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Biomedical subjects

V Lehmann

Publications and source records attributed to V Lehmann.

At least 37 records · Page 2Linked to original sources

Induction of NO synthesis in macrophages by Newcastle disease virus is associated with activation of nuclear factor-kappa B.

Newcastle disease virus (NDV) has received much attention recently because of its non-specific immune stimulating potential and its various anti-tumor activities. Here we describe that NDV induces synthesis of NO and causes an activation of nuclear factor-kappa B (NF-kappa B) in murine macrophages. These reactions were part of an activation process which included also stimulation of adenosine deaminase and inhibition of 5'-nucleotidase. NDV-mediated NO synthesis and NF-kappa B activation were blocked by an antioxidant (butylated hydroxyanisole), by an inhibitor of protein tyrosine kinase (genistein) and of protein kinase A (H-89), but not by an inhibitor of protein kinase C (staurosporin). These data suggest that signalling requirements of NF-kappa B activation and NO production in NDV-treated macrophages are similar.

Adenosine Deaminase↗

S-adenosylhomocysteine as a physiological modulator of Apo-1-mediated apoptosis.

APO-1/Fas (CD95) is a member of the tumor necrosis factor/nerve growth factor receptor superfamily and mediates apoptosis in various cell types. Here we show that L929 cells, expressing human APO-1 treated with agonistic antibodies (anti-APO-1), elicit an early and transient increase of S-adenosylhomocysteine (AdoHcy), a potent inhibitor of S-adenosylmethionine (AdoMet)-dependent methylation reactions. In contrast, anti-APO-1 did not induce an AdoHcy increase in L929-APO-1 Delta4 cells expressing a C-terminally truncated APO-1 lacking part of the 'death domain' known to be required for the transduction of apoptotic signals. Addition of adenosine and D, L-homocysteine also led to an increase of cellular AdoHcy thus enhancing anti-APO-1-induced killing of L929-APO-1 cells. Treatment with anti-APO-1 also induced release of arachidonic acid from phospholipids: this effect was augmented by elevated levels of AdoHcy. In contrast, AdoHcy had only a minor effect on anti-APO-1-mediated DNA fragmentation. These findings suggest that AdoHcy functions as a physiological modulator of APO-1-mediated cell death in L929 cells and enhances anti-APO-1-induced cell killing at least partially by acting via the phospholipase A2 pathway.

Adenosine↗

HIV-1 Tat potentiates TNF-induced NF-kappa B activation and cytotoxicity by altering the cellular redox state.

This study demonstrates that human immunodeficiency virus type 1 (HIV-1) Tat protein amplifies the activity of tumor necrosis factor (TNF), a cytokine that stimulates HIV-1 replication through activation of NF-kappa B. In HeLa cells stably transfected with the HIV-1 tat gene (HeLa-tat cells), expression of the Tat protein enhanced both TNF-induced activation of NF-kappa B and TNF-mediated cytotoxicity. A similar potentiation of TNF effects was observed in Jurkat T cells and HeLa cells treated with soluble Tat protein. TNF-mediated activation of NF-kappa B and cytotoxicity involves the intracellular formation of reactive oxygen intermediates. Therefore, Tat-mediated effects on the cellular redox state were analyzed. In both T cells and HeLa cells HIV-1 Tat suppressed the expression of Mn-dependent superoxide dismutase (Mn-SOD), a mitochondrial enzyme that is part of the cellular defense system against oxidative stress. Thus, Mn-SOD RNA protein levels and activity were markedly reduced in the presence of Tat. Decreased Mn-SOD expression was associated with decreased levels of glutathione and a lower ratio of reduced:oxidized glutathione. A truncated Tat protein (Tat1-72), known to transactivate the HIV-1 long terminal repeat (LTR), no longer affected Mn-SOD expression, the cellular redox state or TNF-mediated cytotoxicity. Thus, our experiments demonstrate that the C-terminal region of HIV-1 Tat is required to suppress Mn-SOD expression and to induce pro-oxidative conditions reflected by a drop in reduced glutathione (GSH) and the GSH:oxidized GSH (GSSG) ratio.(ABSTRACT TRUNCATED AT 250 WORDS)

Acquired Immunodeficiency Syndrome↗

1H-NMR microscopy of tablets.

A 1H-nuclear magnetic resonance (NMR) microscopy method was utilized for the first time to determine the porosity distribution of physically intact tablets. The main advantage of this newly developed method was that porosity cross sections through whole tablets or specific locations could be obtained without mechanically destroying the tested tablet. This was achieved by filling tablet cavities with silicone oil under vacuum. The amount of silicone oil locally within the tablet was then determined by 1H-NMR microscopy, revealing the inverse inner structure. To reduce the measuring time, a paramagnetic gadolinium complex was added to the silicone oil. The cross sectional signals produced by 1H-NMR microscopy through the tablet were transformed into a color image by a specially designed computer graphic program. To improve the signal-noise ratio an algorithm of 3D-filtering was introduced. The maximal spatial resolution achieved with this method was about 95 microns for a cube's edge length corresponding to some 380,000 positions in a 9-mm-diameter compression-coated tablet. Uneven porosity distributions within tablets, cracks, or cavities could be visualized with this newly developed method. Different compaction mechanisms were observed with plastic- or brittle-type tablets. The different states of densification during compaction of powders could be detected. The integrity of compression coatings was determined to be dependent on the pressure load and the location of the core within the coat.

Magnetic Resonance Imaging↗

Adenosine and homocysteine together enhance TNF-mediated cytotoxicity but do not alter activation of nuclear factor-kappa B in L929 cells.

This paper shows that a combination of adenosine and homocysteine potentiates TNF-alpha-mediated cytotoxicity, but does not modulate activation of NF-kappa B transcription factor controlling the expression of various TNF-alpha-inducible genes. Adenosine and homocysteine at concentrations (1 mM each) that enhance TNF-alpha-induced cytotoxicity accumulate S-adenosyl-L-homocysteine (AdoHcy), a potent inhibitor of S-adenosyl-L-methionine-dependent methylation reactions. In addition, preloading L929 cells with AdoHcy resulted in enhanced responses to TNF-alpha, suggesting that AdoHcy potentiates TNF-alpha-induced cytotoxicity. Moreover, the combination of adenosine and homocysteine changed the dependency of the TNF-alpha-mediated cytolysis on reactive oxygen intermediates. In the absence of adenosine and homocysteine TNF-alpha-mediated cytotoxicity was inhibited by antioxidants such as butylated hydroxyanisole and pyrrolidine dithiocarbamate. In the presence of adenosine and homocysteine, however, TNF-alpha-mediated cytotoxicity is not inhibited by these antioxidants. A L929 subclone, defective in the respiratory chain, resisted the cytotoxic action of TNF-alpha, but was rendered TNF-alpha sensitive in the presence of adenosine and homocysteine. Unlike TNF-alpha-mediated cytotoxicity, the TNF-alpha-induced activation of NF-kappa B was inhibited by antioxidants regardless whether adenosine and homocysteine were present or absent in the culture medium. In conclusion, a combination of adenosine and homocysteine selectively modulates TNF-alpha-mediated cytotoxicity without changing the TNF-alpha-induced activation of NF-kappa B. Our results could facilitate the development of strategies that permit dissection of cytotoxic and gene-activating pathways.

Adenosine↗

[Magnetic resonance microscopy--new prospects for endodontics].

With the use of magnetic resonance microscopy (MRM) the options and limitations of this modern technique in reproducing teeth and endodontium should be evaluated. Therefore, extracted teeth were stored in formaline and measured in two different devices of the magnetic resonance technique. One is common for material research and normally used for spectroscopy of solids. Measuring takes place in the strayfield of the magnet which leads to the term "Stray Field Imaging" (STRAFI). The other one is a spectroscopy with an additional micro-imaging device (magnetic resonance microscope) where resolutions up to (100 microns)3 can be reached. For the first time the STRAFI allowed to make pictures from the hydrogen-protons of the teeth's hard substances. A two or three dimensional imaging on the basis of microscopic resolution became reality. In addition the MRM allowed to depict the soft tissue portion and the outer contour of the teeth in 2D and 3D. The two-dimensional pictures were able to show a texture within the pulp tissue. The three-dimensional images enabled a naturalistic and non-destructive visualization of the outer surface and the pulp room. The results shown here open very new perspectives for endodontics.

Dental Pulp Cavity↗

Cross-reacting serum opsonins in patients with meningococcal disease.

We have examined the opsonic activity of sera from patients with Neisseria meningitidis (B:15:P1.16) infections against different meningococcal strains, using flow cytometry and luminol-enhanced chemiluminescence. A marked increase in the phagocytosis of ethanol-fixed meningococcal strains of different serogroups, serotypes, and serosubtypes was demonstrated in the presence of convalescence sera compared with acute sera. Convalescence sera also caused a significant increase of leukocyte oxidative metabolism during phagocytosis, as measured by luminol-enhanced chemiluminescence. The sera contained a broad range of opsonins cross-reacting with serogroup A, B, C, W-135, and Y meningococci of different serotypes and serosubtypes, indicating that the cross-reacting opsonins recognized surface epitopes other than those determined by current serotyping schemes.

Adolescent↗

Monocyte phagocytosis of opsonized Neisseria meningitidis serogroup B.

The chemiluminescence (CL) was examined when peripheral blood monocytes were incubated with opsonized Neisseria meningitidis, serogroup B, serotype 15:P1.16 or serotype 2a:P1.2. The monocytes were separated from a mononuclear cell suspension by an immunomagnetic negative selection technique using magnetic polystyrene microspheres coated with monoclonal antibodies specific for T and B lymphocytes. More than 90% of the lymphocytes were removed, yielding a suspension containing 93% monocytes. Optimal sensitivity for phagocytosis was obtained using 1% serum (10 microliters), 72 bacteria per monocyte cell, and 7.5 min opsonization and incubation time during continuous agitation at 37 degrees C. The CL was amplified by lucigenin. Preliminary experiments suggest that convalescent sera from patients with group B meningococcal disease induced increased CL responses compared to acute sera. Sera from volunteers immunized with an outer membrane complex vaccine from serogroup B, serotype 15:P1.16 or 2a:P1.2 meningococci also induced increased CL activity compared to preimmune sera. No such response was shown when a group B capsular polysaccharide vaccine was given. This response pattern was also demonstrated by a flow cytometric phagocytosis technique (FCM). Internalization of meningococci by monocytes was demonstrated by a FCM quenching technique and by transmission electron microscopy. CL and FCM represent rapid and reproducible methods for the measurement of opsonophagocytosis of meningococci by monocytes and may be performed with minute amounts of sera.

Adult↗

Extracellular ATP and adenosine modulate tumor necrosis factor-induced lysis of L929 cells in the presence of actinomycin D.

Extracellular ATP in concentrations of 0.5 to 2.5 mM modulates TNF-induced cytolysis of L929 cells in the presence of actinomycin D. When present throughout the entire assay period, it inhibits the TNF-induced cytolysis. ADP was less active whereas AMP and GTP were nonreactive. However, inhibition was also achieved by adenosine that was nearly as active as ATP. Yet, the inhibitory effect of ATP was not due to hydrolysis by ectoenzymes to form adenosine. Thus, the nonhydrolyzable ATP analogue adenyl(beta-gamma-methylendiphosphate) was equally effective in inhibiting TNF-induced cytolysis. Moreover, no conversion of ATP into adenosine was observed during the entire assay period. However, inhibition no longer occurred when the TNF and ATP containing medium was removed after 5 h and replaced by a fresh medium containing TNF and no ATP. We now observed substantial enhancement of the TNF-induced cytolysis by ATP. Finally, treatment with N6-(R-phenylisopropyl)adenosine or with aminophylline, which are thought to downregulate adenosine receptors and to prevent binding of ligands to adenosine receptors, respectively, abolishes adenosine and ATP-mediated inhibition. Again, substantial enhancement of the TNF-induced cytolysis was observed by ATP and only a minor effect by adenosine. The results together suggest that ATP interacts with purinoceptors on the plasma membrane and is capable to enhance and inhibit TNF-induced cytolysis under appropriate conditions. The outcome of the ATP-induced modulation may be influenced by adenosine receptors.

Adenosine↗

Negative selection of human monocytes using magnetic particles covered by anti-lymphocyte antibodies.

We have developed a standardized procedure for the isolation of monocytes from peripheral blood by negative selection using magnetic polymer particles coated with monoclonal antibodies against T and B lymphocytes. The average purity of the monocyte suspension was 85%, and monocyte recovery was 72% from Ficoll-Hypaque gradient separated mononuclear cells and 32% from whole blood. In a lucigenin enhanced chemiluminescence assay there was no significant difference between cells separated immunomagnetically and those separated on a gradient. Nor did electron microscopy show any significant difference in morphology between such monocytes. Negative selection using magnetic polymer particles is an efficient method for the separation of monocytes with intact morphology and function as measured by chemiluminescence.

Antibodies, Monoclonal↗

Production of citrulline and ornithine by interferon-gamma treated macrophages.

Activated macrophages exert strong arginase (ASE) activity that converts L-arginine into ornithine, the key precursor for putrescine and polyamine biosynthesis. Macrophages were previously also shown to generate nitric oxide that is derived from the guanido group of arginine by the oxidative deiminase (OAD) reaction. In view of the physiological importance of ornithine and putrescine, we now investigated whether interferon-gamma (IFN-gamma), a principal stimulator of the OAD activity, may lead to the accumulation of the deiminated derivative citrulline at the expense of ornithine production, or whether the carbon backbone could be reutilized for the production of arginine and ornithine. Our experiments show that murine peritoneal macrophages treated with IFN-gamma in combination with tumor necrosis factor (TNF) or bacterial lipopolysaccharide (LPS) generate substantial amounts of citrulline as identified by amino acid analyzer and by thin-layer chromatography. Also, labeled citrulline is generated from [14C]L-arginine but not from [14C]L-ornithine. This suggests that macrophages have little or no capacity to convert ornithine into arginine. In the absence of IFN-gamma, TNF and LPS stimulate the conversion of arginine into ornithine but not citrulline. However, when TNF or LPS stimulated macrophages are simultaneously treated with IFN-gamma, ornithine production is relatively inhibited by the strong OAD reaction that competes with the ASE reaction for its substrate L-arginine. IFN-gamma thus down-regulates the availability of ornithine and putrescine. The lipid A precursor IA also induces, in conjunction with IFN-gamma, the production of citrulline but fails to stimulate the generation of ornithine.

Animals↗

Selective induction of metabolic activation programs in peritoneal macrophages by lipopolysaccharide substructures.

The structural elements of Salmonella typhimurium lipopolysaccharides (LPS) that are able to stimulate peritoneal macrophages to produce increased amounts of prostaglandin E2, ornithine, and citrulline, agents known to modulate immune responses, are described. Two different incomplete lipid A structures which lack the carbohydrate portion, the nonhydroxylated fatty acids lauric acid and myristic acid (lipid A precursor IB), and additional palmitic acid (lipid A precursor IA) stimulated increased prostaglandin E2 synthesis but were unable to augment ornithine and citrulline production at concentrations of up to 0.5 microgram/ml. Acyl-deficient smooth LPS containing lipid A precursors IA and IB substituted by the complete carbohydrate region were able to augment prostaglandin E2 and ornithine production but failed, even at a high concentration (0.5 microgram/ml), to stimulate citrulline production. Moreover, Re glycolipids and smooth intact LPS containing the lipid A region with 3-acyloxyacyl residues possessed all of the structural requirements to induce increased prostaglandin E2, ornithine, and citrulline synthesis. Finally, all of the LPS structures, including lipid A precursors IA and IB stimulated, in combination with gamma interferon, production of citrulline with similar efficiencies. These results demonstrate that LPS contains various substructures including regions of the carbohydrate and lipid A structure that can deliver signals for the activation of peritoneal macrophages. Signals for partial activation of macrophages to produce prostaglandins and ornithine can be delivered by acyl-deficient LPS structures. In contrast, full activation of macrophages to produce citrulline requires an additional signal that is delivered by 3-acyloxyacyl residues of the lipid A region or gamma interferon.

Animals↗

The lipopolysaccharide-induced stimulation of peritoneal macrophages involves at least two signal pathways. Partial stimulation by lipid A precursors.

Bacterial lipopolysaccharides (LPS) stimulate the ability of macrophages to convert arginine into ornithine. This effect is inhibited by the cycloxygenase inhibitor indomethacin and reconstituted by application of exogenous prostaglandin E2 (PGE2) or cholera toxin, i.e. two substances which are known to raise the intracellular concentration of cyclic AMP. Moreover, the LPS-mediated effect is augmented in a synergistic manner by PGE2, cholera toxin and the dibutyryl-derivative of cyclic AMP. Lipid A precursor IA, which lacks lauric, myristic and palmitic acids, and lipid A precursor IB, which is devoid of lauric and myristic acids of the complete lipid A structure, are capable of augmenting PGE2 synthesis but do not stimulate the conversion of arginine into ornithine. Taken together, our experiments suggest that the LPS-induced production of PGE2 and the PGE2-induced increase of the intracellular cAMP concentrations are essential elements of an autoregulatory loop that controls the LPS-mediated stimulation of the ornithine production by macrophages. The stimulation of the autoregulatory loop is necessary but not sufficient for this effect, indicating that an additional signal is required which is provided by the complete lipid A structure but not by the incomplete lipid A structures IA and IB. This additional signal can be provided by a lipid A structure containing the 3-acyloxyacyl residues with lauric and myristic acids.

Animals↗

Induction of the metastatic phenotype by transfection of the nuclear oncogene p53: increases in cytoplasmic diacylglycerol levels and reduction in class I major histocompatibility antigen expression are not sufficient to explain the changes in metastatic capacities.

Transfection of the oncogene encoding the nuclear protein p53 into a low-metastatic mouse carcinoma cell line resulted in enhanced metastatic capabilities in clones that showed increased p53 protein expression [Pohl J, Goldfinger N, Radler-Pohl A, Rotter V, Schirrmacher V (1988) Mol Cell Biol 8:2078-2081]. This effect seemed neither to be due to increase in cytoplasmic diacylglycerol levels nor to reduced cell-surface expression of class I major histocompatibility antigens.

Animals↗

Isolation of a mutant from Salmonella typhimurium producing acyl-deficient lipopolysaccharides.

The present paper describes the isolation and characterization of a mutant (mutant Ts7) of Salmonella typhimurium that is conditionally defective in the incorporation of dodecanoic and tetradecanoic acid into lipopolysaccharide precursor structures. Enrichment of mutant Ts7 was achieved by free-flow electrophoresis and was based on a previous observation that at least some Salmonella mutants conditionally blocked in the synthesis of the 3-deoxy-D-manno-octulosonic acid (dOc1A)-lipid-A region exhibit higher electrophoretic mobilities than cells with intact dOc1A-lipid-A regions. Under nonpermissive conditions (42 degrees C) mutant Ts7 accumulates at least two incomplete dOc1A-lipid-A structures. One is made up of glucosamine, phosphate, dOc1A, and 3-hydroxytetradecanoic acid in a molar ratio 1.0:1.3:1.0:2.2 and is devoid of dodecanoic and tetradecanoic acid. The other structure has the same basic structure but contains hexadecanoic acid.

Acetylation↗

[Indications for acupuncture and electropuncture in internal medicine].

The acupuncture and electropuncture are no polychrest method, but integrated into other approved forms of therapy a valuable supplementation of our possibilities of treatment, since expense, utility and risk are well proportionated. The author enters the importance, the hypotheses of action, the possibilities and limits, the contraindications and the insignificant risk of treatment. With the help of own investigations and on the basis of the results of the clinical experimental and basic researches of other authors in indicated diseases a portion of success is discussed which is transgressing a pure suggestive effect.

Acupuncture Therapy↗