Transduction of antinatriuretic signals in renal proximal tubular cells in cirrhosis: introduction to novel approaches to the treatment of sodium retention.
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Publications and source records attributed to R Moreau.
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Isoflurane is known to dilate blood vessels and to modulate nitric oxide production. Because cirrhosis is characterized by over production of endothelial nitric oxide, isoflurane-induced vasodilatation may be altered in this situation. We have compared the vasodilator effects of isoflurane in normal rats and rats with secondary biliary cirrhosis. Aortic rings (intact or endothelium denuded) from normal and cirrhotic rats were suspended in HEPES solution and preconstricted with KCl 40 mmol litre-1. Isoflurane dose-dependently relaxed vessels in both groups. Maximal relaxation was comparable between normal and cirrhotic rats in intact (mean 80 (SEM 4) vs 81 (6)%; ns) and in denuded (100 (4) vs 95 (5)%; ns) vessels. Intact vessels relaxed more than denuded vessels in both groups (100 (4) vs 80 (4)% (P = 0.0008) in normal rats and 95 (5) vs 80 (6)% (P = 0.0008) in cirrhotic rats). We conclude that cirrhosis did not modify isoflurane-induced vasodilatation and that the modulator effect of endothelium was conserved.
One of the hypotheses to explain the mechanism of capacitation involves the loss of sperm membrane cholesterol. Here, we studied whether or not the major proteins of bovine seminal plasma designated as BSP-A1, -A2, -A3, and -30-kDa (collectively called BSP proteins), which are implicated in sperm capacitation, induce cholesterol efflux. When epididymal sperm were labeled with [3H]cholesterol and incubated with bovine seminal plasma (0.05-2%) or BSP proteins (20-120 microg/ml) for 8 h, the sperm lost [3H]cholesterol (3.6-fold and 3-fold, respectively). The same results in the presence of BSP-A1/-A2 were obtained (3.5-fold) by direct determination of cholesterol on unlabeled epididymal sperm. Analysis of efflux particles by ultracentrifugation on a sucrose gradient revealed a single symmetrical peak of radioactivity at 1.14 g/ml. Immunoblotting of the fractions obtained from size-exclusion chromatography of the efflux particles showed that a portion of the BSP proteins were associated with [3H]cholesterol. Heparin (12 microg/ml) alone did not stimulate cholesterol efflux. In contrast, high-density lipoprotein (HDL, 100 microg/ml) alone stimulated cholesterol efflux up to 3.1-fold after 8 h. When labeled epididymal sperm were preincubated for 20 min with BSP-A1/-A2 (120 microg/ml), washed, and incubated with HDL (100 microg/ml) for 8 h, the total cholesterol efflux of the sperm suspension was 51.8 +/- 5.0% compared to 39.3 +/- 1.2% when HDL alone was used. These results indicate that BSP proteins and HDL play an important role in the sperm sterol efflux that occurs during capacitation. Furthermore, the heparin-induced sperm capacitation did not involve the efflux of sperm membrane cholesterol.
UNLABELLED: AIMS/BACKGROUNDS: The aim of this prospective study was to evaluate the influence of transjugular portosystemic intrahepatic shunts (TIPS) on tissue oxygenation in patients with cirrhosis and refractory ascites. METHODS: Five shunted patients were included in the study. The blood and tissue oxygenation values were analyzed 12 days and 4 months after TIPS procedure. The results were compared with those observed in patients treated by paracentesis. RESULTS: Unlike patients treated by paracentesis, PaO2 values remained unchanged throughout follow-up in shunted patients. After the TIPS procedure, there was a transient increase in systemic O2 transport and O2 uptake and a transient decrease in O2 saturation of hepatic oxyhemoglobin. After 4 months, TIPS resulted in an increase in PCO2 values and bicarbonate concentrations. CONCLUSIONS: The TIPS procedure seems to prevent the decrease in PaO2 observed in patients treated by paracentesis and may improve the respiratory alkalosis of cirrhosis.
The role of hormonal status in the development of aluminum (Al)-dependent renal osteodystrophy, which is characterized by reduced bone matrix deposition, still remains largely unknown. To address this question, we used the osteoblast-like osteosarcoma cell line ROS 17/2.8 to evaluate the role of Al on parathyroid hormone (PTH)- and 1,25-dihydroxyvitamin D3 (1,25(OH)2D3)-dependent activities in these cells. Al (1 microM) caused an inhibition of basal and 1,25(OH)2D3-induced alkaline phosphatase, but only at low doses (< 1 nM) of the steroid. Al partly inhibited basal osteocalcin (OC) secretion in ROS cells (p < 0.001), and the dose-dependent increase in 1,25(OH)2D3-induced OC release by these cells was also reduced by 1 microM Al at low concentrations of the steroid (< or = 1 nM), whereas high doses of 1,25(OH)2D3 (> or = 5 nM) totally prevented the inhibiting effects of Al. Al also had strong inhibitory actions on PTH-dependent cAMP production by ROS cells over the concentration range tested (0.5-50 nM). This inhibitory action of Al was also observed for PTH-related peptide- (PTHrp, 50 nM) but not for Isoproterenol-dependent (100 nM) cAMP formation. To evaluate more fully the mechanism of this inhibition of cAMP formation, we investigated the effect of Al on toxin-modulated, G protein-dependent regulation of cAMP formation and on the activation of adenylate cyclase by Forskolin. Cholera toxin (CT, 10 micrograms/ml), applied to cells for 4 h prior to PTH challenge, enhanced cAMP production about 2-fold above PTH alone (p < 0.001), a process that was further stimulated by Al. Pertussis toxin (PT, 1 microgram/ml, 4 h) did not modify basal PTH-dependent cAMP formation by ROS cells. However, PT treatment prevented the inhibitory effect of Al on cAMP formation by these cells (p < 0.025). The stimulation of adenylate cyclase by Forskolin (0.1 and 1 microM), which bypasses G protein regulation, was not modified by Al, indicating that Al does not affect adenylate cyclase directly. Northern blot analysis of PTH receptor mRNA levels showed that Al did not modify PTH receptor message in ROS cells. Likewise, Western blot analyses of G protein subunits showed that Al did not significantly alter Gs alpha subunit levels, in accordance with the results obtained for cAMP-dependent formation in response to CT. In contrast, Gi alpha-1 and Gi alpha-2 subunits were decreased by Al treatment, consistent with PT-restricted increases in cAMP formation in Al-treated ROS cells. Taken together, these results suggest that Al has multiple actions in osteoblast-like ROS cells. The effects of Al are modulated by hormonal control of the pathways investigated. Al affects 1,25(OH)2D3-regulated functions only when this steroid is low. Al has large inhibitory effects on PTH- and PTHrp-dependent cAMP formation. This last feature is related to the ability of Al to alter the G protein transducing pathway for PTH/PTHrp-dependent formation of cAMP since it does not affect adenylate cyclase activity directly and does not affect the PTH receptor message level. Thus, Al has stronger deleterious effects in osteoblast-like cells with an already compromised 1,25(OH)2D3 status and can modulate specifically PTH/PTHrp-mediated cAMP formation at the postreceptor level.
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A substance which increases the entry of extracellular calcium into arterial smooth muscle may decrease cirrhosis-induced vasodilation. The aim of the present study was to measure the effects of the L-type Ca2+ channel activator, Bay K 8644, on the haemodynamics of rats with cirrhosis. Vascular reactivity to this substance was also investigated. Splanchnic and systemic haemodynamic responses to Bay K 8644 (50 microg/kg) were measured in cirrhotic and normal rats. Contraction induced by 0.1 micromol/L Bay K 8644 was measured in arterial rings (aorta and superior mesenteric artery) from cirrhotic and normal rats. In cirrhotic rats, Bay K 8644 significantly decreased portal pressure (15%) and portal tributary blood flow (24%), significantly increased portal territory vascular resistance (54%) and did not significantly change hepatocollateral vascular resistance. Bay K 8644 significantly increased arterial pressure (7%) and systemic vascular resistance (24%) and did not change the cardiac index. In normal rats, Bay K 8644 significantly increased vascular resistance (150%) in portal, hepatocollateral and systemic territories and significantly decreased the cardiac index (44%). Changes in portal territory, hepatocollateral and systemic vascular resistances were significantly less marked in cirrhotic than in normal rats. In rings from the aorta and superior mesenteric artery, Bay K 8644-induced contraction was significantly lower in cirrhotic than in normal rats. In conclusion, in rats with cirrhosis, Bay K 8644 administration reduced vasodilation in splanchnic and systemic arteries and did not affect hepatocollateral vascular resistance. The Bay K 8644-induced reduction in splanchnic vasodilation caused a decrease in portal hypertension. This study also shows that Bay K 8644-induced vascular contraction was less marked in cirrhotic than in normal rats, in systemic and splanchnic vascular beds.
Hemodynamics and oxygen variables, plasma cytokines, and histological features of a liver tissue sample obtained by transvenous biopsy were evaluated during 65 episodes of acute rejection. The hepatic venous pressure gradient was significantly higher in patients with acute rejection than in those without (5.1+/-0.3 vs. 3.1+/-0.2 mmHg, P<0.01). The increase in pressure gradient was related to the severity of rejection lesions. Hepatic blood flow was significantly lower in patients with than in those without acute graft rejection (1.28+/-0.11 vs. 1.75+/-0.13 L/min, P<0.05). Plasma interleukin-6 levels were significantly increased in patients with acute rejection and positively correlated with pressure gradient values. In patients with acute rejection, a significant decrease in hepatic venous oxygen content (-16%) was associated with a significant increase in hepatic oxygen consumption (+24%), whereas hepatic oxygen transport did not change significantly. In treated patients with a favorable response, the pressure gradient decreased significantly by 46%, but it remained elevated in patients who later developed chronic graft rejection. In conclusion, this study confirms that acute graft rejection may induce an increase in portal pressure, which is related to the severity of rejection lesions. It also shows that acute rejection decreases hepatic blood flow and increases hepatic oxygen consumption. In addition, it suggests that the hepatic venous pressure gradient might be useful to determine the outcome of rejection.
BACKGROUND/AIMS: In cirrhosis, the activation of nitric oxide and prostacyclin contributes to vasodilation, and ATP-sensitive K+ (KATP) channel activation or L-type calcium (Ca2+) channel inhibition may also play a role in this process. At the same time in cirrhosis, certain endogenous mechanisms may be stimulated which limit the influence of vasodilator mechanisms on vascular tone, thus altering vascular responses to exogenous substances such as nitric oxide donors, exogenous prostacyclin, KATP channel openers or L-type Ca2+ channel blockers. The aim of the present study was to examine the arterial depressor to these exogenous substances in normal rats and in rats with secondary biliary cirrhosis. METHODS: Arterial depressor dose-response curves to nitroprusside (a nitric oxide donor, 5-60 micrograms.kg-1.min-1), prostacyclin (0.5-5 micrograms.kg-1) and aprikalim (a KATP channel opener, 10-200 micrograms.kg-1) were obtained in both groups. The effects of different L-type Ca2+ channel blockers, i.e. nicardipine (a dihydropyridine, 0.02-0.5 mg.kg-1), diltiazem (a benzothiazepine, 0.5-5 mg.kg-1) and verapamil (a phenylalkylamine, 0.02-0.2 mg.kg-1. min-1), were also studied. RESULTS: Cirrhosis produced hyporeactivity to the arterial depressor effect of all doses of nitroprusside, the lowest dose of prostacyclin and the highest doses of aprikalim or diltiazem. Cirrhosis did not significantly change depressor responses to nicardipine or verapamil. CONCLUSIONS: Rats with cirrhosis are hyporeactive to exogenous nitric oxide, prostacyclin, KATP channel opener and benzothiazepine (an L-type Ca2+ channel blocker). Therefore, cirrhosis-induced mechanisms seem to limit the decrease in vascular tone by most vasodilators. However, these mechanisms appear to be more marked in nitric oxide-mediated vasodilation than in other vasorelaxation mechanisms.
BACKGROUND/AIMS: The relationship between hypoxemia, liver failure and the hemodynamic alterations in cirrhosis are unknown. This study examined the relationship between arterial hypoxemia, the severity of liver disease and hyperkinetic circulation in patients with cirrhosis. METHODS: Arterial blood gases, the severity of cirrhosis (Child-Pugh score), and splanchnic and systemic hemodynamics were measured in 120 patients with cirrhosis and without cardiopulmonary disease. Hypoxemia was considered to be present when PaO2 was < or = 70 mmHg. RESULTS: Seventeen patients had hypoxemia (14%). Hypoxemic patients had significantly lower pulmonary vascular resistance and a significantly higher alveolar-arterial oxygen gradient, Child-Pugh score and hepatic venous pressure gradient than non-hypoxemic patients. Cardiac index and right atrial and pulmonary pressures did not significantly differ between the two groups. CONCLUSIONS: Hypoxemia occurs mainly in patients with severe liver disease and is associated with pulmonary vasodilation.
BACKGROUND/AIMS: The antithyroid drug propylthiouracil has been suggested for the treatment of alcoholic liver disease. Its beneficial effects could be due to either a decrease in hepatic oxygen consumption or an increase in hepatic blood flow. The aim of this study was to test these two hypotheses in patients with proven alcoholic cirrhosis. METHODS: The pharmacokinetic parameters after intravenous administration of 300 mg of propylthiouracyl were first determined in four patients. Then, the effects on systemic and splanchnic hemodynamics, and oxygen content were measured 45 and 90 min after the intravenous administration of 300 mg (n=6) or 600 mg (n=6) of propylthiouracil. RESULTS: Systemic hemodynamics (heart rate, arterial pressure, cardiac output and systemic vascular resistance) and splanchnic hemodynamics (hepatic venous pressure gradient, hepatic and azygos blood flows) were not modified 45 and 90 min after the administration of 300 mg or 600 mg of propylthiouracil. Moreover, neither oxygen content in the radial artery, pulmonary artery or hepatic vein, nor systemic oxygen uptake was modified after propylthiouracyl administration. The absence of effect of propylthiouracyl administration was also confirmed in patients with cirrhosis with proven acute alcoholic hepatitis (n=7). CONCLUSIONS: In patients with alcoholic cirrhosis, acute administration of propylthiouracyl has no effect on systemic and splanchnic hemodynamics or on oxygen contents. The presence of acute alcoholic hepatitis does not modify these results.
BACKGROUND/AIMS: Increased nitric oxide production has been implicated in impaired vascular responsiveness to vasoconstrictors in portal hypertension. However, there is no firm evidence concerning the involved nitric oxide synthase isoform. The present study investigated the possible contribution of one nitric oxide synthase isoform, the endothelial constitutive Ca2+-calmodulin dependent, in the overproduction of nitric oxide in portal hypertension. METHODS: Vascular responses to norepinephrine and acetylcholine were evaluated in isolated thoracic aortic rings from normal and portal vein stenosed rats. RESULTS: An impaired concentration-dependent contraction to norepinephrine was observed in intact rings from portal hypertensive rats compared to controls. The hyporeactivity to norepinephrine was reversed after endothelium denudation, the inhibition of nitric oxide synthase with L-NOARG or the inhibition of calmodulin with W-7, but not after pre-incubation with indomethacin. Stimulation of intact rings with norepinephrine after the inhibition of calmodulin with calmidazolium was followed by a decreased vascular response in vessels from normal rats but not in those from portal hypertensive rats. Stimulation of intact rings with norepinephrine in a Ca2+-free medium was followed by a decreased vascular response in vessels from both portal hypertensive and normal rats. No difference in vasoconstrictive responses was observed between the two groups after calmidazolium or in a Ca2+-free medium. Relaxation induced by acetylcholine in norepinephrine-precontracted rings was more marked in rings from portal hypertensive rats than in controls. No differences in the vasodilator responses were observed after relaxations had been inhibited by the removal of the endothelium, pre-incubation with L-NOARG, indomethacin, W-7 or calmidazolium and in a Ca2+-free medium. CONCLUSIONS: This study demonstrates the involvement of the endothelial constitutive Ca2+-calmodulin dependent nitric oxide synthase isoform in the overproduction of nitric oxide in portal hypertension.
BACKGROUND/AIMS: Refractory ascites, which occurs in certain patients with cirrhosis, is associated with a blunted natriuretic response to exogenous atrial natriuretic peptide (ANP). Since this blunting seems to be related to ANP-induced arterial hypotension, a vasoconstrictor, such as terlipressin (a vasopressin analogue), may restore natriuresis to exogenous ANP. Moreover, since cirrhosis-elicited vasodilation is thought to play a role in sodium retention, a vasoconstriction caused by terlipressin alone may lead to an increase in sodium excretion. This study aimed to evaluate the natriuretic response to either a combination of ANP with terlipressin or terlipressin alone in patients with cirrhosis and refractory ascites. METHODS: Sixteen consecutive patients with cirrhosis and refractory ascites were randomly assigned to receive either a combination of terlipressin (1-2 mg, i.v. bolus) with ANP (35 ng/kg, i.v. bolus followed by 15 ng x kg(-1) x min(-1) for 60 min) (n=8) or terlipressin alone (1-2 mg, i.v. bolus) (n=8). Sodium excretion and urine output, systemic, splanchnic and renal hemodynamics and renal oxygen consumption were measured before and during treatments. RESULTS: Combined therapy did not change arterial pressure but significantly increased urinary sodium excretion and urine output. These effects were associated with a significant increase in glomerular filtration rate and a decrease in renal oxygen consumption. Terlipressin alone significantly increased arterial pressure but did not change urinary sodium excretion or urine output. Moreover, terlipressin did not change either glomerular filtration rate or renal oxygen consumption. CONCLUSIONS: The combination of exogenous ANP with terlipressin, but not terlipressin alone, increases sodium excretion in patients with cirrhosis and refractory ascites.
BACKGROUND: The aim of this study was to investigate short-term effects of propranolol (a non-selective beta-adrenergic antagonist), octreotide (a long-acting somatostatin analogue), or a combination of these substances on splanchnic and systemic haemodynamics and arterial blood gases in rats with portal vein stenosis. METHODS: Splanchnic and systemic haemodynamics were measured using the radioactive microspheres method. Eight rats first received an i.v. infusion of isotonic saline (10 microL/min for 15 min) and then an i.v. infusion of octreotide (8 micrograms.h/kg for 15 min). Eight other rats first received a bolus i.v. injection of propranolol (2 mg) and an i.v. infusion of octreotide 15 min later. RESULTS: Propranolol or octreotide alone significantly decreased portal pressure (both by 23%), portal tributary blood flow (35 and 10%, respectively) and cardiac index (36 and 26%, respectively). Octreotide administration in rats pretreated with propranolol significantly decreased cardiac index but did not change portal and arterial pressures or portal tributary blood flow. Propranolol significantly increased arterial oxygen tension. Octreotide alone or combined with propranolol significantly decreased oxyhaemoglobin saturation and pH and increased carbon dioxide tension. CONCLUSIONS: In rats with portal vein stenosis, the somatostatin analogue, octreotide, accentuates the short-term decrease in cardiac index due to propranolol. In addition, octreotide altered arterial blood gases and acid-base status. In contrast, octreotide does not further decrease portal pressure in animals receiving propranolol.
BACKGROUND: An enhancement of the haemodynamic effects of terlipressin by octreotide (and vice versa) may be useful in the treatment of portal hypertension. The aim of this study was to investigate the short-term effects of terlipressin, octreotide or a combination of these substances on splanchnic and systemic haemodynamics in rats with portal vein stenosis. METHODS: Eight rats received an intravenous (i.v.) infusion of isotonic saline (10 microL/min for 15 min). Eight rats received terlipressin first (0.05 mg/kg) and then an i.v. infusion of octreotide (8 micrograms.h/kg for 15 min) 15 min later. Eight other rats first received an i.v. infusion of octreotide and then terlipressin 15 min later. Splanchnic and systemic haemodynamics (radioactive microsphere method) were measured after saline, after terlipressin or octreotide alone, and after the combined treatments. RESULTS: Terlipressin and octreotide alone significantly decreased portal pressure, portal tributary blood flow and cardiac index. Terlipressin, but not octreotide, significantly increased heptocollateral vascular resistance and arterial pressure. Octreotide administration in rats pre-treated with terlipressin did not change portal pressure, caused portal tributary blood flow to increase and decreased hepatocollateral vascular resistance; it also decreased arterial pressure but not cardiac index. Terlipressin administration in rats pre-treated with octreotide further decreased portal pressure, portal tributary blood flow and increased hepatocollateral vascular resistance; terlipressin increased arterial pressure and further decreased cardiac index. CONCLUSIONS: In rats with portal vein stenosis, octreotide decreased short-term splanchnic and systemic vasoconstriction due to terlipressin. In contrast, terlipressin enhanced the splanchnic and systemic vasoconstriction due to octreotide. Thus, the haemodynamic responses to the combination of octreotide and terlipressin depend on the order of administration of these substances.
BACKGROUND & AIMS: In cirrhosis, increased amounts of circulating hormones such as angiotensin II may induce vascular tone changes and alter vascular smooth muscle cell (VSMC) function and growth. The aim of this study was to investigate the growth of aortic VSMCs from cirrhotic rats with or without the addition of angiotensin II and to determine whether angiotensin II binding was preserved in cirrhotic VSMCs. METHODS: Cirrhosis was induced by bile duct ligation. Cell growth was studied in cultured aortic VSMCs at passage levels between 4 and 16 by determining cell number and protein synthesis. RESULTS: Proliferation rates of cirrhotic VSMCs were lower than those of control VSMCs. The addition of angiotensin II to control VSMCs caused an increase in cell proliferation and protein synthesis. This increase was not observed in cirrhotic cells. There were more angiotensin II receptors in cirrhotic than in control VSMCs, but no significant changes in affinities were found. Angiotensin II-stimulated protein synthesis was dependent on protein kinase C activity and increased intracellular Ca2+ concentrations. CONCLUSIONS: This study shows abnormalities in growth characteristics and responsiveness to angiotensin II of cultured aortic VSMCs from rats with cirrhosis.
Through a Benin-Canada participatory research initiative which included both Benin and Canadian non-governmental organizations, a local capacity to produce and market bednets for the prevention of malaria was developed. The development process began following a community-based assessment of local needs and skills. All materials for the manufacture and distribution of the bednets were obtained locally with the exception of the netting which was imported from Canada. The sustainability of the enterprise is enhanced by the community's recognition of the importance of malaria and the culturally acceptable practice of bednet use.
Although hepatic blood flow (HBF) has been measured in patients with liver disease for many years, the results of these studies have not provided clear information concerning the usefulness of this measurement. Hepatic blood flow was measured in 392 patients with either cirrhosis (n = 356) or hepatic fibrosis (n = 36). The control group included 59 subjects with normal liver architecture. Hepatic clearance of indocyanine green (ICG) was markedly reduced in patients with cirrhosis and hepatic fibrosis compared with controls (182 +/- 5, 276 +/- 22 and 421 +/- 25 mL/min, respectively). In patients with cirrhosis, ICG clearance and extraction were significantly correlated, but were not correlated to HBF. Although HBF did not differ between patients with cirrhosis and controls (1.26 +/- 0.04 vs 1.35 +/- 0.07 L/min, respectively), patients with hepatic fibrosis had lower HBF (1.04 +/- 0.07 L/min; P < 0.05). In patients with cirrhosis, no correlation was observed between HBF and cardiac output, mean arterial pressure, azygos blood flow, the hepatic venous pressure gradient or Pugh's score. However, a significant difference in HBF was observed in patients with and without hepatic encephalopathy (1.00 +/- 0.09 vs 1.28 +/- 0.03 L/min, respectively; P < 0.05). In conclusion, the present study shows that, in patients with cirrhosis, HBF is normal and is not related to other haemodynamic values or liver tests. These results discourage the measurement of HBF in the evaluation of patients with cirrhosis.