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A Schuster

Publications and source records attributed to A Schuster.

At least 55 records · Page 3Linked to original sources

Chloride conductance and Pi transport are separate functions induced by the expression of NaPi-1 in Xenopus oocytes.

Expression of the protein NaPi-1 in Xenopus oocytes has previously been shown to induce an outwardly rectifying Cl- conductance (GCl), organic anion transport and Na+-dependent Pi-uptake. In the present study we investigated the relation between the NaPi-1 induced GCl and Pi-induced currents and transport. NaPi-1 expression induced Pi-transport, which was not different at 1-20 ng/oocyte NaPi-1 cRNA injection and was already maximal at 1-2 days after cRNA injection. In contrast, GCl was augmented at increased amounts of cRNA injection (1-20 ng/oocyte) and over a five day expression period. Subsequently all experiments were performed on oocytes injected with 20 ng/oocytes cRNA. Pi-induced currents (Ip) could be observed in NaPi-1 expressing oocytes at high concentrations of Pi (>/= 1 mm Pi). The amplitudes of Ip correlated well with GCl. Ip was blocked by the Cl- channel blocker NPPB, partially Na+-dependent and completely abolished in Cl- free solution. In contrast, Pi-transport in NaPi-1 expressing oocytes was not NPPB sensitive, stronger depending on extracellular Na+ and weakly affected by Cl- substitution. Endogenous Pi-uptake in water-injected oocytes amounted in all experiments to 30-50% of the Na+-dependent Pi-transport observed in NaPi-1 expressing oocytes. The properties of the endogenous Pi-uptake system (Km for Pi > 1 mM; partial Na+- and Cl--dependence; lack of NPPB block) were similar to the NaPi-1 induced Pi-uptake, but no Ip could be recorded at Pi-concentrations </=3 mM. In summary, the present data suggest that Ip does not reflect charge transfer related to Pi-uptake, but a Pi-mediated modulation of GCl.

Animals↗

High-performance liquid chromatographic-electrochemical assay for the quantitation of BMS-181885 in monkey plasma.

A high-performance liquid chromatographic-electrochemical assay was developed and validated for the quantitation of BMS-181885 (I), an anti-migraine agent, in monkey plasma. The assay involved a solid-phase extraction of I and BMY-46317 (internal standard; I.S.) on a 1-ml cyano cartridge using the automatic solid-phase extraction cartridge (ASPEC) system. Immediately following the conditioning of the cyano column (3 ml of methanol and 2 ml of 1% glacial acetic acid), plasma (0.25 ml) was loaded on to the column. The column was then washed with a 3 ml of 0.1 M ammonium acetate buffer (pH 6). The final elution of the analytes was performed using 2 ml of methanol. The eluate was then evaporated to dryness (gentle stream of nitrogen at 40 degrees C) and the residue was dissolved in the mobile phase and injected on to a YMC basic column (15 cm x 4.6 mm; 5 microm particle size) at a flow-rate of 1 ml/min. A mixture of 0.1 M ammonium acetate at pH 6-acetonitrile-methanol (70:20:10, v/v) was used as the mobile phase. Standard curves, with a lower limit of quantitation of 2 ng/ml of I were linear (r2> or =0.998; range: 2-50 ng/ml). Based on the analysis of the quality control (QC) samples, the assay was both accurate and precise. The stability of I was established following freeze-thaw cycles and storage at or below -20 degrees C. The extraction recovery of I from monkey plasma was about 82%. The validated assay method was applied to determine the pharmacokinetics of I in monkeys following a single 1 mg/kg intravenous dose.

Animals↗

Prospective, double-blind, placebo-controlled, multicentre study on the effect of high-dose, intravenous immunoglobulin in children and adolescents with severe bronchial asthma.

OBJECTIVE: In order to study the effect of high-dose, intravenous immunoglobulin (i.v.IG) in severe childhood asthma, we investigated 31 children and adolescents (15 girls, 16 boys) aged 9-22 years (median age of 14 years) suffering from severe bronchial asthma. METHODS: In a prospective, double-blind fashion, patients received either four doses of i.v.IG (1 g/kg body weight) or identical doses of intravenous human serum albumin. The first two doses were given on two consecutive days, followed by two further doses at 4 week intervals. RESULTS: There was no statistical difference in the actively treated group when compared with the placebo group in symptom-score, bronchial hyperreactivity or peak-flow-variability. There was a trend for fewer total days of upper respiratory tract infections and also symptom-scores in the i.v.IG group but these did not reach statistical significance. CONCLUSION: Our data indicate that treatment with i.v.IG in asthmatic children did not show a significant reduction in the incidence of upper respiratory tract infections, but the patients who did have upper respiratory infections in the i.v.IG-group appear to have less protracted infections. Severity and bronchial hyperreactivity do not seem to be affected by the treatment as performed in our study.

Adolescent↗

Adrenal-dependent modulation of the catalytic subunit isoforms of the Na+-K+-ATPase in aorta.

Na+-K+-ATPase gene expression and activity were studied in aortas from adrenalectomized (ADX) rats and ADX rats with deoxycorticosterone supplement (ADX-DOCA). Northern analysis of RNA from ADX rats revealed a significant decrease in alpha2-mRNA levels (38.5 +/- 8.3% of control, P < 0.01) that was prevented by DOCA (P < 0.05). A decrease to 55.8 +/- 7.7% in alpha2-isoform protein was observed 8 days after adrenal removal (P < 0.05); DOCA reversed this effect (90.8 +/- 10.5%). Adrenalectomy induced a decrease of 68.5 +/- 4.5% in beta1-mRNA (P < 0.01) and 52.7 +/- 8.3% in ADX-DOCA rats (P < 0.01). Also, a reduction in beta1-isoform protein that was not prevented by DOCA was detected after adrenalectomy (47.1 +/- 11%, P < 0.01). In contrast, no differences in alpha1-mRNA or -protein levels were observed. Vascular sodium pump activity was reduced to 59.8 +/- 4.6% of control values after adrenalectomy (P < 0.01); this reduction was reversed by DOCA. Our data indicate that corticosteroids regulate Na+-K+-ATPase isoform expression and activity in vascular tissue in vivo, suggesting a mineralocorticoid-dependent modulation of alpha2-Na+-K+-ATPase gene expression in aorta, with beta1-isoform expression dependent on the presence of glucocorticoids.

Adrenal Cortex Hormones↗

Effects of age, gender, and diurnal variation on the steady-state pharmacokinetics of BMS-181101, an antidepressant, in healthy subjects.

OBJECTIVES: To investigate the effects of age, gender, and diurnal variation on the safety, tolerability, and steady-state pharmacokinetics of BMS-181101, an antidepressant, in humans. METHODS: This was a multiple-dose parallel-design study in 51 healthy subjects (12 young and 12 elderly men and 12 young and 15 elderly women). Each subject received a 15 mg oral dose of BMS-181101 every 12 hours on days 1 through 6 and one dose on day 7. After the evening dose on day 6 and morning dose on day 7, serial blood samples were collected at specified times after administration. Plasma was analyzed for BMS-181101 with use of an HPLC method. RESULTS: Male subjects tolerated BMS-181101 better than female subjects. The mean values for area under the plasma concentration-time curve over the dosing interval tau (AUC tau; 58.8 to 102.4 ng.hr/ml) and elimination half-life t1/2; 5.7 to 10.4 hours) for the elderly subjects were significantly greater than those for the young subjects (39.0 to 64.3 ng.hr/ml and 3.2 to 4.5 hours). The mean values for peak plasma concentration (Cmax; 14.7 to 25.2 ng/ml) and AUC tau (52.4 to 102.4 ng.hr/ml) for the women were significantly greater than those for the men (9.08 to 15.3 ng/ml and 39.0 to 73.6 ng.hr/ml). The mean values for Cmax (14.7 to 25.2 ng/ml) and AUC tau (54.8 to 102.4 ng.hr/ml) on the morning of day 7 were significantly greater than those after the evening dose on day 6 (9.08 to 17.3 ng/ml; 39.0 to 83.4 ng.hr/ml). CONCLUSIONS: An initial lower dose or appropriate titration of daily doses of BMS-181101 may be necessary for the treatment of elderly and female subjects, and the pharmacokinetics of BMS-181101 exhibited significant diurnal effects.

Adult↗

Environmental auditing in hospitals: approach and implementation in an university hospital.

Medical audit in infection control today is accepted as an important element in the quality assurance of health care. In contrast, environmental auditing, which was approved in 1993 by the Council of the European Communities for industry ("Eco-Management and Audit Scheme-EMAS), has not so far been used as a tool to control and reduce environmental pollution caused by medical care in hospitals. The aim of this study was to investigate, whether environmental auditing in hospitals is useful. This process should also be cost effective. In this paper, methodological and organizational issues are described. Initially an environmental review of activities at the University Hospital, Freiburg and an eco-analysis of the input and output were performed. The first results of the study and a critical discussion will be presented in another paper.

Conservation of Energy Resources↗

Expression of the human MxA protein is associated with hyperphosphorylation of VSV P protein in human neural Cells.

Constitutive expression of the type I interferon-inducible human cytoplasmic MxA protein has been shown to interfere with primary transcription of vesicular stomatitis virus (VSV) in tissue culture cells. As phosphorylation of the VSV P protein has been linked to its ability to stimulate viral transcription, we analyzed the phosphorylation status of this protein in human brain cells (U-87) stably transfected with MxA. We observed a general increase in cellular kinase activity in the presence of MxA, affecting both cellular proteins and VSV P protein. Phosphorylation of the latter was up to threefold higher both in vivo and in vitro. In vitro phosphorylation of recombinant VSV P protein could be enhanced in MxA-negative cell extracts after exogenous addition of recombinant His-MxA. Biochemical evidence and phosphorylation of a mutant P protein lacking the recognized casein kinase II (CKII) sites suggested that hyperphosphorylation of VSV P protein was not due to a stimulation of CKII. We thus propose that expression of MxA in human brain cells is associated with the stimulation of a cellular kinase that is active in phosphorylating both cellular target proteins and VSV P protein.

Casein Kinase II↗

Expression of a renal type I sodium/phosphate transporter (NaPi-1) induces a conductance in Xenopus oocytes permeable for organic and inorganic anions.

Two distinct molecular types (I and II) of renal proximal tubular brush border Na+/Pi cotransporters have been identified by expression cloning on the basis of their capacity to induce Na+-dependent Pi influx in tracer experiments. Whereas the type II transporters (e.g., NaPi-2 and NaPi-3) resemble well known characteristics of brush border Na+/Pi cotransport, little is known about the properties of the type I transporter (NaPi-1). In contrast to type II, type I transporters produced electrogenic transport only at high extracellular Pi concentrations (> or =3 mM). On the other hand, expression of NaPi-1 induced a Cl- conductance in Xenopus laevis oocytes, which was inhibited by Cl- channel blockers [5-nitro-2-(3-phenylpropylamino)benzoic acid (NPPB) > niflumic acid >> 4,4'-diisothiocyanatostilbene-2,2'-disulfonic acid]. Further, the Cl- conductance was inhibited by the organic anions phenol red, benzylpenicillin (penicillin G), and probenecid. These organic anions induced outwardly directed currents in the absence of Cl-. In tracer studies, we observed uptake of benzylpenicillin with a Km of 0.22 mM; benzylpenicillin uptake was inhibited by NPPB and niflumic acid. These findings suggest that the type I Na+/Pi cotransporter functions also as a novel type of anion channel permeable not only for Cl- but also for organic anions. Such an apical anion channel could serve an important role in the transport of Cl- and the excretion of anionic xenobiotics.

Animals↗

The IVS6 segment of the L-type calcium channel is critical for the action of dihydropyridines and phenylalkylamines.

The current through the L-type calcium channel is inhibited and stimulated by distinct dihydropyridines at very low concentrations. The molecular determinants for the high affinity block and stimulation were investigated using chimeras between the class C and E calcium channels. Mutation of three amino acids in the last putative transmembrane segment (IVS6) of the alpha1C subunit decreased the affinity for (+)isradipine 100-fold without significantly affecting the basic properties of the expressed channel. Mutation of two of these three amino acids completely abolished the stimulatory effect of the calcium channel agonist Bay K 8644. These mutations only slightly affected the blocking efficacy of mibefradil and the phenylalkylamine devapamil. Three distinct but adjacently located amino acids mediated the high affinity block by devapamil. These results suggest that the IVS6 segment of the alpha1C subunit is critical for the high affinity interaction between the L-type calcium channel and the calcium channel agonist Bay K 8644 and the two antagonists isradipine and devapamil.

3-Pyridinecarboxylic acid, 1,4-dihydro-2,6-dimethy↗

Clinical applications of registration and fusion of multimodality brain images from PET, SPECT, CT, and MRI.

Several image registration and fusion techniques have been discussed in the context of applying them to patient studies obtained during clinical workup. Mainly retrospective techniques, either automated or interactive, seem to be flexible enough to be adapted to clinical situations. Examples are provided to express the usefulness of multi-modality, multi-tracer brain studies.

Brain↗

Effects of native and oxidation-resistant secretory leukoprotease inhibitor on cystic fibrosis sputum: inhibition of neutrophil elastase activity and of sputum-induced secretion from porcine tracheal submucosal glands.

Because the antiprotease defense in cystic fibrosis (CF) airways is overwhelmed by neutrophil elastase (NE), substitution of antiproteases such as secretory leukoprotease inhibitor (SLPI) seems to be a reasonable therapeutic approach. Knowing, however, that native antiproteases may be liable to rapid inactivation by the locally abundant oxidants, we comparatively investigated the interactions of CF sputum with recombinant native SLPI (rSLPI) and its partially oxidation-resistant variant (rSLPI-242), respectively, to estimate their therapeutic potentials. NE activity in supernatants from diluted CF sputum samples was dose-dependently inhibited by both rSLPI and rSLPI-242, with comparable potency. Addition of the oxidant N-chlorosuccinimide resulted in significant superiority of rSLPI-242 over rSLPI. When fresh neutrophil-rich CF sputum was incubated with rSLPI and rSLPI-242, respectively, rSLPI-242 inhibited sputum NE activity significantly more potently than did rSLPI; addition of the antioxidant superoxide dismutase significantly improved the effect of rSLPI. Furthermore, secretion of radiolabeled macromolecules from porcine tracheal glands induced by purified NE or by CF sputum was inhibited dose-dependently by rSLPI and even better by rSLPI-242. We conclude that both rSLPI and rSLPI-242 effectively inhibit NE activity and NE-induced gland hypersecretion in vitro. In vivo effects of CF remain to be analyzed; an advantage of the partially oxidation-resistant rSLPI-242 can be expected.

Adolescent↗

Substitution of conventional cyclosporin with a new microemulsion formulation in renal transplant patients: results after 1 year.

BACKGROUND: A new galenic form of cyclosporin A has been developed, based on microemulsion technology. The bioavailability of the compound is relatively independent of food intake and bile flow. It was the purpose of this prospective clinical trial to study the safety of the microemulsion form of cyclosporin A. METHODS: Three hundred and two renal transplant patients, stratified according to transplant age, were switched from the conventional to the new microemulsion formulation of cyclosporin A. A 1:1 conversion ration was used. Measurements included CsA levels, S-creatinine, liver enzymes, uric acid, and blood pressure. Measurements were performed at baseline and on days 4, 8, 15, 29 and months 3, 6 and 12 after conversion. Dose adjustments were performed to achieve through levels of 80-120 ng/ml. RESULTS: Within the 12-month observation period the cyclosporin dose was reduced by 14.7% (from 204 +/- 60 mg/day at baseline to 174 +/- 51 mg/day after conversion, P < 0.001). Acutely, i.e. by day 8, 1:1 dose conversion resulted in a modest increase of mean drug through levels (from 114 ng/ml at baseline to 120 ng/ml, P < 0.01). This increase was accompanied by an increase in serum creatinine concentration, a decrease in calculated creatinine clearance, and an increase in uric acid values (P < or = 0.05). Liver enzymes remained unchanged while systolic and mean arterial blood pressure decrease (P < 0.05). After 1 month, drug through levels had decreased to baseline (112 ng/ml) and remained there until month 6. They were significantly lower after 12 months (102 +/- 33 ng/ml), P <0.001). Creatinine clearance values increased to above baseline at 6 and 12 months. Within the 1-year period there occurred 24 (= 8%) episodes of biopsy proven rejection and seven episodes of cyclosporin-attributed nephrotoxicity. CONCLUSIONS: The 1:1 conversion from conventional cyclosporin A to the microemulsion formulation s efficacious and safe, but an initial dose reduction of 10% is advised in patients with through levels in the high-normal range.

Administration, Oral↗

Conversion to microemulsion cyclosporine in stable renal transplant patients: results after one year.

We switched 302 renal transplant patients from the conventional to a new microemulsion formulation of cyclosporine, to study the latter's safety and efficacy. We used a simple 1:1 conversion of the patient's total daily dose. We measured trough drug levels as well as serum creatinine, liver enzymes, uric acid, and blood pressure values at baseline and at days 4, 8, 15, 29, and months 3, 6 and 12 after drug substitution. Dose adjustments directed at trough levels 80-120 ng/ml were performed, starting at day 8. Within the 12-month observation period, the cyclosporine dose was reduced by 14.7% (204 +/- 60 mg/day baseline vs 174 +/- 51 mg/day after conversion, p < or = 0.001). By day 8, the 1:1 dosage conversion resulted in a modest mean increase in drug trough levels (114 ng/ml baseline vs 120 ng/ml, p < or = 0.01). This increase was accompanied by an increase in serum creatinine concentration, a decrease in calculated creatinine clearance, and an increase in uric acid values (p < or = 0.05). Liver enzymes remained unchanged while systolic and mean arterial blood pressure decreased (p < or = 0.05). After one month, drug trough levels had decreased to baseline (112 ng/ml) and remained there until month 6. They were significantly lower after 12 months (102 +/- 33 ng/ml, p < or = 0.001). Plasma creatinine values decreased to below baseline by month 6 (p < or = 0.001) and month 12 (p < or = 0.001). Twenty-four (8%) biopsy proven rejection episodes and 7 cases of cyclosporine attributed nephrotoxicity occurred in these 302 patients within these 12 months. We conclude, that a 1:1 conversion from conventional to the microemulsion form of cyclosporine is efficacious and safe. However, we advise an initial 10% decrease in dose reduction in those patients whose trough levels are in the high-normal range.

Adult↗

Heterogeneity of bromodeoxyuridine sensitivity of cultured cells from melanoma metastases.

Continuously growing cell cultures, testing positive for tyrosine activity, were derived from two brain and three lymph-node metastases of five patients with malignant melanoma. These cell cultures were analyzed regarding their proliferation rate with continuous bromodeoxyuridine (BrdUrd) labeling followed by bivariate Hoechst 33258/ethidium bromide flow cytometry. Melanoma cell cultures are more sensitive toward BrdUrd in comparison to human diploid fibroblast cultures: 50% growth inhibition at 360 +/- 130 microM BrdUrd (range: 130-520; n = 11) vs. 650 +/- 50 microM BrdUrd (n = 3) for fibroblasts. Moreover, BrdUrd sensitivity in melanoma cells is oxygen dependent: 50% growth inhibition at 200 +/- 55 microM (range: 65-400 microM) for 20% oxygen vs. 360 +/- 130 microM BrdUrd for 5% oxygen. The cell cycle kinetic mechanisms of BrdUrd-induced growth inhibition is accumulation of cells in the G2 phase. Cultures from a single metastasis showed up to a 3-fold variation in BrdUrd sensitivity. In one of the brain metastases two populations of different ploidy level (pseudotriploid vs. pseudotetraploid) and BrdUrd sensitivity could be resolved. Thus, continuous BrdUrd labeling followed by bivariate Hoechst 33258/ethidium bromide flow cytometry is a powerful tool to detect heterogeneity in proliferative capacity and drug sensitivity of cell populations within one tumor biopsy.

Bisbenzimidazole↗

Involvement of cellular casein kinase II in the phosphorylation of measles virus P protein: identification of phosphorylation sites.

The phosphoprotein P gene of measles virus (Edmonston strain) has been cloned in the Escherichia coli expression vector pET-3a with a histidine tag at the C-terminal end. The expressed protein was soluble, unphosphorylated, and constituted 10 to 20% of total cellular protein. Recombinant P protein purified by Ni-affinity chromatography was found to be efficiently phosphorylated in vitro by recombinant casein kinase II (CKII) or by the CKII activity present in the uninfected cell extract. A comparison of phosphopeptide analyses between the in vivo- and the in vitro-32P-labeled P proteins revealed that both proteins share common phosphorylation sites. In an attempt to identify the exact site of the CKII-mediated phosphorylation, we altered specific serine residues located within the CKII consensus motif to alanine by site-directed mutagenesis. The results indicate that Ser 86, Ser 151, and Ser 180 located within the N-terminal half of the P protein are involved in the CKII-mediated phosphorylation of the P protein.

Alkaloids↗

Two stable cell lines for screening of calcium channel blockers.

Stable cell lines are potentially excellent tools for large-scale screening of new compounds. Two carboxyterminal-deleted constructs of the two splice variants a and b of the calcium channel class C alpha 1 subunit were expressed stably in HEK 293 cells. Each cell line produced regular L-type calcium currents. The opening and closing of the calcium channel elicited by potassium depolarization was followed by Fura-2 transients. These transients were blocked by the calcium channel blocker mibefradil with a concentration for 50% inhibition of 1.7 microM. The cell lines expressing the truncated cardiac alpha 1C-a or smooth muscle alpha 1C-b calcium channel were both blocked by nisoldipine under patch clamp conditions. Nisoldipine interacted with higher affinity with the alpha 1C-b channel than with the alpha 1C-a channel. These results indicate that the two cell lines retain the differential dihydropyridine sensitivity of smooth muscle and cardiac calcium channels and may be potential tools for the screening of L-type calcium channel blockers.

Benzimidazoles↗

On the regulation of the expressed L-type calcium channel by cAMP-dependent phosphorylation.

The Ca2+ channel subunits alpha 1C-a and alpha 1C-b were stably expressed in Chinese hamster ovary (CHO) and human embryonic kidney (HEK) 293 cells. The peak Ba2+ current (IBa) of these cells was not affected significantly by internal dialysis with 0.1 mM cAMP-dependent protein kinase inhibitor peptide (mPKI), 25 microM cAMP-dependent protein kinase catalytic subunit (PKA), or a combination of 25 microM PKA and 1 microM okadaic acid. The activity of the alpha 1C-b channel subunit expressed stably in HEK 293 cells was depressed by 1 microM H 89 and was not increased by superfusion with 5 microM forskolin plus 20 microM isobutyl-methylxanthine (IBMX). The alpha 1C-a.beta 2.alpha 2/delta complex was transiently expressed in HEK 293 cells; it was inhibited by internal dialysis of the cells with 1 microM H 89, but was not affected by internal dialysis with mPKI, PKA or microcystin. Internal dialysis of cells expressing the alpha 1C-a.beta 2.alpha 2/delta channel with 10 microM PKA did not induce facilitation after a 150-ms prepulse to +50 mV. The Ca2+ current (ICa) of cardiac myocytes increased threefold during internal dialysis with 5 microM PKA or 25 microM microcystin and during external superfusion with 0.1 microM isoproterenol or 5 microM forskolin plus 50 microM IBMX. These results indicate that the L-type Ca2+ channel expressed is not modulated by cAMP-dependent phosphorylation to the same extent as in native cardiac myocytes.

Animals↗