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Biomedical subjects

C Guarner

Publications and source records attributed to C Guarner.

23 records · Page 2Linked to original sources

Increased synthesis of systemic prostacyclin in cirrhotic patients.

Urinary excretion of two prostacyclin metabolites was investigated in 48 subjects: 8 controls and 40 cirrhotics (9 without ascites, 22 with ascites and preserved renal function, and 9 with functional renal failure). Urinary 6-keto-prostaglandin F1 alpha (6-keto-PGF1 alpha), believed to reflect renal prostacyclin production, was significantly increased in patients without ascites and in ascitic patients with preserved renal function, but cirrhotics with renal failure showed rates similar to controls. Excretion of 2,3-dinor-6-keto-PGF1 alpha (PGI-M), the major urinary metabolite of systemic prostacyclin, was increased in all groups of patients, including those with renal failure. A single dose of sulindac, a renal-sparing prostaglandin synthesis inhibitor, reduced PGI-M but not 6-keto-PGF1 alpha in 5 cirrhotic patients. This would be consistent with the predicted renal origin of the latter and the systemic origin of the former. Ascitic patients with high urinary excretion of PGI-M (above the median value) showed significantly lower mean arterial pressure and higher plasma renin activity and aldosterone than patients with excretion below the median. Urinary 6-keto-PGF1 alpha was higher in patients with low PGI-M. Finally, creatinine clearance corrected excretion of PGI-M, as an estimation of relative plasma levels correlates both with plasma renin activity and plasma aldosterone in the 31 subjects who presented with ascites. It is suggested that enhanced synthesis of systemic prostacyclin may influence hemodynamic changes in patients with liver cirrhosis. Overproduction of systemic prostacyclin in the absence of increased renal prostacyclin synthesis appears to be characteristic of patients with functional renal failure.

6-Ketoprostaglandin F1 alpha

Renal prostaglandins in cirrhosis of the liver.

Urinary prostaglandin excretion was studied in 42 patients with liver cirrhosis and in nine control subjects on restricted sodium intake and on bed rest. Creatinine clearance (CCr), sodium excretion (UNaV), plasma renin activity (PRA) and plasma aldosterone were also evaluated. Patients without ascites and ascitic patients without renal failure showed increased urinary excretion of immunoreactive 6-ketoprostaglandin F1 alpha (i6-keto-PGF1 alpha), prostaglandin E2 (iPGE2) and thromboxane B2 (iTXB2) when compared with controls, while immunoreactive PGF2a (iPGF2 alpha) levels did not differ from those in the control group. Patients with functional renal failure (FRF) presented a significant reduction of vasodilator prostaglandins but urinary excretion of iTXB2 was higher than in controls. On the whole, cirrhotic patients with higher urinary excretion of prostaglandins had normal or nearly normal PRA and aldosterone levels. i6-keto-PGF1 alpha and iPGE2 inversely correlated with PRA and aldosterone. The relationship between i6-ketoPGF alpha alpha and CCr was found to be highly significant in cirrhotic patients but not in the control group. On the other hand, iPGE2 significantly correlated with UNaV and with the fractional excretion of sodium (FENa). We concluded that: (a) enhanced renal prostaglandin synthesis in cirrhosis, inversely related to PRA and aldosterone, may be dependent on volume status; and (b) preserved renal function in these patients is associated with the ability to synthesize prostacyclin and PGE2.

6-Ketoprostaglandin F1 alpha

Effect of sulindac on prostaglandin excretion and renal function in cirrhotic patients with ascites.

The effect of sulindac, a nonsteroidal anti-inflammatory drug, on renal prostaglandin synthesis and renal function variables was investigated in six cirrhotic patients with tense ascites and marked sodium retention. We studied serum thromboxane (TXB2) production, urinary prostaglandin excretion (6-keto-prostaglandin F1 alpha and TXB2) and renal function before and after administration of a therapeutic dose of sulindac (400 mg). After treatment, no significant changes were observed in urinary prostaglandin excretion, serum creatinine concentration, urine volume, or urinary sodium and creatinine clearance, whereas the serum TXB2 concentration was reduced in 89%. In five patients systemic prostaglandins were inhibited, but renal excretion remained unchallenged. However, one patient showed marked reduction of urinary prostaglandins associated with a depression of renal function. The study suggests that sulindac could be a safe substitute for other nonsteroidal anti-inflammatory drugs in cirrhotic patients with ascites. Further pharmacological trials seem to be warranted.

Ascites

Comparison of the antacid properties of almagate and aluminium hydroxide against pentagastrin-induced gastric secretion in healthy volunteers.

The potency of a new antacid, almagate (hydrated aluminium-magnesium hydroxycarbonate, Al2Mg6 (OH)14(CO3)2 X 4 H2O, Almax) has been compared with that of aluminium hydroxide in neutralizing pentagastrin-induced hyperacidity in healthy human volunteers. Almagate (1 g) produced a significantly (p less than 0.01) greater reduction (87.5%) in the titratable acid content of gastric aspirates than did an identical dose of aluminium hydroxide (45.1%). Similarly the pepsin proteolytic activity in the samples of gastric juice was reduced 58.9% by almagate and only 27.5% by aluminium hydroxide. Furthermore the neutralizing effect of almagate was more prolonged (90 min) than that of the standard antacid (30 min) and these first studies in man have therefore confirmed the findings of in vitro and in vivo preclinical experiments.

Adult