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Biomedical subjects

D English

Publications and source records attributed to D English.

At least 127 records · Page 7Linked to original sources

Kinetics of radiolabeled neutrophils in swine.

The kinetics of radiolabeled neutrophils (PMNs) as they pass through the lungs of swine were evaluated and compared with those in rabbits (J. Appl. Physiol. 63: 1806-1815, 1987) and dogs (J. Appl. Physiol. 63: 1253-1261, 1987; 65: 1217-1225, 1988) previously reported from our laboratory. 111In-labeled PMNs (111In-PMNs) and 99mTc-labeled erythrocytes were simultaneously injected into the right atrium, and the 111In-PMN percent extraction on the first passage through the lung was determined by the indicator-dilution technique. After 10 min of circulation the distribution of 111In-PMNs in selected organs was determined. The extraction of 111In-PMNs in swine was 88 +/- 3%, which was significantly greater than that of rabbits (78 +/- 3%) or dogs (72 +/- 2%). The recovery of the 111In-PMNs in the lungs of swine was 60 +/- 7%, which was two to three times higher than the recovery in lungs of rabbits or dogs. These results show that radiolabeled PMNs injected intravenously are less able to pass through the pulmonary vasculature and are retained much more within the lung in swine than in rabbits or dogs. This difference could be the result of the presence of pulmonary intravascular macrophages in the lungs of swine.

Animals↗

A mutant RAS gene acts through protein kinase C to augment interleukin-3 dependent proliferation in a fastidious immortal myeloid cell line.

The functional role of a mutant RAS gene in immortal myeloid cell proliferation was examined in a fastidious interleukin-3 (IL-3) dependent cell line (NFS/N1.H7) formed by forced proliferation in IL-3 of marrow cells of the NFS/N mouse. The NFS/N1.H7 cell line was strictly dependent upon IL-3 for growth, and the cell line could be activated by phorbol esters (PMA) to augment IL-3 dependent proliferation, but when pKC was downregulated, diminished IL-3 proliferative response resulted. Transfection (electroporation) of the T24 RAS-containing vector pAL8 to NFS/N1.H7 led to clones (H7 NeoRas.F3, H7 NeoRas.E2) that had incorporated the entire 6.6 Kb human mutant H-RAS genome. The mutant RAS-containing clones demonstrated greater proliferation than parent cells or cells containing a control (neo-resistance) vector over a range of suboptimal IL-3 does and in optimal IL-3 concentrations had a faster doubling rate than parent cells. The clone H7 NeoRas.F3 was studied biochemically, and found to constitutively form 3-fold more 3H-diacylglycerol than the parent cell line upon exposure to 3H-glycerol. PMA could partially repair the proliferative defect of NFS/N1.H7 compared to the RAS-expressor. These studies affirm a secondary, accelerating role for a mutant RAS gene product acting through pKC to promote clonal expansion of immortal myeloid cells stimulated by IL-3.

Animals↗

Temporal adaptation of neutrophil oxidative responsiveness to n-formyl-methionyl-leucyl-phenylalanine. Acceleration by granulocyte-macrophage colony stimulating factor.

This investigation was undertaken to clarify the mechanism by which purified recombinant human granulocyte-macrophage colony stimulating factor (GM-CSF) potentiates neutrophil oxidative responses triggered by the chemotactic peptide, FMLP. Previous studies have shown that GM-CSF priming of neutrophil responses to FMLP is induced relatively slowly, requiring 90 to 120 min of incubation in vitro, is not associated with increased levels of cytoplasmic free Ca2+, but is associated with up-regulation of cell-surface FMLP receptors. We have confirmed these findings and further characterized the process of GM-CSF priming. We found that the effect of GM-CSF on neutrophil oxidative responsiveness was induced in a temperature-dependent manner and was not reversed when the cells were washed extensively to remove the growth factor before stimulation with FMLP. Extracellular Ca2+ was not required for functional enhancement by GM-CSF and GM-CSF alone effected no detectable alteration in the 32P-labeled phospholipid content of neutrophils during incubation in vitro. Our data indicate that GM-CSF exerts its influence on neutrophils by accelerating a process that occurs spontaneously and results in up-regulation of both cell-surface FMLP receptors and oxidative responsiveness to FMLP. Thus, the results demonstrate that, with respect to oxidative activation, circulating endstage polymorphonuclear leukocytes are nonresponsive or hyporesponsive to FMLP; functional responsiveness increases dramatically as surface FMLP receptors are gradually deployed after the cells leave the circulation. Thus, as neutrophils mature, their responsiveness to FMLP changes in a manner which may be crucial for efficient host defense. At 37 degrees C, this process is markedly potentiated by GM-CSF. We conclude that endogenous GM-CSF, released systemically or at sites of infection and inflammation, potentially plays an important role in host defense by accelerating functional maturation of responding polymorphonuclear leukocytes.

Cell Differentiation↗

The epidemiology of multiple sclerosis in three Australian cities: Perth, Newcastle and Hobart.

An epidemiological survey of multiple sclerosis (MS) in three Australian cities, Perth, Newcastle and Hobart, was undertaken with its prevalence day being the national census day on June 30, 1981, exactly twenty years after a previous survey of the same cities. The relationship between increasing prevalence and increasing south latitude found in the 1961 survey was confirmed in this present study. Prevalence rates had increased significantly over the twenty years between the studies. Over the same time period incidence rates had also increased in Newcastle and Hobart but had remained essentially stable in Perth although these changes were not significant. The rise in prevalence was due to a combination of factors of differing importance in each city. These factors included better case ascertainment, increased recognition of the less severely disabled patient, increased survival time and differential immigration of a population at a higher risk of developing MS than the indigenous population. Finally, analysis of MS prevalence rates amongst migrant populations in Perth and Hobart suggested that either the risk of acquisition of MS may extend over a wider age range than is generally accepted or that environmental factors prevalent in the former city have modified disease expression there.

Age Factors↗

Polymorphonuclear leukocyte cytoplasts mediate acute lung injury.

Injection of phorbol 12-myristate 13-acetate (PMA) into polymorphonuclear leukocyte (PMN)-depleted, PMN cytoplast-repleted New Zealand White rabbits caused the development of acute lung injury in vivo. PMN cytoplasts are nucleus- and granule-free vesicles of cytoplasm capable of releasing toxic O2 radicals but incapable of releasing granule enzymes. PMN cytoplasts when activated by PMA reduced 66 +/- 12.7 nmol of cytochrome c compared with 2.6 +/- 0.7 nmol in their resting state and did not release a significant quantity of granule enzymes (P greater than 0.05). Injection of PMA into New Zealand White rabbits caused a significant decrease (P less than 0.05) in the number of circulating cytoplasts. Increases in lung weight-to-body weight ratios in PMA-treated rabbits (9.8 +/- 0.5 X 10(-3] compared with saline-treated rabbits (5.3 +/- 0.2 X 10(-3] were also noted. Levels of angiotensin-converting enzyme in lung lavage as well as the change in alveolar-arterial O2 ratio correlated with the numbers of cytoplasts in lung lavage (P = 0.001, r = 0.84 and P = 0.0166, r = 0.73, respectively). Albumin in lung lavage increased to 1,700 +/- 186 mg/ml in PMA-treated rabbits from 60 +/- 30 mg/ml in saline-treated rabbits. These changes were attenuated by pretreatment of rabbits with dimethylthiourea (DMTU). In vitro, cytoplasts were able to mediate increases in endothelial monolayer permeability. This was evidenced by increases in fractional transit of albumin across endothelial monolayers when treated with PMA-activated cytoplasts (0.08 +/- 0.01 to 0.28 +/- 0.02).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Increased intrapulmonary retention of radiolabeled neutrophils in early oxygen toxicity.

Sequential lung injuries, such as oxygen toxicity followed by septicemia, are common during the adult respiratory distress syndrome (ARDS). As these forms of vascular injury may be mediated in part by polymorphonuclear leukocytes (PMN), aberrant interactions between PMN and previously injured pulmonary endothelium are of both theoretical interest and clinical importance. The present study was undertaken to test the hypothesis that early oxygen toxicity at a dose that injuries pulmonary endothelium relatively selectively alters intrapulmonary neutrophil kinetics. Unanesthetized rats breathing 1.0 atmospheres oxygen for 36 h showed ultrastructural endothelial damage but no edema, injury, or neutrophilic inflammation by histologic criteria. However, in these oxygen-toxic animals, whereas initial accumulation of radiolabeled PMN in lungs was normal, washout of PMN was abnormal at 120 min after infusion, at which point the pulmonary retention of radiolabeled PMN in the lungs of oxygen-treated animals was significantly higher than in control animals (139% of control, p less than 0.0096). Features of our methodology, including avoidance of osmotic stress and use of paired control animals, appear to have greatly enhanced the sensitivity of radiolabeled neutrophils for detecting a subtle abnormality of neutrophil-endothelial interactions. Our studies in the oxygen toxicity model provide the first demonstration in vivo of abnormal intrapulmonary neutrophil kinetics in early oxygen toxicity prior to the onset of histologic evidence of lung injury or inflammation.

Animals↗

The clinical profile of MS in Australia: a comparison between medium- and high-frequency prevalence zones.

Recent epidemiologic studies of multiple sclerosis (MS) in Australia defined the State of Queensland as a medium-frequency zone and the more southerly placed cities of Perth, Newcastle, and Hobart as high-frequency zones. Clinical profiles in the patient populations of both frequency zones were remarkably similar in most respects to each other and to MS populations in the northern hemisphere. However, male patients in Queensland differed from their counterparts in the three cities by showing a greater tendency to develop a progressive disease course and, hence, more disability. The explanation for these observations is uncertain; we speculate that the hotter climate in Queensland may be relevant.

Adult↗

Rapid deactivation of NADPH oxidase in neutrophils: continuous replacement by newly activated enzyme sustains the respiratory burst.

The cell-free system for activation of the neutrophil NADPH oxidase allowed us to examine activation of the oxidase in the absence of its NADPH-dependent turnover. The covalent sulfhydryl-modifying reagent N-ethylmaleimide completely inhibited the activation step (Ki = 40 mumol/L) in the cell-free system but had no effect on turnover of the preactivated particulate NADPH oxidase (up to 1 mmol/L). When N-ethylmaleimide was added to intact neutrophils during the period of maximal O2 generation in response to stimuli that activate the respiratory burst (phorbol myristate acetate, f-Met-Leu-Phe, opsonized zymosan, arachidonic acid), O2- generation ceased within seconds. Study of components of the cell-free activation system indicated that the cytosolic cofactor was irreversibly inhibited by N-ethylmaleimide whereas the N-ethylmaleimide-treated, membrane-associated oxidase could be activated by arachidonate and control cytosolic cofactor. Likewise, the cell-free system prepared from intact neutrophils that had been briefly exposed to N-ethylmaleimide and then washed reflected the effects of N-ethylmaleimide on the isolated cell-free components: cytosolic cofactor activity was absent, but the membrane oxidase remained fully activatable. Thus inhibition of oxidase activation by N-ethylamaleimide unmasked a rapid deactivation step that was operative in intact neutrophils but not in isolated particulate NADPH oxidase preparations. The demonstrated specificity of N-ethylmaleimide for oxidase activation and lack of effect on turnover of the NADPH oxidase suggested that sustained O2- generation by intact neutrophils was a result of continued replenishment of a small pool of active oxidase. The existence of an inactive pool of NADPH oxidase molecules in particulate preparations from stimulated neutrophils was supported more directly by activating these preparations again in the cell-free system.

Cell-Free System↗

In vivo kinetics of canine leukocytes labeled with technetium-99m HM-PAO and indium-111 tropolonate.

Two weeks after the introduction of osteomyelitis in three dogs, autologous leukocytes were dual-labeled with both [99mTc]HM-PAO and [111In]tropolonate, and reinjected. Blood sampling and imaging were then performed. Two weeks later, the same dogs received simultaneous injections of singly-labeled [99mTc]WBC and [111In]WBC for comparison. For both studies, blood samples were drawn over 6 hr to determine the respective blood clearance half-time (TB) and % recovery (%R0) of cell-bound radioactivity. There were no significant differences in the average TB results of the 99mTc and 111In groups, either within or between the dual- and singly-labeled studies. The %R0 of singly-labeled [99mTc]WBC was about half that of the other groups (p less than 0.01); however, this difference was attributed to the dissimilar radiochemical purity of the [99mTc]HM-PAO reagents. Region of interest analysis of the 6 and 24 hr images revealed no significant differences between either cell label in the relative or absolute in vivo uptake at known sites of osteomyelitis, noninfected surgery, and normal bone marrow.

Animals↗

Regulation of neutrophil NADPH oxidase activation in a cell-free system by guanine nucleotides and fluoride. Evidence for participation of a pertussis and cholera toxin-insensitive G protein.

Guanine nucleotide-binding regulatory proteins (G proteins) transduce a remarkably diverse group of extracellular signals to a relatively limited number of intracellular target enzymes. In the neutrophil, transduction of the signal following fMet-Leu-Phe receptor-ligand interaction is mediated by a pertussis toxin substrate (Gi) that activates inositol-specific phospholipase C. We have utilized a plasma membrane-containing fraction from unstimulated human neutrophils as the target enzyme to explore the role of G proteins in arachidonate and cytosolic cofactor-dependent activation of the NADPH-dependent O-2-generating oxidase. When certain guanine nucleotides or their nonhydrolyzable analogues were present during arachidonate and cytosolic cofactor-dependent activation, they exerted substantial dose-dependent effects. The GTP analogue, GTP gamma S, caused a 2-fold increase in NADPH oxidase activation (half-maximal stimulation, 1.1 microM). Either GDP or its nonhydrolyzable analogue, GDP beta S, inhibited up to 80% of the basal NADPH oxidase activation (Ki GDP = 0.12 mM, GDP beta S = 0.23 mM). GTP caused only slight and variable stimulation, whereas F-, an agent known to promote the active conformation of G proteins, caused a 1.6-fold stimulation of NADPH oxidase activation. NADPH oxidase activation in the cell-free system was absolutely and specifically dependent on Mg2+. Although O2- production in response to fMet-Leu-Phe was inhibited greater than 90% in neutrophils pretreated with pertussis toxin, cytosolic cofactor and target oxidase membranes from neutrophils treated with pertussis toxin showed no change in basal- or GTP gamma S-stimulated NADPH oxidase activation. Cholera toxin treatment of neutrophils also had no effect on the cell-free activation system. Our results suggest a role for a G protein that is distinct from Gs or Gi in the arachidonate and cytosolic cofactor-dependent NADPH oxidase cell-free activation system.

Cell-Free System↗

The epidemiology of multiple sclerosis in Queensland, Australia.

An epidemiological survey of multiple sclerosis (MS) in the State of Queensland was undertaken with its prevalence day being the national census day on June 30th, 1981, 20 years after a regional survey within the State. The relationship between increasing prevalence of MS and increasing south latitude within the State of Queensland which was suggested by the 1961 study was confirmed in the present study. The prevalence rate had increased significantly over the 20-year period between the studies but the State remained a medium frequency zone for MS (prevalence rate between 5 and 29 per 100,000 of population). Although a real increase in disease frequency could not be excluded as a contributing factor to the rise in prevalence, it was most likely due predominantly to an increase in life expectancy amongst the MS population and also in differential migration of a population at a greater risk of developing MS than the indigenous population. The proportions of Australian-born patients who had migrated to Queensland from the higher risk southern regions of Australia or travelled overseas to countries known to be high-risk for MS prior to disease onset, had fallen between the two surveys thus exerting, if anything, a negative influence on the change in prevalence. Analysis of MS prevalence rates amongst migrant populations in Queensland as compared to the more southerly city of Perth in Western Australia, suggested that the risk of acquisition of MS may extend over a wider age range than is generally accepted. Finally, there was an absence of MS cases amongst the Aboriginal population in Queensland but it can only cautiously be concluded from this study that the disease is rare in these peoples.

Adolescent↗

Relationship of phosphatidylinositol bisphosphate hydrolysis to calcium mobilization and functional activation in fluoride-treated neutrophils.

Sodium fluoride (20 mM) effected rapid hydrolysis of phosphatidylinositol bisphosphate (PIP2) in human neutrophils. Intracellular free Ca2+ levels increased after PIP2 hydrolysis but before respiratory burst activation. Both the increase in intracellular free Ca2+ levels and the extent of functional activation were dependent on the availability of extracellular Ca2+. The rate of F(-)-stimulated PIP2 hydrolysis, however, was not affected when the rise in cytosolic Ca2+ was severely limited by depletion of extracellular Ca2+. Fluoride caused the specific hydrolysis of PIP2 in isolated neutrophil plasma membranes. This effect occurred in the presence of low levels of available Ca2+ and was accompanied by the release of inositol phosphates. We conclude that PIP2 hydrolysis is an early event in the response of neutrophils to F-. This response is not Ca2+-regulated but may lead to an influx of Ca2+ from the extracellular medium. Activation of a PIP2-specific phospholipase independent of a change in cytosolic free Ca2+ levels may be the initial event in the stimulus-response pathway triggered by fluoride.

Calcium↗

Leukocyte labeling with technetium-99m tin colloids.

Triple density gradients of metrizamide in plasma (MP) were used to characterize label distribution in human leukocyte preparations incubated with 99mTc tin colloids. Less than 50% of the cell-associated radioactivity was specifically bound to leukocytes when heparinized blood was rotated with stannous fluoride colloid ([Tc]SFC). Labeling efficiency in leukocyte rich plasma (LRP) averaged 44%, of which greater than 90% was specifically bound to leukocytes. MP-gradient analysis also revealed that leukocyte labeling did not occur with stannous chloride colloid, nor when citrate was present during rotation with [Tc]SFC. When citrate was added after labeling to "solubilize" unbound [Tc]SFC, radiocolloid was removed from the leukocytes, indicating that the mechanism of [Tc]SFC labeling is adherence rather than phagocytosis. Technetium-labeled neutrophils exhibited normal in vitro chemotaxis and no lung uptake in vivo. Technetium-labeled mononuclear leukocytes, on the other hand, exhibited prolonged lung transit in vivo. Neither [Tc]SFC cell preparation showed signs of in vivo reoxidation to pertechnetate.

Humans↗

Reversible activation of the neutrophil superoxide generating system by hexachlorocyclohexane: correlation with effects on a subcellular superoxide-generating fraction.

gamma-Hexachlorocyclohexane was found to exert profound effects on the phosphatidylinositol cycle, cytosolic calcium level, and the respiratory burst of human neutrophils. Exposure of neutrophils prelabelled with 32P to 4 X 10(-4) M gamma-hexachlorocyclohexane almost tripled radioactivity in phosphatidic acid and correspondingly decreased radioactivity in phosphatidylinositol 4,5 bisphosphate. Under similar conditions, gamma-hexachlorocyclohexane evoked the generation of superoxide at a rate of over 11 nmol/min/10(6) cells and more than doubled cytosolic-free calcium concentration as monitored by Quin-2 fluorescence. Because intermediates of the phosphatidylinositol cycle, via increases in available calcium levels or activated protein kinase C, are considered potential second messengers for activation of the NADPH-dependent O-2-generating system, we compared neutrophil responses to gamma-hexachlorocyclohexane with responses to phorbol myristate acetate, an activator of protein kinase C with well known effects on neutrophils. Like phorbol myristate acetate, gamma-hexachlorocyclohexane induced neutrophil degranulation but was not an effective chemotactic stimulus. The ability of gamma-hexachlorocyclohexane to induce a pattern of oxidative activation in neutrophil cytoplasts similar to that in intact cells indicated that concurrent degranulation was not required for sustained O-2 generation in response to this agent. When neutrophils or neutrophil cytoplasts exposed to gamma-hexachlorocyclohexane were centrifuged and resuspended in stimulus-free medium, O-2 generation ceased entirely but could be reinitiated by addition of the same stimulus. This finding was in contrast to the continued O-2 production by phorbol myristate acetate-stimulated neutrophils similarly washed and resuspended in stimulus-free medium. Unlike subcellular fractions of phorbol myristate acetate-stimulated neutrophils, corresponding fractions prepared from gamma-hexachlorocyclohexane-stimulated neutrophils contained almost no detectable NADPH-dependent O-2-generating activity. Subcellular oxidase activity was not recovered when cells and membrane fractions were continuously exposed to gamma-hexachlorocyclohexane during disruption and fractionation after cell stimulation, nor could it be induced by the addition of the stimulus to the subcellular fractions. Thus, the stimulus dependence of continuous neutrophil superoxide release evoked by gamma-hexachlorocyclohexane does not merely reflect a physical interaction of the agonist with the enzyme system involved.(ABSTRACT TRUNCATED AT 400 WORDS)

Calcium↗

Effects of methylprednisolone on lung oxygen toxicity in awake sheep.

The purpose of this study was to measure the effects of high doses of corticosteroids on the response to breathing 100% O2 in sheep. Sheep were prepared for chronic measurement of vascular pressures, cardiac output, gas exchange, and for collection of lung lymph. Tracheostomies were made for accurate delivery of gas mixtures. Eight sheep received methylprednisolone 30 mg/kg body wt every 6 h for eight doses, four for the first 48 h, and four for the final 24-48 h of 100% O2 breathing. Eight control sheep breathed 100% O2 without methylprednisolone, four sheep breathed compressed air without methylprednisolone, and two breathed compressed air and received methylprednisolone. Sheep had daily measurements of hypoxic vasoconstriction (fractional concentration of O2 in inspired gas = 0.12), gas exchange, lymph flow, and lymph and plasma protein concentration. Polymorphonuclear leukocyte (granulocyte) function in experimental and control sheep was assessed ex vivo by tests of chemotaxis, aggregation, and superoxide production. The number of granulocytes in peripheral lung was measured in biopsy tissue taken at the time of original surgery and postmortem. Methylprednisolone did not affect the time course nor magnitude of gas exchange abnormality, lymph flow and composition, loss of hypoxic vasoconstriction, lung granulocyte accumulation, nor postmortem lung water caused by 100% O2 breathing. Sheep receiving methylprednisolone had a shorter survival by several h, independent of the timing of the drug. Granulocytes from methylprednisolone-treated sheep showed normal function ex vivo by all three assays. We conclude that high doses of methylprednisolone unfavorably affect the rate and progression of lung injury in sheep breathing 100% O2.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗