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Biomedical subjects

C Bauer

Publications and source records attributed to C Bauer.

At least 181 records · Page 10Linked to original sources

Hypermutable ligation of plasmid DNA ends in cells from patients with Werner syndrome.

Werner Syndrome is a rare autosomal recessive disorder characterized by an increased cancer risk and by symptoms suggestive of premature aging. Cells from these patients demonstrate a typical pattern of chromosomal instability and a spontaneous hypermutability with a high rate of unusually large deletions. We have studied the in vivo DNA ligation in three lymphoblast cell lines from Werner syndrome patients and three from normal donors. In our host cell ligation assay we transfected linearized plasmid pZ189 and measured the amount of plasmid DNA ends rejoined by these host cells as the ability of the recovered plasmid to transform bacteria. A mutagenesis marker gene close to the ligation site allowed screening for mutations. Subsequent mutation analysis provided information about the accuracy of the ligation process. The cells from Werner syndrome patients were as effective as normal cells in ligating DNA ends. However, mutation analysis revealed that the three Werner syndrome cell lines introduced 2.4-4.6 times more mutations (p < 0.001) than the normal cell lines during ligation of the DNA ends: the mutation rates were 69.4, 97.2, and 58.7%, as compared to 23.6, 21.7, and 24.4% in the normal cell lines. These increased mutation frequencies in plasmids ligated during passage through Werner syndrome cells were mainly due to a significant (p < 0.001) increase in deletions. This error-prone DNA ligation might be responsible for the spontaneous hypermutability and the genomic instability in Werner syndrome cells and related to the apparently accelerated aging and high cancer risk in affected patients.

Cell Line↗

rh-erythropoietin stimulates immature reticulocyte release in man.

The pharmacodynamics of single intravenous dosing with recombinant human erthropoietin (rhEPO) was investigated in eight healthy volunteers (150 U/kg, n = 2; 300 U/kg, n = 6) with respect to reticulocyte subdivisions (by fluorescence flow cytometry) and serum ferritin over 6.5 d. The present study shows that bolus rhEPO injection produces an immediate release of high and middle fluorescence (immature) reticulocytes with a high RNA content from the marrow into the circulation, whereas the low fluorescence (more mature) reticulocytes were at first not affected. Serum ferritin decreased markedly within 24 h, reaching a nadir 50% of baseline after 120 h (5 d), with no increase in haemoglobin. Our data suggests that rhEPO triggers premature expulsion of immature reticulocytes from the bone marrow into the circulation independent of its effect in stimulating erythropoiesis and that rhEPO has an effect on serum ferritin concentration which in this dynamic situation is dependent not only on the iron stores.

Bone Marrow↗

Expression of the erb B oncogene in the Morris hepatoma 7777.

Altered expression of protooncogenes/oncogenes is believed to be involved in hepatocarcinogenesis of the chemically induced, transplantable Morris hepatoma 7777. We compared the mRNA expression of c-N-ras and v-erb B mRNA of normal rat liver with that of Morris hepatoma 7777 using Northern blot analysis and in situ hybridization. Northern blot analysis revealed a strong overexpression of the v-erb B related mRNA, while the c-N-ras mRNA was only slightly increased. In situ hybridization using a c-N-ras mRNA probe also showed only a slightly increased number of silver grains in the hepatoma cells compared with normal rat liver. On the other hand, the v-erb B related mRNA was strongly overexpressed in the hepatoma cells, while the connective-tissue capsule, the blood vessels, blood cells and the necrotic foci did not show an elevated v-erb B related gene mRNA expression. Similar results were obtained in liver metastases. The detectable v-erb B hybridization signal was lost by pretreatment with RNase A. We conclude that the c-N-ras gene is of minor importance in the chemically induced, transplantable Morris hepatoma 7777, while the increased expression of the v-erb B related mRNA is due to a selection of ligand-independent tyrosine kinase activity.

Animals↗

Immunohistochemical and electronmicroscopic effects of a new 2.1 microns Ho:YAG laser on the rat brain.

Using an experimental animal model, the thermal single-pulse lesion derived from a mid-infrared 1.0 Joule 300 microns fibre-conducted Holmium: Yttrium-Aluminum-Garnet (Ho:YAG) laser was examined, with special emphasis on the orientation and depth of the tissue reaction. Performing biparietal craniotomy in Sprague-Dawley rats weighing 250-300 g, both hemispheres were targeted by different radiant exposures from 20 to 140 J/cm2 derived from a 600-800 microsecond single pulse. After survival periods of one to 30 days, the animals were sacrificed and both hemispheres were processed for light- and electronmicroscopic investigations. To resolve the depth and orientation of the tissue reaction regarding the localization of reactive astrocytes, we looked for the expression of glial proteins like glial fibrillary acidic protein (GFAP), Vimentin and S 100 with a three-step biotin-avidin immunoperoxidase method. Neuronal and secondary axonal damage was investigated by labelling Neurofilament and Synaptophysin. The tissue reaction beneath the ablated material, consisting of a vacuolation and coagulation zone resulting from heat diffusion, was further elucidated by localization of the heat shock protein (HSP 72 kilo Dalton). Revealing the extension of reactive astrocytes and the degree of the electronmicroscopically depicted glial oedema, the depth of the tissue damage was estimated to reach about 700 microns beneath laser excision. Since McKenzie predicted the depth of tissue damage beneath CO2 and YAG laser excisions in a theoretical mathematical model, the authors were able to develop a sensitive model for testing new laser systems and as a promising instrument for neurosurgery.

Aluminum↗

Lack of associations between fetal and maternal serum-erythropoietin at birth.

Erythropoietin (EPO) is known to be the main regulator of erythropoiesis. We wanted to determine whether EPO production during pregnancy takes place independently in the mother and the fetus, and to identify the factors which set the EPO level. Endogenous EPO levels were determined in simultaneous samples from the umbilical vein, the umbilical artery and a maternal vein in 126 mother-child pairs and simultaneously from amniotic fluid (n = 14) in unselected births. Results were related to clinical and biochemical parameters of fetal well-being, mode of delivery, duration of labor, and infant parameters at birth. There was a weak correlation between maternal and fetal log EPO values (umbilical vein: r2 = 0.11; umbilical artery: r2 = 0.08), but a highly significant correlation between log EPO levels in the two umbilical vessels (r2 = 0.91) and between both umbilical blood and amniotic fluid (r2 = 0.41). Maternal EPO levels were lower than fetal levels in 76 cases, higher in 47, and nearly identical in 3. Increased fetal EPO levels were associated with clinical and biochemical indicators of fetal stress. These associations help to explain why EPO concentrations in fetal blood are independent of maternal levels and also indicate that EPO does not cross the placental barrier. These findings are discussed in the light of the animal experimental and in vitro evidence for placental transfer of EPO. Our data, and the work of others, make such a transfer in humans quite unlikely. This observation has therapeutical consequences for the treatment of maternal anemia with recombinant human EPO.

Amniotic Fluid↗

Control of photosystem genes in Rhodobacter capsulatus.

Two environmental factors, oxygen and high light intensity, are known to repress synthesis of the Rhodobacter capsulatus photosystem. One level of regulation is the control of light harvesting and reaction centre gene expression at the point of transcription initiation. This has recently been shown to involve transcriptional activators which exhibit sequence similarity to members of the 'two-component' class of prokaryotic regulators. An additional level of regulation involves the formation of 'superoperons' that transcriptionally link pigment biosynthesis operons with operons that code for the light harvesting and reaction centre structural genes. A final level of regulation involves the selective degradation of reaction centre mRNA transcripts which influence the stoichiometric synthesis of the light harvesting and reaction centre complexes.

Anaerobiosis↗

In-vivo assessment of DNA ligation efficiency and fidelity in cells from patients with Fanconi's anemia and other cancer-prone hereditary disorders.

We developed a host cell DNA ligation assay, in which we transfected linearized plasmid pZ189 into human lymphoblasts or fibroblasts in order to assess the efficiency and accuracy of DNA ligation within these host cells. We used cell lines from patients with Fanconi's anemia and other chromosome breakage or instability syndromes (Bloom's syndrome, ataxia telangiectasia, Werner's syndrome). With the Fanconi's anemia lymphoblast line GM8010 we did not find a reduced, but a slightly hypermutable DNA ligation. Mutation analysis revealed a unique 7.9-12.5-fold increase in insertions or complex mutations. With cells from the other chromosome breakage/instability syndromes we also found a hypermutable and/or reduced DNA ligation. An impaired DNA ligation might be a common molecular mechanism of genetic instability in these disorders.

Cell Line↗

The role of receptor binding in drug discovery.

Radioligand receptor binding has been used extensively to identify and characterize a host of receptors and enzymes targeting virtually every therapeutic area. Many drug discovery programs have been based on the utilization of radioligand receptor binding technology to identify lead compounds which interact with receptors likely to be important in neuronal, immunological, gastrointestinal, and cardiovascular function/dysfunction. There are several obvious advantages to using in vitro receptor binding as a first level screen when compared to in vivo pharmacometric screens. Scientifically, the structure activity data generated in binding assays is a direct reflection of the ligand/receptor interaction minus the complications which result from secondary events, bioavailability, and pharmacodynamic issues. Technically, the binding studies require only a small amount of test compound (< or = 1 mg), while whole animal studies routinely need gram quantities. Similarly, only a small amount of tissue is required, compared with the cost of purchase and maintenance of live animals for in vivo screening. Supply and labor costs are drastically reduced due to the limited volume and test tube based technology of receptor binding. For these reasons receptor binding assays have been utilized with considerable success to discover site specific lead compounds in virtually every therapeutic area.

Animals↗

Influence of dopaminergic agonists/antagonists on fucose metabolism in the rat brain.

UNLABELLED: Valid indications of a key role for dopaminergic drugs in glycoprotein fucosylation in neuronal tissue in vitro led us to investigate whether the administration of dopaminergic agonists/antagonists influences fucose metabolism in the rat brain in vivo. Three test groups were set up. Group 1 was given L-DOPA (210 mg/l), Group 2 haloperidol (10.5 mg/l) in drinking water, Group 3 served as control. The rats were sacrificed after 8 weeks and enzyme activities in 5 different brain areas were determined concerning the enzymes of the anabolic fucose metabolism: fucokinase, fucose-1-phosphate pyrophosphorylase and fucosyltransferase 1 and 2. Only the specific activity of fucokinase was affected by haloperidol or L-DOPA administration. In the olfactory bulbus, thalamus and cortex, haloperidol decreased fucokinase activity by 21%, 37%, and 39%, respectively (p < 0.05 in each case). No changes were observed in the cerebellum and striatum. Surprisingly, fucokinase activity in the cortex was decreased by L-DOPA (31%, p < 0.05). CONCLUSIONS: Cerebral fucokinase activity is influenced in vivo by dopaminergic drugs in well circumscribed brain areas. Other enzymes of the anabolic fucose metabolism showed no change in activity. It is, therefore, conceivable that these drugs, apart from known mechanisms, exert part of their pharmacological action via a modulation of fucose metabolism.

Animals↗

Leukocyte-endothelial cell interactions in the liver after hemorrhagic shock in the rat.

Leukocyte-endothelial cell interactions in rat livers were investigated using intravital fluorescence microscopy following hemorrhagic shock (MAP at 40 mm Hg for 60 min) and resuscitation. Thirty minutes after resuscitation, when MAP was higher than 100 mm Hg, sinusoidal perfusion was only slightly reduced (>90% of controls). Firm adhesion of leukocytes increased to 370 +/- 54 leukocytes/mm2 after shock and resuscitation compared to control animals (48 +/- 8/mm2; mean +/- SEM; P < .01). Leukocyte-endothelium adhesion was highest in the portal areas and lowest in midzonal and pericentral regions (relationship:2.0: 1.1:1.0). Pretreatment with dexamethasone (5 mg/kg bw) resulted in a dramatic rise of adherent leukocytes following hemorrhagic shock (920 +/- 62/mm2; P < .001). Pretreatment with ibuprofen (15 mg/kg bw) resulted in a similar increase of adherent leukocytes after hemorrhagic shock (750 +/- 60/mm2; P < .001), while pretreatment with MK 886(10 mg/kg), inhibitor of lipoxygenase pathway, reduced leukocyte adhesion slightly (270 +/- 38/mm2). The results reveal that leukotrienes, e.g., released by activated macrophages, are involved in the regulation of leukocyte adhesion in liver sinusoids following hemorrhagic shock and resuscitation. The negative effect of dexamethasone and ibuprofen on hepatic leukocyte adhesion, however, has to be considered for therapeutic use.

Animals↗

Inhibitory effect of zinc on stimulated erythropoietin synthesis in HepG2 cells.

The effect of zinc on erythropoietin (EPO) synthesis in HepG2 cells was investigated. The increase in EPO synthesis induced by Co2+ (50 microM), Ni2+ (300 microM) or oxygen (1% O2) was inhibited by the presence of ZnCl2 (50-150 microM) in the tissue-culture medium, whereas basal EPO synthesis was unaffected. The effect was reflected by corresponding changes in the EPO mRNA level. These effects of zinc on EPO synthesis could not be mimicked by CdCl2 (less than or equal to 2 microM). Addition of FeCl3 to the medium appeared to decrease the inhibitory effect of zinc on hypoxia-induced EPO synthesis, implying that zinc may interfere with an iron-dependent step in EPO regulation.

Blotting, Northern↗

Intracellular distribution of endothelin-1 receptors in rat liver cells.

We studied the binding of (125I)-endothelin-1 as well as that of the vasopressin analogue (125I)-[8-phenylpropionyl]-LVP to purified plasma membranes, Golgi cisternae and cell nuclei from rat liver. Cell organelles were isolated by differential centrifugation and discontinuous sucrose gradients. Endothelin-1 exhibited specific binding to plasma membranes, Golgi cisternae and nuclei, while the binding of (125I)-[8-phenylpropionyl]-LVP was restricted to the plasma membranes. The number of receptors (Bmax) and the binding constants (Kd) were determined by Scatchard analysis of competition binding studies. In all cases only one class of Et-1 binding sites could be detected. The presence of Et-1 receptors on the Golgi complex either indicates that the receptor is glycosylated within the cisternae or alternatively, there exists a recycling pathway. The unexpected finding of Et-1 receptors on highly purified nuclei suggests that this peptide may exert part of its biological functions intracellularly via the nucleus.

Animals↗

Inhibition of N-acetylglucosamine kinase and N-acetylmannosamine kinase by 3-O-methyl-N-acetyl-D-glucosamine in vitro.

During the search for inhibitors of N-acetylneuraminic acid biosynthesis, it was shown that 3-O-methyl-N-acetylglucosamine competitively inhibits the N-acetylglucosamine kinase of rat liver in vitro with a Ki value of 17 microM. N-Acetylmannosamine kinase is inhibited non-competitively with a Ki value of 80 microM. In a human hepatoma cell line (HepG2), 3-O-methyl-N-acetyl-D-glucosamine (1 mM) inhibits the incorporation of 14C-N-acetylglucosamine and 14C-N-acetylmannosamine into cellular glycoproteins by 88% and 70%, respectively.

Acetylglucosamine↗

Inhibition of the biosynthesis of N-acetylneuraminic acid by metal ions and selenium in vitro.

In liver homogenate the biosynthesis of N-acetylneuraminic acid using N-acetylglucosamine as precursor can be followed stepwise by applying different chromatographic procedures. In this cell-free system 16 metal ions (Zn2+, Mn2+, La3+, Co2+, Cu2+, Hg2+, VO3-, Pb2+, Ce3+, Cd2+, Fe2+, Fe3+, Al3+, Sn2+, Cs+ and Li+) and the selenium compounds, selenium(IV) oxide and sodium selenite, have been checked with respect to their ability to influence a single or possibly several steps of the biosynthesis of N-acetylneuraminic acid. It could be shown that the following enzymes are sensitive to these metal ions (usually applied at a concentration of 1 mmol l-1): N-acetylglucosamine kinase (inhibited by Zn2+ and vandate), UDP-N-acetylglucosamine-2'-epimerase (inhibited by Zn2+, Co2+, Cu2+, Hg2+, VO3-, Pb2+, Cd2+, Fe3+, Cs+, Li+, selenium(IV) oxide and selenite), and N-acetylmannosamine kinase (inhibited by Zn2+, Cu2+, Cd2+ and Co2+). Dose dependent measurements have shown that Zn2+, Cu2+ and selenite are more efficient inhibitors of UDP-N-acetylglucosamine-2'-epimerase than vanadate. As for the N-acetylmannosamine kinase inhibition, a decreasing inhibitory effect exists in the following order Zn2+, Cd2+, Co2+ and Cu2+. In contrast, La3+, Al3+ and Mn2+ (1 mmol l-1) did not interfere with the biosynthesis of N-acetylneuraminic acid. Thus, the conclusion that the inhibitory effect of the metal ions investigated cannot be regarded as simply unspecific is justified.

Acetylglucosamine↗

World Association for the Advancement of Veterinary Parasitology (W.A.A.V.P.) methods for the detection of anthelmintic resistance in nematodes of veterinary importance.

Methods have been described to assist in the detection of anthelmintic resistance in strongylid nematodes of ruminants, horses and pigs. Two tests are recommended, an in vivo test, the faecal egg count reduction test for use in infected animals, and an in vitro test, the egg hatch test for detection of benzimidazole resistance in nematodes that hatch shortly after embryonation. Anaerobic storage for submission of faecal samples from the field for use in the in vitro test is of value and the procedure is described. The tests should enable comparable data to be obtained in surveys in all parts of the world.

Animals↗