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R D Nelson

Publications and source records attributed to R D Nelson.

At least 73 records · Page 4Linked to original sources

1985 Kreshover lecture. Molecular factors influencing neutrophil defects in periodontal disease.

Major advances in our understanding of the role of the neutrophil in host defense against periodontal organisms have been made through studies of localized juvenile periodontitis (LJP). Several lines of evidence suggest that LJP is an infectious process closely associated with Actinobacillus (Haemophilus) actinomycetemomitans as a causative agent, although other organisms may also participate. The immunologic profile of LJP patients suggests that a cell-associated neutrophil locomotory dysfunction is a key underlying immunodeficiency resulting in increased susceptibility to periodontal infection. In addition, LJP patients often exhibit cervical lymphadenopathy and IgG-hypergammaglobulinemia, and a markedly elevated antibody response to the infecting organism, A. actinomycetemcomitans, is found in the serum and crevicular fluid of most patients. Evaluation of the locomotory properties of LJP neutrophils shows that random migration and chemokinesis are normal; however, about 70% of the LJP patients suffer from a defect in chemotaxis, with their neutrophils responding poorly to bacterial chemotactic factors, synthetic chemotactic peptides, and complement fragments (C5a). Depressed chemotaxis of LJP neutrophils is paralleled by their reduced capacity to bind the synthetic chemotactic peptide N-formylmethionylleucylphenylalanine (FMLP), as well as C5a. Furthermore, there is a reduction in the amount of glycoprotein 110, a neutrophil membrane matrix component and differentiation antigen which is associated with FMLP- and possibly also C5a-mediated chemotaxis. Reduction of C5a and of FMLP ligand binding, decreased expression of GP-110, and reduced neutrophil chemotaxis are consistent with a stem cell maturation error in LJP patients. This is further supported by studies demonstrating increased expression of CR2, the C3d/EBV receptor, on peripheral blood neutrophils of LJP patients. CR2 receptors are normally present on immature human neutrophils but are lost during the maturation process. These alterations in neutrophil surface components and their reduced chemotaxis may result from a genetically determined abnormality. Studies demonstrating the familial nature of both the neutrophil chemotactic disorder and the clinical entity represented by localized juvenile periodontitis point to a strong role for genetic determinants in the disease which affect neutrophil surface receptors.

Aggressive Periodontitis↗

Influence of minor thermal injury on expression of complement receptor CR3 on human neutrophils.

Thermal injury is well known to inhibit functions of the circulating neutrophil related to its role in host defense against infection, but the mechanism(s) of this phenomenon are not fully understood. To gain further clues to these mechanisms, the authors have studied patients with thermal injury in terms of altered expression of neutrophil cell membrane receptors for the opsonic complement-derived ligand C3bi--complement receptor Type 3, or CR3. CR3 expression was selected for study because an increase in the number of receptors on the cell surface can be stimulated by products of complement activation known to accumulate after thermal injury and because of the role of CR3 in phagocytic and adherence functions of the neutrophil. Expression of CR3 was monitored semiquantitatively by flow cytometry with the use of a murine monoclonal antibody (OKM1) specific for an antigen (CD11) associated with this receptor. Patients evaluated were limited in this study to those with minor degrees of thermal injury (second-degree burn involving less than 20% of total body surface area) so that possible confounding effects of major injury and its complications could be eliminated. It was observed that patient neutrophil CR3 becomes significantly up-regulated during the first week, as early as 1 day after injury. The maximum level of expression of CR3 averaged greater than 150% (range, 70-314%) of the respective minimum level observed for each patient. The minimum levels of expression of CR3 on patient neutrophils, reached 11-37 days after injury for 7 of 8 patients, were comparable to the level of expression of CR3 on unstimulated control neutrophils. Such temporal up-regulation of patient neutrophil CR3 suggests the early generation of stimuli of CR3 mobilization in response to thermal injury. Increased numbers of CR3 on patient neutrophils may augment microbicidal function and enhance or inhibit delivery of cells to the burn site.

Adult↗

Escherichia coli and human neutrophils. Effect of bacterial supernatant with hemolysin activity upon chemotaxin receptors.

A greater proportion of Escherichia coli strains isolated from clinical extraintestinal infections produce alpha-hemolysin than do strains isolated from normal fecal flora. Proposed mechanisms to explain this observation have stressed the fact that hemolysis liberates hemoglobin, which may provide a nutritional boost for E coli growth. Alternatively, a cytolytic effect of hemolysin upon host neutrophils has been postulated. Our previous studies have suggested a third possibility: Human neutrophils incubated in the supernatant of an alpha-hemolysin-producing E coli strain produced a selective inhibition of chemotaxis toward C5a. Bacteria-free supernatants from 14 clinical strains of E coli were therefore evaluated for an ability to lyse sheep erythrocytes, alter human polymorphonuclear neutrophil (PMN) chemotaxin receptors, and affect release of PMN enzymes. Supernatants possessing hemolytic activity decreased the C5a receptor activity of human PMNs and increased the number of peptide receptors. A stimulation of secondary granule release, as evidenced by the release of PMN lysozyme, may account for the increased expression of peptide receptors. Perturbation of host defenses through a loss of neutrophil migratory function and secondary granule contents may allow for enhanced survival of E coli, which produce alpha-hemolysin.

Bacterial Proteins↗

Effects of soil infection potentiating factors on neutrophils in vitro.

Although the ability of soil silicate fractions to potentiate infection is well recognized, the precise mechanisms by which they do so remain unexplained. This study was carried out to investigate the effects of montmorillonite clay, the most potent of these soil infection potentiators, on human neutrophils, erythrocytes, and serum complement in vitro. Using phase microscopy, rapid neutrophil lysis was observed when cells were exposed to untreated clay. After lysis, the cytoplasmic marker enzyme lactate dehydrogenase rapidly adsorbed to the surface of the clay. Both enzyme surface adsorption and cell lysis could be blocked, however, by pretreatment of the clay with human albumin. Likewise, neutrophil chemiluminescence could be stimulated by untreated clay, but not by clay pretreated with 5 percent albumin or 10 percent pooled human serum. Maximal chemiluminescence was stimulated by clay pretreated with 0.1 percent albumin, probably because the partially protective albumin coating delayed cell lysis. Compared with the effect on neutrophils, clay lysis of erythrocytes was incomplete. When zymosan-activated serum samples were exposed to clay, complement activity as measured by neutrophil chemotaxis was suppressed in a dose-dependent fashion. We conclude that montmorillonite clay may potentiate infection by a direct cytotoxic effect on the neutrophil, making it unavailable for bacterial phagocytosis, by local reduction in bacterial opsonization due to depletion of activated complement, and by the release of toxic tissue substances, such as lysosomal enzymes and oxygen free radicals, from leukocytes which may damage host tissue and thus create an environment favorable for bacterial survival.

Adsorption↗

Prostanoid production by lipopolysaccharide-stimulated Kupffer cells.

Although some data suggest that macrophages in the reticuloendothelial system (RES) are important sources of thromboxane A2 (TxA2) and prostacyclin (PGI2) during endotoxic shock, we are unaware of data documenting the ability of hepatic macrophages (Kupffer cells) to release either TxA2 or PGI2 when exposed to lipopolysaccharide (endotoxin, LPS). In this study, Kupffer cells were examined for their ability to release prostaglandin E2 (PGE2), TxA2, and PGI2 following stimulation with 0, 1.0, 50.0, and 100.0 micrograms/ml of Escherichia coli LPS. Kupffer cells were obtained from rat livers by enzymatic digestion with 0.05% collagenase followed by enrichment of the macrophage population on the basis of differences in density and adherence among the various cell populations isolated. Based on several criteria (phagocytosis of opsonized sheep erythrocytes, positive staining for esterase and peroxidase, failure to replicate), 95% of adherent cells were Kupffer cells. After 4 days of incubation, cells were stimulated with various doses of LPS for 4 and 8 hr. Prostanoid concentrations in culture supernatants were determined by radioimmunoassay. Increasing doses of LPS significantly (P less than 0.001) increased the concentration of immunoreactive PGE2 (iPGE2) and iTxB2 (the stable metabolite of TxA2). The concentration of i6-keto-PFG1 alpha (stable metabolite of PGI2) increased following stimulation with 1.0 microgram/ml of LPS, but declined as the dose of LPS was increased. The results provide evidence that endotoxin-activated Kupffer cells, like other macrophage populations, release several metabolites of arachidonic acid. Kupffer cell-derived prostanoids, particularly TxA2, may be important mediators of some of the pathophysiologic manifestations of acute endotoxemia.

6-Ketoprostaglandin F1 alpha↗

Candidacidal activity of myeloperoxidase: therapeutic influence of the enzyme in vivo.

Mice were injected intravenously with Candida albicans blastospores to establish chronic renal infection. Seventy-five percent of the animals inoculated with 10(6) blastospores died as a consequence of infection during the subsequent 60 days of observation. Intraperitoneal administration of 10 mU of partially purified human myeloperoxidase 1 day after injection of the pathogen increased survival of the mice from 25 to 80% over this time period. Administration of myeloperoxidase complexed with soluble C. albicans cell wall mannan abrogated the protective influence of the enzyme. These results demonstrate that exogenous myeloperoxidase has a therapeutic influence on murine renal candidiasis and suggest that exogenous myeloperoxidase may also be effective in the treatment of certain forms of candidiasis in humans. These results also demonstrate the important role of the mannan-binding function of myeloperoxidase for effective treatment of candidiasis and suggest a mechanism of inhibition of the candidacidal effect of free enzyme in vivo by mannan accumulating in tissue fluids.

Animals↗

Succinic acid, a metabolic by-product of Bacteroides species, inhibits polymorphonuclear leukocyte function.

Anaerobes, in particular Bacteroides spp., are the predominant bacteria present in mixed intra-abdominal infections, yet their critical importance in the pathogenicity of these infections is not clearly defined. Succinic acid, a major fatty acid by-product of Bacteroides metabolism, was tested for its effect on neutrophil function to determine whether it might play a role in enhancing the virulence of Bacteroides-containing infections. At pH 5.5 but not pH 7.0, succinic acid at concentrations commonly found in clinical abscesses profoundly inhibits in vitro neutrophil function. It virtually obliterates phagocytic killing of Escherichia coli and reduces neutrophil random migration and chemotactic response to formyl-methionyl-leucyl-phenylalanine and C5a. These effects occur in conjunction with a reduced chemiluminescent peak and delayed time to the peak. The effect on neutrophils is only partially reversible by multiple washings. These findings suggest that succinic acid may be an important Bacteroides virulence factor when present in the microenvironment of a mixed intra-abdominal infection in which concentrations are high and the pH of the medium is reduced.

Bacteroides↗

Complement activation and clearance in acute illness and injury: evidence for C5a as a cell-directed mediator of the adult respiratory distress syndrome in man.

The appearance of the adult respiratory distress syndrome (ARDS) during the course of acute illness is believed to result, in part, from intrapulmonary neutrophil sequestration and degranulation induced by circulating inflammatory mediators. To evaluate the role of complement-neutrophil interactions in the pathogenesis of ARDS in man, 34 patients suffering from intra-abdominal sepsis (seven), multisystem trauma (15), or acute pancreatitis (12) were serially studied with regard to neutrophil migratory responses to C5a and F-Met-Leu-Phe, lysosomal content of beta-glucuronidase and lysozyme, and simultaneously obtained plasma levels of immunoreactive C3adesArg and C5adesArg. Nineteen patients developed ARDS. In these patients, plasma C3adesArg levels obtained within 72 hours of admission to the hospital were elevated to 305 +/- 35 ng/ml compared with 145 +/- 16 ng/ml for patients who did not develop ARDS (p less than 0.0005). C5adesArg levels were not elevated in either group. In vitro studies showed that neutrophils from normal persons were able to clear all of the C5a/C5adesArg generated in up to 5% zymosan-activated serum, while no clearance of C3adesArg was identified. Patient migratory responses could be divided into three groups based on their initial (less than 72 hour) samples: (1) hyperresponsive to both N = formyl-methionyl-leucyl-phenylalanine (FMLP) and C5a, (2) specifically deactivated to C5a, and (3) deactivated to both C5a and FMLP. Patients in the latter two groups developed ARDS. Enzyme content of neutrophils from patients who developed ARDS showed a substantial fall in beta-glucuronidase and lysozyme levels. The finding of elevated plasma C3a levels and deactivation of migratory response to C5a support the contention that complement activation had occurred in these patients and that their neutrophils had been exposed to C5a/C5adesArg in vivo. The finding of nonspecific migratory dysfunction associated with lysozymal enzyme loss, a circumstance not reproducible in vitro by C5a exposure, suggests that other stimuli produced degranulation of neutrophils made hyperresponsive by prior exposure to C5a.

Chemotaxis, Leukocyte↗

Regulation of neutrophil migratory function in burn injury by complement activation products.

Polymorphonuclear neutrophils were isolated from patients with burn injury and random mobility, chemotaxis in response to C5adesArg (as agarose-activated control serum) and to N-formyl-methionyl-leucyl-phenylalanine (F-Met-Leu-Phe) were assessed. For a group of eight patients identified as not experiencing systemic infection, all three neutrophil migratory functions were observed to fall below control levels, beginning 4 to 6 days following burn injury, and to return to control levels after 21 to 30 days of hospitalization. Over this time the chemotactic differential (distance chemotactic migration-distance random migration) for F-Met-Leu-Phe remained positive, while the chemotactic differential for activated serum became nil after postburn day 4. This temporal, specific loss of a chemotactic response to activated serum was associated with rises in immunoreactive plasma C3a and C5a. This pattern of loss of chemotactic function was associated with a selective loss of C5a but not F-Met-Leu-Phe binding activity. These results demonstrate that burn injury can alter neutrophil migratory functions generally, and specifically depress chemotactic responsiveness to activated serum. The mechanism of the latter phenomenon appears to be related to desensitization of circulating neutrophils to C5a due to complement activation.

Adolescent↗

Influence of yeast mannan on release of myeloperoxidase by human neutrophils: determination of structural features of mannan required for formation of myeloperoxidase-mannan-neutrophil complexes.

Structural features of mannan which participate in the formation of myeloperoxidase-mannan-neutrophil complexes have been studied by using a battery of structurally modified mannans. Mannan was isolated from Saccharomyces cerevisiae X2180 wild type and modified by strong alkaline degradation, selective (mild) alkaline degradation, and selective acetolysis. Mannose oligosaccharides bound to the peptide portion of mannan appeared to be required for binding of mannan to the neutrophil. The interaction of mannan with myeloperoxidase appeared to occur through phosphate groups of the mannan outer chain. The myeloperoxidase-mannan interaction was determined to be ionic in nature. The mannan-neutrophil interaction may involve cell membrane receptors for mannose.

Carbohydrate Conformation↗

Chemotactic and phagocytic responses of human alveolar macrophages to activated complement components.

Human alveolar macrophages (AMs) migrated toward and aggregated to C5a but not toward C5a-deficient serum. Human AMs from cigarette smokers migrated significantly farther than did AMs from nonsmokers. Human AMs phagocytized Escherichia coli opsonized with activated C3. Immunoglobulin G was not required for phagocytosis. Human AMs demonstrate chemotaxis and aggregation to C5a. Further, human AMs can phagocytize bacteria coated with activated C3.

Chemotaxis↗

Two mechanisms of inhibition of human lymphocyte proliferation by soluble yeast mannan polysaccharide.

The literature on chronic mucocutaneous candidiasis contains multiple reports which suggest that loss of cell-mediated immunity in this disease may be related in part to the presence of an inhibitory factor(s) present in patient plasma. One such inhibitory factor has been suggested to be mannan polysaccharide released from the cell wall of the pathogen. The present report describes results of experiments to consider mechanisms by which yeast mannan influences proliferative responses of human lymphocytes. Mannan for these experiments was isolated from Saccharomyces cerevisiae. We observed that mannan-mediated inhibition of proliferative responses to a battery of stimuli (phytohemagglutinin, pokeweed mitogen, and Candida, mumps, streptococcus, cytomegalovirus, and herpes simplex virus antigens) was related in part to an effect of copper associated with the mannan and possibly to the superoxide dismutase activity of the mannan-copper complex. Mannan made deficient in copper by use of a copper-chelating resin appeared to inhibit only lymphoproliferation stimulated by the Candida antigen. These results suggest that inhibitory effects of yeast mannans on lymphoproliferative responses may involve at least two mechanisms, one related to hydrogen peroxide production augmented by mannan-copper complexes and another related to still unknown effects independent of the metal ligand. We propose that our results represent a significant novel observation which may be useful in understanding mechanisms of immunoinhibitory effects of C. albicans mannan.

Copper↗

Human neutrophil migration under agarose to bacteria associated with the development of gingivitis.

In clinically healthy gingiva and increasingly with the development of inflammation, neutrophils are found in the gingival tissues and sulcus. This study evaluated the relative ability of bacteria associated with gingival health and developing inflammation to stimulate this increase in neutrophil accumulation. Dialyzed bacterial sonic extracts (BE) in buffer and pooled human serum (PHS) from pure cultures of Streptococcus sanguis. Actinomyces viscosus, A naeslundii, Bacteroides intermedius, Fusobacterium sp and Veillonella sp were tested for stimulation of human neutrophil migration under agarose. In addition, fractions of S sanguis culture fluids (CFs) from Sephadex G-10 chromatography were evaluated. All BE solutions were incubated for 1 hour at 37 degrees C and heat-inactivated prior to testing. All BEs in buffer attracted neutrophils, with the greatest responses seen to S sanguis and B intermedius followed by A viscosus. Migration to all BEs in PHS was greater than in buffer, suggesting that all BEs are capable of generating serum chemoattractants. A viscosus BE activated serum attractants to the greatest degree. CFs of S sanguis, A viscosus, and to a lesser degree, Fusobacterium sp, also attracted neutrophils. Evidence from [3H]FMLP competitive ligand-binding assays indicated that S sanguis CFs contained low molecular weight (less than 700) chemoattractants, which were probably formylmethionyl oligopeptide-like materials. Of the bacteria associated with health, S sanguis and A viscosus appeared at least as able to generate chemoattractants during growth or with exposure to serum as bacteria associated with gingivitis. This observation suggests that these "healthy" bacteria, which are found in greater numbers with developing inflammation, may mediate increased neutrophil transmigration in early disease.

Actinomyces↗

Mechanism of the adjuvant effect of hemoglobin in experimental peritonitis: VIII. A leukotoxin is produced by Escherichia coli metabolism in hemoglobin.

Hemoglobin, but not albumin, has long been recognized as an infection potentiating factor in experimental Escherichia coli peritonitis, but the mechanism has defied definition. We have shown previously that stroma-free hemoglobin is not toxic to polymorphonuclear neutrophils. To test the hypothesis that hemoglobin provides a nutritional boost to the growth of E. coli in vivo, we inoculated E. coli into dialysis bags containing equivalent amounts of stroma-free hemoglobin or albumin. These bags were implanted into the peritoneal cavity of rats and at intervals the fluid was removed and the bacteria enumerated. This technique allows for intraperitoneal bacterial growth but eliminates the variables of lymphatic clearance and phagocytic ingestion. The growth rate of E. coli was the same irrespective of the nutritional supplement in the bag. Thus there is no experimental support for the notion that hemoglobin directly accelerates E. coli proliferation under in vivo conditions. To test the hypothesis that a leukocyte toxin may result from E. coli growth in hemoglobin, we exposed normal human neutrophils to the sterilized contents of the peritoneal dialysis bags. In vitro function of the neutrophils (viability, random migration, chemotaxis, phagocytosis, bacterial killing, and chemiluminescence) was significantly depressed by prior exposure to hemoglobin supernatants that had supported E. coli proliferation in vivo. Stroma-free hemoglobin had minimal adverse effects. Albumin supernatants that had supported E. coli proliferation in vivo had significantly less effect on neutrophil function even though the endotoxin levels were identical to the hemoglobin E. coli solutions. We must conclude that leukotoxins result from E. coli growth in solutions of pure hemoglobin. The data support the idea that the infection potentiating effect of hemoglobin in vivo is due to such leukotoxins.

Animals↗

Characterization of the effect of influenza virus on polymorphonuclear leukocyte membrane responses.

Depressed chemotactic activity of polymorphonuclear leukocytes (PMNL) infected with influenza virus could be due to changes occurring at the plasma membrane. The present study examined the effect of unopsonized influenza virus on chemotaxis, adherence, receptor binding, shape change, membrane fluidity, and release of specific granules from PMNL. Chemotactic activity of PMNL under-agarose to the chemoattractants, zymosan-activated serum ( ZAS ) and N-formyl-methionyl-leucyl-phenylalanine (fMLP), and adherence of PMNL to a plastic surface were markedly decreased in virus-treated cells as compared to control cells. The binding of fMLP to the PMNL was increased in virus-treated cells compared with control cells. Exposure of cells to virus, ZAS , or fMLP caused 35%-50% of the cells to become bipolar in shape, whereas less than 5% of the cells exposed to buffer became bipolar. Influenza virus did not alter membrane fluidity as measured by electron spin resonance spectroscopy with the probe 5-doxyl stearate. Virus-treated PMNL stimulated with FMLP or Staphylococcus aureus exhibited a marked decrease in the amount of lactoferrin released into phagosomes, onto the cells' outer membrane, and into the extracellular medium as compared to control cells. The possible relationship between inhibition of lysosomal enzyme degranulation and decreased chemotactic activity and adherence of PMNL is discussed.

Cell Adhesion↗