe and RaLeu expressed as RaPhe/ RaLeu ratio was lower in all groups than that expected from reported whole body protein composition and from that reported in adults. The ratio of phenylalanine hydroxylation to leucine decarboxylation was 0.202 in group PF, 0.212 in group HM, and 0.161 in group PN, suggesting a higher rate of decarboxylation of leucine relative to hydroxylation of phenylalanine. We conclude that: 1) the higher RaLeu compared with the RaPhe may be the result of either a higher turnover of a body protein enriched in leucine or the consequence of higher leucine intake in infant nutrition and 2) whole body protein kinetics calculated from a single amino acid tracer do not adequately represent whole body protein metabolism.

Food, Fortified↗

Stable isotopic tracers for studies of glucose metabolism.

Because of its unique metabolism, glucose illustrates the advantages and limitations of stable isotopic tracers for in vivo studies. The present review describes the application of stable tracers in studies of glucose metabolism. The natural abundance of these tracers requires that careful attention be given to the dose of the tracer and the impact of the background abundance on measurements. The consequence of the natural variation of 13C abundance on measurements in vivo is described, as is the application of multilabeled molecules to estimate kinetics and intrahepatic precursor pool enrichments. The final section outlines recently described methods of estimation of gluconeogenesis.

Carbon Isotopes↗

Estimates of Krebs cycle activity and contributions of gluconeogenesis to hepatic glucose production in fasting healthy subjects and IDDM patients.

Normal subjects, fasted 60 h, and patients with insulin-dependent diabetes mellitus (IDDM), withdrawn from insulin and fasted overnight, were given phenylacetate orally and intravenously infused with [3-14C]lactate and 13C-bicarbonate. Rates of hepatic gluconeogenesis relative to Krebs cycle rates were estimated from the 14C distribution in glutamate from urinary phenylacetylglutamine. Assuming the 13C enrichment of breath CO2 was that of the CO2 fixed by pyruvate, the enrichment to be expected in blood glucose, if all hepatic glucose production had been by gluconeogenesis, was then estimated. That estimate was compared with the actual enrichment in blood glucose, yielding the fraction of glucose production due to gluconeogenesis. Relative rates were similar in the 60-h fasted healthy subjects and the diabetic patients. Conversion of oxaloacetate to phosphoenolpyruvate was two to eight times Krebs cycle flux and decarboxylation of pyruvate to acetyl-CoA, oxidized in the cycle, was less than one-30th the fixation by pyruvate of CO2. Thus, in estimating the contribution of a gluconeogenic substrate to glucose production by measuring the incorporation of label from the labelled substrate into glucose, dilution of label at the level of oxaloacetate is relatively small. Pyruvate cycling was as much as one-half the rate of conversion of pyruvate to oxaloacetate. Glucose and glutamate carbons were derived from oxaloacetate formed by similar pathways if not from a common pool. In the 60-h fasted subjects, over 80% of glucose production was via gluconeogenesis. In the diabetic subjects the percentages averaged about 45%.

Adult↗

Quantification of carbohydrate oxidation by respiratory gas exchange and isotopic tracers.

Estimates of glucose oxidation measured by indirect respiratory calorimetry and by [U-13C]glucose tracer were compared as a function of respiratory exchange ratio (RER) in 14 studies performed on 9 healthy adult subjects. RER was varied between 0.7 and 1.04, either by fasting or by infusing glucose. 13C enrichment of plasma glucose and expired CO2 were measured by mass spectrometry. The two methods gave similar results when the nonprotein respiratory quotient (NPRQ) was between 0.76 and 0.90. Glucose oxidation by the tracer method was quantified to be higher than that by respiratory calorimetry when NPRQ was < 0.76; it was lower than the respiratory calorimetry estimate when NPRQ was > 0.90. The discrepancy between the two methods at low RER may represent the contribution of gluconeogenesis, whereas, at high RER, the discrepancy may be the consequence of lipogenesis. We conclude that respiratory calorimetry and [13C]glucose tracer give comparable results only in a narrow range of RER. These data are important when the disposal of glucose is compared using these techniques in different metabolic states with varying respiratory quotients.

Adult↗