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Biomedical subjects

J Clària

Publications and source records attributed to J Clària.

At least 19 recordsLinked to original sources

Urinary excretion of urodilatin in patients with cirrhosis.

Cirrhotic patients with ascites show increased plasma levels of natriuretic peptides from cardiac origin (i.e., atrial natriuretic peptide [ANP] and brain natriuretic peptide [BNP]). Urodilatin is a unique member of the natriuretic peptide family because it is exclusively synthesized in the kidney acting on a paracrine fashion in the regulation of sodium excretion. To investigate the renal production of urodilatin in cirrhosis and its relationship with other natriuretic peptides and sodium retention, urodilatin excretion and plasma levels of ANP were measured in 21 healthy subjects, 13 cirrhotic patients without ascites and 23 cirrhotic patients with ascites. Urine urodilatin was measured with a highly specific radioimmunoassay using a polyclonal antibody against human urodilatin. Patients with ascites had marked sodium retention (UNa 7 +/- 2 mEq/d) as compared to patients without ascites and healthy subjects (29 +/- 3 mEq/d and 34 +/- 5 mEq/d, respectively, P < .001). Patients with cirrhosis and ascites had urine urodilatin excretion similar to patients without ascites and healthy subjects (82 +/- 8 pmol/g, 95 +/- 10 pmol/g, and 89 +/- 9 pmol/ g of creatinine, respectively; not significant). In addition, immunoreactive urodilatin from cirrhotic patients with ascites and healthy subjects showed a similar chromatographic pattern. By contrast, plasma ANP levels were increased significantly in patients with ascites (29 +/- 3 fmol/mL) as compared with patients without ascites or healthy subjects (14 +/- 3 fmol/mL and 6 +/- 1 fmol/mL, respectively; P < .01). In conclusion, urine urodilatin excretion is normal in patients with cirrhosis even in the presence of marked sodium retention. The coexistence of increased ANP levels and normal urodilatin excretion suggests that in cirrhosis both natriuretic peptides are regulated independently.

Aldosterone

Aspirin-triggered lipoxins (15-epi-LX) are generated by the human lung adenocarcinoma cell line (A549)-neutrophil interactions and are potent inhibitors of cell proliferation.

BACKGROUND: The mechanism by which aspirin (ASA) acts to protect against human cancer is not yet known. We recently showed that ASA triggers the formation of a new series of potent bioactive eicosanoids, 15-epi-lipoxins (15-epi-LXs or ASA-triggered LX [ATL]), during interactions between prostaglandin endoperoxide synthase-2 (PGHS-2) in endothelial cells and 5-lipoxygenase (LO) in leukocytes. Here, we investigated the transcellular biosynthesis of these eicosanoids during costimulation of the human tumor A549 cell line (alveolar type II epithelial cells) and neutrophils, and evaluated their impact on cell proliferation. MATERIALS AND METHODS: A549 cells and isolated neutrophils were coincubated and mRNA expression levels of key enzymes in eicosanoid biosynthesis were measured. In addition, product formation was analysed by physical methods. The effect of LX on cell proliferation was determined by using a soluble microculture tetrazolium (MTT) assay and by measuring [3H]-thymidine incorporation. RESULTS: Interleukin-1 beta (IL-1 beta)-primed A549 cells showed selective elevation in the levels of PGHS-2 mRNA and generated 15-hydroxyeicosatetraenoic acid (15-HETE). ASA markedly increased 15-HETE formation by A549 cells, while treatment with an inhibitor of cytochrome P450 reduced by approximately 50%, implicating both PGHS-2- and cytochrome P450-initiated routes in 15-HETE biosynthesis in these cells. Maximal production of 15-HETE from endogenous sources occurred within 24 hr of cytokine (IL-1 beta) exposure and declined thereafter. Chiral analysis revealed that approximately 85% of ASA-triggered epithelial-derived 15-HETE carries its carbon 15 alcohol group in the R configuration. Costimulation of ASA-treated A549 cells and polymorphonuclear neutrophilic leukocytes (PMN) led to production of both LXA4 and LXB4, as well as 15-epi-LXA4 and 15-epi-LXB4 (9.5 +/- 0.5 ng LX/10(7) A549 cells). 15-epi-LXA4 accounted for approximately 88% of the total amount of LXA4 produced. In addition to LXs, stimulation of A549 cells and PMN also liberated substantial amounts (77.2 +/- 8.2 ng/10(7) A549 cells) of peptidoleukotrienes (pLTs), which were not generated by either cell type alone. Addition of ASA to these co-incubations led to an increase in the amounts of LXs generated that was paralleled by a decrease in pLTs. LXA4, LXB4, 15-epi-LXA4 and 15-epi-LXB4, as well as dexamethasone, inhibited cell proliferation at 100 nM range with a rank order of activity of 15-epi-LXB4 >>> LXB4 > dexamethasone > or = 15-epi-LXA4 > LXA4. CONCLUSIONS: These results indicate that ASA promotes the formation of antiproliferative 15-epi-LXs by epithelial cell-leukocyte interactions. Moreover, they suggest that these novel eicosanoids, when generated within the microenvironment of tissues, may contribute to ASA's therapeutic role in decreasing the risk of human cancer.

Adenocarcinoma

Aspirin triggers previously undescribed bioactive eicosanoids by human endothelial cell-leukocyte interactions.

Aspirin [acetylsalicylic acid (ASA)], along with its analgesic-antipyretic uses, is now also being considered for cardiovascular protection and treatments in cancer and human immunodeficiency virus infection. Although many of ASA's pharmacological actions are related to its ability to inhibit prostaglandin and thromboxane biosynthesis, some of its beneficial therapeutic effects are not completely understood. Here, ASA triggered transcellular biosynthesis of a previously unrecognized class of eicosanoids during coincubations of human umbilical vein endothelial cells (HUVEC) and neutrophils [polymorphonuclear leukocytes (PMN)]. These eicosanoids were generated with ASA but not by indomethacin, salicylate, or dexamethasone. Formation was enhanced by cytokines (interleukin 1 beta) that induced the appearance of prostaglandin G/H synthase 2 (PGHS-2) but not 15-lipoxygenase, which initiates their biosynthesis from arachidonic acid in HUVEC. Costimulation of HUVEC/PMN by either thrombin plus the chemotactic peptide fMet-Leu-Phe or phorbol 12-myristate 13-acetate or ionophore A23187 leads to the production of these eicosanoids from endogenous sources. Four of these eicosanoids were also produced when PMN were exposed to 15R-HETE [(15R)-15-hydroxy-5,8,11-cis-13-trans-eicosatetraenoic acid] and an agonist. Physical methods showed that the class consists of four tetraene-containing products from arachidonic acid that proved to be 15R-epimers of lipoxins. Two of these compounds (III and IV) were potent inhibitors of leukotriene B4-mediated PMN adhesion to HUVEC, with compound IV [(5S,6R,15R)-5,6,15-trihydroxy-7,9,13-trans-11-cis-eicosatetraenoi c acid; 15-epilipoxin A4] active in the nanomolar range. These results demonstrate that ASA evokes a unique class of eicosanoids formed by acetylated PGHS-2 and 5-lipoxygenase interactions, which may contribute to the therapeutic impact of this drug. Moreover, they provide an example of a drug's ability to pirate endogenous biosynthetic mechanisms to trigger new mediators.

Arachidonate 15-Lipoxygenase

Effect of upright posture and physical exercise on endogenous neurohormonal systems in cirrhotic patients with sodium retention and normal supine plasma renin, aldosterone, and norepinephrine levels.

It is well known that sodium retention occurs in a significant proportion of patients with cirrhosis despite normal supine plasma levels of renin, aldosterone (ALDO), and norepinephrine (NE). The current study was performed to assess whether this subset of patients also present normal activity of the renin-aldosterone and sympathetic nervous systems during upright posture in sitting position and moderate physical exercise. Nine healthy controls, 14 patients with compensated cirrhosis and 10 patients with cirrhosis, ascites, sodium retention, and normal supine plasma renin activity (PRA) and ALDO and NE concentration were sequentially studied after 60 minutes in supine rest, 30 minutes in sitting position, and 30 minutes of cycloergometric exercise (3-METs). Sitting position and exercise were associated with similar stimulation of the renin-aldosterone and sympathetic nervous systems in the three groups of subjects. Consequently, cirrhotic patients with ascites showed values of PRA and plasma concentration of ALDO and NE similar to healthy subjects and patients with compensated cirrhosis during supine rest (renin: 1.4 +/- 0.3, 0.8 +/- 0.2, and 0.8 +/- 0.3 ng/mL; aldosterone: 24.3 +/- 4.7, 20.2 +/- 3.9 and 21.4 +/- 3.4 ng/dL; norepinephrine: 252 +/- 23, 250 +/- 16, and 255 +/- 23 pg/mL), sitting position (renin: 2.1 +/- 0.5, 1.1 +/- 0.3, and 1.6 +/- 0.4; aldosterone: 32.2 +/- 7.3, 23.7 +/- 5.3, and 26.2 +/- 4.5; norepinephrine: 356 +/- 38, 401 +/- 63, and 420 +/- 35), and exercise (renin: 2.9 +/- 0.8, 1.6 +/- 0.4, and 2.2 +/- 0.5; aldosterone: 43 +/- 6.4, 34.9 +/- 8.5, and 38.2 +/- 5.3; norepinephrine: 481 +/- 35, 499 +/- 54, and 534 +/- 48).(ABSTRACT TRUNCATED AT 250 WORDS)

Aldosterone

Endothelin 1 does not play a major role in the homeostasis of arterial pressure in cirrhotic rats with ascites.

BACKGROUND/AIMS: Patients with cirrhosis and ascites have increased plasma levels of endothelin, a powerful vasoconstrictor peptide. This study assessed the mechanisms underlying this phenomenon. METHODS: Plasma endothelin was measured in control rats and cirrhotic rats with and without ascites. In addition, the tissue concentration of endothelin and endothelin 1 messenger RNA (mRNA) and the effect of an endothelin A receptor antagonist on arterial and portal pressure were assessed in cirrhotic rats with ascites and control rats. RESULTS: Plasma endothelin levels were significantly higher in cirrhotic rats with ascites (24.5 +/- 2.8 pg/mL; P < 0.001) than in cirrhotic rats without ascites and control rats (7.9 +/- 2.0 and 5.8 +/- 0.9 pg/mL, respectively). In animals with ascites, endothelin and endothelin 1 mRNA content in the lung, kidney, and aorta was similar to that of the controls. In contrast, higher endothelin content (0.567 +/- 0.217 vs. 0.045 +/- 0.002 pg/mg protein; P < 0.05) and endothelin 1 mRNA was observed in hepatic tissue of rats with cirrhosis and ascites. Endothelin A receptor blockade was not associated with significant changes in arterial and portal pressure in any group of animals. CONCLUSIONS: Increased endothelin 1 mRNA and endothelin production occurs in the livers of cirrhotic rats with ascites. In addition, our findings suggest that endothelin is not involved with the homeostasis of arterial or portal pressure in cirrhosis with ascites.

Animals

Aquaretic effect of the kappa-opioid agonist RU 51599 in cirrhotic rats with ascites and water retention.

BACKGROUND & AIMS: It has recently been described that kappa-opioid receptor agonists inhibit antidiuretic hormone secretion and promote water excretion in humans and experimental animals. The aim of this study was to evaluate the aquaretic efficacy of the kappa-opioid receptor agonist RU 51599 in conscious cirrhotic rats with ascites and water retention. METHODS: In protocol 1, arterial pressure, heart rate, and renal water metabolism were measured in basal conditions and then were measured for 120 minutes after the administration of Ringer's solution (n = 8; 0.4 mL) or RU 51599 (n = 7; 1 mg/kg). In protocol 2, plasma antidiuretic hormone concentration was measured (n = 6) before and 60 minutes after administration of RU 51599 (1 mg/kg). In protocol 3, the effect of RU 51599 (n = 9; 1 mg/kg) was compared with that of the V2-receptor antagonist SKF 100398 (n = 9; 30 micrograms/kg). RESULTS: RU 51599 administration induced a profound diuretic and aquaretic effect without altering arterial pressure and heart rate. In protocol 2, the kappa-opioid agonist reduced by about 50% plasma antidiuretic hormone levels (from 6.6 +/- 0.9 to 3.4 +/- 0.6 pg/mL; P < 0.05). Finally, the improvement in renal water metabolism induced by RU 51599 was similar to that produced by the V2-receptor antagonist. CONCLUSIONS: RU 51599 has a potent aquaretic effect in cirrhotic rats with water retention, suggesting that kappa-opioid receptor agonists may be useful for the treatment of water retention and dilutional hyponatremia in cirrhosis.

Analysis of Variance

Role of nitric oxide and prostacyclin in the control of renal perfusion in experimental cirrhosis.

Nitric oxide (NO) and prostacyclin (PGI2) are two important modulators of renal function under normal conditions; however, little is known on their contributory role in cirrhosis with ascites. In this study, mean arterial pressure, renal hemodynamics, and sodium excretion were measured in 15 rats with cirrhosis and ascites and 16 control rats. Animals were studied in normal conditions, after inhibiting the synthesis of NO (N omega-nitro-L-arginine, 50 micrograms.kg-1.min-1) or prostaglandins (lysin acetylsalicylate, 15 mg.kg-1).min-1 and following the concomitant inhibition of both systems. Cirrhotic rats showed increased systemic pressure sensitivity and blunted renal vasoconstrictor response to nitric oxide inhibition as compared with control rats. As a consequence, the glomerular filtration rate increased in cirrhotic rats but not in control rats. In both groups of animals, NO inhibition was associated with significant increased urinary sodium and fractional sodium excretion. The only significant effect observed after prostaglandin biosynthesis inhibition was a decrease in renal plasma flow in cirrhotic rats. The concomitant inhibition of both systems reduced renal plasma flow and did not change glomerular filtration rate, with no differences between control and cirrhotic rats. Prostaglandin inhibition did not prevent the natriuretic effect of the NO inhibitor in both groups of animals. These results indicate that in experimental cirrhosis both NO and PGI2 play an important role in the maintenance of renal perfusion within normal limits.

Animals

Nitric oxide production in arterial vessels of cirrhotic rats.

Indirect evidence exists implicating vascular nitric oxide in the pathogenesis of arterial vasodilation in cirrhosis. In the current study, a coincubation assay to estimate the vascular nitric oxide production was developed and the nitric oxide production by arterial segments of cirrhotic and control rats was assessed. In the assay, measurement of reporter monolayer cell-associated cGMP levels allows the influence of nitric oxide released by arterial segments to be determined. RFL-6 cells served as reporter cells. Nitric oxide production was determined in thoracic aorta and mesenteric arteries of 22 control rats, 10 cirrhotic rats without ascites, and 12 cirrhotic rats with ascites. Basal and bradykinin-stimulated (10(-6) mol/L) intracellular content of nitric oxide-dependent cGMP was significantly higher in RFL-6 cells coincubated with aortic segments of cirrhotic rats with (21.3 +/- 3.6 pmol/10(5) cells, P < .05 and 44.7 +/- 7.0 pmol/10(5) cells, P < .025) and without ascites (15.3 +/- 3.0 pmol/10(5) cells, P < .05 and 43.2 +/- 7.6 pmol/10(5) cells, P < .05) than in those incubated with aortic segments of control rats (9.7 +/- 1.3 and 19.5 +/- 2.5 pmol/10(5) cells). RFL-6 cells exposed to bradykinin-stimulated mesenteric arterial segments of cirrhotic rats also showed increased cGMP content (ascitic: 2.73 +/- 0.31 pmol/10(5) cells, P < .005; nonascitic: 2.58 +/- 0.51 pmol/10(5) cells, P < .025) compared with cells exposed to control mesenteric arterial segments (1.28 +/- 0.15 pmol/10(5) cells). No differences between cirrhotic and control vessels were observed after endothelium denudation.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Diagnosis of functional kidney failure of cirrhosis with Doppler sonography: prognostic value of resistive index.

Time-velocity wave-form analysis of Doppler signals from small intrarenal arteries allows estimation of intrarenal arteriolar vascular resistance. Among the various indexes proposed, the resistive index is the most widely used for this estimation. To investigate whether the resistive index is useful in the diagnosis of functional kidney failure and prediction of survival in cirrhotic patients with ascites, we measured resistive index, kidney and liver function and plasma levels of renin, aldosterone and antidiuretic hormone in 10 healthy subjects, 12 patients with compensated cirrhosis and 32 patients with cirrhosis and ascites (17 with kidney failure). A total of 28 clinical and laboratory variables were analyzed for prognostic value. Resistive index was significantly increased in patients with kidney failure (0.74 +/- 0.01) compared with those in the other three groups (0.64 +/- 0.01, 0.64 +/- 0.02 and 0.67 +/- 0.01) and correlated significantly with glomerular filtration rate, arterial pressure, plasma renin activity and free water clearance in the cirrhotic patients. The sensitivity and specificity of the resistive index in detecting kidney failure in patients with ascites were 71% and 80%, respectively. Nine variables were correlated with survival in the univariate analysis, including resistive index, age, hepatomegaly, blood urea nitrogen, serum creatinine, plasma sodium concentration, glomerular filtration rate, plasma renin activity and plasma concentration of antidiuretic hormone. Multivariate analysis disclosed only three independent predictors of survival: plasma renin activity, plasma concentration of antidiuretic hormone and serum sodium concentration. In conclusion, resistive index is a sensitive method to assess intrarenal hemodynamics in patients with cirrhosis and ascites. It also has predictive value for survival in these patients.

Analysis of Variance

Renal effects of natriuretic peptide receptor blockade in cirrhotic rats with ascites.

The aim of this study was to assess the effect of HS-142-1, a recently discovered specific antagonist of endogenous natriuretic peptides, on systemic hemodynamics, renal function, and the renin-aldosterone system in rats with cirrhosis and ascites. The study consisted of three protocols, each including 10 conscious control rats and 10 conscious rats with carbon-tetrachloride-induced cirrhosis with ascites. In protocol 1, HS-142-1 administration (by intravenous bolus of 20 mg.kg-1.body weight in all protocols) was not associated with significant changes in mean arterial pressure, heart rate, cardiac output or total peripheral resistance in the two groups of animals. In protocol 2, HS-142-1 induced a significant reduction in glomerular filtration rate (from 4.2 +/- 0.5 to 2.6 +/- 0.3 ml/min, p < 0.025) in control animals. A decrease in renal plasma flow and an increase in renal vascular resistance also occurred, but these changes were not statistically significant. In cirrhotic rats, HS-142-1 resulted in a significant decrease in renal plasma flow (from 10.9 +/- 0.7 to 4.3 +/- 0.6 ml/min, p < 0.001) and a significant increase in renal vascular resistance (from 6.0 +/- 0.6 to 16.3 +/- 2.7 mm Hg.min.ml-1, p < 0.025). Glomerular filtration rate decreased more in cirrhotic rats with ascites than in control rats (from 3.8 +/- 0.3 to 1.3 +/- 0.2 ml/min, p < 0.001). Changes in urine flow rate and urinary sodium excretion rate paralleled those of glomerular filtration rate in both groups of animals.(ABSTRACT TRUNCATED AT 250 WORDS)

Analysis of Variance

Increased nitric oxide-dependent vasorelaxation in aortic rings of cirrhotic rats with ascites.

To assess whether aortic vessels of rats with cirrhosis and ascites possess an enhanced vascular response to endothelium-derived, nitric oxide-dependent vasodilators, we performed relaxation studies in isolated aortic rings of 21 control rats and 24 rats with carbon tetrachloride-induced cirrhosis and ascites. We carried out studies after contracting the vessels with norepinephrine. We measured endothelium-dependent vasodilator response by administering increasing concentrations of acetylcholine (10(-6) to 10(-2) mol/L) and ADP (10(-7) to 10(-4) mol/L). We evaluated endothelium-independent response by giving increased concentration of sodium nitrite (10(-5) to 10(-2) mol/L). The maximal absolute tension developed in response to norepinephrine was significantly decreased in cirrhotic rings (816 +/- 72 mg, p < 0.025) compared with control (1,425 +/- 75 mg) rings. Dose-response curves for endothelium-dependent vasodilators were shifted to the left in aortic rings of cirrhotic rats, and EC50 for acetylcholine and ADP were significantly decreased in cirrhotic (0.8 +/- 0.15 mmol/L and 0.42 +/- 0.16 mumol/L, p < 0.025 and p < 0.01, respectively) than in control rings (1.91 +/- 0.33 mmol/L and 3.09 +/- 0.82 mumol/L). In both acetylcholine- and ADP-stimulated vessels, differences between cirrhotic and control rings disappeared after nitric oxide synthesis inhibition with N omega-nitro-L-arginine (10(-4) mol/L). No difference in the relaxing effect of sodium nitrite was observed between cirrhotic and control rings. These results therefore demonstrate for the first time enhanced in vitro vascular responsiveness to nitric oxide-dependent vasodilators in rats with cirrhosis and ascites, giving further support to the concept that nitric oxide activity is increased in cirrhosis.

Acetylcholine

Blunted natriuretic response to human urine extracts with Na+,K(+)-ATPase inhibiting activity in experimental cirrhosis.

Human urine and plasma extracts contain a material that inhibits the enzyme Na+,K(+)-ATPase (the endogenous sodium pump) and produces natriuresis in the bioassay animal. This endogenous sodium pump inhibitor(s), also known as digitalis-like factor, is thought to be involved in sodium and extracellular fluid volume homeostasis. Increased urine and plasma sodium pump inhibiting activity have been reported in patients with cirrhosis and sodium retention. The aim of the study was to assess the renal response to i.v. administration (0.2 ml/min per kg bw for 10 min) of a human urine extract containing sodium pump inhibiting activity (28.5 nmol equivalent ouabain/ml) in eight conscious rats with cirrhosis and ascites and eight control rats. Baseline urinary excretion of Na+,K(+)-ATPase inhibiting activity was significantly higher in cirrhotic rats with ascites than in control rats (235 +/- 40 vs 91 +/- 16; p < 0.01). Human urine extract induced a significant (p < 0.05) increase in glomerular filtration rate in control (3.2 +/- 0.4 to 4.2 +/- 0.5 ml/min) and cirrhotic rats (3.0 +/- 0.3 to 4.0 +/- 0.5 ml/min). In control rats it also increased urinary sodium excretion (1.47 +/- 0.22 to 2.43 +/- 0.5 microEq/min, p < 0.01) and fractional sodium excretion (0.29 +/- 0.01 to 0.43 +/- 0.04%, p < 0.025). In contrast, in cirrhotic rats with ascites neither sodium excretion nor fractional sodium excretion was significantly affected. No changes were observed in plasma aldosterone and atrial natriuretic peptide concentrations in either group. These data suggest that in cirrhosis there is a renal resistance to the natriuretic effect of endogenous sodium pump inhibitor(s).

Animals

Intracellular calcium concentration in vascular smooth muscle cells of rats with cirrhosis.

A decreased pressor response to endogenous vasoconstrictors, such as angiotensin II and vasopressin, is a characteristic finding in cirrhosis with ascites; this has been considered as partially responsible for the arteriolar vasodilation present in this disease. Previous investigations suggested that this abnormality is due to a post-receptor defect leading to altered intracellular Ca2+ mobilization. To assess this hypothesis, vascular responsiveness to angiotensin II (3.10(-8) M) and intracellular Ca2+ concentration in basal conditions and following angiotensin II (1-100 nM) and vasopressin stimulation (100 nM) were measured in aortic rings and in primary cultured aortic vascular smooth muscle cells, respectively. The study was carried out in 43 control rats and 40 rats with CCl4-induced cirrhosis and ascites. Cells were grown to confluence on glass cover slips and then loaded with Fura-2, a fluorescent intracellular Ca2+ indicator, for continuous monitoring of intracellular Ca2+ concentration. A decreased constrictor response to angiotensin II was detected in cirrhotic aortic rings in comparison to control rings (increase in tension: 31 +/- 5 vs 79 +/- 14 mg, p < 0.005). No differences in intracellular Ca2+ concentration between cirrhotic and control cells were observed in basal conditions (104 +/- 6 and 100 +/- 3 nM, respectively). Angiotensin II administration to cirrhotic vascular smooth muscle cells had a dose-dependent biphasic effect consisting of a rapid increase, followed by return to a sustained level significantly higher than the basal value. This response was identical to that observed in control vascular smooth muscle cells. Similar findings were obtained following vasopressin stimulation.(ABSTRACT TRUNCATED AT 250 WORDS)

Angiotensin II

Increased cardiac endocrine activity after common bile duct ligation in the rabbit. Atrial endocrine cells in obstructive jaundice.

OBJECTIVE: This study investigated the pathogenesis of water and sodium metabolism derangements in obstructive jaundice. SUMMARY BACKGROUND DATA: Obstructive jaundice is associated with hypodipsia, depletion of extracellular water, alterations of the water and sodium regulating hormones, and an increased incidence of renal failure. Plasma atrial natriuretic factor (ANF) increases after common bile duct ligation in the rabbit. The present study was designed to investigate ANF-secreting cardiac atrial cells in this animal model. METHODS: Plasma ANF and the percentage of atrial cells staining for ANF were determined in jaundiced and sham-operated rabbits at 24 (group OJ-24, n = 11; group SO-24, n = 5) and 72 hours (group OJ-72, n = 11; group SO-72, n = 5) after surgery. The atrial ANF content was also determined. RESULTS: Plasma ANF was higher in jaundiced animals than in controls both at 24 (63 +/- 44 fmol/mL vs. 17 +/- 10 fmol/mL, p < 0.02) and at 72 hours (73 +/- 49 fmol/mL vs. 12 +/- 11 fmol/mL). In the two OJ groups, the percentage of positive ANF cells per 200-power field in the right atrial appendage was higher than in the SO groups both at 24 (62 +/- 11% vs. 31 +/- 12%, p < 0.003) and at 72 hours (56 +/- 18% vs. 31 +/- 12%, p < 0.01). Similar results were obtained in the right auricular wall. The percentage of positive ANF cells was significantly higher in the left atrium in which significant differences between the OJ and SO groups were also noted. The right atrial ANF content was higher in the OJ than in SO groups (437 +/- 323 pmol/mg of protein vs. 83 +/- 44 pmol/mg of protein). CONCLUSIONS: Cardiac endocrine activity is increased in experimental obstructive jaundice. ANF may be involved in the pathogenesis of the renal and water and sodium metabolic disturbances present in this disease.

Animals

Incidence, predictive factors, and prognosis of the hepatorenal syndrome in cirrhosis with ascites.

BACKGROUND: The aim of the study was to investigate the incidenc, predictive factors, and prognosis of the hepatorenal syndrome in cirrhosis with ascites. METHODS: The study is a follow-up investigation in 234 nonazotemic patients with cirrhosis and ascites. Thirty-nine variables obtained at inclusion were analyzed as possible predictors of hepatorenal syndrome occurrence (Kaplan-Meier method, Mantel-Cox test, and step-wise Cox regression procedure). RESULTS: The probability of hepatorenal syndrome occurrence was 18% at 1 year and 39% at 5 years. Sixteen variables had predictive value for hepatorenal syndrome occurrence in the univariate analysis: history of ascites, hepatomegaly, nutritional status, blood urea nitrogen level, serum creatinine concentration, serum sodium and potassium concentration, serum and urine osmolality, urinary sodium excretion, free water clearance after a water load, glomerular filtration rate, arterial pressure, plasma renin activity, plasma norepinephrine concentration, and esophageal varices. Neither etiology (alcoholic vs. nonalcoholic) nor the Child-Pugh score had predictive value. A multivariate analysis disclosed only three independent predictors of hepatorenal syndrome occurrence: low serum sodium concentration, high plasma renin activity, and absence of hepatomegaly. CONCLUSIONS: The hepatorenal syndrome is a relatively frequent complication in cirrhotic patients with ascites that is associated with an extremely short survival. Liver size, plasma renin activity, and serum sodium concentration are predictors of hepatorenal syndrome occurrence in these patients.

Adult

Circulating levels of endothelin in cirrhosis.

BACKGROUND: Current information concerning endothelin in cirrhosis is conflicting. Plasma endothelin concentration has been found to be increased in some studies and normal or reduced in others. The present study was aimed to investigate the plasma levels of endothelin in cirrhosis and to assess whether it is involved in the renal and hemodynamic disturbances and neurohumoral changes present in this condition. METHODS: Renal function, plasma renin activity, and plasma concentration of aldosterone, norepinephrine, antidiuretic hormone, atrial natriuretic factor, and endothelin were measured in 9 healthy subjects, 7 compensated cirrhotics, and 25 cirrhotics with ascites (10 with functional renal failure). RESULTS: Cirrhotics with ascites with and without functional renal failure showed higher endothelin levels (15.6 +/- 6.4 and 15.7 +/- 4.6 pg/mL, respectively; mean +/- SD) than compensated cirrhotics (6.4 +/- 1.8 pg/mL) and healthy subjects (3.4 +/- 1.0 pg/mL) (analysis of variance, F = 21.84; P < 0.001). These patients also showed higher plasma levels of renin, aldosterone, norepinephrine, antidiuretic hormone, and atrial natriuretic factor, although plasma endothelin levels only correlated significantly with plasma atrial natriuretic factor (r = 0.73, P < 0.001) and antidiuretic hormone concentrations (r = 0.59, P < 0.001). In 7 additional nonazotemic cirrhotics with ascites, plasma renin activity and the plasma concentration of aldosterone and endothelin were measured before and 24 hours after the intravenous administration of a saline solution of human serum albumin. Volume expansion markedly suppressed renin and aldosterone but not endothelin (21.03 +/- 7.34 vs. 23.97 +/- 14.29 pg/mL). CONCLUSIONS: Circulating plasma levels of endothelin are elevated in cirrhosis with ascites and do not decrease following plasma volume expansion.

Adult

Impaired responsiveness to angiotensin II in experimental cirrhosis: role of nitric oxide.

Impaired vascular responsiveness to angiotensin II is a common feature in human cirrhosis with ascites. The aim of this study was to investigate whether vascular reactivity to angiotensin II is also decreased in rats with carbon tetrachloride-induced cirrhosis and ascites and to assess the role of endogenous nitric oxide in this abnormality. Increasing doses of angiotensin II (from 31 to 500 ng.kg-1.min-1) induced significantly smaller increases in total peripheral resistance in conscious cirrhotic rats with ascites (n = 8) than in control animals (n = 9) at each dose tested. A reduced response to angiotensin II was also observed in vitro in aortic rings of rats with cirrhosis and ascites compared with that in control aortic rings (maximal response: 104 +/- 16 mg vs. 204 +/- 18 mg; p < 0.001). This in vitro hyporesponsiveness to angiotensin II in aortic rings of cirrhotic rats with ascites was reversed on endothelium denudation or nitric oxide synthesis inhibition with N omega-nitro-L-arginine but was not influenced by cyclooxygenase inhibition with indomethacin. In conclusion, this study shows reduced vascular reactivity to angiotensin II in carbon tetrachloride-induced cirrhosis with ascites and indicates that this abnormality is mediated by nitric oxide.

Angiotensin II