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PMID: 4727456 Published · ppublish English Journal Article

Maximal rates of excretion and synthesis of urea in normal and cirrhotic subjects.

The Journal of clinical investigation ·Vol. 52 ·No. 9 ·1973-09-00 ·Pages 2241-9

Rudman D, DiFulco TJ, Galambos JT, Smith RB, Salam AA, Warren WD

Abstract

When normal individuals eat 0.33 g protein N/kg body weight (BW)((3/4)) per day, they excrete 10-15 mg urea N/h per kg BW((3/4)). If they now ingest (at 0 h) 0.27 (dose A), 0.40 (dose B), 0.53 (dose C), 0.94 (dose D), or 1.33 (dose E) g protein N/kg BW((3/4)) (in the form of casein, ovalbumin, or lactalbumin), the rate of urea N excretion accelerates within 4 h. At dose C a maximal rate of urinary urea N excretion (MRUE) is reached, which averages 55 mg urea N/h per kg BW((3/4)) and which persists for 16 h. Higher doses of protein do not further accelerate urea excretion, but prolong the duration of MRUE to 28 h (after dose E). Blood urea N (BUN) rises by 7-20 mg/100 ml during the first 8 h after dose C to E, and remains stable within +/-5 mg/100 ml during the ensuing 8-28 h of MRUE. Each increment of protein above dose C causes a further increment in plasma alpha-amino N. During infusion of free amino acids at a rate of 110 or 165 mg amino acid N/h per kg BW((3/4)) for 12 h, rate of urea excretion increases to the MRUE value produced by dose C-E of oral protein.These findings indicate that MRUE corresponds to a period of maximal rate of urea synthesis (MRUS). MRUS is greater than MRUE because one fraction of newly formed urea is hydrolyzed in the gastrointestinal tract, and another fraction may accumulate temporarily in body water during the MRUE period. Oral neomycin reduces the proportion of urea hydrolyzed in the gut to less than 20%; its extent is measured by recovery in the urine of a tracer dose of [(14)C]urea injected intramuscularly during determination of MRUE. Accumulation of urea in body water is estimated from increment in BUN during the period of MRUE measurement (8-24 h after dose E of casein) and from body water measured with (3)H(2)O. Then MRUS is calculated as: ([mg urea N excreted between 8 and 24 h after dose E] + [BUN at 24 h - BUN at 8 h] x [body water]) x (100/% recovery [(14)C]urea) x (1/kg BW((3/4))) x (1/16 h).MRUS in 10 normal subjects averaged 65 mg urea N/h per kg BW((3/4)) (range 55-76), and in 34 cirrhotics 27 mg urea N/h per kg BW((3/4)) (range 6-64). Among 19 cirrhotic patients fed 40, 60, 80, or 100 g protein daily for successive 10 day periods, the occurrences of hyperammonemia, hyperaminoacidemia, and encephalopathy at each level of protein intake were inversely related to MRUS value.

MeSH Terms
Administration, Oral Amino Acids/administration & dosage Ammonia/blood Ammonium Chloride/administration & dosage Bilirubin/analysis Body Surface Area Body Water Body Weight Carbon Isotopes Caseins/administration & dosage Creatinine/blood Electroencephalography Hemoglobins/analysis Humans Injections, Intravenous Lactalbumin/administration & dosage Liver Cirrhosis/metabolism Neomycin/pharmacology Ovalbumin/administration & dosage Portacaval Shunt, Surgical Tritium Urea/biosynthesis,metabolism,urine
Chemicals
Amino Acids Carbon Isotopes Caseins Hemoglobins Ammonium Chloride Tritium Ammonia Urea Ovalbumin Lactalbumin Creatinine Neomycin Bilirubin
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Rudman D
DiFulco T J
Galambos J T
Smith R B
Salam A A
Warren W D
References (10)
10 references, click to expand
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Article Info
Journal
The Journal of clinical investigation
Abbr.
J Clin Invest
ISSN
0021-9738
Published
1973-09-00
Pages
2241-9
Language
English
Region
United States
NLM ID
7802877
PMCID
PMC333026
Subset
IM
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