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C D Gove

Publications and source records attributed to C D Gove.

At least 19 recordsLinked to original sources

Regional cerebral edema and chloride space in galactosamine-induced liver failure in rats.

The pathogenesis of cerebral edema, which is a major complication of fulminant hepatic failure, is poorly understood. In previous studies, increased regional brain water content was observed in rats at an early stage of acute liver failure caused by galactosamine. At a later stage when the animals had developed deep coma, brain water content was reduced, possibly as a result of generalized dehydration. In the present investigation, we have determined brain water content at a late stage of liver failure, 48 hours after galactosamine, in animals that had been maintained in fluid balance by continuous intraperitoneal infusion of glucose solution. In these animals, brain water content, determined from the ratio of wet to dry weight, showed a greater increase than that observed previously at the early stage (hindbrain region [cerebellum, pons, and brain stem] increased by 4.2%; forebrain region increased by 1.4% compared with controls). Regional analysis of brain water, using a tissue-specific gravity method, showed a significant increase in cerebellar gray matter water content. Analysis of chloride space showed the extra fluid to be mainly extracellular in the hindbrain region, but not in the forebrain region. Ultrastructural examination of capillaries in gray matter from cerebellum and cerebrum showed no evidence of gross disruption of the tight junctions. Swelling of the astroglial foot processes was observed in the cerebellar gray matter. These results suggest that both vasogenic and cytotoxic mechanisms of edema formation occur in the brain during liver failure.

Acute Disease↗

Protective effects of Osbeckia octandra against galactosamine and tert-butyl hydroperoxide induced hepatocyte damage.

Ayurvedic and other 'traditional' medical practitioners in Sri Lanka use the mature leaves of the plant Osbeckia octandra for its hepatoprotective properties. In this study the effects of an aqueous extract of Osbeckia octandra against injury induced by D-galactosamine and tert-butyl hydroperoxide (TBH) were investigated in freshly isolated rat hepatocytes. The plant extract (500 micrograms/ml) significantly reduced the inhibition of protein synthesis (as assessed by the incorporation of 14C-leucine into protein) in hepatocytes incubated for 1 h with 10 mM galactosamine by a mean of 25.6 +/- 3.6% and decreased the release of cellular lactate dehydrogenase (LDH) and aspartate aminotransferase (AST) enzyme activities into the medium by 55.3% and 32.8%, respectively. With TBH, the plant extract decreased lipid peroxidation (estimated from malondialdehyde formation) by a mean of 29.9 +/- 1.1% together with a 46.8% and 54.7% decrease in the release of LDH and AST, respectively into the incubation medium. Significant protection was also obtained when the Osbeckia extract was added to the incubation medium up to 30 min after pre-exposure of the hepatocytes to either galactosamine or, to a lesser extent, TBH. The results support the use of Osbeckia as a hepatoprotective agent.

Animals↗

Protective effects of Osbeckia octandra against paracetamol-induced liver injury.

1. Osbeckia octandra is a plant used in traditional medicine to treat jaundice and other liver disorders. In this study, the effects of Osbeckia leaf extract on paracetamol-induced liver injury were investigated both in vivo in mice and in rat hepatocytes in vitro. 2. Oral administration of Osbeckia extract (330 mg/kg) at the same time as paracetamol (450 mg/kg) to mice, resulted in a significant protection (p < 0.05) against liver damage, as assessed by improvements in the blood Normotest (39.1 +/- 1.9 versus 46.3 +/- 2.0 s), total liver glutathione (730 +/- 39 versus 574 +/- 27 micrograms/250 mg liver), plasma aspartate aminotransferase level (916 +/- 225 versus 1965 +/- 291 iu/l), and liver histopathology at 24 h after paracetamol administration. 3. In experiments to assess the direct effects of Osbeckia extract, significant protection was also found in freshly isolated rat hepatocytes against damage induced by 185 microM 2,6-dimethyl N-acetyl p-quinoneimine (2,6-diMeNAPQI, an analogue of NAPQI, the toxic metabolite of paracetamol) in vitro. When Osbeckia extract (500 micrograms/ml) was added to the incubation medium at the same time as 2,6-diMeNAPQI significant changes in cell viability (78.4 +/- 3.3 versus 47.2 +/- 5.8% of control, p < 0.001), cell reduced glutathione (GSH) level (35.0 +/- 3.1 versus 23.8 +/- 1.5%, p = 0.009), and reduced release of lactate dehydrogenase (129.9 +/- 6.6 versus 224.6 +/- 12.1%, p < 0.001) were demonstrated after 1 h incubation as compared with 2,6-diMeNAPQI alone. 4. Significant protection was still obtained against 2,6-diMeNAPQI in vitro when addition of Osbeckia extract was delayed by 20 min. These results indicate that Osbeckia extract can protect against paracetamol-induced liver injury.

Acetaminophen↗

Skeletal muscle protease activities are unaltered in cirrhotic rats but altered in response to ethanol and acetaldehyde in vitro.

This study was carried out in an attempt to differentiate between the contribution of liver impairment and direct actions of alcohol in myopathy of alcoholic liver disease. Using an animal model of cirrhosis we have previously shown that protein synthetic potential in muscle was not significantly altered. We therefore investigated the possibility that muscle degradation is increased. Cirrhosis was induced by carbon tetrachloride gavage in male rats receiving phenobarbitone in their drinking water. Controls were given phenobarbitone alone. After 135 days the free, latent and total activities of the lysosomal enzymes cathepsin B and cathepsin D in gastrocnemius muscle were unaffected by the induction of experimental cirrhosis when expressed relative to tissue wet weight, protein or DNA. The non-lysosomal enzyme neutral protease was also measured in gastrocnemius muscle from control and cirrhotic rats. There was no difference between the two groups in the free, latent or total activities. Addition of ethanol and acetaldehyde to the assay mixtures in some cases significantly altered the relative activities of the proteases in latent and free compartments of the cirrhotic tissues. In control tissues a different pattern of response emerged. It is concluded that in cirrhosis, at least in the carbon tetrachloride-induced rat model, there is no change of the activity of cathepsin B and D and the neutral protease activity in gastrocnemius. Small but significant effects of ethanol and its metabolite acetaldehyde on latent and free muscle protease activity were demonstrated.

Acetaldehyde↗

Metabolic effects of beta-adrenergic receptor blockade in advanced alcoholic cirrhosis.

It has been postulated that the adverse metabolic effects of beta-adrenergic blockade with propranolol in cirrhosis may be related to altered delivery and utilisation of oxygen, particularly in patients with advanced alcoholic liver disease (ALD). Consequently, in 10 patients with decompensated ALD, we assessed (a) systemic and hepatic oxygen delivery (DO2), extraction ratio (%O2E) and consumption (VO2), (b) myocardial VO2 (assessed by the rate-pressure product [RPP], together with full systemic and splanchnic haemodynamics) and (c) hepatic redox state (HRS), measured indirectly by the arterial ketone body ratio (KBR i.e. ratio of acetoacetate/beta-hydroxybutyrate), prior to and following intravenous propranolol (0.1-2 mg/kg). Results are expressed as mean +/- S.E.M. Propranolol reduced DO2 (700 +/- 33 vs. 583 +/- 32 ml/min/m2, p < 0.05) and myocardial VO2 (RPP 72 vs. 58, p < 0.05). The %O2E increased however, (18.5 +/- 1.3 vs. 22.6 +/- 1.6%, p < 0.05), resulting in unaltered systemic VO2 (127 +/- 7.3 vs. 131 +/- 6.9 ml/min/m2, p > 0.10). Similarly hepatic VO2 did not change. KBR was not altered (0.44 +/- 0.08 vs. 0.48 +/- 0.07), and in fact improved in two patients (Child C12 and C13) from 0.17 to 0.34 and 0.12 to 0.27, respectively. In conclusion, the results of this study suggest that an underlying O2 debt exists in patients with advanced alcoholic cirrhosis and that beta-adrenergic blockade with propranolol 'normalises' the O2 supply-consumption relationship resulting in more efficient O2 utilisation without adversely affecting HRS. The mechanism of this action may be related to the antagonism of beta 2-mediated arteriovenous shunting resulting in appropriate blood redistribution.

Adult↗

Effect of supernatants from Kupffer cells stimulated with galactosamine and endotoxin on the function of isolated rat hepatocytes.

Activated Kupffer cells may release substances that are involved in liver injury induced by galactosamine and endotoxin. In the present study Kupffer cells were isolated from rat livers, cultured for 24 hours and incubated with galactosamine, endotoxin (LPS) or tumor necrosis factor-alpha for 4 or 24 hours. The Kupffer cell-conditioned media were than added in separate experiments to freshly prepared isolated rat hepatocytes to determine their cytotoxic effect. No significant effects on the rate of protein synthesis, as assessed by the incorporation of 14C-leucine on lactate dehydrogenase enzyme release from hepatocytes during 1 h incubation was found as compared with conditioned media from control Kupffer cells. In further experiments, Kupffer cells incubated for 4 hours with LPS and galactosamine were shown to produce thromboxane B2 and also the potentially cytoprotective prostaglandins PGE2 and small amounts of prostacyclin measured as 6-keto-PGF1 alpha. It is concluded that under the conditions of the present experiments, factors secreted by cultured Kupffer cells have no cytotoxic effects on isolated rat hepatocytes during short-term incubation.

Animals↗

Substantial quantities of the high energy derivative oligophosphoglyceroyl-ATP are located in mitochondria in rat liver.

Perfusion with [8-14C]adenosine demonstrated the likely existence in rat liver of oligophosphoglyceroyl-ATP (OPG-ATP). Purification followed by assay with a new specific 3' phosphodiesterase confirmed this. The quantities present were 5-10-fold those found previously and comparable to total soluble nucleotides. OPG-ATP was also purified from the mitochondrial fraction, shown to co-distribute with succinate dehydrogenase and can be co-purified with an enzyme confined to intermembrane space.

Adenosine Triphosphate↗

Inhibitors of hepatic DNA synthesis in fulminant hepatic failure.

In certain etiological groups of patients with fulminant hepatic failure, poor survival may be due to lack of liver regeneration. In vitro experiments have shown that fulminant hepatic failure serum is cytotoxic to rabbit hepatocytes and inhibits DNA synthesis on short-term incubation with isolated regenerating rat hepatocytes. When fulminant hepatic failure serum is injected into partially hepatectomized rats at the time of maximal DNA synthesis, [3H]thymidine incorporation into hepatic DNA is reduced significantly. The effect is greater with sera obtained from patients with fulminant hepatic failure due to non-A, non-B hepatitis or an adverse drug reaction and is associated with a less than 10,000-dalton fraction. No stimulation of DNA synthesis is observed with injection of the greater than 10,000-dalton serum fraction into normal rats. In preliminary experiments, no increase in epidermal growth factor production has been found in liver failure. Overall, the substances present in fulminant hepatic failure serum appear to be inhibitory rather than stimulatory for liver cell regeneration.

Animals↗

Delayed calcium channel blockade with diltiazem reduces paracetamol hepatotoxicity in mice.

1. Diltiazem (30 mg kg-1 body weight, intraperitoneally) given to mice 9 h after paracetamol (450 mg kg-1, orally) reduced liver damage, as judged by plasma aspartate aminotransferase activity (median 186, range 6-602 IU 1(-1), n = 18 vs 466, range 23-3872 IU 1(-1) in 18 saline-treated controls; P less than 0.05) with comparable reductions in mortality (14% vs 33%, respectively; NS). 2. Regenerative activity, as judged by mitotic figures in tissue removed at 30 h after paracetamol, was significantly higher in mice treated at 9 h with diltiazem (median 0.83 per high power field vs 0.1 in saline-treated controls; P less than 0.05). 3. Diltiazem administered earlier or later than 9 h showed reduced efficacy and in some cases potentiated toxicity, as did nifedipine (40 mg kg-1 in divided doses up to 9 h).

Acetaminophen↗

Antibodies against the hepatic asialoglycoprotein receptor perfused in situ preferentially attach to periportal liver cells in the rat.

Autoantibodies reacting with the galactose-specific hepatic asialoglycoprotein receptor--a liver-specific component expressed on the surfaces of hepatocytes--are often found in patients with chronic active hepatitis of presumed autoimmune origin. As part of an investigation into whether these anti-asialoglycoprotein receptor antibodies might be involved in the development of periportal liver damage in chronic active hepatitis, livers of ether-anesthetized rats were perfused in situ with polyclonal guinea pig anti-rabbit asialoglycoprotein receptor or murine monoclonal anti-human galactose-specific hepatic asialoglycoprotein receptor antibodies in excess at less than 8 degrees C or, as a control, with guinea pig anti-human plasma protein antibodies or normal guinea pig serum. Rapid (1 min) antegrade (by way of portal vein) or retrograde (through hepatic veins by way of vena cava) perfusions were performed in a nonrecirculating (once-through) mode in Ca+(+)-free medium. Blocks of liver tissue were immediately snap-frozen and the distribution of the antibody examined in cryostat sections by using an avidin-biotin immunohistochemical technique. In all of the perfusions with anti-asialoglycoprotein receptor (six antegrade, seven retrograde), the antibodies were found to be prominently and almost exclusively deposited on liver cells in the periportal areas. No deposition of immunoglobulins was detected in livers perfused with the control guinea pig sera. The findings suggest that the asialoglycoprotein receptor is expressed at high density mainly on cells in zone 1 of the hepatic lobule, and this may have implications for the development of periportal liver damage in chronic active hepatitis.

Animals↗

In vivo and in vitro studies on the protective effects of 9 beta-methylcarbacyclin, a stable prostacyclin analogue, in galactosamine-induced hepatocellular damage.

Early treatment with prostacyclin (PGI2) was previously shown to reduce mortality in the galactosamine model of acute hepatic failure in the rat, with a decreased release of hepatic cytosolic and lysosomal enzymes. In this study, 9 beta-methylcarbacyclin, a chemically stable analogue of PGI2, had similar protective effects to PGI2 in vivo but required approximately 100-fold higher concentrations (2 mg kg-1). These effects were only obtained when 9 beta-methylcarbacyclin was given early (0 to 6 h post-galactosamine) but not later (24 to 30 h). In isolated rat hepatocytes in vitro galactosamine up to a concentration of 100 mM caused a dose-dependent inhibition of L-[U-14C] leucine incorporation into protein and increase in the release of the cytoplasmic enzyme lactate dehydrogenase. Studies on the short-term effects of 9 beta-methylcarbacyclin using isolated hepatocytes treated with galactosamine (5 mM) showed that this agent, at an optimum concentration of 30 ng ml-1, was capable of significantly reducing the inhibition of protein synthesis caused by galactosamine but did not alter the rate of release of lactate dehydrogenase. The results demonstrate that the protective effects of 9 beta-methylcarbacyclin occur early in the time course of galactosamine action, and include direct effects on the hepatocytes.

Animals↗

Liver histology, blood biochemistry and RNA, DNA and subcellular protein composition of various skeletal muscles of rats with experimental cirrhosis: implications for alcoholic muscle disease.

(1) Liver cirrhosis was induced in male rats by treatment with carbon tetrachloride and phenobarbitone for 130-142 days. Detailed histological examination showed all livers from rats treated with carbon tetrachloride had annular fibrosis, necrosis, loss of normal hepatic architecture and other features that were consistent with an established micronodular cirrhosis. (2) Plasma biochemical analysis showed a significant reduction in total protein concentration (13%), which was due entirely to a reduction in plasma albumin (29%). There were also large increases in the plasma activities of alkaline phosphatase (110%) and aspartate aminotransferase (159%), when compared to phenobarbitone-treated controls. Plasma cholesterol was also increased (67%), but other plasma analytes were not significantly altered. (3) The soleus (Type I), plantaris (Type II) and gastrocnemius (Types I and II) muscles were dissected and examined for possible differential effects. There were minor reductions in all three muscle weights, but these changes did not reach statistical significance. The protein, RNA and DNA concentrations, total muscle content and content relative to body weight in cirrhotic rats were also not significantly altered in any of the muscles. Cirrhosis did not cause any perturbations in derived parameters, i.e. amount of synthetic apparatus per cell, RNA/DNA ratio, apparent cell size, protein/DNA ratio and the capacity for protein synthesis or RNA/protein ratio. (4) The gastrocnemius was fractionated into soluble, stromal and myofibrillar proteins. The concentrations and contents of all three proteins were unaltered in cirrhotic animals, compared to controls. (5) It is concluded that in this experimental model of cirrhosis there were no effects on those skeletal muscle variables which are strikingly altered by chronic alcohol feeding.(ABSTRACT TRUNCATED AT 250 WORDS)

Alcoholism↗

Determination of the ketone body ratio in fulminant hepatic failure.

The ratio of acetoacetate to beta-hydroxybutyrate, the ketone body ratio, was measured in arterial blood from 28 patients with fulminant hepatic failure as an index of the hepatic energy charge. The ketone body ratio was significantly reduced in the total group of patients with fulminant hepatic failure as compared with control subjects (0.27 +/- 0.03 SE as compared with 0.48 +/- 0.03; p less than 0.001). Patients who survived had significantly less reduction of the ketone body ratio on admission than those who died (0.39 +/- 0.06, n = 10 as compared with 0.20 +/- 0.02, n = 19; p less than 0.02). In seven patients who died, in whom ketone body ratio was measured less than 12 hours before death there was a significant decrease in ketone body ratio as compared with that on admission (0.24 +/- 0.05 to 0.15 +/- 0.04; p less than 0.05). In contrast, in seven patients who survived there was no significant change in ketone body ratio when measured within 12 hours of regaining consciousness as compared with the figures on admission. Measurement of arterial ketone body ratio may give an indication of prognosis, and may be of use in testing the efficacy of treatments which aim to enhance hepatic regeneration or to remove toxic substances that may reduce the hepatic energy charge.

Acetaminophen↗