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Biomedical subjects

W Gerok

Publications and source records attributed to W Gerok.

At least 91 records · Page 5Linked to original sources

Modification of liver cell volume by insulin and glucagon.

Cell volume plays a decisive role in the regulation of hepatic metabolism. The present study has been performed to test for an effect of insulin and glucagon on liver cell volume. To this end, the effect of these hormones has been studied in isolated perfused rat livers and isolated rat hepatocytes. Insulin leads to rapid stimulation of cellular K+ uptake and increase of cell volume, effects reversed by glucagon or cAMP. The insulin stimulated cellular K+ uptake is significantly decreased in the presence of either loop diuretics (furosemide or bumetanide) or amiloride and is completely inhibited in the presence of both, bumetanide and amiloride. The glucagon stimulated cellular K+ release in the presence of insulin is blunted by K+ channel blocker quinidine. The effects of insulin and glucagon on liver cell volume could participate in the regulation of hepatic metabolism by these hormones.

Animals↗

[Hepatology. New research results in its significance for the understanding of liver diseases].

By two exemplary clinical situations--acute viral hepatitis, acute-phase reaction of the liver--the significance of basic research for the understanding of clinical phenomena and for the development of new diagnostic and therapeutic procedures is demonstrated. The very different phenomena following infection with the hepatitis-B-virus can be explained by the variation in the interactions of virus and liver cell, by the immune reaction of the host, and by mutants of the virus. The reaction of the liver to an extrahepatic infection is mediated by interleukin-6, and characterized by an alteration in protein metabolism. The synthesis of acute-phase proteins is increased. The proteins confine the local injury and establish the homeostasis of the organism.

Acute-Phase Proteins↗

Scintigraphic assessment of leukocyte infiltration in acute pancreatitis using technetium-99m-hexamethyl propylene amine oxine as leukocyte label.

The infiltration of leukocytes has been linked to the pathophysiology of complicated or severe pancreatitis. We have tested the ability of leukocyte scintigraphy using technetium-99m-hexamethyl propylene amine oxine (HM-PAO) as label to demonstrate the localization of leukocytes in the pancreas during acute pancreatitis. Twenty-eight patients with acute pancreatitis (eight with biliary, 13 with alcoholic, and seven with unknown origin) were studied with leukocyte scintigraphy using planar imaging and single photon emission computed tomography (SPECT). Fourteen patients had a mild (group I), II a severe (group II), and three a lethal outcome (group III) of pancreatitis. All patients of group III, six of group II, and two of group I had a positive leukocyte scan. Thus, the sensitivity of leukocyte scintigraphy for the detection of a lethal course of acute pancreatitis was 100%, of a severe course 54%, and of a severe or lethal course 64%. The specificity of a negative scan for a mild pancreatitis was 86%. Comparison of the results of leukocyte scintigraphy with those of contrast enhanced CT showed that six of eight patients with pancreatic necrosis in CT had a positive leukocyte scan, but only five of 20 patients without detectable pancreatic necrosis in CT. In summary, leukocyte infiltration into the pancreas during pancreatitis can be demonstrated by noninvasive leukocyte scintigraphy using technetium-99m-HM-PAO as label. A correlation between the severity of the disease and leukocyte infiltration exists.

Acute Disease↗

Expression of gamma delta T lymphocytes derived from human intestinal biopsies.

Although most T cells express the alpha/beta TCR, the gamma/delta TCR is expressed only on a small percentage of peripheral lymphocytes and CD3+ intestinal T cells. The most striking feature is a wide variation in the proportion of gamma/delta+ T cells in freshly isolated peripheral blood cells from normal individuals and patients with IBD. The augmentation of the gamma/delta+ T cell subpopulation derived from human intestinal biopsies after repeated stimulation with MT, even in the absence of filler cells, suggests that gamma/delta+ cells from human gut mucosa may play a role in generating a primary immune response to MT.

Cell Separation↗

Loss of zonal heterogeneity and cell polarity in rat liver with respect to bile acid secretion after bile drainage.

Functional liver heterogeneity depends on the current perihepatic environment. The effect of chronic bile drainage on hepatic secretion of bile acids in periportal and pericentral rat liver cells was studied. After 4 days of biliary drainage, rat livers were perfused in vitro in either forward (through the portal vein) or backward direction (through the vena cava) in single-pass arrangement with taurodeoxycholate (32 nmol.min-1.g liver-1). Tritium-labeled taurodeoxycholate (0.5 muCi) was injected as a pulse to determine uptake, biotransformation, and hepatic secretion. During bile drainage, bile flow fell from 1.8 microL.min-1.g liver-1 to approximately 0.6 microL.min-1.g liver-1. Bile acid secretion rate dropped from initially 50 nmol.min-1.g liver-1 to approximately 5 nmol.min-1.g liver-1 within 24 hours and remained at this level for the next 3 days. After bile drainage, liver histology was well preserved and was indistinguishable from controls. During liver perfusion of controls in both directions, bile flow exceeded 1 microL.min-1.g liver-1, whereas bile-drained animals demonstrated a bile flow between 0.4 and 0.6 microL.min-1.g liver-1. In contrast to controls, the drained-animal liver did not excrete label exclusively in bile but simultaneously excreted about one third back to the perfusate medium (regurgitation). Biliary bile acid recovery within the first 10 minutes after 3H-taurodeoxycholate bolus injection was 90% (of label taken up) in forward-perfused controls but only 40% in forward-perfused drained animals. Backward-perfused control and drained animals. Backward-perfused control and drained animals excreted about 20% in this time interval and did not differ significantly. T50, the time to excrete 50% of label taken up in bile or both bile and effluent, increased from 4.3 +/- 0.36 minutes (SD) in forward-perfused controls to 13.2 +/- 2.28 minutes in forward-perfused, drained animals. T50 of backward-perfused controls and backward-perfused drained animals did not differ significantly (17.8 +/- 1.75 minutes vs. 21.0 +/- 3.95 minutes). In conclusion, chronic bile drainage reduces liver heterogeneity with respect to velocity of bile acid excretion and cell polarity is lost with respect to hepatocellular translocation of bile acids.

Anastomosis, Surgical↗

Inhibition of duck hepatitis B virus infection by lysosomotropic agents.

The early phases of hepadnaviral infection were studied in primary duck hepatocyte cultures. Incubation of duck hepatocytes in vitro with duck hepatitis B virus (DHBV) resulted in infection with high levels of viral replication. The lysosomotropic agents ammonium chloride and chloroquine effectively inhibited viral infection, indicating that DHBV infection, similar to infection with other enveloped viruses, depends on receptor-mediated endocytosis and involves membrane fusion triggered by low pH.

Ammonium Chloride↗

Altered biosynthesis of gangliosides in developing biliary cirrhosis in the rat.

The biosynthesis of gangliosides was studied in developing biliary cirrhosis in rats 14, 28, and 42 days after bile duct obstruction. The total content and patterns of gangliosides in livers and sera, and the activity of six hepatic ganglioside synthases in a cell-free system were determined. Up to 7-fold increased synthase activities were strictly correlated in time and extent with increased total contents of gangliosides in liver and serum. In addition, altered patterns of serum gangliosides were observed. The results clearly demonstrate that the liver is the main source of elevated serum gangliosides in biliary cirrhosis in the rat. Increased hepatic biosynthesis and the secretion of gangliosides into the serum appear to be an important pathogenetic event. Alterations of hepatic enzyme activities indicate that GL2 and GM3 synthase regulate total hepatic ganglioside content. However, certain abnormalities in ganglioside patterns which were observed in the liver and sera of cirrhotic animals can not be explained by changes in hepatic enzyme activity. They indicate additional pathobiochemical mechanisms to be involved, e.g., altered hepatocellular processing and/or impaired secretion into bile.

Animals↗

The acinar location of the sodium-independent and the sodium-dependent component of taurocholate uptake. A histoautoradiographic study of rat liver.

The acinar location of tritium-labelled taurocholate taken up from sodium-containing and sodium-free perfusion media in isolated perfused rat liver was made visible by means of histoautoradiography on cryoslices at low, medium and high bile salt concentrations. In antegrade perfusion studies, in the presence of sodium, with taurocholate concentrations of 1 and 20 microM, respectively, the silver grain label was mainly restricted to acinar zones 1. At an 80 microM concentration, zones 2 and 3 were also labelled but with decreasing intensities towards the terminal hepatic venules. At 120 microM taurocholate, all acinar zones were nearly equally labelled. In the absence of sodium, antegrade liver perfusions with 1, 20 and 120 microM taurocholate resulted in an almost homogenous labelling of all acinar zones and retrograde perfusions in a silver grain density slightly decreasing towards the terminal portal venules. The results indicate that hepatocytes of all acinar zones are capable of taking up taurocholate by both a sodium-dependent and a sodium-independent pathway. The contribution of the sodium-independent uptake to the overall uptake of taurocholate increases with increasing zonal recruitment at higher concentrations. The sodium-dependent uptake, however, is always dominant.

Animals↗

Duck hepatitis B virus infection of non-hepatocytes.

One hundred and seventeen ducklings, 42 inoculated with duck hepatitis B virus (DHBV) 2 days after hatching and 55 connatally infected, were studied over a 6-month period in parallel with 20 ducklings without DHBV infection. Using immunohistochemical, in situ and blot hybridization analyses, the natural course of hepatic and extrahepatic infection was examined. DHBV infection started in the liver 2-4 days post-inoculation. There, DHBV was found not only in hepatocytes, but also in bile duct epithelial cells. Further, DHBV infection occurred in exocrine and endocrine pancreas (beginning 6-10 days and 20 days post-inoculation, respectively) and in germinal centers of the spleen (beginning 8 weeks post-inoculation). Occasionally viral DNA was also found in kidney glomeruli. Using strand-specific RNA probes, viral DNA in pancreas and spleen was clearly demonstrated to be replicating intermediates. Hepatic and extrahepatic infection with DHBV was not associated with histologic inflammation or pathologic changes in these tissues or the liver. These data indicate that DHBV can infect cells other than hepatocytes. The biological significance of non-hepatocyte infection for the life-cycle of the virus and its potential significance for viral persistence remain to be determined.

Animals↗

Sulfated polyanions do not inhibit duck hepatitis B virus infection.

On the basis of the antiviral action of sulfated polyanions in human immunodeficiency virus and other viral infections, we studied the effect of dextran sulfate and heparin on duck hepatitis B virus infection. These agents do not affect viral uptake and replication in liver cells in vitro or in vivo. Sulfated polyanions, therefore, appear to have no potential for the treatment of hepadnavirus infections.

Animals↗

A non-invasive technique for cell volume determination in perfused rat liver.

1) In isolated perfused rat liver, the intracellular ([14C]urea-accessible minus [3H]inulin accessible) water space was determined from the washout profiles of simultaneously infused [3H]inulin and [14C]urea. The washout profile of infused [14C]urea was indistinguishable from that of infused tritiated water. During normotonic perfusions and without hormones or amino acids in influent, the intracellular water space was 548 +/- 10 microliters/g liver wet weight (n = 44). Use of [3H]raffinose instead of [3H]inulin as marker for the extracellular space yielded almost identical values for the intracellular water space (i.e. 98.9 +/- 0.2% of that found with [3H]inulin/[14C]urea). When volume-regulatory K+ fluxes were completed following hypo- and hypertonic exposure of perfused rat livers and a steady state was reached, the intracellular water space was found to be increased and decreased, respectively. The extent of anisotonic exposure was linearly related to the change of intracellular water space. 2) Anisotonicity-, glutamine- and glycine-induced liver mass changes were almost fully explained by the simultaneously occurring alterations of the intracellular water space, indicating that cell volume changes in perfused rat liver under these conditions are not accompanied by significant changes of the extracellular space. Volume-regulatory K+ (plus accompanying anion) efflux following hypotonic perfusion accounted for about 70-85% of regulatory cell volume decrease, which occurred during the first 10 min of hypotonic exposure. 3) Cell volume of isolated hepatocytes was determined as the "hepatocrit" after gentle centrifugation of the cell suspension.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Human fetal hepatocytes respond to inflammatory mediators and excrete bile.

Under strict observation of the ethical guidelines of the 1975 Declaration of Helsinki Human Research Committee, primary hepatocyte cultures were prepared from second-trimester fetal liver specimens. We have shown for the first time that fetal hepatocytes have the capacity to produce an acute-phase response on treatment with inflammatory mediators. Addition of interleukin-6 to the cultures resulted in strong induction of C-reactive protein and alpha-1-antichymotrypsin expression, whereas albumin expression was repressed. In contrast to interleukin-6, transforming growth factor-beta did not induce C-reactive protein expression. However, as in adult hepatocytes, fetal cells responded to transforming growth factor-beta by reduced albumin synthesis. We were able to show by virtue of fluorescein excretion into sealed clefts that fetal hepatocytes have the functional capacity to form bile. Our findings indicate that second-trimester hepatocytes can be regarded as fairly mature liver cells.

Acetylcholine↗

Fluorescent derivatives of bile salts. I. Synthesis and properties of NBD-amino derivatives of bile salts.

In order to visualize bile salt transport, fluorescent bile salt derivatives were synthesized by introduction of the relatively small fluorescent 4-nitrobenzo-2-oxa-1,3-diazol (NBD)-amino group in either the 3-, 7-, or 12-position of the steroid structure, thus providing a complete set of diastereomeric derivatives, 3 alpha-NBD-amino-7 alpha,12 alpha-dihydroxy-5 beta-cholan-24-oic acid, 3 beta-NBD-amino-7 alpha,12 alpha-dihydroxy-5 beta-cholan-24-oic acid, 7 alpha-NBD-amino-3 alpha,12 alpha-dihydroxy-5 beta-cholan-24-oic acid, 7 beta-NBD-amino-3 alpha,12 alpha-dihydroxy-5 beta-cholan-24-oic acid, 12 alpha-NBD-amino-3 alpha,7 alpha-dihydroxy-5 beta-cholan-24-oic acid, 12 beta-NBD-amino-3 alpha,7 alpha-dihydroxy-5 beta-cholan-24-oic acid, as well as their taurine conjugates. Their optical properties with absorption maxima at about 490 nm and emission maxima at 550 nm make them suitable for fluorescent microscopic studies. Fluorescence of the NBD-derivatives is strongly dependent on polarity of the solvent, on the concentration of the bile salt derivatives, and only slightly on temperature.

Bile Acids and Salts↗

Fluorescent derivatives of bile salts. II. Suitability of NBD-amino derivatives of bile salts for the study of biological transport.

Interaction of unconjugated and taurine-conjugated NBD-amino-dihydroxy-5 beta-cholan-24-oic acids bearing the fluorophor in the 3 alpha, 3 beta, 7 alpha, 7 beta, 12 alpha, or 12 beta position with albumin results in a small hypsochromic shift of the emission maximum and an increase in quantum yield, suggesting binding by hydrophobic interactions. The different unconjugated fluorescent bile salt derivatives are metabolized by intact rat liver in different ways. The unconjugated 3 beta-NBD-amino derivative is completely transformed to its taurine conjugate and secreted as such, whereas the 3 alpha-NBD-amino derivative is completely transformed to a polar fluorescent compound not identical with its taurine conjugate. The unconjugated 7 alpha- and 7 beta-NBD-amino derivatives are only partially conjugated with taurine and mainly secreted in unmetabolized form. The unconjugated 12 alpha- and 12 beta-NBD-amino derivatives are not at all transformed to their taurine conjugates, but are partially metabolized to unidentified compounds. They are predominantly secreted as the unmetabolized compounds. In contrast to the unconjugated derivatives, all taurine-conjugated fluorescent bile salt derivatives are secreted into bile unmetabolized. With the exception of the 3 alpha-compound, all synthesized taurine-conjugated fluorescent derivatives interfere with the secretion of cholyltaurine. Differential photoaffinity labeling studies using (7,7-azo-3 alpha,12 alpha- dihydroxy-5 beta-cholan-24-oyl)-2'-[2'-3H(N)]aminoethanesulfonate as a photolabile derivative revealed that in liver cells all fluorescent bile salt derivatives interact with the same polypeptides as the physiological bile salts. The hepatobiliary transport of taurine-conjugated NBD-amino bile salt derivatives is, due to hydrophobic interactions, accompanied by an increase in fluorescence intensity which is favorable for the study of biological bile salt transport by fluorescence microscopy.

Albumins↗

Effects of cytokines on the liver.

Cytokines are essential for the communication not only between the liver and extrahepatic sites but also within the liver itself. Cytokines regulate the intermediary metabolism of amino acids, proteins, carbohydrates, lipids and minerals. Cytokines partially interact with classical hormones such as glucocorticoids, resulting in a complex network of mutual control. Since many cytokines exert growth factor-like activities in addition to their specific proinflammatory effects, the distinction between cytokines and growth factors is somewhat artificial. The liver is an important site of synthesis and the major clearance organ for several cytokines. In liver disease, cytokines are involved in the onset of intrahepatic immune responses (e.g., during viral hepatitis), in liver regeneration (e.g., after partial hepatectomy) and in the fibrotic and cirrhotic transformation of the liver such as chronic chemical injury or viral infection. Further studies of cytokine actions may lead to a better understanding of liver diseases and to the development of new immunomodulating therapeutic options.

Animals↗

Portacaval shunt as an experimental model of impaired hepatic release of vitamin A in liver disease.

Vitamin A concentrations in serum and liver were studied in rats with a portacaval shunt for 48 days after shunt surgery. In addition, serum and tissue concentrations of zinc were analyzed. Following portacaval shunting serum vitamin A concentration decreased to 25% of the level in sham-operated controls, whereas serum zinc concentration decreased to 80%. The mean urinary excretion rate of zinc increased in shunted rats [18.7 +/- 2.1 micrograms/day (0.28 +/- 0.03 mumol/day)] compared with controls [13.8 +/- 1.7 micrograms/day (0.21 +/- 0.03 mumol/day)] (P less than 0.01). The concentration of retinol and total retinoids in liver tissue increased 2-3-fold in rats with a portacaval shunt, and the ratio of retinol to retinoids was slightly increased. The differences were reduced when the total organ content was calculated, because of the reduced liver weight in the shunted rats. The concentration of zinc in liver tissue decreased in rats with portacaval shunts [30.8 +/- 4.9 micrograms/g wet wt (0.47 +/- 0.07 mumol/g) vs. 35.6 +/- 3.7 micrograms/g wet wt (0.54 +/- 0.06 mumol/g) in controls; P less than 0.01]. The concentration of zinc was inversely correlated with retinol (r = -0.52, P less than 0.05) and total retinoid levels (r = -0.70, P less than 0.05) in rats with portacaval shunts but not in controls. The data are consistent with the hypothesis of an impaired release of vitamin A from the liver in rats with portacaval shunts, an impairment that could be due to liver zinc deficiency.

Animals↗