Search PubMed⌕ Search

Biomedical subjects

W Gerok

Publications and source records attributed to W Gerok.

At least 55 records · Page 3Linked to original sources

Hydroperoxide metabolism in rat liver. K+ channel activation, cell volume changes and eicosanoid formation.

Addition of t-butylhydroperoxide (0.2 mM) to isolated perfused rat liver led to a net K+ release of 7.2 +/- 0.2 mumol/g within 8 min and a net K+ reuptake of 6.6 +/- 0.4 mumol/g following withdrawal of the hydroperoxide, in line with earlier findings by Sies et al. [Sies, H., Gerstenecker, C., Summer, K. H., Menzel, H. & Flohé, R. (1974) in Glutathione (Flohé, L., Benöhr, C., Sies, H., Waller, H. D., eds) pp. 261-276, G. Thieme Publ. Stuttgart]. Net K+ release roughly paralleled the amount of GSSG released from the liver under the influence of the hydroperoxide. The t-butylhydroperoxide-induced K+ efflux was inhibited by approximately 70% in the presence of Ba2+ (1 mM), by 30% in Ca(2+)-free perfusions and was decreased by 50-60% when the intracellular Ca2+ stores were simultaneously depleted by repeated additions of phenylephrine. t-Butylhydroperoxide-induced K+ efflux was accompanied by a decrease of the intracellular water space by 58 +/- 14 microliter/g (n = 4), corresponding to a 10% cell shrinkage. The effect of t-butylhydroperoxide on cell volume was inhibited by 70-80% in the presence of Ba2+. In isolated rat hepatocytes treatment with t-butylhydroperoxide led to a slight hyperpolarization of the membrane at concentrations of 100 nM, but marked hyperpolarization occurred at t-butylhydroperoxide concentrations above 10 microM. t-Butylhydroperoxide (0.2 mM) transiently increased the portal-perfusion pressure by 3.3 +/- 0.6 cm H2O (n = 18), due to a slight stimulation of prostaglandin-D2 release under the influence of the hydroperoxide. In the presence of Ba2+ (1 mM), t-butylhydroperoxide increased the perfusion pressure by 12.7 +/- 1.2 cm H2O (n = 9) and produced an approximately tenfold increase of prostaglandin-D2 and thromboxane-B2 release. Under these conditions, glucose output from the liver rose from 0.9 +/- 0.03 to 2.9 +/- 0.7 mumol.g-1.min-1 (n = 4) with a time course roughly resembling that of portal-pressure increase and prostaglandin-D2 overflow. These effects were largely abolished in the presence of ibuprofen or the thromboxane-receptor-antagonist BM 13.177. The t-butylhydroperoxide effects on perfusion pressure, glucose and eicosanoid output were also enhanced in the presence of insulin or during hypotonic exposure; i.e. conditions known to swell hepatocytes, but not during hyperosmotic exposure. The data suggest that t-butylhydroperoxide induces liver-cell shrinkage and hyperpolarization of the plasma membrane due to activation of Ba(2+)-sensitive K+ channels.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

In vivo inhibition of duck hepatitis B virus replication and gene expression by phosphorothioate modified antisense oligodeoxynucleotides.

Antisense oligodeoxynucleotide strategies have been employed in a variety of eukaryotic systems both to understand normal gene function and to block gene expression. Pharmacologically, 'code blockers' are ideal agents for antitumour and antimicrobial treatments because of their specific mode of action. Here we report the inhibition of duck hepatitis B virus (DHBV) by antisense oligodeoxynucleotides in primary duck hepatocyte cultures in vitro as well as in DHBV-infected Pekin ducks in vivo. The most effective antisense oligodeoxynucleotide was directed against the 5' region of the pre-S gene and resulted in a complete inhibition of viral replication and gene expression in vitro and in vivo. These results demonstrate the application of antisense oligodeoxynucleotides in vivo and exemplify their potential as human antiviral therapeutics.

Animals↗

Frequency of hepatitis C in acute post-transfusion hepatitis after open-heart surgery: a prospective study in 1,476 patients.

Post-transfusion hepatitis was studied prospectively in 1,476 patients undergoing open-heart surgery between 1985 and 1988. Thirty-three (2.2%) patients suffered from post-transfusion hepatitis. Acute post-transfusion hepatitis was attributed to hepatitis B in one case and to hepatitis C in ten patients (0.7%). Four additional patients had preexisting serologic markers of hepatitis C. In 22 (1.5%) patients, hepatitis B or C was excluded as a cause of liver disease. Seroconversion for hepatitis C virus occurred from 3 weeks to more than 6 months after infection. Chronic hepatitis C developed in four patients. In addition, seroconversion to anti-HCV was observed in four patients with moderately elevated aminotransferases. In the control patients anti-HCV antibodies were found in 0.5%. The characteristics of acute hepatitis C after blood transfusion are shown and compared to 22 patients with acute hepatitis non-A, non-B, non-C. The etiology of these 22 cases is discussed.

Aged↗

New clues to the pathophysiology of hepatorenal failure.

In patients with advanced liver disease, decreases in renal blood flow, glomerular filtration rate, and urinary output are frequently observed. The deterioration in renal function is usually not due to a unique cause but is the result of the concerted action of several mechanisms operating in parallel; decreased plasma protein formation and increased intrahepatic vascular resistance lead to sequestration of blood volume, favoring hypovolemia and reduction in cardiac output. At the same time enhanced formation of nitroxide leads to peripheral vasodilation; bacterial endotoxin escaping clearance by the diseased liver stimulates the expression of a long-acting nitroxide synthase. Furthermore, vasodilating intestinal mediators such as substance P escape inactivation by the liver. In the face of peripheral vasodilation the maintenance of blood pressure requires an increase in cardiac output, which is achieved by activation of sympathetic nervous tone, renal vasoconstriction, enhanced release of renin, angiotensin, aldosterone, and antidiuretic hormone, leading to renal retention of sodium and water. Renal vasoconstriction is opposed by vasodilatatory prostaglandins, and renal failure may be triggered by inhibition of prostaglandin formation. On the other hand, vasoconstrictive eicosanoids, such as thromboxane B2 and leukotriene E2, which escape hepatic inactivation, may contribute to renal vasoconstriction. Beyond these mechanisms disturbed hepatic regulation of renal function may participate in the generation of hepatorenal syndrome. The liver regulates renal function via both a hepatorenal reflex decreasing renal blood flow and a hypothetical liver-borne diuretic factor increasing renal blood flow. Both enhanced hepatorenal reflex activity and decreased formation of the liver-borne diuretic factor could participate in the pathogenesis of hepatorenal syndrome.

Biological Factors↗

PMN-elastase in assessment of patients with inflammatory bowel disease.

PMN-elastase is a proteinase released by activated neutrophils. PMN-elastase was determined in two independent populations with inflammatory bowel disease. In an unselected population of 70 consecutive patients with Crohn's disease and 24 patients with ulcerative colitis with different degrees of disease activity plasma PMN-elastase levels were statistically significantly higher in patients with active than in patients with inactive disease [Crohn's disease: 80.5 +/- 33.2 ng/ml vs 60.1 +/- 24.6 ng/ml (mean +/- SD), P = 0.0017; ulcerative colitis: 98.2 +/- 54.9 ng/ml vs 59.2 +/- 16.8 ng/ml, P = 0.026]. PMN-elastase levels in feces were also higher in patients with active Crohn's disease (23.6 +/- 15.3 ng/g vs 13.6 +/- 12.5 ng/g, P = 0.0021) and active ulcerative colitis (46.5 +/- 60.5 ng/g vs 20.2 +/- 25.0 ng/g, P = 0.46), but the difference reached significance only in Crohn's disease. Correlation of disease activity and PMN-elastase in individual patients showed a statistically significant correlation between plasma and fecal elastase concentrations and disease activity in ulcerative colitis (plasma: r = 0.72, P < 0.001; feces: r = 0.57, P = 0.002). In patients with Crohn's disease only plasma levels of PMN-elastase (r = 0.423, P < 0.001) but not fecal elastase concentrations (r = 0.0083, P = 0.485) correlated significantly with disease activity. Plasma PMN-elastase correlated weakly with fecal PMN-elastase levels in Crohn's disease (r = 0.431, P < 0.01) and in ulcerative colitis (r = 0.515, P = 0.05).(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

Sequence analysis of hepatitis B virus DNA in immunologically negative infection.

It was previously demonstrated that the serum of some patients without immunological evidence of HBV infection contains the virus. Here we demonstrated by sequence analysis that the serum of such a patient contained a mixed HBV population. In comparison with HBV genomes of different genotypes twenty-two nucleotide variations were found in all clones sequenced in parallel. One nucleotide variation was identified within the enhancer I. Twelve of the twenty-two nucleotide variations caused altogether fifteen changes of amino acid sequence in known or predicted viral proteins. The proteins of the P open reading frame, which are most important for viral replication, were affected by nine amino acid substitutions. Three amino acid substitutions concerned the product of the X gene, a transcriptional transactivator of various viral and cellular promoters. Three mutations were only observed in some of the clones. One point mutation affected the direct repeats of the enhancer II. It occurred together with an 8 bp-deletion involving the C promoter region and the X gene. The third mutation was a single insertion, causing a fusion of the X and C gene. One or several of the identified mutations could be responsible for the diminished rate of replication and consequently for the low-titred, immunologically negative HBV infection.

Base Sequence↗

T-cell receptor variable genes and genetic susceptibility to celiac disease: an association and linkage study.

BACKGROUND: Genetic susceptibility of celiac disease is primarily associated with a particular combination of and HLA-DQA1/DQB1 gene; however, this does not fully account for the genetic predisposition. Therefore, the aim of this study was to examine whether T-cell receptor (TCR) genes may be susceptibility genes in celiac disease. METHODS: HLA class II typing was performed by polymerase chain reaction amplification in combination with sequence-specific oligonucleotide hybridization. TCR alpha (TCRA), TCR gamma (TCRG), and TCR beta (TCRB) loci were investigated by restriction fragment length polymorphism analysis. RESULTS: Allelic frequencies of TCRA, TCRG, and TCRB variable genes were compared between patients with celiac disease (n = 53) and control patients (n = 67), and relative risk (RR) estimates were calculated. The RR was 1.67 for allele C1 at TCRA1, 3.35 for allele D2 at TCRA2, 1.66 for allele B2 at TCRG, and 1.35 for allele B at TCRB, showing no significant association. Additionally, linkage analysis was performed in 23 families. The logarithm of odd scores for celiac disease vs. the TCR variable genes at TCRA, TCRG, and TCRB showed no significant linkage. CONCLUSIONS: These data suggest that the analyzed TCR variable gene segments V alpha 1.2, V gamma 11, and V beta 8 do not play a major role in susceptibility to celiac disease.

Adolescent↗

Positive responses to methotrexate and ursodeoxycholic acid in patients with primary biliary cirrhosis responding insufficiently to ursodeoxycholic acid alone.

Methotrexate (2.5 mg/day) was used in addition to ursodeoxycholic acid (10-15 mg/kg per day) in 8 female patients with primary biliary cirrhosis. All patients had undergone ursodeoxycholic acid treatment for more than 6 months preceding this study and their serum alkaline phosphatase remained constant at more than 300 U/l for more than 2 months. One patient showed histologic stage I, three stage II, two stage III and two stage IV disease. Within 6 months, fatigue and itching disappeared in all symptomatic patients. Serum alkaline phosphatase activities improved dramatically (621 +/- 299 to 378 +/- 258, mean +/- S.D.) in all but one patient and normalized in four. Serum gamma-glutamyltransferase activities (180 +/- 99 U/l vs. 150 +/- 125 U/l) and immunoglobulin M concentrations (616 +/- 424 vs. 362 +/- 195 mg/dl) also improved. Adverse effects of methotrexate therapy were only regularly observed within the first 2-6 weeks, such as fatigue and transient enhancement of transaminases and serum bile acid concentrations. We conclude that methotrexate may be a highly effective drug for the treatment of primary biliary cirrhosis in patients whose symptoms and/or laboratory liver function tests are not improved enough by ursodeoxycholic acid alone. However, its influence on histology and the natural history of the disease needs to be established.

Adult↗

Transjugular intrahepatic portosystemic stent-shunt (TIPS) in the treatment of Budd-Chiari syndrome.

Budd-Chiari syndrome is characterized by splanchnic congestion due to obstruction of the hepatic venous outflow. A variety of treatment modalities have limited applicability due to their invasive nature, complications or low effectivity. The transjugular intrahepatic portosystemic stent-shunt (TIPS) offers a new treatment by creating an intraparenchymal duct between a main branch of the portal vein and hepatic vein i.e. the intrahepatic part of the inferior vena cava. This paper describes the treatment of two patients with fulminant and subacute Budd-Chiari syndrome treated 2 days and 2 months after the onset of clinical symptoms. It demonstrates that TIPS is a feasible treatment of Budd-Chiari syndrome that restores splanchnic blood flow, reduces collateral circulation and ascites and provides sufficient time to allow for elective liver transplantation, if indicated. Further studies are required to evaluate the effect of TIPS on liver function and survival.

Adult↗

Excretion of caffeine and its primary degradation products into bile.

Caffeine, widely consumed in beverages, is known to alter several biliary parameters that can affect gallstone pathogenesis. To address the question whether methylxanthines can act on the luminal side of biliary epithelial cells, we measured caffeine and its primary demethylation products in human bile. Eight patients had an external biliary drainage due to bile duct or gallbladder disease. Two of the patients suffered from histologically confirmed liver cirrhosis. The levels of caffeine, paraxanthine, theobromine, and theophylline were monitored over 10 h in plasma and bile before and after a prior oral dose of caffeine (5 mg/kg b. wt.). Methylxanthines were enriched by an organic extraction procedure and separated by reversed-phase high-performance liquid chromatography. Time-concentration curves in bile paralleled the time-course of methylxanthine levels in blood plasma. Accordingly, values in bile and blood plasma were highly correlated for each methylxanthine measured. Within 1 h after the oral test dose, peak levels of caffeine were obtained in both fluids. Biliary concentrations were either almost equal (caffeine) or lower (dimethylxanthines) than their respective values in blood plasma. The results of our study indicate that minor amounts of caffeine and its primary degradation products are excreted via the bile allowing local interference with epithelial cell metabolism of bile ducts and gallbladder.

Adult↗

Suramin prevents duck hepatitis B virus infection in vivo.

The effect of suramin on duck hepatitis B virus (DHBV) infection was investigated in vivo. Suramin pretreatment of Pekin ducklings completely prevented DHBV infection. In contrast, suramin given at the time of or after inoculation with DHBV did not inhibit viral infection, replication, or gene expression. These data indicate that suramin effectively blocks the early stages of DHBV infection in vivo.

Animals↗

Zonal changes of hepatobiliary taurocholate transport in intrahepatic cholestasis induced by 17 alpha-ethinyl estradiol: a histoautoradiographic study in rats.

The liver has a great reserve capacity for hepatobiliary bile salt transport. This study was performed to elucidate the significance of this capacity in ethinyl estradiol-induced cholestasis by direct visualization of the zonal involvement in taurocholate transport. The acinar distribution of [3H]taurocholate was determined by histoautoradiographical study of cryopreserved liver slices in normal rats and rats treated with ethinyl estradiol for 5 days. Silver grain densities over the different acinar zones were estimated on digitized image analysis. In control animals, histoautoradiographical study performed 4 min after the start of perfusion showed restriction of taurocholate to acinar zone 1. In contrast, in ethinyl estradiol-treated animals, taurocholate was also found in zone 2 and, in smaller concentrations, in zone 3. In control animals, the relative blackenings by silver grains of acinar zones 1, 2 and 3 were 66% +/- 1.2%, 25% +/- 1.6% and 5% +/- 0.6%, respectively. After 5 days of ethinyl estradiol treatment, blackenings were 58% +/- 1.5%, 36% +/- 2.1% and 12% +/- 0.8%, respectively. As early as 15 sec after injection of [3H]taurocholate, the bile canalicular areas of the cell plates and the bile ductules of ethinyl estradiol-treated animals were labeled as intensely as those of control animals. Our results demonstrate ethinyl estradiol-induced recruitment of the acinar zones 2 and 3 for hepatobiliary taurocholate transport. This recruitment may largely compensate for reduction of transport capacity of periportal hepatocytes in early cholestasis.

Animals↗

Fluorescent derivatives of bile salts. III. Uptake of 7 beta-NBD-NCT into isolated hepatocytes by the transport systems for cholyltaurine.

Uptake of 7 beta-NBD-NCT ([N-[7-(4-nitrobenzo-2-oxa-1,3-diazol)]-7 beta-amino-3 alpha,12 alpha-dihydroxy-5 beta-cholan-24-oyl)-2'-aminoethanesulfonate) in isolated rat liver hepatocytes occurs by saturable transport without being superimposed by simple diffusion. The dependency of flux rate of uptake on the concentration of 7 beta-NBD-NCT in the presence of Na+ (143 mM) and with Na+ depletion (1 mM) is best described by the assumption of two simple transport systems. Maximal flux rates of uptake Jn and half-saturation constants KT for 7 beta-NBD-NCT are in presence of Na+ for transport system 1 J1(Na+ 143) = 0.15 +/- 0.03 nmol/(min.mg protein) and KT1(Na+ 143) = 3.5 +/- 0.5 microM and for transport system 2 J2(Na+ 143) = 1.0 +/- 0.1 nmol/(min.mg protein) and KT2(Na+ 143) = 190 +/- 25 microM, and in case of Na+ depletion J1(Na+ 1) = 0.1 +/- 0.03 nmol/(min.mg protein), KT1(Na+ 1) = 3.0 +/- 0.5 microM, and J2(Na+ 1) = 0.85 +/- 0.9 nmol/(min.mg protein) and KT2(Na+ 1) = 195 +/- 27 microM. Uptake of 7 beta-NBD-NCT by both transport systems is competitively inhibited by cholyltaurine in the presence of Na+ and with Na+ depletion. Two transport systems are likewise involved in the uptake of cholyltaurine in the presence of Na+ as well as in case of Na+ depletion. Their kinetic parameters are in presence of Na+ J'1(Na+ 143) = 1.55 +/- 0.14 nmol/(min.mg protein) and K'T1(Na+ 143) = 16.1 +/- 3.0 microM, and J'2(Na+ 143) = 0.51 +/- 0.05 nmol/(min.mg protein) and K'T2(Na+ 143) = 38.0 +/- 4.1 microM, and in case of Na+ depletion J'1(Na+ 1) = 0.10 +/- 0.02 nmol/(min.mg protein), K'T1(Na+ 1) = 7.7 +/- 1.2 microM, and J'2(Na+ 1) = 0.40 +/- 0.03 nmol/(min.mg protein) and K'T2(Na+ 1) = 41.0 +/- 4.2 microM. Uptake of cholyltaurine by both transport systems is competitively inhibited by 7 beta-NBD-NCT in the presence of Na+ as well as in case of Na+ depletion. In both cases the inhibition constants are practically identical with the KT values for uptake of 7 beta-NBD-NCT. Photoaffinity labeling of isolated hepatocytes using 7,7-ACT (400 microM) resulted in the irreversible inhibition of uptake of both bile salts to similar extents, confirming the kinetic data that 7 beta-NBD-NCT is a true analogue of cholyltaurine.

Affinity Labels↗

Cell volume and bile acid excretion.

The interaction between cell volume and taurocholate excretion into bile was studied in isolated perfused rat liver. Cell swelling due to hypo-osmotic exposure, addition of amino acids or insulin stimulated taurocholate excretion into bile and bile flow, whereas hyperosmotic cell shrinkage inhibited these. These effects were explained by changes in Vmax of taurocholate excretion into bile: Vmax. increased from about 300 to 700 nmol/min per g after cell swelling by 12-15% caused by either hypo-osmotic exposure or addition of amino acids under normo-osmotic conditions. Steady-state taurocholate excretion into bile was not affected when the influent K+ concentration was increased from 6 to 46 mM or decreased to 1 mM with iso-osmoticity being maintained by corresponding changes in the influent Na+ concentration. Replacement of 40 mM-NaCl by 80 mM-sucrose decreased taurocholate excretion into bile by about 70%; subsequent hypo-osmotic exposure by omission of sucrose increased taurocholate excretion to 160%. Only minor, statistically insignificant, effects of aniso-osmotic cell volume changes on the appearance of bolus-injected horseradish peroxidase in bile were observed. Taurocholate (400 microM) exhibited a cholestatic effect during hyperosmotic cell shrinkage, but not during hypo-osmotic cell swelling. Both taurocholate and tauroursodeoxycholate increased liver cell volume. Tauroursodeoxycholate stimulated taurocholate (100 microM) excretion into bile. This stimulatory effect was strongly dependent on the extent of tauroursodeoxycholate-induced cell swelling. During continuous infusion of taurocholate (100 microM) further addition of tauroursodeoxycholate at concentrations of 20, 50 and 100 microM increased cell volume by 10, 8 and 2% respectively, in parallel with a stimulation of taurocholate excretion into bile by 29, 27 and 9% respectively. There was a close relationship between the extent of cell volume changes and taurocholate excretion into bile, regardless of whether cell volume was modified by tauroursodeoxycholate, amino acids or aniso-osmotic exposure. The data suggest that: (i) liver cell volume is one important factor determining bile flow and biliary taurocholate excretion; (ii) swelling-induced stimulation of taurocholate excretion into bile is probably not explained by alterations of the membrane potential; (iii) bile acids modulate liver cell volume; (iv) taurocholate-induced cholestasis may depend on cell volume; (v) stimulation of taurocholate excretion into bile by tauroursodeoxycholate can largely be explained by tauroursodeoxycholate-induced cell swelling.

Amino Acids↗

Liver cell volume and protein synthesis.

Protein synthesis in isolated rat hepatocytes was determined from the incorporation of [3H]leucine (4 mM) into acid-precipitable material in the presence of amino acids at twice their physiological concentration. Protein synthesis increased linearly with time and incubated cell protein, and was inhibited by cycloheximide by more than 95%. In normo-osmotic incubations containing amino acids at twice the physiological concentration the rate of [3H]leucine incorporation was 5.8 +/- 0.2 nmol/h per mg of cell protein (n = 26). Hyperosmotic cell shrinkage due to addition of 60 mM-NaCl or 120 mM-raffinose inhibited [3H]leucine incorporation into acid-precipitable material by 60 and 74% respectively, whereas hypo-osmotic cell swelling was ineffective. Inhibition of protein synthesis by adding 120 mM-raffinose was largely counteracted by simultaneous lowering of the NaCl concentration by 60 mM. Glutamine (10 mM) had no effect on protein synthesis in normo-osmotic incubations (320 mosM), but stimulated protein synthesis in hyperosmotically (440 mosM) pre-shrunken cells almost to rates found in normo-osmotic (320 mosM) control incubations. Cyclic AMP and vasopressin inhibited protein synthesis by 23% and 8% respectively, whereas insulin and phenylephrine were ineffective. However, inhibition of protein synthesis by cyclic AMP was about twice as strong in the presence of vasopressin or phenylephrine. When protein synthesis was preinhibited by cyclic AMP, [3H]leucine incorporation was stimulated by glutamine (10 mM), insulin or hypo-osmotic exposure. There was a close relationship between the inhibition of protein synthesis and the extent of hepatocyte shrinkage induced by the above-mentioned effectors, suggesting a role of cell volume in the regulation of hepatic protein synthesis.

Animals↗

Inhibition of protein N-glycosylation by 2-deoxy-2-fluoro-D-galactose.

The effects of 2-deoxy-2-fluoro-D-galactose (dGalF) on N- and O-glycosylation of proteins was studied in rat hepatocyte primary cultures and in human monocytes. In hepatocytes, dGalF at concentrations of 1 mM or higher completely inhibited N-glycosylation of alpha 1-antitrypsin and alpha 1-acid glycoprotein, whereas 4 mM-2-deoxy-D-galactose (dGal) only slightly impaired N-glycosylation. In monocytes, 1 mM- or 4 mM-dGalF blocked N-glycosylation of alpha 1-antitrypsin and of interleukin-6, while O-glycosylation of interleukin-6 remained unaffected. In monocytes, dGal had no effect on protein N-glycosylation. Addition of uridine effectively prevented the UTP deficiency induced by dGalF, but had no effect on the inhibition of protein N-glycosylation by dGalF. Using 19F-n.m.r. spectroscopy, 2-deoxy-2-fluoro-D-galactose 1-phosphate (dGalF-1-P), UDP-dGalF and UDP-dGlcF could be identified as the major metabolites of dGalF in hepatocytes as well as in monocytes. In conclusion, compared with dGal, dGalF is a more efficient inhibitor of protein N-glycosylation. The effect is not caused by the depletion of UTP induced by dGalF, but rather by metabolites of dGalF. dGalF is metabolized not only in hepatocytes but also in peripheral blood monocytes, which can be used for ex vivo studies of disturbances in D-galactose metabolism.

Animals↗

[Current insights on the pathogenesis of chronic inflammatory bowel diseases].

The pathogenesis and etiology of inflammatory bowel disease (IBD) is poorly understood. As a matter of fact, it is not even certain whether either one is a single entity with different forms of clinical manifestations, or whether each one represents a single clearly separable entity. Common features of both diseases are chronic persistence, recurrent exacerbation and remission, the production of autoantibodies, as well as the expression of aberrant HLA-class II molecules on the surface of epithelial cells on the site of inflammation gut. It is likely that these events involve a disturbed immunoregulatory function or autoimmune process. Since the beginning of investigation the cause of IBD, infectious agents (bacteria, virus, mycobacterium paratuberculosis and others) or bacterial products (endotoxin, peptidoglycans from the bacterial cell wall) have been considered as primary causes. Epidemiological studies showed a marked increase of the incidence rates of IBD in industrial countries leading to the hypothesis, that environmental factors could play a role in the pathogenesis of the disease. So far it is clear that the major identified risk factor for IBD is a genetic susceptibility confirmed by studies showing a positive family history.

Colitis, Ulcerative↗