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Biomedical subjects

D W Moss

Publications and source records attributed to D W Moss.

At least 37 records · Page 2Linked to original sources

Differential induction of nitric oxide synthase in various organs of the mouse during endotoxaemia: role of TNF-alpha and IL-1-beta.

BALB/c mice injected intraperitoneally with bacterial lipopolysaccharide (LPS) developed lethal septic shock. This was accompanied by significantly elevated concentrations of nitrite and nitrate in the plasma and expression of high levels of nitric oxide (NO) synthase activity in the lungs, heart, spleen and peritoneal macrophages. Mice pretreated with anti-tumour necrosis factor-alpha (TNF-alpha) monoclonal antibody or anti-interleukin-1 beta (IL-1 beta) polyclonal antibody were protected, in a dose-dependent manner, from endotoxin-induced mortality. This effect was accompanied by a significant reduction in plasma levels of nitrite and nitrate. Antibody treatment also reduced the level of NO synthase activity in peritoneal macrophages, spleen and heart but had no effect on enzyme expression in the lung. These results demonstrate that TNF-alpha and IL-1 beta play an important role in the induction of NO following administration of LPS and in the development of endotoxin-induced shock. In addition, NO synthase activity is differentially expressed in various organs and this may not always require TNF-alpha and IL-1 beta.

Amino Acid Oxidoreductases↗

Reference materials in clinical enzymology: preparation, requirements and practical interests.

Five enzyme materials (gamma-glutamyltransferase, alkaline phosphatase, creatine kinase, alanine aminotransferase and prostatic acid phosphatase) are currently certified using a reference method. Furthermore, feasibility studies have been performed for four other enzymes (aspartate aminotransferase, lactate dehydrogenase, amylase and lipase). They indicated that these enzymes can be purified and stabilized, but the materials have not yet been certified. This shows that the most important enzymes in clinical laboratories can be purified, and stabilized, without significant alteration of their catalytic properties. By carefully choosing a matrix, the commutability of these enzyme preparations and patients' samples between some methods, including routine methods, may be preserved. Thus, these materials can be used to calibrate the routine methods in terms of the corresponding reference methods after commutability has been verified. Current studies suggest that this objective can be reached, provided three criteria are satisfied: i) the calibrated and reference methods must be of equal specificity; ii) the enzyme calibrator should be, as closely as possible, identical to the human analyte enzyme in its native matrix (eg serum); iii) and the inter-method ratio should be constant (within the limits of experimental error) for the enzyme calibrator and for all patients' samples.

Calibration↗

Cloning, characterization, and expression of a cDNA encoding an inducible nitric oxide synthase from the human chondrocyte.

Incubation of human articular chondrocytes with interleukin 1 beta results in the time-dependent expression of nitric oxide (NO) synthase. We report here the isolation of a cDNA clone which encodes a protein of 1153 amino acids with a molecular mass of 131,213 Da and a calculated isoelectric point of 7.9. CHO cells transfected with a plasmid harboring this cDNA clone expressed NO synthase activity that was inhibited by some L-arginine analogues. The deduced amino acid sequence of the human chondrocyte inducible NO synthase shows 51% identity and 68% similarity with the endothelial NO synthase and 54% identity and 70% similarity with the neuronal NO synthase. The similarity (88%) between the human chondrocyte NO synthase cDNA sequence and that reported for the murine macrophage suggests that the inducible class of enzyme is conserved between different cell types and across species.

Amino Acid Oxidoreductases↗

A method for the assay of phosphatidylinositol-specific phospholipase D activity in serum.

A reproducible substrate for the assay of phosphatidylinositol-specific phospholipase D (PIPLD) can be prepared by extracting alkaline phosphatase from placental tissue with n-butanol under alkaline conditions. The alkaline phosphatase thus prepared retains its hydrophobic glycan phosphatidylinositol (GPI) anchor and aggregates into high M(r) forms. Incubation with serum hydrolyses the phosphate inositol linkage by PIPLD action, producing a less lipophilic, non-aggregated isoform of alkaline phosphatase. Three methods of measuring the amount of this isoform produced after a timed incubation with serum are described and compared: two types of phase partitioning systems, and electrophoresis and densitometry of the products after gradient-pore electrophoresis. All give comparable and reproducible measurements of PIPLD; however, the electrophoretic method is preferred for routine analysis.

Alkaline Phosphatase↗

Recombinant migration inhibitory factor induces nitric oxide synthase in murine macrophages.

A recombinant form of migration inhibitory factor (MIF) obtained from COS-1 cells transfected with a cDNA library from a human T cell hybridoma is able to activate, in a dose-dependent manner, murine macrophages to express nitric oxide (NO) synthase and to produce high levels of NO in vitro. The time course of the induction of NO synthase is similar to that produced by the IFN-gamma. Enzyme activity peaks at 24 h and is undetectable by 72 h. MIF can synergize with IFN-gamma in the induction of NO synthesis, and the induction of NO synthase by both MIF and IFN-gamma is sensitive to inhibition by dexamethasone. However, unlike IFN-gamma-induced NO generation, MIF is sufficient for the induction of the enzyme, does not synergize with LPS, and is highly sensitive to inhibition by transforming growth factor.

Amino Acid Oxidoreductases↗

Phase partitioning detects differences between phospholipase-released forms of alkaline phosphatase--a GPI-linked protein.

A number of enzymes are known to release alkaline phosphatase and other glycan phosphatidylinositol-anchored proteins from membrane surfaces. We describe a novel approach to detect and measure these activities by partitioning in aqueous phase systems. The procedures avoid the complications of micelle-formation involving hydrophobic molecules that may arise with detergent-based partition systems and can clearly distinguish between inositol-specific phospholipase C and D activities.

Alkaline Phosphatase↗

Interleukin-4 transgenic mice of resistant background are susceptible to Leishmania major infection.

The outcome of cutaneous leishmaniasis is dependent on the balance of Th1 and Th2 cells. In the murine model, Th1 cells are host-protective whereas the Th2 cells are disease-promoting. However, the in vivo role of interleukin-4 (IL-4), a signature product of Th2 cells, is uncertain. We compared the course of Leishmania major infection in the genetically resistant 129/Sv mice and the mutant 129/Sv mice transgenic for the murine IL-4 gene under the control of the immunoglobulin heavy chain enhancer and promoter. We report here that in contrast to their wild-type parents, the IL-4 transgenic mice are susceptible to L. major infection. This is associated with the development of inexorably progressive lesions and parasite loads. Spleen cells from infected transgenic mice produced significantly higher levels of IL-4 but lower amounts of interferon-gamma when stimulated in vitro with leishmanial antigens compared to those from infected normal 129/Sv mice. Furthermore, sera from the infected transgenic mice contained higher levels of IL-4 and IgE than the sera of infected normal 129/Sv mice. These results, therefore, establish in a new animal model that IL-4 promotes disease development in murine cutaneous leishmaniasis.

Animals↗

Pre-exposure of murine macrophages to lipopolysaccharide inhibits the induction of nitric oxide synthase and reduces leishmanicidal activity.

Murine macrophages produce nitric oxide (NO) from L-arginine on stimulation with lipopolysaccharide (LPS), alone or with interferon-gamma (IFN-gamma). The effect of incubation of macrophages with low concentrations of LPS on NO synthesis on subsequent stimulation was investigated, using a murine macrophage cell line, J774, and peritoneal macrophages from CBA mice. Cells which had been incubated with LPS produced significantly lower amounts of NO, and expressed lower levels of NO synthase activity, following stimulation with IFN-gamma and LPS, or with a high concentration of LPS. This effect was not reversed by tumor necrosis factor-alpha. The ability of CBA macrophages to kill the intracellular parasite Leishmania major was markedly reduced by pre-incubation with LPS. Reduced NO production by macrophages previously exposed to LPS is a manifestation of endotoxin tolerance, and may represent an important means of regulation of NO synthesis and thus a survival mechanism for intracellular parasites.

Amino Acid Oxidoreductases↗

A reference preparation of creatine kinase BB isoenzyme.

Creatine kinase (CK; EC 2.7.3.2) catalytic activity in serum is widely measured in clinical chemistry practice and provides information for diagnosis and follow-up in many pathological conditions affecting heart, muscle, and brain. Depending on the organ involved, the predominant CK isoenzyme in serum varies. However, routine methods measure total CK catalytic activity, and standardized methods for doing so have been recommended by the International Federation of Clinical Chemistry and by several national scientific societies. Many commercial kits for those methods are now available. With use of a reference material for CK, commercial reagents can be compared with standardized methods, improving confidence in the results. Here we present a reference preparation of CK consisting of the BB isoenzyme purified from human placentae. We describe the procedure of purification and the properties of the lyophilized preparation of CK-BB, which has been certified by the Community Bureau of Reference of the Commission of the European Communities under the designation CRM 299. The preparation can be used to calibrate assays of the catalytic activity of CK-MM and CK-MB, as well as CK-BB.

Chromatography, Ion Exchange↗

Induction of macrophage parasiticidal activity by Staphylococcus aureus and exotoxins through the nitric oxide synthesis pathway.

Murine peritoneal macrophages stimulated in vitro with killed Gram-positive bacteria Staphylococcus aureus or its membrane components in the presence of interferon-gamma (IFN-gamma) expressed high levels of nitric oxide (NO) synthase and produced large amounts of NO in a dose-dependent manner. This is not due to the contamination by Gram-negative endotoxin because the stimulatory activity was not affected by the addition of polymyxin B. The expression of the NO synthase and the synthesis of NO by macrophages stimulated with toxic shock syndrome toxin-1 (TSST), lipoteichoic acid (LTA) or killed whole S. aureus together with IFN-gamma was inhibited by the glucocorticoid, dexamethasone or by the specific inhibitor of NO synthesis, L-N-iminoethyl-ornithine (L-NIO). The exotoxins together with IFN-gamma also activated macrophages to kill the intracellular parasite Leishmania major. The leishmanicidal activity was completely inhibited by L-NIO.

Animals↗

Changes in enzyme expression related to differentiation and regulatory factors: the acid phosphatase of osteoclasts and other macrophages.

Human tartrate-resistant Type 5 acid phosphatase is a unique isoenzyme encoded by a gene located on chromosome 19. It is a member of a widely-distributed and structurally highly-conserved group of iron-containing proteins. It is normally expressed in certain tissue macrophages, notably osteoclasts and alveolar macrophages, but is virtually absent from the precursor monocytes. Factors which enhance or inhibit expression of this specific isoenzyme can be studied in monocytes and osteoclasts cultured in vitro. This provides opportunities to develop the use of Type 5 acid phosphatase as a reporter of pathophysiological events and an essential, though not sufficient, role in bone resorption by osteoclasts has been established by such studies.

Acid Phosphatase↗

Circulating levels of tartrate-resistant acid phosphatase in macrophage-activated lung disease.

Tartrate-resistant acid phosphatase (TrACP) is abundant in alveolar macrophages, suggesting that these cells might contribute to the activity of this isoenzyme in sera of patients with conditions characterized by activation of alveolar macrophages. TrACP was therefore measured in patients with pulmonary sarcoidosis and cryptogenic fibrosing alveolitis and compared with values in controls. Since osteoclasts are known to be the main source of TrACP in serum several indices of bone-turnover were also measured: serum bone-specific alkaline phosphatase and urine hydroxyproline:creatinine ratios. Patients with Paget's disease of bone constituted a reference group presenting increased bone turnover. TrACP was not significantly higher in the lung-disease groups than in controls, although there was a strong positive correlation with angiotensin-converting enzyme in pulmonary sarcoidosis. As expected, TrACP activity was elevated together with the other indices of bone turnover in Paget's disease. It is unlikely that TrACP from alveolar macrophages contributes significantly to serum acid phosphatase activity in lung disease.

Acid Phosphatase↗

A reference preparation of human prostatic acid phosphatase: purification, characterization and field trials.

Acid phosphatase has been prepared in an apparently pure state by affinity chromatography from human prostatic tissue. When dissolved in an acidic albumin solution, lyophilized and stored at -20 degrees C for up to 2 years, no time-dependent loss of catalytic activity was detectable in the reconstituted material. Accelerated degradation tests also predicted complete stability. A preliminary distribution of the lyophilized preparation to 143 laboratories confirmed its robustness and demonstrated its potential usefulness as a calibrant to unify the results of different methods of measuring acid phosphatase activity.

Acid Phosphatase↗

Perspectives in alkaline phosphatase research.

Gene cloning and site-directed mutagenesis have had a profound effect on alkaline phosphatase research. Four distinct structural genes encoding placental, intestinal, and tissue-nonspecific isoenzymes have been cloned, sequenced, and mapped to human chromosomes. Differences in properties between the respective gene products are due to variations in primary structure involving only one, or a few, key amino acid residues. Recognition that alkaline phosphatase belongs to the category of molecules that are localized to cell membranes through a COOH-terminal glycan-phosphatidylinositol anchor provides a basis for understanding the generation of isoforms observed in plasma in disease. Isoforms produced by differential cleavage or preservation of the glycan-phosphatidylinositol anchor may offer new correlations with disease that are of diagnostic value. However, a more important contribution of alkaline phosphatase research to clinical chemistry may prove to be an increased understanding of disease processes at the molecular level.

Alkaline Phosphatase↗

Regulation and expression of type V (tartrate-resistant) acid phosphatase in human mononuclear phagocytes.

Human type V (tartrate-resistant) acid phosphatase belongs to a unique group of iron-binding proteins that includes uteroferrin and other purple phosphatases. The enzyme is normally restricted to osteoclasts and certain phagocytic cells but its rôle is unknown. We show that phosphatase mRNA is abundant in cells of monohistiocytic phenotype and that enzyme expression in cultured human monocyte-derived macrophages is depressed by gamma-interferon and bacterial lipopolysaccharide, agents that promote functional differentiation in these cells. In contrast, phorbol ester, which stimulates intracellular calcium-mediated events, greatly enhances type V phosphatase expression and mRNA abundance. Lymphokine and phorbol ester-modulated expression of type V acid phosphatase expression thus represents a model system for investigating proliferative responses that are specific to cells of the mononuclear macrophage system.

Acid Phosphatase↗

Type 5 acid phosphatase. Sequence, expression and chromosomal localization of a differentiation-associated protein of the human macrophage.

The purple acid phosphatases and uteroferrin belong to a diverse multifunctional class of binuclear iron-containing proteins that includes haemerythrin and ribonucleotide reductase. In the pig, uteroferrin has been implicated in the delivery of iron to the foetus, but the role of the related human type 5 acid phosphatase that is principally found in resident tissue macrophages is not yet clear. To define further the function of this metalloenzyme, we have isolated and sequenced a cDNA clone for type 5 acid phosphatase and investigated expression of its gene in human tissues. The phosphatase clone contains an open reading frame of 975 bp and encodes a protein of 325 amino acids, including a signal peptide of 19 residues and two potential sites for N-glycosylation. The type 5 acid phosphatase gene mapped to the short arm of human chromosome 19 and was found to have a restriction fragment length polymorphism on digestion with XbaI. Expression of phosphatase mRNA was restricted to mononuclear phagocytes and the enzyme was induced greater than 20-fold on transformation of normal human monocytes to macrophages by culture in serum-supplemented medium. Type 5 acid phosphatase thus represents a tightly regulated system for the study of molecular events in the differentiation programme of the normal macrophage.

Acid Phosphatase↗