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Biomedical subjects

S Wagner

Publications and source records attributed to S Wagner.

At least 253 records · Page 14Linked to original sources

Polymerase chain reaction monitoring reduces the incidence of cytomegalovirus disease and the duration and side effects of antiviral therapy after bone marrow transplantation.

Culture-based preemptive therapy with ganciclovir was shown to reduce the incidence of cytomegalovirus (CMV) disease after bone marrow transplantation (BMT). Culture techniques did not detect CMV in 12% to 13% of patients before the onset of CMV disease. In a prospective study, 71 patients either received preemptive therapy based on polymerase chain reaction (PCR) technique (37 patients) or on culture assays (34 patients). In both groups, therapy was continued until clinical signs disappeared and PCR negativity was documented. Twenty-two patients in the PCR group and 15 patients in the culture group received antiviral therapy. PCR allowed detection of the virus (median day, +32 v day +49; P = .006) and introduction of antiviral therapy (median day, +44 v day +54; P = .02) earlier than did culture assays. The incidences of CMV disease (2 of 37 v 8 of 34 in PCR group v culture group, respectively; P = .02) and CMV-associated mortality (0 of 37 v 5 of 34 in PCR group v culture group, respectively; P = .02) were decreased, and the duration of ganciclovir therapy (P < .001) was shorter in the PCR-monitored group. Incidence and median duration of severe neutropenia (less than 500/microL) were lower in the PCR group (two v eight episodes, P = .02; median duration, 1.5 v 5 days, P = .04), as was the incidence of nonviral infections during/after antiviral therapy (2 of 37 v 9 of 34; P = .012). Thus, preemptive therapy based on more sensitive detection methods such as the PCR assay reduces the incidence of CMV disease and CMV-related mortality. Additionally, stopping and withholding antiviral therapy in a PCR-negative patient is safe and allows reduction of the duration and side effects of antiviral therapy.

Adolescent↗

Recognition of bZIP proteins by the human T-cell leukaemia virus transactivator Tax.

Human T-cell leukaemia virus type I (HTLV-I) Tax protein increases the DNA binding of many cellular transcription factors that contain a basic region-leucine zipper (bZIP) DNA-binding domain. bZIP domains comprise a leucine-rich dimerization motif and a basic region that mediates DNA contact. How Tax recognizes diverse bZIPs is not understood. Here we show that no specific sequence of the leucine zipper is required for a Tax response. In contrast, the basic region is essential for the Tax-mediated DNA-binding increase, which can be eliminated by single substitutions of several conserved amino acids. Surprisingly, Tax alters the relative affinity of a bZIP for different DNA binding sites. Thus, through recognition of the conserved basic region. Tax increases DNA binding and modifies DNA site selection. Tax provides a model for how a single auxiliary factor can regulate multiple sequence-specific DNA-binding proteins.

Amino Acid Sequence↗

Different effects on gating of three myotonia-causing mutations in the inactivation gate of the human muscle sodium channel.

1. Three mutations at the same site in the inactivation gate of the alpha-subunit of the human muscle Na+ channel, G1306E, G1306V and G1306A, cause three phenotypes of K(+)-aggravated myotonia: G1306E as the most severe and G1306A as the most benign form. 2. Recombinant wildtype (WT) and mutant (G1306E, G1306V and G1306A) human Na+ channels were expressed in human embryonic kidney cells (HEK293). G1306E and G1306V channels showed a distinct increase in the time constants of inactivation (tau h1 and tau h2) and in the ratios of steady-state to peak currents (Iss/Ipeak) (e.g. at 0 mV, G1306E vs. WT; tau h1, 1.29 +/- 0.10 vs. 0.52 +/- 0.01 ms; Iss/Ipeak, 2.90 +/- 0.40 vs. 0.93 +/- 0.19%). G1306A channels showed only an increase in tau h1 (0.74 +/- 0.07 ms). For G1306E and G1306V channels, the steady-state inactivation curves, as well as the voltage dependence of the rate of recovery from inactivation, were shifted by +15 mV. For G1306A the h infinity curve was shifted by only +5 mV. 3. G1306E and G1306V channels showed prolonged current rise times and later first openings suggesting slowing of activation. For G1306E channels only, the steady-state activation curve was shifted by -7 mV. For all mutants the deactivation time constants were increased. 4. We conclude that (i) the combination of alterations in inactivation and activation produces the slowing of the current decay, (ii) the slowed inactivation is most responsible for myotonia, and (iii) the shift of the steady-state activation curve, seen only with G1306E channels, may explain the severity of this phenotype. 5. The results suggest that two of the mutations in the Na+ channel inactivation gate also alter channel activation and deactivation.

Base Sequence↗

Acute accidental lindane ingestion in toddlers.

Lindane toxicity has been reported to occur mostly by way of dermal exposure. Cases of ingestion in which blood levels have been determined are rare. We present three such cases, along with a comparison of cases in the literature with respect to blood level half-lives and correlation with signs of toxicity. Emergency physicians can prevent acute ingestion by educating patients on the proper use of lindane and by selecting less toxic scabicidal agents.

Acute Disease↗

Evaluation of gadobutrol in a rabbit model as a new lanthanide contrast agent for computed tomography.

RATIONALE AND OBJECTIVES: The efficacy of the neutral lanthanide contrast agent gadobutrol was compared to that of the iodinated contrast agent iopromide in rabbits. METHODS: The computed tomography (CT) attenuation of increasing concentrations of gadolinium (Gd) (gadobutrol) and iodine (I) (iopromide) was measured in Hounsfield units (HU) in aqueous solution at 80, 120, and 137 kV. The peak enhancement (net increase in CT attenuation compared with baseline) and the time-enhancement product in the aorta and in the renal parenchyma of the outer and inner cortex were measured in rabbits over a 5-minute period after the animals were given single intravenous injections of 0.7, 1.0, and 1.5 mmol Gd/kg of gadobutrol and 1.0 and 2.4 mmol I/kg of iopromide. RESULTS: In vitro, the CT attenuation of gadolinium was 40% higher than that of iodine at equivalent mass concentrations (120 kV). The mean peak enhancements in the aorta after the injections of 0.7, 1.0, and 1.5 mmol Gd/kg and 1.0 and 2.4 mmol I/kg were 216, 313, 591, 224, and 498 HU, respectively. In addition, a 30-second injection of the high dose of gadobutrol resulted in an attenuation profile that was suitable for a three-dimensional reconstruction of the aorta and the renal vasculature. CONCLUSIONS: Because of the higher CT attenuation of gadolinium compared with that of iodine, the neutral macrocyclic chelate gadobutrol is a more effective contrast agent than iopromide for CT at lower doses of the imaging atom.

Angiography↗

Pharmacokinetics and pharmacodynamics of roxatidine in patients with renal insufficiency.

1. Roxatidine acetate, a new histamine H2-receptor antagonist, was administered in the evening (75 mg p.o.) to eight patients with renal insufficiency (CLCR 8-17 ml min-1) for 12 days and plasma drug concentrations were measured. 2. Ambulatory intragastric pH was monitored following the last dose and values were compared with those on day 1 when all patients received a placebo. 3. The terminal elimination half-life (mean +/- s.d.) of roxatidine was 10.8 +/- 2.4 h and its oral clearance was 178 +/- 43 ml min-1. 4. During roxatidine treatment gastrin levels increased slightly (median 189 vs 289 ng l-1) and the hyperparathyroid status of the patients was almost normalized (parathyroid hormone levels: median 199 vs 132 ng l-1). 5. The mean latency to a gastric pH of at least 4 was 4.3 +/- 1.4 h. The duration of action (intragastric pH > 4) was 10.6 +/- 3.9 h. 6. As in a pilot study with six patients (CLCR < or = 17 ml min-1) the recommended dosage regimen (75 mg 48 h-1) was unable to maintain gastric pH > 4 for more than 6 h, daily nocturnal intake of 75 mg roxatidine acetate appears appropriate to elevate gastric pH > 4 for a sufficient period of time.

Adult↗

Bismuth subcitrate and omeprazole inhibit Helicobacter pyloriF1-ATPase.

The effects of various types of antiulcer agents against Helicobacter pylori F1-ATPase were studied. ATPase was released into the aqueous phase (i.e., solubilized) by sonication. The enzyme activity depended on Mg2+, but not Ca2+. The maximum activity occurred at an ATP/Mg2+ ratio of 1/5 and at pH 7.5. Mg(2+)-dependent ATPase activity was inhibited by sodium azide and the monovalent cations K+ and Na+, but not by oligomycin, dicyclohexylcarbodiimide, ouabain, or SCH 28080. The antiulcer agents ranitidine, pirenzepine, aluminum hydroxide, and sucralfate failed to influence H. pylori F1-ATPase. In contrast, bismuth subcitrate and the H+/K(+)-ATPase inhibitor omeprazole inhibited the enzyme. Inhibition was prevented and reversed by the mercaptan glutathione, indicating that both drugs interfere with sulfhydryl groups of the enzyme. The data suggest that bismuth subcitrate and omeprazole owe their antibacterial activity against H. pylori, at least in part, to inhibition of F1-ATPase, an enzyme involved in bacterial energy metabolism.

Anti-Ulcer Agents↗

Neurological deficit and extent of neuronal necrosis attributable to middle cerebral artery occlusion in rats. Statistical validation.

BACKGROUND AND PURPOSE: Occluding a large intracranial artery in rats produces a brain lesion that grows in terms of an increase in both surface area and number of necrotic neurons. The present study investigated whether reperfusing the ischemic territory 30 to 60 minutes after the arterial occlusion would have a beneficial effect on either the clinical or the histological outcome of the lesion. METHODS: One hundred four adult rats (including appropriate controls) were used; 97 had a middle cerebral artery occluded by inserting a nylon monofilament via the right external carotid artery. The arterial occlusion was transient in two groups and permanent in another; survival times were comparable for all groups. Control animals were subjected to a sham operation during which the artery was occluded for less than 1 minute. The outcome was evaluated by measuring the extent of the neurological deficit and the severity of the histological injury. RESULTS: Mean neurological score and mean number of necrotic neurons in the cortex were more favorable after transient (30- to 60-minute) compared with permanent arterial occlusion (P < .005). Moreover, the correlation between mean neurological score and mean number of necrotic neurons was highly significant: r = .951; P < .001. CONCLUSIONS: The histological effects of an intracranial arterial occlusion in the adult rat can be predicted on day 1 by the neurological score described in this report. Significant improvement can be obtained in these animals by reestablishing arterial flow 60 minutes or sooner after the ictus. The pattern of cortical pannecrosis observed after permanent occlusion (> or = 72 hours) was transformed into incomplete ischemic injury in most instances of transient occlusion.

Animals↗

Helicobacter pylori infection is associated with low antral somatostatin content in young adults. Implications for the pathogenesis of hypergastrinemia.

BACKGROUND: Recent studies on the role of Helicobacter pylori in the pathogenesis of duodenal ulcers have focused on the mechanism by which H. pylori infections cause exaggerated gastrin release. METHODS: We determined meal-stimulated serum gastrin concentrations and antral somatostatin content in 24 asymptomatic volunteers (6 H. pylori-infected, 18 H. pylori-uninfected). Somatostatin content was determined by radioimmunoassay in biopsy specimens obtained from the antrum. RESULTS: Fasting and integrated 2-h gastrin concentrations were significantly higher in H. pylori-positive volunteers than in H. pylori-negative volunteers (fasting, 111 +/- 16.3 pmol/l versus 53.4 +/- 3.5 pmol/l; p < 0.05; integrated 2-h, 267 +/- 41.2 pmol/l versus 70.1 +/- 2.1 pmol/l; p < 0.01). Antral somatostatin content was 0.764 +/- 0.173 ng/mg and 2.931 +/- 0.414 ng/mg in H. pylori-positive and -negative volunteers, respectively (p < 0.01). CONCLUSIONS: Low antral somatostatin content may cause hypergastrinemia in asymptomatic healthy volunteers, and H. pylori may contribute to the pathogenesis of duodenal ulcer, through this mechanism.

Adult↗

Dissecting protein:protein interactions between transcription factors with an RNA aptamer.

Nucleic acid aptamers isolated from random sequence pools have generally proven useful at inhibiting the interactions of nucleic acid binding proteins with their cognate nucleic acids. In order to develop reagents that could also be used to study protein:protein interactions, we have used in vitro selection to search for RNA aptamers that could interact with the transactivating protein Tax from human T-cell leukemia virus. Tax does not normally bind to nucleic acids, but instead stimulates transcription by interacting with a variety of cellular transcription factors, including the cyclic AMP-response element binding protein (CREB), NF-kappa B, and the serum response factor (SRF). Starting from a pool of greater than 10(13) different RNAs with a core of 120 random sequence positions, RNAs were selected for their ability to be co-retained on nitrocellulose filters with Tax. After five cycles of selection and amplification, a single nucleic acid species remained. This aptamer was found to bind Tax with high affinity and specificity, and could disrupt complex formation between Tax and NF-kappa B, but not with SRF. The differential effects of our aptamer probe on protein:protein interactions suggest a model for how the transcription factor binding sites on the surface of the Tax protein are organized. This model is consistent with data from a variety of other studies.

Base Sequence↗

Identification of p90RSK as the probable CREB-Ser133 kinase in human melanocytes.

Normal human melanocytes proliferate in vitro only in response to costimulation by at least two selected peptide growth factors. In the presence of only one mitogen, melanocytes become quiescent or die. These mitogens also enhance expression of differentiated functions, since in their presence the proliferating melanocytes become progressively more pigmented. To assess the intermediates participating in this dual response, we have determined the activated state of several known ligand-induced signal transducers. We demonstrate that hepatocyte growth factor/scatter factor, mast/stem-cell growth factor, basic fibroblast growth factor, and endothelin-1 induce phosphorylation of Ser133 within the KID domain of the cAMP-responsive element binding protein, a modification necessary for transcriptional activation of all members of this family of transcription factors, including also cAMP-responsive element modulator tau and activating transcription factor 1. The costimulation with synergistic growth factors prolonged the phosphorylated state and activity of the mitogen-activated protein kinase 2 cascade. cAMP-responsive element binding protein Ser133 phosphorylation in response to synergistic growth factors was due probably to the activation of p90RSK and, to a lesser extent, to p70S6K. Our findings support the concept that signals initiated at the cell surface converge on regulatory proteins that sustain both cell division and differentiation.

Cell Count↗

[Diagnostic measures before laparoscopic cholecystectomy].

Successful use of laparoscopic cholecystectomy requires good cooperation between surgeon and gastroenterologist. Standard preoperative workup includes detailed history of the patient, blood chemistry of serum bilirubin and liver enzymes as well as sonography for the detection of common bile duct stones. Intravenous cholangiography can be performed to diagnose anatomic variations of the bile ducts. In case of common bile duct stones "therapeutic splitting" by endoscopic retrograde cholangiography with sphincterotomy and gallstone extraction preoperatively may help to avoid unnecessary conventional open cholecystectomy.

Cholangiography↗

K(+)-aggravated myotonia: destabilization of the inactivated state of the human muscle Na+ channel by the V1589M mutation.

1. Wild type (WT) and V1589M channels were expressed in human embryonic kidney (HEK293) cells for the study of the pathophysiology of the V1589M muscle Na+ channel mutation leading to K(+)-aggravated myotonia. 2. In comparison to WT, whole-cell recordings with V1589M channels showed an increased Na+ steady-state to peak current ratio (Iss/Ipeak) (3.15 +/- 0.70 vs. 0.87 +/- 0.10%, at -15 mV) and a significantly faster recovery from inactivation. The recovery time constants, tau r1 and tau r2, were decreased from 1.28 +/- 0.12 to 0.92 +/- 0.08 ms and from 4.74 +/- 0.94 to 2.66 +/- 0.51 ms for the WT and mutant channels, respectively. 3. Single-channel recordings with mutant channels showed higher probability of short isolated late openings (0.40 +/- 0.09 vs. 0.06 +/- 0.02, at -30 mV) and bursts of late openings (0.011 +/- 0.003 vs. 0.003 +/- 0.001, at -30 mV) compared to WT. 4. These results suggest that the mutation increases the probabilities for channel transitions from the inactivated to the closed and the opened states. 5. Increased extracellular concentrations of K+ had no effects on either V1589M or WT currents in HEK293 cells. The aggravation of myotonia seen in patients during increased serum K+ may arise from the associated membrane depolarization which favours the occurrence of late openings in the mutant channel.

Cell Line↗