BACKGROUND & AIMS:Accelerated starvation and early recruitment of alternate fuels in cirrhosis have been attributed to reduced availability of hepatic glycogen. The aim of this study was to measure gluconeogenesis (as a marker of protein oxidation) in relation to total glucose production and glucagon-stimulated glycogenolysis.METHODS:Glucose and urea production, gluconeogenesis, and glycogenolysis were calculated using stable isotope methods before and during glucagon infusion (3 ng. kg-1. min-1) in 5 cirrhotic patients and 5 matched controls before and after glycogen repletion.RESULTS:In the basal state, cirrhotic patients had a normal rate of glucose production, but the contribution of gluconeogenesis was increased (74.3% +/- 4.1% vs. 55. 6% +/- 12.1%; P < 0.005). Glycogen repletion normalized the rate of gluconeogenesis. The glycemic response to glucagon (3 ng. kg-1. min-1) was blunted in cirrhotic patients because of a lower rate of glycogenolysis (0.63 +/- 0.23 vs. 1.22 +/- 0.23 mg. kg-1. min-1; P < 0.01) and was not affected by glycogen repletion. Despite increased gluconeogenesis, the simultaneously measured rate of urea synthesis was lower in cirrhotic patients (3.11 +/- 1.02 vs. 5.0 +/- 1.0 mg/kg; P < 0.05).CONCLUSIONS:These data show that in cirrhosis, glucose production is sustained by an increased rate of gluconeogenesis. The hepatic resistance to glucagon action is not caused by reduced glycogen stores.
The effects of anaritide, a 25-amino-acid synthetic analogue of ANP, were evaluated in 28 patients with cirrhosis complicated by ascites and/or edema. Each patient received two doses of the agent, as well as an infusion of placebo. Six different doses were tested ranging from 0.015-0.300 μg/kg/min. The infusions lasted for 2 hours and were flanked by both baseline and recovery periods. There was a significant effect of placebo on urinary sodium and chloride excretion rates but no effect on urine flow rate. In response to anaritide, the urine flow rate increased at 0.03, 0.06, 0.075, and 0.100 Mg/kg/min. The sodium and chloride excretion rates increased at all doses except the highest dose. There was no definite effect of anaritide on urinary potassium, calcium, and phosphate excretion rates. There was also no significant effect on creatinine clearance. The mean arterial pressure decreased in response to the 0.060,0.075, and 0.100 μg/kg/min doses. In addition, five of the patients receiving the highest dose (0.300 μg/kg/min) had decreases in their systolic pressures to 90 mm Hg or less. In conclusion, anaritide is natriuretic and diuretic in patients with cirrhosis complicated by ascites and/or edema. Its effect, however, on arterial pressure may limit its therapeutic potential in this patient population.