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Effect of trimethoprim administration on hepatic functions of albino rats.

The effects of chronic and high-dose administration of trimethoprim (TMP) i.p. for different periods on serum and hepatic functions of rats were studied at cellular and subcellular levels. Most of the parameters studied were unaffected after chronic administration of TMP (10 mg/kg/day) for 90 days except an increase in total lipid content of liver and liver microsomes. Administration of TMP in doses of 40 mg and 80 mg/kg/day for 21 days caused a significant increase in total lipid, cholesterol and transaminases activities of serum and liver. Protein, RNA and phospholipid contents of liver and microsomes decreased significantly while DNA content remained unchanged. Glycogen content of liver decreased significantly but alkaline phosphatase activity did not show any noticeable alteration. Histopathological findings showed fatty infiltration and distorted liver architecture. Administration of TMP in doses of 40 mg and 80 mg/kg/day for 14 days changed all the parameters and enzymes in a similar pattern but with less intensity. From the present study it is obvious that high doses of this drug cause harmful toxic effects on serum and hepatic function with liver injury whereas chronic administration has no effect so far.

Animals↗

Sodium retention and hepatic function after two-thirds hepatectomy in the rat.

Recently it was suggested that the onset of sodium retention in experimental cirrhosis in rats is related to a critical threshold of hepatic function, as assessed by the aminopyrine breath test. The aim of this study was to evaluate whether sodium retention occurred after two-thirds hepatectomy in rats and to investigate the relationship between sodium retention and changes in hepatic function associated with liver regeneration in this model. Sodium balance, creatinine clearance, serum sodium and the aminopyrine rate constant of elimination were evaluated daily for 4 days after surgery in partially hepatectomized (n = 6) and sham-operated rats (n = 6). All rats in the partial hepatectomy group exhibited sodium retention (sodium balance greater than 0.7 mmol/day) 24 hr after surgery. This was associated with a 62% reduction of the aminopyrine rate constant of elimination. Spontaneous natriuresis which occurred between 2 and 4 days after surgery, was associated with an increase in the aminopyrine rate constant of elimination (from 0.73 +/- 0.02 x 10(-2) min-1 on the last day of sodium retention to 0.95 +/- 0.04 x 10(-2) min-1 on the first day of natriuresis [p less than 0.05]). In contrast, no change in creatinine clearance occurred over the same period. A negative curvilinear association was found between sodium balance and the aminopyrine rate constant of elimination in all animals (r = -0.72, p less than 0.001). These observations indicate that natriuresis is related to the recovery of liver function, not to changes in creatinine clearance. In conclusion, the concept of a critical threshold of liver function below which sodium retention occurs has been substantiated in this model of hepatic dysfunction.

Analysis of Variance↗

The lidocaine (MEGX) test as an index of hepatic function: its clinical usefulness in liver surgery.

BACKGROUND: The purpose of this study was to evaluate the clinical usefulness of the lidocaine test, as an index of hepatic function, in the different fields of liver surgery. METHODS: The lidocaine (MEGX [monoethylglycinexylidide]) test, which was performed in 200 patients with different liver diseases and in 23 organ donors, was compared with common laboratory tests. The MEGX value was related to postoperative complications in patients who undergo liver resection and to the survival of patients with cirrhosis who are awaiting transplantation. In organ donors, the test was related to the outcome of patients who underwent transplantation. RESULTS: The MEGX value was significantly higher in patients without cirrhosis compared to patients with cirrhosis (77.8 +/- 25 ng/mL vs 35.6 +/- 30 ng/mL; P < .05); among patients with cirrhosis, there was a significant difference between those patients classified Child A and those classified Child B and C (43.3 +/- 25 ng/mL vs 11.5 +/- 7.1 ng/mL; P < .05). The patients classified Child A who underwent liver resection with MEGX value less than 25 ng/mL had a significantly higher rate of postoperative complications compared with other patients (P < .001). Patients with cirrhosis who were awaiting liver transplantation and who had a MEGX value of less than 10 ng/mL had a life expectancy of no longer than 1 year. CONCLUSIONS: The MEGX test is a reliable index of hepatic function. Patients carrying hepatocellular carcinoma with MEGX value of less than 25 ng/mL have a high risk of liver insufficiency after hepatic resection. Patients with decompensated cirrhosis who have an MEGX value of less than 10 ng/mL should undergo transplantation as soon as possible.

Adult↗

Phase I and pharmacologic studies of topotecan in patients with impaired hepatic function.

BACKGROUND: Topotecan, a topoisomerase I inhibitor that has demonstrated anticancer activity toward leukemias and solid tumors in clinical trials, is eliminated via hepatic and renal routes. However, dosing guidelines for the administration of topotecan to patients with impaired hepatic function have not yet been established. PURPOSE: We compared the maximum tolerated doses (MTDs), the toxic effects, and the pharmacokinetics and pharmacodynamics of topotecan in patients who had refractory, malignant, solid tumors and who either had or lacked hepatic injury. The potential role of three substrate markers of liver function (indocyanin green [ICG]-- a marker of hepatic blood flow; lorazepam--a substrate marker of hepatic glucuronidation; and antipyrine--a substrate marker for cytochrome P450 activity) in optimizing topotecan doses for patients with liver injury was also evaluated. METHODS: Twenty-one cancer patients, 14 of whom had hepatic injury due to metastatic disease, biliary obstruction, or cirrhosis, were treated with intravenously delivered courses of topotecan consisting of 0.5, 1.0, or 1.5 mg/m2 of drug per day for 5 days. Most patients received more than one course of treatment, with new courses initiated at 3-week intervals. Patient responses (evaluated by tumor measurements) and treatment-induced toxic effects were assessed. Prior to the initiation of topotecan treatment, patients were given intravenous injections of ICG, lorazepam, and antipyrine to determine the plasma pharmacokinetics of these compounds. The pharmacokinetics of topotecan (both the lactone and the carboxylate forms) were determined by analysis of plasma and urine samples collected on the first day of the first course of drug treatment. Scatter plots of area under the plasma concentration versus time curves in relation to percent decreases in either absolute neutrophil count or platelet count were used to explore the pharmacodynamics of topotecan. The Student's t test and the Mann-Whitney U test were used to compare pharmacokinetic parameters between patients with and without abnormal hepatic function. Correlations were assessed using the Spearman's rank correlation coefficient (rs). Reported P values are based on two-tailed tests of significance. RESULTS: Patients with hepatic injury tolerated topotecan doses up to 1.5 mg/m2, i.e., the MTD of this drug established in previous studies. The nature and severity of treatment-induced toxic effects and the pharmacokinetics of topotecan were similar in patients with and without liver injury. No differences were observed in the urinary excretion of topotecan between the two patient groups. Clearances of total topotecan and its lactone species correlated only with clearance of ICG (rs = .64, P = .004; and rs = .68, P = .0017, respectively). The pharmacodynamic effects of topotecan were not altered by liver dysfunction. CONCLUSIONS AND IMPLICATIONS: Cancer patients with hepatic injury can be treated with topotecan at a starting dose of 1.5 mg/m2, given daily for 5 days and administered every 3 weeks. Topotecan dose modifications do not appear to be required for patients with hepatic dysfunction and normal renal function.

Adult↗

Central regulation of hepatic function by neuropeptides.

In addition to classical neurotransmitters, such as acetylcholine and noradrenaline, neuropeptides have been recognized as new neurotransmitters and neuromodulators. Neuropeptides are widely distributed in the central nervous system as well as in peripheral nerves, and act as neurotransmitters to regulate various physiological functions. The digestive organs are no exception, and several neuropeptides in the central nervous system are shown to act in specific brain sites and control gastrointestinal functions, such as gastric acid secretion, and gastrointestinal motility, through the autonomic nervous system. Recently, a relationship between central neuropeptides and hepatic function through the autonomic nervous system has been revealed in animal models. Thyrotropin-releasing hormone acts in the medulla, in particular in the left dorsal vagal complex, to induce stimulation of hepatic blood flow and hepatic proliferation, and protect against experimental liver injury through vagal and cholinergic pathways. Corticotropin-releasing factor injected intracisternally elicits inhibition of the hepatic blood flow and exacerbates experimental liver injury through sympathetic and noradrenergic pathways. Neuropeptide Y acts in the left dorsal vagal complex, in particular in regard to the Y1 receptor subtype, to stimulate bile secretion. Other neuropeptides such as beta-endorphin and bombesin in the brain modulate hepatic proliferation and bile secretion. Through the use of neuropeptides, new knowledge of the central and peripheral mechanisms underlying brain regulation of hepatic function will be revealed. Further studies in regard to the physiological relevance of the central action of neuropeptides on specific brain sites should be performed to unravel the underlying pathways that mediate brain-liver interaction.

Central Nervous System↗

Hepatic function testing.

The clinical situation determines the choice of hepatic function tests. Alkaline phosphatase (ALP) and aspartate aminotransferase (GOT) tests serve to detect disease, and when used in combination with a gammaglutamyl transferase (GGTP) test, to exclude it. The combination of ALP, GOT, bilirubin, lactate dehydrogenase (LDH), albumin, globulin, and GGTP tests is useful for routine differential diagnosis. Prothrombin time indicates severity of disease. Interpretation is facilitated by attention to ALP or GOT predominance; the relationship of LDH, ALP, and bilirubin; and the ratio of GGTP to ALP. Abnormalities on routine tests frequently do no more than point out the need for more definitive procedures.

Alkaline Phosphatase↗

Fasting serum bile acid level in cirrhosis. A semi-quantitative index of hepatic function.

We examined the roles of the factors which influence bile acid levels in order to define to what extent fasting serum total bile acid (FSTBA) level might reflect hepatic function and/or anatomy of the portal circulation in patients with cirrhosis. In a first group of 13 patients having mild to moderately advanced cirrhosis we determined the apparent oral clearance (CLo) of chenodeoxycholic acid (764 mumol) and their FSTBA levels. In a second group of 15 similar patients we measured FSTBA levels and by hepatic vein catheterization the intrinsic clearance (CLi) of ICG as well as total hepatic blood flow (Q). We found a significant inverse log-log relationship (r = 0.752, P less than 0.01) between the FSTBA and the CLo on the one hand and significant inverse log-log relationship (r = 0.707, P less than 0.01) between the FSTBA and CLi on the other hand. Q was not found to bear any significant relation to FSTBA (r = 0.120, P greater than 0.1). To conclude, in view of the observed relationship between CLi and CLo vs FSTBA, the latter might serve as a simple non-invasive semiquantitative index of hepatic function and/or anatomy of portal circulation in cirrhosis.

Adult↗

Electroacupuncture and its effect on rat hepatic functions.

The effect of single, acute (7 pulses/sec., 0.75 volt) and chronic (4 pulses/sec., 0.75 volt) electroacupuncture (EA) treatment on alternate days for a period of 21 days on hepatic functions of rats were studied at cellular and subcellular levels. The points used for EA were Shenshu, Dachangshu and Zusanli. After chronic treatment, (a) protein, RNA, phospholipid, and cholesterol contents of whole liver and liver microsomal fraction increased significantly, (b) liver microsomal G-6-Pase activity increased significantly, (c) microsomal lipid peroxidation value decreased, (d) lipase activity increased. After acute treatment, (e) phospholipid, and cholesterol contents of the whole liver and liver microsomal fraction increased significantly, (f) liver microsomal G-6-Pase activity increased significantly, (g) liver microsomal lipid peroxidation value decreased, (h) GPT and lipase activity of liver increased. The parameters unchanged in acute treatment were as follows: (i) protein, RNA content, (j) GOT activity of the liver, (k) SGOT and SGPT activity, (1) hepatic triglyceride. The parameters unchanged in chronic treatment were as follows: (m) GOT and GPT activity of the liver, (n) SGOT and SGPT activity, (o) hepatic triglyceride. No apparent harmful effect of EA on rat hepatic functions is obvious from present study.

Acupuncture Therapy↗

Pharmacologic modulation of experimental postischemic hepatic function.

The present study evaluated and compared the effects of SRI 63-441, a potent platelet activating factor antagonist, superoxide dismutase (SOD), an oxygen free radical scavenger, and ibuprofen, a cyclooxygenase inhibitor on hepatic function after 90 minutes of warm ischemia. After warm ischemia, livers were harvested and underwent 90 minutes of warm, oxygenated, sanguinous perfusion on an isolated liver perfusion apparatus. Pretreatment of donor animals with 20 mg/kg intravenous (I.V.) SRI 63-441 5 minutes before induction of total hepatic ischemia resulted in significantly increased bile production, a significant decrease in transaminase release, and a higher tissue adenosine triphosphate (ATP) content when compared with ischemic nontreated controls. SOD resulted in improved bile production and decreased transaminase liberation only when present in the perfusate at the time of in vitro reperfusion. Ibuprofen did not improve postischemic hepatic function in this model. Electron microscopy revealed patchy hepatocellular vacuolization with an intact sinusoidal endothelium in all ischemic livers. However, the degree of damage was less severe in the livers from those rats pretreated with 20 mg/kg SRI 63-441. This study demonstrates that SRI 63-441 pretreatment significantly reduces hepatic warm ischemic injury, and in the present model, appears superior to two other agents that have been advanced in the treatment of ischemic injury. The use of such agents singly or in combinations have important implications as regards gaining a better understanding of the basic mechanisms in organ ischemia, and moreover, for therapeutic applications in organ ischemia and preservation.

Animals↗

Effect of allopurinol on oxidant stress and hepatic function following ischemia and reperfusion in the rat.

Reactive oxygen species generated by xanthine oxidase during reperfusion of ischemic liver might in part be responsible for ischemic organ injury. Therefore, the effect of allopurinol, an inhibitor of xanthine oxidase, on the oxidant stress associated with reperfusion and on hepatic function 24 h after ischemia was assessed in a model of partial hepatic ischemia in rats. The increase in circulating glutathione disulfide (GSSG) was used as an index of oxidant stress. Hepatic function was assessed using a breath test to quantitative the demethylation of aminopyrine in vivo. In control animals the plasma concentration of GSSG 1 h after onset of reperfusion increased from 0.9 mumol/l in sham-operated controls to 4.2, 5.5, and 8.0 mumol/l following 45, 90 and 120 min of ischemia, respectively. The percent of the administered dose of (dimethylamine-14C)-aminopyrine appearing in breath as 14CO2 was not significantly different from sham-operated controls (40.2%) 24 h after 45 min of ischemia (34.1%), but decreased progressively to 26.0% (p less than 0.05) and 20.6% (p less than 0.05) after 90 and 120 min of ischemia, respectively. Allopurinol, administered at a dose of 50 mg/kg 18 h and 1 h prior to ischemia, did not prevent the rise in plasma GSSG, did not alleviate the release of transaminases, and did not improve the demethylation of aminopyrine 24 h after ischemia, suggesting that reactive oxygen species generated by xanthine oxidase during reperfusion of ischemic liver do not contribute significantly to ischemic injury.

Allopurinol↗

Exercise-training-induced alterations in hepatic function in mares.

The effects of exercise training on hepatic function in horses were determined by studying the plasma clearance of antipyrine (20 mg/kg iv) in adult mares that either underwent treadmill training for 5 wk (n = 7) or remained in box stalls for the same time period (n = 6). Training consisted of treadmill exercise at 60% (12 min/day) and 90% (3 min/day) of pretraining maximal oxygen consumption (V(O2)max) for 6 days/wk for 5 wk. V(O2)max and velocity to obtain a blood lactate concentration of 4 mmol/l were significantly increased (from 129 to 149 ml x min-1 x kg-1 and from 5.6 to 6.1 m/s, respectively) as a result of training. The plasma clearance and volume of distribution of antipyrine increased significantly in the trained group (from 5.5 to 6.4 ml x min-1 x kg-1 and from 813 to 881 ml/kg, respectively) and decreased significantly in the untrained group. Elimination half-lives did not change as a result of training or box rest. Increases in plasma antipyrine clearance were indicative of an increase in hepatic metabolism of antipyrine. Increases in the volume of distribution of antipyrine suggest that total body water increases as a result of exercise training.

Animals↗

The effect of D,L-carnitine supplementation on muscle metabolism, neuropathy, cardiac and hepatic function in hemodialysis patients. A pilot study.

Three patients on regular hemodialysis treatment were perorally supplemented with D.L-carnitine, 900 mg/d, during four weeks. Before treatment, muscle carnitine concentrations were low and the patients showed signs of hypometabolism in skeletal muscle, cardiomyopathy, impaired hepatic function and a moderate hyperlipoproteinemia. After treatment, the skeletal muscle metabolism normalized. The results further indicate improvement of the cardiac and hepatic function and of the neuropathy on the sensory side. No improvement was found, however, in plasma lipoprotein pattern or in variables reflecting plasma lipid transport (lipoprotein lipase activity and intravenous fat tolerance).

Adult↗

Hepatic functional reserve in patients with biliary malignancies: an assessment by technetium 99m galactosyl human serum albumin hepatic scintigraphy.

PROBLEM: Technetium 99m galactosyl human serum albumin (99mTc-GSA) is a hepatic scintigraphy agent that binds to the asialoglycoprotein receptors. We evaluated the clinical use of the scintigraphy for the pre-operative assessment of biliary malignancies. PATIENTS AND METHODS: Scintigraphy was performed before operation in 56 patients with biliary malignancies. A hepatic uptake ratio of 99mTc-GSA (LHL15; the count ratio of the liver to the sum of the heart and liver 15 min after injection of 99mTc-GSA) was calculated. RESULTS: LHL15 was significantly associated with bilirubin half-life in patients treated before operation with percutaneous transhepatic biliary drainage (P = 0.007). After operation, 4 of 18 patients with LHL15 < 0.925 died within 30 days. The postoperative mortality was significantly greater in patients with LHL15 < 0.925 than in patients with LHL15 > or = 0.925 (P = 0.033). CONCLUSION: 99mTc-GSA scintigraphy is useful in evaluating the hepatic functional reserve in patients with biliary malignancies.

Adult↗

Calculation of maximal removal rate of indocyanine green to measure hepatic functional mass in dogs by use of the nine-hour method.

OBJECTIVE: To establish a versatile and reliable procedure for the determination of indocyanine green maximal removal rate (ICG Rmax) to measure hepatic functional mass in dogs within 9 hours (9-hour method). DESIGN: Relation between 9-hour and standard 3-day methods was examined. ANIMALS: 101 healthy dogs. PROCEDURE: On investigation of the optimal technical conditions allowing completion of all procedures in a day, the appropriate IV administered doses of ICG were 0.125, 0.5, and 2.0 mg/kg of body weight, and the best blood sample collection times for obtaining plasma half-life at these 3 doses were before and 3, 6, and 9 minutes after ICG administration. RESULTS: Comparison of the 9-hour with 3-day method yielded a correlation coefficient (r) of 0.84, indicating close (P < 0.01) correlation. In the 9-hour method, mean +/- SD of ICG Rmax in healthy dogs was 0.24 +/- 0.09 mg/kg/min in male (n = 62) and was 0.23 +/- 0.06 mg/kg/min in female (n = 21) Beagles, and was 0.21 +/- 0.10 mg/kg/min in male (n = 11) and 0.20 +/- 0.07 mg/kg/min in female (n = 7) mixed-breed dogs. In Beagles treated orally with carbon tetrachloride (0.1 ml/kg in gelatine capsules) thrice weekly during a 10-week period, plasma alanine transaminase activity plateaued at a high value (> 2,000 IU/L) on day 5, and remained at this value until the end of the study. The ICG Rmax changed accordingly: day 5, 0.17; day 10, 0.11; day 40, 0.05; and day 60, 0.06 mg/kg/min. CONCLUSION: The 9-hour method for determination of ICG Rmax correlates favorably with the 3-day method. CLINICAL RELEVANCE: This procedure may be practically applied in veterinary clinics in terms of prediction of hepatic functional mass, and for diagnosis of hepatotoxicosis induced by certain compounds.

Alanine Transaminase↗

Correction of vitamin E deficiency in children with chronic cholestasis. II. Effect on gastrointestinal and hepatic function.

Although secondary vitamin E deficiency causes a reversible neurologic disorder in children with chronic cholestasis, the effect of this deficiency state on other organ systems is unknown. We studied the effects of vitamin E therapy on selected gastrointestinal and hepatic functions in five children with chronic cholestasis and well-documented biochemical and neurologic evidence of vitamin E deficiency. After 2 to 3 years of oral or parenteral vitamin E therapy, there was no improvement in fecal fat losses, severity of vitamin E malabsorption (as measured by an oral vitamin E tolerance test) or total serum fatty acid concentrations. Serial analyses of liver function blood tests demonstrated a marked decline in fasting serum cholylglycine concentrations during 18 to 31 months of vitamin E therapy, while other liver function tests showed no consistent changes. We conclude that vitamin E deficiency does not appear to alter intestinal absorption of fat or vitamin E; however, vitamin E deficiency may further impair already compromised hepatic function during pathologic conditions such as cholestasis.

Child↗

Ionization and hemodynamic effects of calcium chloride and calcium gluconate in the absence of hepatic function.

Serial serum ionized calcium concentrations were measured before and after administration of either calcium chloride or calcium gluconate during the anhepatic stage of liver transplantation in 15 patients to determine the release of ionized calcium in the absence of hepatic function. When hypocalcemia (Ca++ less than 0.8 mM) occurred during the anhepatic stage, patients were randomly assigned to treatment with chemically equivalent doses of either calcium chloride (10 mg/kg, n = 8) or calcium gluconate (30 mg/kg, n = 7). Serum concentrations of ionized calcium and citrate, hematocrit, arterial blood gas tensions, acid-base state, and hemodynamic profiles were determined before and up to 10 min after calcium therapy. In both groups of patients initial similar and rapid increases in Ca++ (0.98 +/- 0.14 mM in the calcium chloride group and 1.05 +/- 0.10 mM in the calcium gluconate group) were followed by gradual decreases over the next 10 min. Measured hemodynamic values were similar in the two groups, and neither group showed improvement in cardiovascular function after calcium therapy, possibly because of the decrease in preload that occurred during the anhepatic stage. Equally rapid increases in Ca++ after administration of calcium chloride and gluconate in the anhepatic state suggest that calcium gluconate does not require hepatic metabolism for the release of Ca++ and is as effective as calcium chloride in treating ionic hypocalcemia in the absence of hepatic function.

Adult↗

HNF4 and HNF1 as well as a panel of hepatic functions are extinguished and reexpressed in parallel in chromosomally reduced rat hepatoma-human fibroblast hybrids.

Rat hepatoma-human fibroblast hybrids of two independent lineages containing only 8-11 human chromosomes show pleiotropic extinction of thirteen out of fifteen hepatic functions examined. Reexpression of the entire group of functions most often occurs in a block, and except for one discordant subclone, correlates with loss of human chromosome 2. The extinguished cells and their reexpressing derivatives have been examined for the expression of seven liver-enriched transcription factors. C/EBP, LAP, DBP, HNF3, and vHNF1 expression are not systematically extinguished in parallel with the hepatic functions. However, HNF1 and HNF4 show a perfect correlation with phenotype: these factors are expressed only in the cells showing pleiotropic reexpression. Since recent evidence indicates that HNF4 controls HNF1 expression, it can be proposed that the HNF4 gene is the primary target of the pleiotropic extinguisher.

Albumins↗