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Biomedical subjects

A Werner

Publications and source records attributed to A Werner.

At least 145 records · Page 8Linked to original sources

Action of compression and cations on the proton and deuterium relaxation in cartilage.

In this paper, investigations are described on the influence of osmotic pressures and of varying cation concentrations on water relaxation times in cartilage (pig articular cartilage and bovine nasal cartilage). Both water content and relaxation times decrease strongly with increasing osmotic pressure. This relaxation behavior can be explained in terms of a fast chemical exchange between unbound and bound water. Na+ does not influence water content or relaxation times, whereas Ca2+ causes a small reduction in these parameters.

Animals↗

Down-regulation of RAG1 and RAG2 gene expression in preB cells after functional immunoglobulin heavy chain rearrangement.

Two waves of immunoglobulin gene rearrangements, first of the heavy, then of the light chain chain gene loci form functional immunoglobulin genes during B cell development. In mouse bone marrow the differential surface expression of B220 (CD45R), c-kit, CD25, and surrogate light chain as well as the cell cycle status allows FACS separation of the cells in which these two waves of rearrangements occur. The gene products of two recombination activating genes, RAG1 and RAG2 are crucial for this rearrangement process. Here, we show that the expression of the RAG genes is twice up- and down-regulated, at the transcriptional level for RAG1 and RAG2, and at the postranscriptional level for RAG2 protein. Expression levels are high in D-->JH and VH-->DJH rearranging proB and preB-I cells, low in preB cells expressing the preB cell receptor on the cell surface, and high again in VL-->JL rearranging small preB-II cells. In immature B cells expressing on the cell surface RAG1 and RAG2 mRNA is down-regulated, whereas RAG2 protein levels are maintained. Down-regulation of RAG1 and RAG2 gene expression after productive rearrangement at one heavy chain allele might be part of the mechanisms that prevent further rearrangements at the other allele.

Animals↗

Oxygen radical generation and acute pancreatitis: effects of dibutyltin dichloride/ethanol and ethanol on rat pancreas.

Recent studies suggest that enhanced release of free oxygen radicals plays an important role in the pathogenesis of acute pancreatitis. Therefore, we studied the activity of the oxygen radical generating xanthine oxidase (XOD) in pancreatic tissue from rats treated with either dibutyltin dichloride/ethanol (DBTC/EtOH: 6 mg kg-1/13.7 mg kg-1, i.v.), ethanol alone (EtOH: 13.7 mmol kg-1, i.v.), or isotonic saline (NaCl) as control. We also investigated activities of the oxygen radical scavengers superoxide dismutase (SOD) and glutathione peroxidase (GPX). In addition, levels of the lipid peroxidation marker malondialdehyde (MDA) were determined. Enhanced activity of XOD was not detected. While SOD activity 1 and 6 h after treatment was significantly more reduced by DBTC/EtOH than by EtOH alone, no difference was found thereafter. Correspondingly, both regimens diminished GPX activity. Moreover, DBTC/EtOH and EtOH rapidly increased MDA levels within 1 h, indicating release of oxygen radicals early on after administration. After 16 h the MDA concentration was still elevated only in the DBTC/EtOH group. Although similar metabolic alterations were observed in both groups, only DBTC/EtOH induced acute interstitial pancreatitis within 24 h. We conclude that (a) a tissue imbalance between oxidants and antioxidants might be of importance in the pathogenesis of DBTC/EtOH-induced acute interstitial pancreatitis; (b) although EtOH increases oxygen radical levels, additional damage is required for development of acute pancreatitis; (c) XOD does not seem to be responsible for significant oxygen radical generation; and (d) the DBTC/EtOH model is a useful tool to study acute interstitial pancreatitis in rats.

Acute Disease↗

Clinical effects of recent cocaine use on patients with acute schizophrenia.

OBJECTIVE: Dopamine function has been hypothesized to be involved in both producing schizophrenic symptoms and mediating cocaine's reinforcing properties. As a result, cocaine abuse in schizophrenic patients may be seen as a natural experiment that may alter the phenomenology and neurobiology of schizophrenia. This report concerns the clinical effects of cocaine abuse and cessation in schizophrenic patients at two times: when patients presented to the psychiatric emergency service and again after 4 weeks of hospitalization. METHOD: The subjects were 15 cocaine-abusing and 22 cocaine-abstaining schizophrenic patients. Diagnostic assessments were performed with the Structured Clinical Interview for DSM-III-R--Patient Version, which uses DSM-III-R criteria. All of the patients were assessed at both times with the Brief Psychiatric Rating Scale, the Scale for the Assessment of Positive Symptoms, and the Scale for the Assessment of Negative Symptoms. RESULTS: Cocaine-abusing schizophrenic patients showed fewer negative signs and more anxiety/depression at the hospital-admission assessment than their nonabusing counterparts. At retest, no group differences were detected in patients' negative signs or mood symptoms. Severity of positive symptoms was equal at both testing sessions. CONCLUSIONS: The significant difference in negative signs and mood symptoms at admission assessment was attributed to the neurobiological impact of cocaine. The role of psychostimulants in schizophrenic patients is discussed.

Acute Disease↗

[Comparison of the effectiveness of sodium azide and merthiolate as bacteriocidal agents--a NMR study].

The pseudohalogenide sodium azide (NaN3) and the organometallic mercury compound merthiolate (sodium salt of ethyl mercurithiosalicylate) are commonly used as preserving solutions for biomaterials. In the present paper, these preserving solutions were compared for their efficacy in preserving porcine articular cartilage. For this purpose, porcine articular cartilage was incubated with phosphate buffer containing the corresponding amounts of NaN3 or merthiolate. Supernatants were assayed using NMR spectroscopy, and the content of soluble saccharides was determined using the dye Alcian blue. The results obtained clearly indicate that merthiolate is more effective than sodium azide. This makes the former a more suitable preserving agent for the storage of cartilage. A significant decrease in the lactate concentration, and enhancement of the acetate and the N-acetyl resonances indicate degenerative changes in the cartilage. However, when a large excess of sodium azide is used, its efficacy approaches that of merthiolate.

Animals↗

Changes in blood pressure control in aged rats.

The aging process is related to several changes in cardiovascular, metabolic and autonomic functions. However, descriptions of changes in arterial pressure (AP), baroreflex sensitivity and associated variations of serum glucose and insulin are controversial. The aim of this paper was to study AP, baroreflex sensitivity and changes in plasma levels of glucose and insulin of young (10 weeks, 239 +/- 4.3 g) and aged (18-24 months, 412 +/- 8.5 g) male Wistar rats. AP pulses were videotaped and processed on a microcomputer, using an analog-to-digital converter (beat-to-beat analysis). Baroreflex sensitivity was evaluated measuring heart rate changes induced by mean arterial pressure (MAP) variations produced by phenylephrine and sodium nitroprusside injections (N = 10 in each group). Plasma glucose (N = 10 in each group) and plasma insulin (N = 6 in each group) were quantified by a colorimetric enzymatic test and radioimmunoassay, respectively. There were no differences in systolic, diastolic or mean AP (110 +/- 5 vs 107 +/- 3 mmHg) between aged and young rats. The tachycardic response to the reduction of AP was impaired in aged compared to young rats (-1.95 +/- 0.29 vs -3.26 +/- 0.49 bpm/mmHg), while the bradycardic response to increases in AP was similar (-1.02 +/- 0.22 vs -1.5 +/- 0.26 bpm/mmHg). Basal levels of glucose (83 +/- 6 vs 62 +/- 4 mg/dl) and insulin (8.3 +/- 2 vs 4 +/- 0.5 microU/ml) were different. Thus, the reflex tachycardia evoked by a fall in AP is depressed in old rats.(ABSTRACT TRUNCATED AT 250 WORDS)

Age Factors↗

Increase of Na/Pi-cotransport encoding mRNA in response to low Pi diet in rat kidney cortex.

Renal proximal Na/Pi-cotransport is increased in response to low dietary Pi intake. Recently, a cDNA (NaPi-2) related to the rat renal brush membrane Na/Pi-cotransporter has been cloned. In the present study, we used rats fed for 6 days with either a low Pi diet (LPD) or a high Pi diet (HPD), respectively. In parallel to an increased renal brush-border membrane Na/Pi-cotransport in LPD rats, there was also an increased content of NaPi-2 mRNA in renal cortex. After injection into Xenopus laevis oocytes, mRNA isolated from LPD rats induced a greater increase in Na/Pi-cotransport compared to mRNA from HPD rats. Hybrid depletion experiments suggested that mRNA-induced Na/Pi-cotransport is related to NaPi-2. We conclude that chronic Pi deprivation leads to an increased brush-border membrane Na/Pi-cotransport via an increase in the level of (NaPi-2) mRNA.

Animals↗

Expression of a renal Na(+)-nucleoside cotransport system (N2) in Xenopus laevis oocytes.

Xenopus laevis oocytes have been used for the expression of a renal, pyrimidine-selective, Na(+)-nucleoside cotransporter (N2). As compared to its uptake in water-injected oocytes, Na(+)-dependent thymidine uptake was enhanced in a time- and dose-dependent manner in oocytes injected with rat renal cortex total poly(A)+ RNA. An increased uptake was also observed after injection of size fractionated rat renal cortex poly(A)+ RNA (2-3 kb). Consistent with the selectivity of the N2 nucleoside transporter, cytidine significantly inhibited Na(+)-dependent thymidine uptake in oocytes injected with total poly(A)+ RNA whereas guanosine and formycin B did not. Na(+)-dependent thymidine uptake was also enhanced in oocytes injected with size fractionated human renal cortex poly(A)+ RNA (2-3 kb). The above data demonstrate functional expression of renal cortex, Na(+)-nucleoside cotransporters in Xenopus laevis oocytes.

Animals↗

Silane treatment of filler and composite blending in a one-step procedure for dental restoratives.

The aim of this study was to investigate whether a one-step procedure of silane treatment of filler and composite blending could also produce the strong resin-filler integrity, as can be obtained for dental composites in two steps by pretreating the filler with a silane coupling agent before blending. Resin mixtures containing either a silane-functional methacrylate or a non-silane-functional methacrylate were blended with silane pretreated or non-treated filler particles. The resin-filler integrity of the composites was determined from the wear performance in three-body wear tests. For composites with the non-silane-functional methacrylate the wear rates dramatically decreased when the silane pretreated filler was used instead of untreated filler, showing the efficacy of the silane treatment. For composites with the silane-functional methacrylate the decrease was small, indicating comparable resin-filler integrity for the one-step and the two-step procedures.

Analysis of Variance↗

Characterization of a human Kaposi's sarcoma cell line that induces angiogenic tumors in animals.

OBJECTIVE: To characterize a Kaposi's sarcoma (KS) cell line established from a tumor biopsy from the oral mucosa of an iatrogenically immunosuppressed HIV-negative man. METHODS: Cells were placed in culture and evaluated by a variety of biologic, serologic, karyotypic, and immunologic procedures. Electron microscopic examination was performed. The ability to produce tumors in nude mice was evaluated, and the nature of the cells within the tumor determined. Assays for urokinase plasminogen activator type (uPA), plasminogen activator inhibitor-1 (PAI-1) and the urokinase receptor (uPAR) were conducted. RESULTS: The SLK cell line has an endothelial cell morphology with very little anaplasia. The karyotype indicates diploid phenotype of human origin. Immunohistochemical and electron microscopic examinations confirmed the endothelial nature of this cell line. No viruses were detected. The tumors induced in nude mice showed hypervascularization, with characteristics of KS. The cell line produces uPA and PAI-1, and also expresses uPAR. CONCLUSIONS: The SLK cell line is of endothelial cell origin and the first human cell line to induce KS-like tumors in recipient animals. The expression of urokinase and its receptor suggests a paracrine and autocrine interaction that may be important for the growth of the tumor. The SLK line should be valuable for studies of KS pathogenesis and therapeutic approaches to this malignancy.

Animals↗

Differential regulation of cellular tropism and sensitivity to soluble CD4 neutralization by the envelope gp120 of human immunodeficiency virus type 1.

Using recombinant and mutant viruses generated between two human immunodeficiency virus type 1 isolates that display differences in cell tropism and sensitivity to soluble CD4 neutralization, we show that these two properties of the virus are regulated by different mechanisms. Whereas there is an association between V3 loop conformation and a particular cellular tropism, soluble CD4 neutralization sensitivity appears to be determined by amino acid differences in the C2 domain of the envelope gp120 that modulate the stability of gp120-gp41 association. Our findings further illustrate the importance of functional interactions among different regions of the envelope gp120 in regulating the biological phenotypes of human immunodeficiency virus and suggest that additional probing of the V3 loop with monoclonal antibodies may identify specific structural features of this loop that determine cell tropism.

Amino Acid Sequence↗

Cloning and expression of a renal Na-Pi cotransport system from flounder.

Starting with the recently published sequence of the rat renal Na-Pi cotransport system, we have cloned a corresponding cDNA from the kidney of winter flounder (Pseudopleuronectes americanus), designated flounder NaPi-II. Expression of the cognate in vitro transcribed RNA in Xenopus laevis oocytes stimulated Na-dependent Pi transport specifically and in a time- and dose-dependent manner. Apparent affinities of Na and Pi, as well as the pH dependency, were very similar to those found for the mammalian systems. The flounder NaPi-II cDNA is 2,424 base pairs long and encodes a protein of 637 amino acids. The hydropathy plot predicts eight transmembrane spanning domains. In these regions the flounder NaPi-II-deduced protein shows high homology (approximately 80%, identity, approximately 92% similarity) with the amino acid sequences reported for mammalian NaPi-II proteins. However, in the hydrophilic parts of flounder NaPi-II protein, only minimal similarity could be found between fish and mammalian systems (30% homology, 45% similarity). Northern blot analysis with flounder NaPi-II cDNA as a probe confirmed this finding: even under nonstringent washing conditions, no cross-hybridization with mRNA from rat renal cortex was observed. Interestingly, flounder intestine was found to contain high levels of mRNA corresponding to NaPi-II. Supplementary bands of 1.9 and 4.2 kb were observed on Northern blots of renal and intestinal tissue. The close functional relationship of the flounder NaPi-II protein with the previously described Na-Pi cotransport systems and the pronounced differences on the level of their primary structures provide the tools for detailed structure-function analysis of Na-Pi cotransport.

Amino Acid Sequence↗

Renal Na(+)-phosphate cotransport in murine X-linked hypophosphatemic rickets. Molecular characterization.

The X-linked Hyp mouse is characterized by a specific defect in proximal tubular phosphate (Pi) reabsorption that is associated with a decrease in Vmax of the high affinity Na(+)-Pi cotransport system in the renal brush border membrane. To understand the mechanism for Vmax reduction, we examined the effect of the Hyp mutation on renal expression of Na(+)-Pi cotransporter mRNA and protein. Northern hybridization of renal RNA with a rat, renal-specific Na(+)-Pi cotransporter cDNA probe (NaPi-2) (Magagnin et al. 1993. Proc. Natl. Acad. Sci. USA. 90:5979-5983.) demonstrated a reduction in a 2.6-kb transcript in kidneys of Hyp mice relative to normal littermates (NaPi-2/beta-actin mRNA = 57 +/- 6% of normal in Hyp mice, n = 6, P < 0.01). Na(+)-Pi cotransport, but not Na(+)-sulfate cotransport, was approximately 50% lower in Xenopus oocytes injected with renal mRNA extracted from Hyp mice when compared with that from normal mice. Hybrid depletion experiments documented that the mRNA-dependent expression of Na(+)-Pi cotransport in oocytes was related to NaPi-2. Western analysis demonstrated that NaPi-2 protein is also significantly reduced in brush border membranes of Hyp mice when compared to normals. The present data demonstrate that the specific reduction in renal Na(+)-Pi cotransport in brush border membranes of Hyp mice can be ascribed to a proportionate decrease in the abundance of Na(+)-Pi cotransporter mRNA and protein.

Animals↗

Reversed-phase and ion-pair separations of nucleotides, nucleosides and nucleobases: analysis of biological samples in health and disease.

Methods for the assay of nucleotides, nucleosides and nucleobases in biological samples in health and disease are reviewed, with emphasis on reversed-phase and ion-pair reversed-phase techniques for their determination. Modes of extraction from biological samples are discussed with respect of the determination of in vivo concentrations. Advantages and limitations of ion-pair reversed-phase chromatography are discussed with examples from biochemistry and clinical chemistry. The capacity of the high-performance capillary electrophoresis is compared with that of ion-pair reversed-phase chromatography.

Animals↗