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Biomedical subjects

D Roos

Publications and source records attributed to D Roos.

At least 109 records · Page 6Linked to original sources

Effect of interferon-gamma, in vitro and in vivo, on mRNA levels of phagocyte oxidase components.

During the international placebo-controlled trial on the efficacy of interferon-gamma (IFN-gamma) in chronic granulomatous disease (CGD), 19 patients entered the study via our Institute. One patient stopped treatment shortly thereafter. RNA was purified from the mononuclear cells of the remaining 18 CGD patients before and during this placebo-controlled trial. The mRNA levels for the NADPH oxidase components were subsequently analyzed. Compared with the placebo-treated CGD patients, the mRNA levels for p47-phox were significantly increased in the IFN-gamma-treated CGD patients (P < 0.002). No significant changes were observed in the mRNA levels of the other oxidase components. These findings are in agreement with observations in vitro and indicate that IFN-gamma is active on the NADPH oxidase in vivo as well. However, it remains questionable whether these effects in vivo can explain the observed reduction of infections in these patients.

Gene Expression Regulation, Enzymologic↗

Peritoneal interleukin-8 in acute appendicitis.

Interleukin-8 (IL-8) is a chemoattractant that is highly selective for neutrophils. This study was designed to investigate the presence of IL-8 in peritoneal fluid of patients with acute appendicitis. The clinical circumstances underlying the secretion of IL-8 by mesothelium and its mechanism of activation have not been defined. In an in vitro model for bacterial peritonitis the role of bacteria in activating human mesothelial cells to secrete IL-8 was studied. Cultured human mesothelium was incubated with various species of pathogenic bacteria, isolated from peritoneal exudate fluids of patients with appendicitis. The amount of IL-8 secreted by the cultured mesothelial cells was determined in an IL-8 ELISA, as IL-8 was present in the original peritoneal fluid of these patients. Peritoneal fluids from patients with a perforated appendix were found to contain a significantly higher concentration of IL-8 compared to peritoneal fluids from patients with nonperforating appendicitis (121.6 (57.8) ng/ml versus 0.2 (0.07) ng/ml, respectively; mean (SEM), P < or = 0.01). Species of Bacteroïdes and Fusobacterium necrophorum induced IL-8 secretion from cultured mesothelial monolayers to levels comparable to those found in peritoneal fluids in vivo. Heat-killed bacteria and bacterial supernatant were also able to stimulate mesothelium to secrete IL-8. The results suggest that in the early phase of bacterial peritonitis the influx of PMN is regulated by bacteria-induced IL-8 secretion by the mesothelium lining the peritoneal cavity.

Acute Disease↗

Limited influence of the mesothelium on the influx of monocytes into the peritoneal cavity.

We have investigated the role of human mesothelium in an in vitro model of peritonitis on the monocyte adherence to and migration across monolayers of peritoneal mesothelial cells. Monocytes adhere avidly to non-activated mesothelial cell monolayers; however, migration in this situation was minimal. Prestimulation of the monolayers with II-1 beta did not alter these results. Anti-CD18 and anti-VLA-4 mAbs used in combination had an additive inhibitory effect on monocytes adherence to resting or IL-1 beta-pretreated mesothelial cells. MCP-1 and TGF-beta are secreted by mesothelial cells. Both have a modest role in mesothelium-induced monocyte chemotaxis: mAbs against these cytokines had an additive inhibitory effect on the chemotaxis induced by supernatant from 24-h prestimulated mesothelial cells. Our results indicate that the mesothelium itself has a limited role in the influx of monocytes into the peritoneal cavity during the onset of peritonitis.

Antibodies, Monoclonal↗

Perilesional neurochemical changes in focal epilepsies.

Circumscribed cortical lesions are frequently encountered in patients with chronic focal epilepsies. However, the pathogenesis of seizures is poorly understood. To determine whether the perilesional cortex shows evidence for abnormal excitatory or inhibitory neurochemical activity, we immunohistochemically examined the distribution of the alpha 1 subunit of the GABAA receptor (GABAR), the N-methyl-D-aspartate receptor subunit 1 (NR1), and glutamate decarboxylase (GAD) in 30 surgical specimens of neocortical epilepsy-associated lesions. These comprised 7 low-grade gliomas, 2 gangliogliomas, 2 dysembryoplastic neuroepithelial tumors, 4 glioneuronal malformations, 5 vascular malformations, and 10 glial or gliomesodermal scars. All specimens originated from patients with chronic pharmacoresistant epilepsy. In 73% of the cases there was a distinct difference in immunoreactivity for GABAR, GAD or NR1 between the perilesional zone and the normal cortex. With each of the markers there was reduced perilesional immunoreactivity in 30% of the specimens. Increased staining of GAD was seen in 17%, for GABAR in 7%, and for NR1 in 13% of the cases. The age at surgery, onset of seizures, epilepsy duration, and maximal seizure frequency did not differ significantly between patients with normal and those with altered perilesional immunoreactivity patterns. Although the perilesional changes for GAD, GABAR or NR1 were heterogeneous, they suggest a disturbed balance between excitatory and inhibitory synaptic transmission which may contribute to the pathogenesis of focal seizures.

Epilepsies, Partial↗

Interactions between the components of the human NADPH oxidase: intrigues in the phox family.

The human NADPH oxidase is a very intriguing enzyme; although its catalytic unit is retained within cytochrome b558, various additional proteins are required for activity of the NADPH oxidase. In the past few years substantial progress has been made to elucidate the protein-protein interactions and the activation events involved. The following facts have become evident: (1) activation of rac and subsequent interaction with p67-phox is crucial for the interaction of p67-phox with cytochrome b558, and probably with gp91-phox; (2) p47-phox interacts with p22-phox, and phosphorylation of 379Ser of p47-phox is obligatory for this event; (3) p47-phox and p67-phox regulate each other's translocation in a positive sense (see also reference 71). To put it differently: it is vital to gain insight in the intrigues within the phox family and associated characters to fully understand NADPH oxidase activation.

Amino Acid Sequence↗

Neutrophil adherence to and migration across monolayers of human peritoneal mesothelial cells. The role of mesothelium in the influx of neutrophils during peritonitis.

Increased adherence to and subsequent migration of leukocytes across cultured human peritoneal mesothelial cell monolayers takes place after pretreatment of the mesothelial cells with interleukin-1beta. The contribution of the leukocyte beta2 integrins (CD11/CD18) and the mesothelial adhesion protein intercellular adhesion molecule-1 (ICAM-1) and the role of the cytokines interleukin-8, platelet-activating factor (PAF), and transforming growth factor-beta (TGF-beta) were studied in a three-dimensional model system for neutrophil-mesothelial monolayer interaction. Polymorphonuclear leukocytes (PMNs) showed minimal adherence to and migration across unactivated mesothelial monolayers, despite an extensive amount of ICAM-1 on the mesothelial membrane. Pretreatment of the monolayers with rIL-1beta induced enhanced PMN adherence to the mesothelial monolayer together with a further increase in ICAM-1 expression on the mesothelial membrane. PMN migration was observed across rIL-1beta-activated mesothelial cell (MC) monolayers whenever cytokines secreted by the MCs were present during migration. Monoclonal antibody (mAb) R6.5 against ICAM-1 and mAb CLB-LFA1/1 against CD18 both reduced the migration of PMNs across mesothelial monolayers with a predominant inhibitory effect of CLB-LFA1/1, indicating a significant role of the beta(2) integrins of PMNs in this process. Interleukin-8 was the major cytokine synthesized by the MCs to stimulate the migration of PMNs; both PAF and TGF-beta had a more modest role in our system. Adherence of PMNs to MC monolayers was not dependent on these latter cytokines. Neuraminidase did not have any effect, indicating that selectins were not involved in the adherence process. rIL-1beta-pretreated MCs induced a rapid increase in intracellular Ca2+ in PMNs; actinomycin D blocked this effect and was also able to prevent adhesion of neutrophils to activated MC monolayers. Neutrophil migration across activated cultured MCs is thus a cascade of events in which the MCs are actively involved.

Calcium↗

NA-phenotype-dependent differences in neutrophil Fc gamma RIIIb expression cause differences in plasma levels of soluble Fc gamma RIII.

Soluble Fc gamma RIII in plasma is primarily derived from neutrophils and is a measure of the total body neutrophil mass. We have developed a new, sensitive 'sandwich' ELISA to measure soluble Fc gamma RIII in plasma and released Fc gamma RIII in cell supernatants. Both sFc gamma RIIIa, derived from NK cells and sFc gamma RIIIb, derived from neutrophils are detected in the assay. However, plasma analysis of Fc gamma RIIIB gene-deficient donors suggested that sFc gamma RIIIa contributes only marginally to the total amount measured in healthy individuals. Furthermore, we observed that plasma of homozygous NA1-positive donors contained lower amounts of sFc gamma RIII than plasma of homozygous NA2-positive donors. Heterozygous donors were found to have intermediate levels of sFc gamma RIII in their plasma. Hemizygous Fc gamma RIIIB gene-deficient donors were found to have half the amount of sFc gamma RIII in their plasma compared to donors with two Fc gamma RIIIB alleles. These NA phenotype-dependent differences in plasma sFc gamma RIII could not be contributed to either an assay artefact or NA-dependent differences in shedding of Fc gamma RIIIb upon neutrophil activation. Calibration curves constructed with plasma of homozygous donors did nor reveal NA-dependent differences in antibody affinity. Measurement of released Fc gamma RIIIb in supernatants of neutrophils stimulated with PMA, and inhibition of this signal with human IgG revealed no NA-dependent differences. However, NA-dependent differences in neutrophil Fc gamma RIIIb expression were present, comparable to the differences found in plasma levels of sFc gamma RIII. Differences in the amounts of released Fc gamma RIII in supernatants of NA-typed apoptotic neutrophils were similar to initial differences in Fc gamma RIIIb expression, again being lower in NA1-positive than in heterozygous and NA2-positive donors. In conclusion, NA-dependent differences in plasma levels of soluble Fc gamma RIII seem to be caused by differences in expression of the receptor on the neutrophil membrane.

Antigens↗

Apoptosis of neutrophils.

Neutrophils are the most abundant leukocytes and serve as a first line of defense against infectious microorganisms. For this purpose, neutrophils contain granules filled with proteolytic and other cytotoxic enzymes. Neutrophils have the shortest lifespan of all leukocytes. To prevent senescent neutrophils from releasing their toxic contents into the surrounding tissues, these cells become apoptotic and are then internalized by tissue macrophages. Recent studies have revealed more details about effects of cytokines on neutrophil apoptosis and on the uptake of apoptotic neutrophils by macrophages. In addition, the intracellular events leading to apoptosis are slowly being unraveled.

Animals↗

Transmigration of human neutrophils across airway epithelial cell monolayers is preferentially in the physiologic basolateral-to-apical direction.

To study the mechanisms involved in the movement of neutrophils from the blood stream into the lung airways, we investigated human neutrophil transmigration across a monolayer of human airway epithelial cells, both in the apical-to-basolateral direction and in the more physiologic basolateral-to-apical direction. Migration of human neutrophils across monolayers of human airway epithelial H292 cell-line cells and primary bronchial epithelial cells occured most efficiently in the basolateral-to-apical direction, both after the addition of chemoattractants to resting epithelial cells and across interleukin-1beta (IL-1beta)-stimulated epithelial cells. Blocking studies with monoclonal antibodies revealed that the migration of neutrophils was mediated by the CR3 adhesion molecule (CD11b/CD18) on the neutrophils. IL-1beta-treated epithelial cells caused neutrophil movement via the secretion of chemoattractants. The most potent chemoattractant released by the epithelial cells was found to be IL-8, because the IL-1beta-induced migration was inhibited for 75 +/- 10% by the addition of an antibody against IL-8. After apical stimulation of the epithelial cells with an optimal concentration of IL-1beta, 27 +/- 4 ng/ml IL-8 was found in the supernatant at the apical side of epithelial cells. Platelet-activating factor (PAF) synthesis by the epithelial cells did not play a role in neutrophil transmigration, as was demonstrated by the lack of inhibition of this process after addition of the PAF-receptor antagonist WEB 2086. We conclude that the movement of neutrophils across airway epithelial cell monolayers occurs preferentially in the physiologic basolateral-to-apical direction, indicating that the polarity of epithelial cells is important for neutrophil transmigration.

CD18 Antigens↗

A Dutch family with Hb Atlanta [beta 75(E19)Leu-->Pro].

We have investigated four members of a three-generation Dutch family for a suspected hemoglobinopathy. Chronic hemolysis and a moderate macrocytic normochromic anemia with slight morphological abnormalities of the red cells was observed in all four. Hemoglobin chain synthesis in vitro and separation of the globin chains by reversed phase high performance liquid chromatography revealed an abnormal beta-globin species in addition to the normal alpha and beta chains. The decreased amount of normal beta-globin and the low amount of unidentified protein suggested an unstable beta-globin variant. An abnormal band was detected by isoelectrofocusing. In one family member tested, the hemoglobin in an erythrocyte lysate had decreased heat stability. All carriers were positive in the isopropanol hemoglobin instability test. Treatment of erythrocytes with methylviolet gave rise to microgranular inclusions. Nucleotide sequencing of the polymerase chain reaction-amplified beta-globin gene revealed a heterozygous single base pair T-->C mutation at codon 75, which changes the normal CTG codon for leucine to a CCG codon for proline. This variant has previously been identified as Hb Atlanta or beta 75(E19)Leu-->Pro. The mutation creates a new Msp I restriction site, which was used to confirm the diagnosis in all four family members. A quantitative reverse transcriptase polymerase chain reaction procedure for determining the relative amounts of mRNA transcripts for the normal and abnormal globin chain showed a comparable stability for both transcripts.

Aged↗

The role of basophils in allergic disease.

During allergic disease, leucocytes infiltrate the affected tissues and release their mediators and cytokines. In this way, the local inflammatory process is induced and maintained. Basophilic granulocytes have been demonstrated in lung and sputum of allergic asthmatics, in nasal mucosa and secretion of allergic rhinitis patients, and in skin lesions of atopic dermatitis patients. The number of basophils correlates with the severity of the disease. Analysis of mediator profiles and cellular contents of lavages of nose, skin and lung during allergic late-phase reactions (LPR) have demonstrated histamine, but not tryptase or prostaglandin D2. The histamine-containing cells have been characterized as basophilic granulocytes. This indicates that infiltrating basophils but not mast cells are activated and release their inflammatory contents in the LPR. We are interested in the cellular mechanisms that determine the degranulation of basophils during LPR. Basophil activators, such as allergens and activated complement, are not present at these sites. However, cytokines that prime basophils but do not induce degranulation, such as interleukin-5 (IL-5) and granulocyte/macrophage colony-stimulating factor (GM-CSF), have been detected at sites of LPR. We have now observed that after emptying intracellular Ca2+ stores by means of the Ca2+ adenosine triphosphatase (ATPase) inhibitor, thapsigargin, basophils become extremely sensitive to stimuli that do not affect the Ca2+ stores themselves but that induce degranulation, such as the phorbolester, phorbol myristate acetate (PMA). The most interesting finding was that although both thapsigargin and IL-3, IL-5 or GM-CSF do not induce basophil degranulation by themselves, a 2 min preincubation of basophils with thapsigargin followed by addition of one of these cytokines resulted in extensive histamine release: IL-3 induced 71 +/- 7% histamine release (conc1/2max 6 pM), IL-5 induced 43 +/- 8% histamine release (conc1/2max 41 pM) and GM-CSF induced 57 +/- 10% histamine release (conc1/2max 140 pM). Interestingly, the effect of thapsigargin could be mimicked by platelet-activating factor (PAF) (range 10(-9) to 10(-6) M), although to a lesser extent. Our results indicate that basophil degranulation in tissues during late-phase reactions might be caused by a combination of mediators or cytokines depleting Ca2+ stores, as platelet-activating factor or thapsigargin do, concurrent with activation by interleukin-3, interleukin-5 or granulocyte/macrophage colony-stimulating factor. The response of the basophils towards these cytokines might also be influenced by cell adhesion events, such as binding of basophils via integrins. This is the subject of further study.

Asthma↗

Mechanisms regulating eosinophil extravasation in asthma.

Infiltration of eosinophils into tissue allergic inflammation is mediated by a combination of processes. Eosinophil L-selection and very late activation antigen (VLA-4) can selectively regulate eosinophil adhesion to the endothelium. Activating cytokines, such as interleukin (IL)-5, regulated upon activation in normal T-cells (RANTES) and monocyte chemotactic peptide (MCP)-3 specifically act on eosinophils. Moreover, eosinophils from allergic individuals can be primed for increased adhesion and movement by chemokines released at sites of allergic inflammation. Together, these processes induce a specific infiltration of eosinophils.

Animals↗

The effect of salmeterol and nimesulide on chemotaxis and synthesis of PAF and LTC4 by human eosinophils.

Salmeterol is a long-acting beta 2-adrenoceptor agonist, with several antiasthma properties. Nimesulide is a nonsteroidal anti-inflammatory drug, supposed to act by inhibition of phosphodiesterase type IV. This might indicate that the effects of both drugs are mediated by an increase in cyclic adenosine monophosphate (cAMP). For salmeterol, it has been shown that it inhibits the influx of eosinophils into the lungs of guinea-pigs after platelet-activating factor (PAF) challenge, suggesting an effect of cAMP on eosinophil migration. For neutrophils, it has been shown that PAF synthesis is inhibited by cAMP. In the present study, we have, therefore, measured the effect of salmeterol and nimesulide on two important human eosinophil functions: chemotaxis; and synthesis of PAF and leukotriene C4 (LTC4). Both drugs were found to be inhibitors of the chemotactic responses of human eosinophils. However, at comparable concentrations, only nimesulide was able to inhibit the synthesis of PAF and LTC4 in activated eosinophils. These results indicate that although the effects of both drugs are thought to be mediated by an increase in cyclic adenosine monophosphate, they have differential effects on eosinophil chemotaxis and synthesis of lipid mediators.

Adrenergic beta-Agonists↗

[Determination of spectrin in erythrocytes: an important aid in the diagnosis of hereditary spherocytosis].

OBJECTIVE: Assay of spectrin in erythrocytes as a diagnostic test in hereditary spherocytosis (HS). DESIGN: Validation of a diagnostic test. SETTING: Central Laboratory of the Netherlands Red Cross Blood Transfusion Service in Amsterdam, the Netherlands. METHOD: A radiolabelled rabbit antiserum against human spectrin was used to determine the amount of spectrin in erythrocytes from 64 patients with proven or supposed HS, suffering from inborn, sometimes familial anaemia and a decreased osmotic resistance of the erythrocytes. These amounts of spectrin were compared with those of 12 patients with decreased osmotic resistance suffering from haemolytic anaemia of unknown cause, 16 patients with various other erythrocyte disorders and 30 healthy blood donors. RESULTS: The intradonor and interdonor variations in the amount of spectrin in erythrocytes from healthy blood donors were found to be less than 7%. In 56 of the 64 patients with HS (88%), the erythrocytes contained less than 86% of the normal amount of spectrin. A similar result was found in 4 of the 12 patients suffering from non-characterised haemolytic anaemia (33%). In contrast, a normal amount of spectrin was found in the erythrocytes of patients with other erythrocytic disorders. CONCLUSION: The radio-immunoassay of spectrin in erythrocytes is more specific for the diagnosis of HS than the osmotic fragility test of the erythrocytes. The normal amount of spectrin found in 8 of the 64 patients possibly suffering from HS may be due to a rare molecular origin of HS not leading to a decreased spectrin level or may be related to other causes of anaemia than HS.

Anemia↗

Effect of tumor necrosis factor-induced integrin activation on Fc gamma receptor II-mediated signal transduction: relevance for activation of neutrophils by anti-proteinase 3 or anti-myeloperoxidase antibodies.

Antineutrophil cytoplasmic autoantibodies (ANCA) have been described in sera of patients with several forms of systemic vasculitis, including Wegener's granulomatosis and microscopic polyarteritis. The two main targets of ANCA in vasculitis are proteinase 3 (PR3) and myeloperoxidase (MPO). ANCA are capable of activating neutrophils primed by tumor necrosis factor-alpha (TNF-alpha) in vitro, which may be relevant for the induction of the vascular inflammation observed in vivo. Recently, it has been suggested that engagement of Fc gamma receptor IIa (Fc gamma RIIa) on the neutrophils is involved in the activation by ANCA. In the present study, we show that activation of the neutrophil respiratory burst by anti-PR3 and anti-MPO is strongly enhanced after TNF priming and lost on removal of the Fc parts of the antibodies. Similar results were obtained when the neutrophils were activated with antibodies against known membrane antigens without major changes in the expression of the target antigens. The TNF-induced enhancement of the neutrophil activation was not observed when adherence of the cells was prevented by continuous stirring of the suspension or by the addition of CD18 antibodies before TNF exposure. Hence, our results indicate that engagement of both Fc gamma RIIa and beta 2 integrins is instrumental in neutrophil activation induced by ANCA.

Antibodies, Antineutrophil Cytoplasmic↗