PubMed Health⌕ Search

Biomedical subjects

Ulrich Beuers

Publications and source records attributed to Ulrich Beuers.

At least 37 records · Page 2Linked to original sources

Medical treatment of primary biliary cirrhosis and primary sclerosing cholangitis.

Chronic cholestasis is the main feature of primary biliary cirrhosis (PBC) and primary sclerosing cholangitis (PSC), the most common chronic cholestatic liver diseases in adults. Although the etiology of both diseases remains poorly understood, auto-immune processes appear to be important, particularly in PBC. PBC and PSC usually slowly progress to cirrhosis,liver failure, and death, unless liver transplantation is performed. Ursodeoxycholic acid(UDCA), a hydrophilic dihydroxy bile acid, is the only drug currently approved for the treatment of patients with PBC and is also used in patients with PSC. In addition to UDCA, patients with PSC should be referred to endoscopic dilatation of major bile duct stenoses. Several potential mechanisms of action of UDCA have been proposed, including intracellular modulation of signaling events and secretion. Various immunosuppressive drugs have been evaluated alone or in combination with UDCA-especially for the treatment of PBC. Of these drugs,the topical corticosteroid budesonide, together with UDCA, appears promising in the treatment of early stage PBC, but data remain insufficient to warrant use of budesonide outside of controlled studies.

Adrenal Cortex Hormones↗

Extrahepatic manifestations of cholestatic liver diseases: pathogenesis and therapy.

Pruritus, fatigue, and metabolic bone disease are frequent complications of cholestatic liver diseases, which can be quite distressing for the patient and can considerably reduce the quality of life. The molecular pathogenesis of these extrahepatic manifestations of cholestasis is poorly understood, and hypotheses to explain these symptoms are being discussed. This article provides treatment recommendations for the complications of cholestasis based on putative pathomechanisms and summarizes recent experimental and clinical data involving management options.

Bone Diseases, Metabolic↗

BSEP and MDR3 haplotype structure in healthy Caucasians, primary biliary cirrhosis and primary sclerosing cholangitis.

Primary biliary cirrhosis (PBC) and primary sclerosing cholangitis (PSC) are characterized by a cholestatic pattern of liver damage, also observed in hereditary or acquired dysfunction of the canalicular membrane transporters bile salt export pump (BSEP, ABCB11) and multidrug resistance protein type 3 (MDR3, ABCB4). Controversy exists whether a genetically determined dysfunction of BSEP and MDR3 plays a pathogenic role in PBC and PSC. Therefore, 149 healthy Caucasian control individuals (control group) were compared to 76 PBC and 46 PSC patients with respect to genetic variations in BSEP and MDR3. Sequencing spanned approximately 10,000 bp including promoter and coding regions as well as 50-350 bp of flanking intronic regions. In all, 46 and 45 variants were identified in BSEP and MDR3, respectively. No differences between the groups were detected either in the total number of variants (BSEP: control group: 37, PBC: 37, PSC: 31; and MDR3: control group: 35; PBC: 32, PSC: 30), or in the allele frequency of the common variable sites. Furthermore, there were no significant differences in haplotype distribution and linkage disequilibrium. In conclusion, this study provides an analysis of BSEP and MDR3 variant segregation and haplotype structure in a Caucasian population. Although an impact of rare variants on BSEP and MDR3 function cannot be ruled out, our data do not support a strong role of BSEP and MDR3 genetic variations in the pathogenesis of PBC and PSC.

ATP Binding Cassette Transporter, Subfamily B↗

Down-regulation of the organic cation transporter 1 of rat liver in obstructive cholestasis.

The liver plays a major role in biotransformation and elimination of various therapeutic agents and xenobiotics, many of which are organic cations and substrates of the organic cation transporter 1 (Oct1, Slc22a1). Oct1 is expressed at the basolateral membranes of hepatocytes and proximal renal tubules. Although Oct1 is the major uptake mechanism in hepatocytes for many pharmaceutical compounds, little is known about the effects of liver injury on this process. Our aim was to investigate the effects of obstructive cholestasis on Oct1 expression and function in liver and kidney. The effects of bile duct ligation (BDL) on Oct1 protein, messenger RNA (mRNA) expression, and tissue localization were determined in rat liver and kidney with Western analysis, real-time reverse transcriptase-mediated polymerase chain reaction (RT-PCR), and immunofluorescence. To assess Oct1 function, the model substrate tetraethylammonium ([(14)C]TEA) was administered intravenously to BDL and control rats and distribution of radioactivity was determined. Oct1 protein significantly decreased in cholestatic livers to 42.1 +/- 17.7% (P <.001), 15.5 +/- 4.7% (P <.05), and 8.6 +/- 2.7% (P <.05) of controls after 3, 7, and 14 days, respectively, but not in kidneys. Hepatic Oct1 mRNA decreased to 77.2 +/- 12.7%, 40.7 +/- 8.1% (P <.05), and 50.3 +/- 7.5% (P <.05) 3, 7, and 14 days after BDL, respectively. Tissue immunofluorescence corroborated these data. Hepatic accumulation of [(14)C]TEA in 14-day BDL rats was reduced to 29.6 +/- 10.9% of controls (P <.0005). In conclusion, obstructive cholestasis down-regulates Oct1 and impairs Oct1-mediated uptake in rat liver, suggesting that hepatic uptake of small cationic drugs may be impaired in cholestatic liver injury.

Animals↗

Mechanisms of action and therapeutic efficacy of ursodeoxycholic acid in cholestatic liver disease.

Ursodeoxycholic acid (UDCA) is widely used for the treatment of cholestatic liver diseases. Multiple mechanisms of action of UDCA have been described aiming at one or more of the pathogenetic processes of cholestatic liver diseases: (1) protection of injured cholangiocytes against toxic effects of bile acids, (2) stimulation of impaired biliary secretion, (3) stimulation of detoxification of hydrophobic bile acids, and (4) inhibition of apoptosis of hepatocytes. Through one or more of these mechanisms, UDCA slows the progression of primary biliary cirrhosis and improves a number of other cholestatic disorders.

Cholestasis↗

Sequence analysis of bile salt export pump (ABCB11) and multidrug resistance p-glycoprotein 3 (ABCB4, MDR3) in patients with intrahepatic cholestasis of pregnancy.

Intrahepatic cholestasis of pregnancy (ICP) is a liver disorder associated with increased risk of intrauterine fetal death and prematurity. There is increasing evidence that genetically determined dysfunction in the canalicular ABC transporters bile salt export pump (BSEP, ABCB11) and multidrug resistance protein 3 (MDR3, ABCB4) might be risk factors for ICP development. This study aimed to (i). describe the extent of genetic variability in BSEP and MDR3 in ICP and (ii). identify new disease-causing mutations. Twenty-one women with ICP and 40 women with uneventful pregnancies were recruited between April 2001 and April 2003. Sequencing of BSEP and MDR3 spanned 8-10 kb per gene and comprised the promoter region and 100-350 bp of the flanking intronic region around each exon. DNA sequencing of polymerase chain reaction fragments was performed on an ABI3700 capillary sequencer. MDR3 promoter activity of promoter constructs carrying different ICP-specific mutations was studied using reporter assays. A total of 37 and 51 variant sites were detected in BSEP and MDR3, respectively. Three non-synonymous sites in codons for evolutionarily conserved amino acids were specific for the ICP collective (BSEP, N591S; MDR3, S320F and G762E). Furthermore, four ICP-specific splicing mutations were detected in MDR3 [intron 21, G(+1)A; intron 25, G(+5)C and C(-3)G; and intron 26, T(+2)A]. Activity of the mutated MDR3 promoter was similar to that observed for the wild-type promoter. Our data further support an involvement of MDR3 genetic variation in the pathogenesis of ICP, whereas analysis of BSEP sequence variation indicates that this gene is probably less important for the development of pregnancy-associated cholestasis.

ATP Binding Cassette Transporter, Subfamily B↗

Taurolithocholic acid exerts cholestatic effects via phosphatidylinositol 3-kinase-dependent mechanisms in perfused rat livers and rat hepatocyte couplets.

Taurolithocholic acid (TLCA) is a potent cholestatic agent. Our recent work suggested that TLCA impairs hepatobiliary exocytosis, insertion of transport proteins into apical hepatocyte membranes, and bile flow by protein kinase Cepsilon (PKCepsilon)-dependent mechanisms. Products of phosphatidylinositol 3-kinases (PI3K) stimulate PKCepsilon. We studied the role of PI3K for TLCA-induced cholestasis in isolated perfused rat liver (IPRL) and isolated rat hepatocyte couplets (IRHC). In IPRL, TLCA (10 micromol/liter) impaired bile flow by 51%, biliary secretion of horseradish peroxidase, a marker of vesicular exocytosis, by 46%, and the Mrp2 substrate, 2,4-dinitrophenyl-S-glutathione, by 95% and stimulated PI3K-dependent protein kinase B, a marker of PI3K activity, by 154% and PKCepsilon membrane binding by 23%. In IRHC, TLCA (2.5 micromol/liter) impaired canalicular secretion of the fluorescent bile acid, cholylglycylamido fluorescein, by 50%. The selective PI3K inhibitor, wortmannin (100 nmol/liter), and the anticholestatic bile acid tauroursodeoxycholic acid (TUDCA, 25 micromol/liter) independently and additively reversed the effects of TLCA on bile flow, exocytosis, organic anion secretion, PI3K-dependent protein kinase B activity, and PKCepsilon membrane binding in IPRL. Wortmannin also reversed impaired bile acid secretion in IRHC. These data strongly suggest that TLCA exerts cholestatic effects by PI3K- and PKCepsilon-dependent mechanisms that are reversed by tauroursodeoxycholic acid in a PI3K-independent way.

Androstadienes↗

The diacylglycerol and protein kinase C pathways are not involved in insulin signalling in primary rat hepatocytes.

Diacylglycerol (DAG) and protein kinase C (PKC) isoforms have been implicated in insulin signalling in muscle and fat cells. We evaluated the involvement of DAG and PKC in the action of insulin in adult rat hepatocytes cultured with dexamethasone, but in the absence of serum, for 48 h. Our results show that although insulin stimulated glycolysis and glycogen synthesis, it had no effect on DAG mass or molecular species composition. Epidermal growth factor showed the expected insulin-mimetic effect on glycolysis, whereas ATP and exogenous phospholipase C acted as antagonists and abolished the insulin signal. Similarly to insulin, epidermal growth factor had no effect on DAG mass or molecular species composition. In contrast, both ATP and phospholipase C induced a prominent increase in several DAG molecular species, including 18:0/20:4, 18:0/20:5, 18:0/22:5 and a decrease in 18:1/18:1. These changes were paralleled by an increase in phospholipase D activity, which was absent in insulin-treated cells. By immunoblotting or by measuring PKC activity, we found that neither insulin nor ATP translocated the PKCalpha, -delta, -epsilon or -zeta isoforms from the cytosol to the membrane in cells cultured for six or 48 h. Similarly, insulin had no effect on immunoprecipitable PKCzeta. Suppression of the glycogenic insulin signal by phorbol 12-myristate 13-acetate, but not by ATP, could be completely alleviated by bisindolylmaleimide. Finally, insulin showed no effect on DAG mass or translocation of PKC isoforms in the perfused liver, although it reduced the glucagon-stimulated glucose output by 75%. Together these results indicate that phospholipases C and D or multiple PKC isoforms are not involved in the hepatic insulin signal chain.

Adenosine Triphosphate↗

Pharmacokinetics and pharmacodynamic action of budesonide in early- and late-stage primary biliary cirrhosis.

Budesonide has been discussed as a potential treatment option in primary biliary cirrhosis (PBC). Therefore, we studied the pharmacokinetics and pharmacodynamics of budesonide in patients with PBC stage I/II and stage IV. Twelve patients with early PBC stage I/II and 7 patients with PBC stage IV under continuous treatment with ursodeoxycholic acid (UDCA) were enrolled in an exploratory trial. Each patient received oral budesonide for 3 weeks at weekly increasing dosages of 3 mg once to thrice per day. Budesonide and cortisol plasma levels, urinary cortisol excretion, serum liver tests, and immunoglobulins were determined on days 1, 7, and 21 of the study. Patients with PBC stage IV showed significantly higher peak plasma concentrations (4.9 +/- 3.5 vs. 1.5 +/- 0.4 ng/mL; P <.05) and areas under the plasma concentration-time curves (AUC) (23.2 +/- 16.8 vs. 5.1 +/- 1.4 hours. ng/mL, P <.01, total AUC extrapolated to infinity [AUC(0- infinity )]) after a single dose of 3 mg budesonide when compared with patients with PBC stage I/II. Equally, AUC of budesonide were significantly increased under a multiple dose regimen on day 21 (14.0 +/- 11.6 vs. 5.0 +/- 1.9 hours. ng/mL, P <.01, AUC at steady state from dosing time to 8 hours [AUC(ss,0-8 h)]). Higher levels of budesonide were related to a significant decrease in plasma cortisol and reduction of urinary cortisol excretion in patients with stage IV disease. Two patients with stage IV disease developed portal vein thrombosis (PVT). In conclusion, administration of budesonide leads to markedly elevated plasma levels in cirrhotic patients with PBC associated with serious adverse drug reactions. Thus, further evaluation of combined treatment with UDCA may be considered in early-stage PBC but not in cirrhotic patients with PBC.

Adult↗

Liver failure in adult Still's disease during corticosteroid treatment.

Adult Still's disease is a well-characterized rheumatic disorder of unknown origin, which may affect multiple organs and may have a fatal course. However, liver failure has rarely been described in adult Still's disease. We present the case of a 25-year-old woman who was admitted with acute liver failure 2 years after the start of symptoms (arthritis, fever, sore throat) of a yet undefined rheumatic disease. She had been treated with prednisolone for 2 months before admission. The diagnosis of adult Still's disease was made in accordance with well-established criteria. Other causes of liver failure were excluded. Withdrawal of prednisolone did not affect the course of liver disease. Ursodeoxycholic acid therapy was started when the patient slowly began to recover. To the best of our knowledge, this is the first case of adult Still's disease reported in which hepatic failure developed when other symptoms were well controlled by corticosteroid treatment.

Adult↗

Platelet function rather than plasmatic coagulation explains hypercoagulable state in cholestatic liver disease.

BACKGROUND/AIMS: As compared to other chronic liver diseases, cholestatic disorders are associated with a better outcome of variceal bleeding and less blood loss at transplantation, suggesting the presence of a hypercoagulable state. We have assessed plasmatic coagulation and platelet function in patients with cholestatic and non-cholestatic liver disease. METHODS: Thirty-seven patients with chronic cholestatic liver disease (primary biliary cirrhosis (PBC)/primary sclerosing cholangitis (PSC)), 53 patients with chronic hepatitis C (HCV) or alcoholic cirrhosis (C2), and 62 healthy controls were studied. RESULTS: Thrombelastography revealed a hypercoagulable state in non-cirrhotic patients with PBC/PSC, but not in those with HCV (ma-value: 6.54[6.25-6.92, 95%CI] vs. 5.39[5.11-5.58], P < 0.05) possibly due to higher fibrinogen levels in PBC/PSC patients (369[329-418]mg/dl vs. 263[250-275]mg/dl, P < 0.05). PFA-100 closure time was prolonged in HCV/C2 patients with advanced cirrhosis, but not in cirrhotic patients with PBC/PSC (Child B; epinephrine stimulation: 192[161-229]s vs. 132[105-158]s, P < 0.05). Flow cytometric studies of platelet receptors and granules revealed a higher surface expression of CD42b (112[105-119]% vs. 100[95-104]%, P < 0.05) and LIBS-1 (261[184-348]% vs. 121[92-145]%, P < 0.05) in patients with PBC/PSC than in those with HCV/C2. CONCLUSIONS: These results indicate that platelet function differs between patients with cholestatic and non-cholestatic liver disease and is stable or even hyperactive in patients with PBC and PSC.

Adolescent↗

Expression of the hepatocyte canalicular multidrug resistance protein (MRP2) in primary biliary cirrhosis.

The canalicular multidrug resistance protein 2 (MRP2; gene symbol: ABCC2) mediates ATP-dependent biliary excretion of organic anions such as bilirubin diglucuronide, glutathione conjugates and sulfated and glucuronidated bile salts. In chronic cholestatic liver diseases, the biliary excretion of cholephilic organic anions is impaired. While the underlying transport defects have been studied in rat models of cholestasis, little is known about the molecular basis of impaired organic anion excretion in human cholestatic liver disease. Our aim, therefore, was to analyze expression of MRP2 in patients with primary biliary cirrhosis (PBC), a chronic cholestatic liver disease characterized by progressive destruction of small intrahepatic bile ducts. Four patients with PBC stages III (n=1) and IV (n=3) were compared with three non-cholestatic patients with alcoholic liver disease, idiopathic liver cirrhosis and cirrhosis from chronic hepatitis C. Immunohistochemistry was performed on paraffin-embedded tissue slides using a monoclonal antibody to MRP2. MRP2 was detected at the canalicular hepatocyte membrane of all patients. In two PBC patients (stages III and IV, respectively), the degree of immunostaining was comparable with controls, whereas in two other PBC patients with stage IV disease immunostaining was decreased. We conclude that MRP2 expression decreases with progressive cholestasis in PBC.

Journal Article↗

Tauroursodeoxycholic acid mobilizes alpha-PKC after uptake in human HepG2 hepatoma cells.

BACKGROUND: Tauroursodeoxycholic acid (TUDCA) may exert anticholestatic effects via Ca(++)- and alpha-protein kinase C (alpha-PKC)-dependent apical vesicular insertion of canalicular transporters in cholestatic hepatocytes (Hepatology 2001; 33: 1206-16). Tauroursodeoxycholic acid is mainly taken up into liver cells by Na(+)-taurocholate cotransporting polypeptide (Ntcp). Tauroursodeoxycholic acid selectively translocates alpha-PKC, a key mediator of regulated exocytosis, to hepatocellular membranes. It is unclear whether TUDCA exerts its effects on alpha-PKC after carrier-mediated uptake into liver cells or by interaction with extracellular/membraneous structures. MATERIALS AND METHODS: Human hepatoblastoma HepG2 cells lacking Ntcp were stably transfected with pcDNA3.1/Ntcp or sham-transfected with pcDNA3.1 [+]. Distribution of alpha-PKC was studied using a Western blotting technique. Uptake of [(3)H]taurocholic acid (TCA) was determined radiochemically. RESULTS: [(3)H]taurocholic acid uptake was approximately 180-fold higher in Ntcp-transfected than in sham-transfected cells. Phorbol 12-myristate 13-acetate (1 micromol L(-1); positive control) increased membrane binding of alpha-PKC by 34% in Ntcp-transfected and by 37% in sham-transfected cells. Tauroursodeoxycholic acid (10 micromol L(-1)) increased membrane-associated alpha-PKC by 19% in Ntcp-transfected, but not in sham-transfected cells (-13%). Taurocholic acid (10 micromol L(-1)) did not affect the distribution of alpha-PKC. CONCLUSION: Carrier-mediated uptake is a prerequisite for TUDCA-induced translocation of alpha-PKC to hepatocellular membranes.

Biological Transport↗

Extrahepatic manifestations of cholestasis.

Pruritus, fatigue and metabolic bone disease represent three major extrahepatic manifestations of chronic cholestatic liver disease that considerably affect the patient's quality of life. The present article reviews pathogenetic aspects of and current therapeutic approaches to extrahepatic manifestations of cholestatic liver disease. Pathogenesis of pruritus of cholestasis remains poorly understood. The involvement of putative peripherally acting pruritogens, such as bile acids or endogenous opioids, is being discussed. More recently, central mechanisms, including an increased central opioidergic tone and pertubations in the serotonergic system have been proposed. Treatment of the underlying disease is beneficial also for the control of cholestasis-associated pruritus. Current therapeutic recommendations include ursodeoxycholic acid, cholestyramine, rifampicin and opioid antagonists. Liver transplantation may be indicated when severe pruritus is refractory to medical treatment. Fatigue is being recognized as the most frequent and one of the most disabling complaints in chronic cholestasis. Fatigue is presumably of central origin and its association with other neuropsychiatric disorders (e.g. depression, obsessive-compulsive disorders) is consistent with defective central neurotransmission. No specific therapies are currently available and a healthy lifestyle, regular sleep and avoidance of unnecessary stress and other precipiting factors are recommended. Antidepressant therapy may be warranted in selected patients. Osteopenia and osteoporosis are common in chronic cholestatic liver disease, whereas osteomalacia is rare. The pathophysiology of cholestasis-associated metabolic bone disease is regarded as multifactorial. Therapeutic recommendations include regular exercise, calcium and vitamin D supplementation in late stage disease, hormone replacement therapy in postmenopausal women and bisphosphonates.

Bone Diseases, Metabolic↗