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N R Neilsen

Publications and source records attributed to N R Neilsen.

24 records · Page 2Linked to original sources

Ontogeny of inflammatory cell responsiveness: superoxide anion generation by phorbol ester-stimulated fetal, neonatal, and adult bovine neutrophils.

Newborn calves, like human infants, are uniquely susceptible to bacterial infections. Part of this increased susceptibility may be related to defects in newborn polymorphonuclear leukocyte (PMN) defensive functions. It remains unclear whether reported deficits in newborn PMN function represent maturational disorders or are manifestations of some form of perinatal suppression phenomenon. We therefore compared the ability of bovine newborn PMNs (less than 24 h old), newborn PMNs (7-10 days of age), fetal PMNs (210-220 days gestational age), and adult PMNs to generate superoxide anion (O2-) as an indicator of respiratory burst activity. Citrated blood was collected, and PMNs were isolated to greater than 95% purity and 98% viability. O2- generation was measured as the superoxide dismutase-inhibitable (10 micrograms/ml) reduction of ferricytochrome c (2 mg/ml) after activation of PMNs with phorbol myristate acetate (PMA, 2 micrograms/ml) to directly stimulate protein kinase C. The reaction kinetics were measured (37 degrees C, 550 nm) using a spectrophotometer and chart recorder for continuous monitoring. O2- generation was measured for 5 min after the initial lag period and the total nanomoles of O2- generated calculated using the extinction coefficient for ferricytochrome c. Newborn PMNs (N = 10) generated significantly less O2- (5.7 +/- 0.8 nmol O2-/10(6) cells/5 min, P less than 0.01) than did adult PMNs (N = 14) (9.6 +/- 2.1 nmol O2-/10(6) cells/5 min) or fetal PMNs (N = 4) (10.7 +/- 0.7 nmol O2-/10(6) cells/5 min). PMNs from 7- to 10-day-old calves (N = 9) generated almost identical amounts of O2- as newborn PMNs (5.7 +/- 1.6 nmol O2-/10(6) cells/5 min). There was no difference in measured lag time period between newborn and adult PMNs, but fetal PMNs had significantly reduced (P less than 0.01) mean lag time. The data indicated that bovine newborn PMNs have a decreased ability to generate O2- in response to PMA stimulation, which persists for at least 7-10 days, and that this functional decrement may be a manifestation of some form of perinatal PMN suppression phenomenon rather than a developmental abnormality since fetal PMNs produced O2- as well as adult PMNs.

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Alveolar macrophage phagocytic kinetics following pulmonary parainfluenza-3 virus infection.

Qualitative and quantitative evaluations of the cellular components of bronchoalveolar washings of calves with experimental parainfluenza-3 virus pneumonitis and control calves were made. Calves were exposed to 10(9) TCID50 of PI-3 by intranasal aerosol exposure and bronchoalveolar cells obtained 7 days after infection by volume-controlled bronchopulmonary lavage. Transient tachypnea and pyrexia occurred in all infected calves, and virus was recoverable at 7 days from nasal swabs and lung tissue. Pulmonary lesions were typical of viral pneumonitis, characterized by patchy alveolitis and bronchiolitis with accumulations of cells and inflammatory debris. The mean total lavage cell yield was elevated in the virus-infected calves, and the percentage of neutrophils was elevated (P less than 0.05). Increased numbers of pulmonary alveolar macrophages (PAM) were also recovered but the difference was not significant. Linear regression equations showed that a decreased proportion of PAM from virus-infected animals were phagocytic. The mean initial phagocytic rates of macrophages from calves with viral pneumonitis were significantly decreased (P less than 0.05) over controls. This difference was concentration dependent and required a phagocytic stimulus in excess of 12.5 X 10(6) beads/ml. Studies of phagocytic kinetics showed that PAM from calves with viral pneumonitis had a lower Vmax than PAM from control calves, but that Km values were comparable. No differences in PAM beta-glucuronidase and acid phosphatase activity were observed. These results indicate depressed phagocytic function in PI-3 virus-inflamed lungs relative to controls. In concert with virus-induced airway lesions, such in vivo depression of PAM phagocytic functions would be expected to depress pulmonary particulate clearance and lung defense mechanisms.

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Increased adhesiveness of complement-stimulated neonatal calf neutrophils and its pharmacologic inhibition.

Several in vitro functions of neonatal neutrophils (N-PMN) have been reported to be deficient and may be functionally related to the increased susceptibility of the newborn to infection. To evaluate an in vitro event corresponding to one of the early steps in the sequence of inflammation, we used zymosan-activated plasma as a source of activated complement fragments (Cf) and measured adherence of normal and Cf-stimulated bovine N-PMN to columns of Sephadex G-25. Adherence of control N-PMN and adult PMN (A-PMN) was comparable. When N-PMN and A-PMN were stimulated with a subaggregating dose of Cf, both responded with similar increases in adhesiveness. The stimulatory effect of Cf on N-PMN adhesiveness could be inhibited by pre-incubation of the N-PMN with either steroidal (0.05 mM dexamethasone) or non-steroidal (32 mM phenylbutazone) anti-inflammatory drugs. Ultrastructural observations correlated well with the results of the adhesiveness assays, and morphometric evaluation revealed an increase in the sectional circumference of Cf-stimulated N-PMN. Control cells were round with few short cytoplasmic projections, whereas Cf-stimulated cells exhibited marked shape irregularity, polarity, and prominent organelle-free lamellipodia development. There was a highly significant (P less than 0.001) increase in the measured circumference of Cf-stimulated cells. Thus, N-PMN were highly responsive to Cf stimulation, developed morphologic and functional changes indistinguishable from Cf-stimulated A-PMN, and were sensitive to pharmacologic inhibition.

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Complement-induced equine neutrophil adhesiveness and aggregation.

Equine neutrophils (PMN) were isolated from citrated normal blood by density gradient separation on Ficoll-Hypaque to greater than 96% purity and 98% viability and an average of 3.78 x 10(7) PMN/ml. The agonist C5a des Arg was used in serial dilutions of whole zymosan-activated equine plasma (ZAP) or was partially purified from ZAP by column chromatography. Purified equine PMN exhibited rapid aggregation following incubation with C5a des Arg which was further dependent on the availability of divalent cations, especially Mg++. The microfilament disruptive agent cytochalasin B (5 micrograms/50 microliters) greatly augmented aggregation responses to C5a des Arg. Subaggregating doses of C5a des Arg promoted PMN adhesiveness as assayed on 0.5 x 10 cm borosilicate glass columns containing a 2.0 cm bed of Sephadex G-25. This C5a des Arg-induced increased adhesiveness was inhibitable by prior incubation of the PMN with either non-steroidal (0.065 M phenylbutazone) or steroidal (0.005 M dexamethasone) anti-inflammatory agents. Ultrastructural studies correlated well with functional assays and revealed marked organelle-free lamellipodia formation without PMN-PMN contact at subaggregating doses of the agonist and progressive PMN-PMN contact at aggregating doses. Equine PMN are responsive to C5a des Arg, and induced adhesiveness responses can be manipulated by anti-inflammatory agents.

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Functional and biochemical characterization of immunologically derived equine platelet-activating factor.

Antigen-specific challenge of equine leukocytes induced the non-lytic release of a platelet-activating factor in vitro. The equine platelet-activating factor stimulated the release of serotonin from equine platelets in a dose-responsive manner, independent of the presence of cyclo-oxygenase pathway inhibitors such as indomethacin. Rabbit platelets were also responsive to equine platelet-activating factor. The release of equine platelet-activating factor was a rapid reaction with near maximal secretion taking place in 30 seconds. Addition of equine platelet-activating factor to washed equine platelets stimulated platelet aggregation which could not be inhibited by the presence of aspirin or indomethacin. Platelets pre-incubated with equine platelet-activating factor became specifically desensitized to equine platelet-activating factor while remaining responsive to other platelet stimuli such as collagen and epinephrine. The following biochemical properties of equine platelet-activating factor are identical to those properties of 1-0-alkyl-2-acetyl-sn-glyceryl-3-phosphorylcholine (AGEPC): stability upon exposure to air and acid; loss of functional activity after base-catalyzed methanolysis with subsequent acylation that returned all functional activity; and identical relative mobilities on silica gel G plates developed with chloroform:methanol:water (65:35:6, volume/volume). The combined functional and biochemical characteristics of equine platelet-activating factor strongly suggest identity between this naturally occurring, immunologically derived equine factor and AGEPC.

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Expression and kinetics of induced procoagulant activity in bovine pulmonary alveolar macrophages.

Leukocytes, especially macrophages, are important cellular mediators of fibrin deposition and removal at tissue sites of inflammation. Pulmonary fibrin deposition is a prominent feature of bovine acute lung injury; therefore, we studied the resting and stimulated procoagulant responses of bovine pulmonary alveolar macrophages (PAM) and peripheral blood neutrophils (PMN). Freshly isolated normal PAM and PMN expressed negligible procoagulant activity. PAM stimulated with endotoxin lipopolysaccharide (LPS), 4 beta-phorbol 12-myristate 13-acetate (PMA) and bovine recombinant interleukin-1 beta (rBIL-1 beta) exhibited protein synthesis- and dose-dependent enhancement of procoagulant activity in 8-h cultures. Bovine recombinant granulocyte macrophage-colony stimulating factor (rBGM-CSF) and recombinant human gamma-interferon (rHIFN-gamma) did not induce procoagulant activity. The kinetics of LPS- and PMA-enhanced PAM procoagulant activity differed: LPS-induced enhancement developed earlier and more rapidly than PMA-induced enhancement. Pasteurella haemolytica LPS was more potent than Escherichia coli LPS in enhancing PAM procoagulant activity, while dexamethasone decreased both baseline and LPS- or PMA-stimulated activity by approximately 50%. PAM procoagulant activity resulted from tissue factor expression. Bovine PMN produced negligible procoagulant activity when stimulated, and are thus unlikely to be major contributors to procoagulant activity in bovine lung. Activity inhibitory to bovine tissue factor was present in both calf and adult sera, and was partly dependent on the presence of factor X for activity. Rapid induction of bovine PAM procoagulant activity by inflammatory mediators, and subsequent resistance to degradation, may thus combine to promote an alveolar microenvironment permissive to fibrin deposition in bovine acute lung injury.

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