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U Schauer

Publications and source records attributed to U Schauer.

At least 37 records · Page 2Linked to original sources

A flow cytometric method for the detection of intracellular basic proteins in unseparated peripheral blood and bone marrow eosinophils.

Eosinophils and their basic proteins play a major role in allergic disease and methods are required to monitor their expression in clinical situations. In this article we describe a flow cytometric method for the detection of intracellular eosinophil cationic protein (ECP) and eosinophil peroxidase (EPO) in unseparated clinical samples. After fixation with parabenzoquinone and permeabilization with n-octyl-beta-D-glucopyranoside, the detection of intracellularly stored proteins was achieved using of monoclonal antibodies against ECP (EG1, EG2) and EPO in combination with an FITC-labeled second step antibody. Confocal microscopy was used to demonstrate the intracellular origin of the fluorescent signal. Fixation with parabenzoquinone was superior to a previously described protocol using paraformaldehyde, since it reduces non-specific binding of FITC to the basic proteins in eosinophils. Fixation and permeabilization do not alter the light scatter characteristics of eosinophils in contrast to other leukocytes and thus permit gating on eosinophils without prior purification. Furthermore, the procedure does not alter the detection of cell surface antigens on eosinophils and simultaneous measurements of surface antigens and intracellular proteins is possible. We have used different clinical samples (peripheral blood, bone marrow cells) to demonstrate differences in the expression of ECP and EPO. We conclude that the detection of intracellular eosinophil proteins by flow cytometry is a rapid, easy and semiquantitative procedure which may be used to study their expression in diseases where eosinophils are involved.

Antibodies, Monoclonal↗

Identification of eosinophils by flow cytometry.

A flow cytometric method to identify and characterize eosinophils in lysed whole blood samples was established. A gating protocol was applied that in the first step uses the high autofluorescence and the high sideward scatter of eosinophils. In the second step, eosinophils were differentiated from neutrophils by lack of CD16 expression or alternatively presence of CD49d expression. Eosinophils purified by density gradient centrifugation (purity: 93% eosinophils contaminated with 7% neutrophils) were used to evaluate the technique. We were able to identify eosinophils added back to lysed whole blood samples and to identify partial degranulated eosinophils after treatment with secretory IgA and anti-IgA. In addition we were able to show that due to a large overlap of sideward scatter, the technique is applicable to purified normodense as well as hypodense eosinophils. In addition, there was a good correlation (r = 0.921, P < 0.0001) between the percentage of eosinophils determined by flow cytometry and microscopic evaluation in 81 patients. In patients with atopic dermatitis there was a reasonable correlation between a severity score (SCORAD) and the number of eosinophils determined by flow cytometry (R = 0.6107, P = 0017). Since the technique proved to be able to identify activated eosinophils bearing the CD69 early activation antigen, the relation between serum creatinine and CD69 expression on peripheral blood eosinophils was analysed showing a positive correlation (r = 0.4344, P = 0.016).

Antigens, CD↗

T-cell cytokine profile evaluated at the single cell level in BAL and blood in allergic asthma.

Atopic asthma is characterized by bronchial mucosal inflammation, involving eosinophils, mast cells, and lymphocytes. It has been suggested that the development and maintenance of this allergic inflammation is due to T-lymphocyte activation with predominant production of the cytokines interleukin 4 (IL-4) and IL-5. To address the ability of peripheral blood and bronchoalveolar lavage T-cells to generate IL-2, IL-4, or interferon gamma (IFN-gamma), we have employed a flow cytometric method which permits analysis of cytokine production at the single cell level within 5 h of obtaining cell samples. When stimulated with PMA and ionomycin, there was a greatly increased percentage of IFN-gamma-producing cells among bronchoalveolar lavage (BAL) T-cells from the subjects with asthma (median 74%), compared with atopic and nonatopic controls (35 and 43%, respectively; P>0.01). The proportion of BAL T-cells producing IL-4 was small (median 1.7%, range 0 to 7.8% in the asthmatic group). In all three groups, the proportion of BAL T-cells producing IL-2 or IFN-gamma was increased compared with T-cells from peripheral blood. There was no significant difference between the three groups in the percentage of BAL T-cells producing IL-2, or in the percentage of peripheral blood T-cells producing IFN-gamma, IL-2 or IL-4. These findings indicate that IL-4 production is confined to a relatively small proportion of airway and blood T-cells and that there is selective enhancement of IFN-gamma production by airway T-cells in asthma.

Adult↗

Interleukin-4 and interleukin-5 are rarely co-expressed by human T cells.

Interleukin (IL)-4 and IL-5 are two cytokines which synergize in the induction of several biological effector functions. They are produced by mouse and human T helper 2 (Th2) and T helper 0 (Th0) cells. Little is known about the regulation of the two cytokines at the single-cell level. Here we show, using a flow cytometric intracellular staining technique, that IL-4 and IL-5 are predominantly produced by different human peripheral CD4+ and CD8+ T cells, whereas interferon (IFN)-gamma and IL-2 are produced by the same cells. In contrast, cloned human Th0 and Th2 cells were able to produce IL-4 and IL-5 simultaneously. The segregation of IL-4 and IL-5 in activated peripheral T cells was found within 72 h of activation upon anti-CD3 or phorbol ester + ionomycin stimulation. The kinetics of IL-4 and IL-5 production were different at the mRNA and the intra- and extracellular protein level, indicating that the cytokines are regulated differently. T cells from three patients with hyper-IgE syndrome did not display a substantial proportion of IL-4/IL-5 double-positive cells. However, simultaneous production could be induced in normal human T cells after prolonged stimulation with a minimum of two restimulation cycles. We conclude that the simultaneous production of IL-4 and IL-5 is a feature of repetitively activated human T cells.

Base Sequence↗

Decreased frequency of interferon-gamma- and interleukin-2-producing cells in patients with atopic diseases measured at the single cell level.

BACKGROUND: Recently, diminished interferon-gamma (IFN-gamma) and increased interleukin (IL-4 production in peripheral blood mononuclear cells (PBMCs) from atopic patients have been described by several groups, measured as total cytokine content in culture supernatants. These studies suggested a predominance of TH2-like cells producing large amounts of IL-4 in atopic patients. It is not clear whether the reported cytokine imbalances are the result of an alteration in the distribution of specific T-cell subsets or whether intrinsic dysregulation in cytokine production is a characteristic of atopic individuals. OBJECTIVE: This study examined the production of IFN-gamma, and IL-2 in PBMCs from atopic patients at the single cell level with the use of freshly isolated lymphocytes. METHODS: We recently described a flow cytometric assay in which three-color analysis was used to study the production of a cytokine of interest in a T-cell subpopulation defined by two cell surface markers. PBMCs from 23 atopic patients and 14 control subjects were stimulated with phorbol ester and ionomycin for 5 hours. PBMCs from seven patients and seven control subjects were also cultured with immobilized anti-CD3 antibodies for 24 hours. Cells were fixed, made permeable, and stained for intracellular cytokines in combination with cell surface markers CD3, CD8, and CD45RO. Cytokine-producing cells were analyzed by gating on T-cell subsets. RESULTS: IFN-gamma-producing cells were significantly decreased (p < 0.05) in CD4+ T cells but not in CD8+ T cells of atopic patients. CD45R0+ and CD45R0-T cells showed a decreased proportion of IFN-gamma-producing cells (p < 0.05 and p < 0.01, respectively). IL-2 production was diminished in all T-cell subsets (p < 0.01). The number of IL-4-producing cells was not elevated, and such cells were exclusively found in the CD45RO+ T cells. Analysis of culture supernatants of sorted CD45RO+ T cells for IL-4 and IFN-gamma production confirmed these results. CONCLUSION: Our findings provide evidence that a reduced IFN-gamma production in atopic patients is due to an intrinsic defect selectively found in the CD4+ T cells. Because IL-2 production was markedly decreased but IL-4 production was unchanged, our data demonstrate a deficiency in the ability of atopic T cells to produce TH1-like cytokines on stimulation with phorbol ester, ionomycin, or anti-CD3 monoclonal antibodies.

Adolescent↗

Blood eosinophils, eosinophil-derived proteins, and leukotriene C4 generation in relation to bronchial hyperreactivity in children with atopic dermatitis.

To assess the relation among eosinophil-related variables in the peripheral blood, bronchial hyperreactivity, and the presence of atopic dermatitis in children aged 5-14 years, we studied 11 patients with atopic dermatitis alone, six with asthma and atopic dermatitis, 12 with asthma alone, and 12 healthy controls. Eosinophil counts, levels of eosinophil cationic protein, and the capacity of eosinophils to generate leukotriene (LT) C4, as well as bronchial hyperreactivity and a severity score for atopic dermatitis, were determined. Eosinophil variables were significantly higher in both patient groups with atopic dermatitis than in normal controls. In particular, ionophore A 23187 LTC4 generation was higher in patients with atopic dermatitis alone (median 82, range 25-273 ng/10(6) cells) and patients with combined asthma and atopic dermatitis (median 68, range 32-583 ng/10(6) cells) than in normal controls (median 9, range 1-67 ng/10(6) cells). However, there was no difference between the group of atopic dermatitis patients with asthma and without asthma. We conclude that eosinophil variables in the peripheral blood are mainly influenced by the presence of atopic dermatitis, and not the presence and the severity of asthma in patients with both asthma and atopic dermatitis.

Adolescent↗

Soluble interleukin-4 receptor in atopic children.

The levels of natural soluble interleukin-4 receptor (shuIL-4R) were determined in the peripheral blood of 29 children with stable asthma, 10 children with asthma and acute respiratory infection, 11 healthy children with acute airway infection and 31 healthy controls. Healthy controls revealed the highest levels (median 1,082 pg/ml, range 524-1,900 pg/ml); which differed significantly from levels obtained with the blood of stable asthmatics (p < 0.01, median 658 pg/ml, range 329-1288 pg/ml), patients with asthma and acute respiratory infection (p < 0.01, median 663 pg/ml, range 0-1,250 pg/ml) and patients with respiratory infection alone (p < 0.01, median 674 pg/ml, range 466-1,110 pg/ml). In contrast, there was no significant difference in shuIL-4R content of cord blood obtained from newborns with a high or low risk of atopy. Additional analysis of interleukin-4 receptor (huIL-4R) on cultured lymphocytes from 13 stable asthmatic children and 14 healthy children indicated higher expression on CD4 cells (p < 0.05, median 2.2%, range 0.8-7.8%) compared to healthy controls (median 1.3%, range 0.7-3.3%). Therefore, diminished shuIL-4R concentrations in plasma may be related to inflammatory states but not specifically to atopy. The results support the notion that huIL-4R expressed on the cell surface may be regulated differently from the soluble form.

Acute Disease↗

Generation of reactive oxygen species and activity of platelet-activating factor acetylhydrolase in human monocyte-derived macrophages.

Monocytes were prepared from healthy human volunteers and were allowed to differentiate into macrophages by adhesion to plastic surface and cultured over 7 days in presence of either 10% fetal calf serum (FCS), human control serum or serum from hyperlipaemic patients. Hyperlipaemic serum stimulated the differentiation (measured as an increase in cellular protein and DNA content) to a higher extent when compared to control serum and FCS. With all sera a marked increase of the cellular activity of the enzyme platelet-activating factor acetylhydrolase (PAF-AH) and a tremendous decrease in the capacity of cells to generate reactive oxygen species (ROS) was observed. After seven days of culture the increase in PAH-AH activity was about 19-fold with hyperlipaemic serum, 11-fold with control serum and 6-fold with FCS. During the same period of time ROS generation measured as zymosan-induced chemiluminescence decreased by about 98% and no significant differences between the three types of serum were found. The results indicate that the activity of PAF-AH and the capacity of ROS generation which are both assumed to play an important role in the oxidation of low-density lipoproteins (LDL) and thus in the development of atherosclerosis, change in opposite direction during the differentiation of blood monocytes into macrophages, and that hyperlipaemic serum stimulates PAF-AH activity but not ROS generation.

1-Alkyl-2-acetylglycerophosphocholine Esterase↗

Blood eosinophils, leukotriene C4 generation, and bronchial hyperreactivity in formerly preterm infants.

Infants born prematurely are known to display longstanding bronchial hyperreactivity. The mechanism responsible for this is still unclear. Eosinophils are thought to play a central part in the development of bronchial hyperreactivity in asthma. It was the aim of this study to assess the relation of bronchial hyperresponsiveness to potential markers of eosinophilic inflammation in peripheral blood. Eosinophil count, the concentration of serum eosinophilic cationic protein, the capacity of purified eosinophils to generate leukotriene C4, and bronchial reactivity was studied in 24 non-atopic children born prematurely, 12 healthy controls, and 12 children with asthma aged 6 to 9 years. There was no difference in serum concentrations on eosinophil cationic protein and eosinophil counts. However, eosinophils from the 15 formerly preterm infants with significant bronchial hyperreactivity generated significantly higher amounts of leukotriene C4 than normal controls and prematurely born children without bronchial hyperreactivity. Levels of leukotriene C4 in this group were comparable with those obtained with eosinophils from patients with asthma. In contrast with cells from the other groups, eosinophils from the children with bronchial hyperreactivity born prematurely show no enhancement of leukotriene C4 generation on prestimulation with platelet activating factor. It is concluded that bronchial hyperreactivity of children born prematurely is accompanied by the prestimulation of eosinophils.

Asthma↗

Detection of intracellular cytokines by flow cytometry.

During the last years it has become increasingly clear that production of most cytokines is not confined to one cell type. Thus, a method to detect cytokines at the single cell level would be a helpful tool to study the contribution of different cells to cytokine production in heterogeneous cell populations. Recently, Sander et al. (1991) demonstrated that it is possible to detect intracellular cytokines by fixation with paraformaldehyde, permeabilization with saponin and subsequent indirect immunofluorescent staining using fluorescence microscopy. Here, we describe a modified method to increase the specific intracellular staining which enables us to detect IFN-gamma, IL-2 and IL-4 producing cells by single laser flow cytometry. The carboxylic ionophore monensin was used to interrupt intracellular transport processes leading to an accumulation of the cytokine in the Golgi complex. This resulting increase of the signal/noise ratio permitted us to detect weakly fluorescent cells such as IL-4 producing cells. While IL-4 was detected in approximately 1-3% of peripheral mononuclear cells from healthy donors, up to 30% of the cells produced IFN-gamma and nearly 50% IL-2 after phorbol ester and ionomycin stimulation. Microscopic and flow cytometric analysis showed a highly significant correlation. Using three-color flow cytometry it was possible to measure intracellular cytokines and cell surface markers simultaneously. Subpopulations of human T cells (e.g., CD4+ CD45R0-) producing a restricted cytokine pattern could be identified by cell surface staining and were characterized by their cytokine production. Consequently, there was no further need for cell sorting to determine cytokine producing subsets in heterogeneous cell populations. We have tested human T cell clones for intracellular cytokine production and found a high concordance to ELISA analysis of the supernatants. We conclude that detection of intracellular cytokines by flow cytometry is a rapid, easy and semiquantitative assay which may be used to study individual cells in heterogeneous populations as well as to screen homogeneous cells for their cytokine pattern. This method is particularly relevant in view of the accumulating evidence of the functional role that subsets of (T) cells may play in various diseases depending on the pattern of cytokines they produce.

Animals↗

Enhanced production of platelet activating factor by peripheral granulocytes from children with asthma.

Granulocytes from 23 asthmatic children aged 4-15 years and 32 age-matched healthy children were studied. Cells were purified by Dextran sedimentation and Percoll gradient centrifugation from heparinized blood. After in vitro stimulation by ionophore A23187 the amount of newly synthesized PAF and LTC4 was assessed by radio receptor assay or radioimmunoassay respectively. Eight patients had symptoms of asthma within the last 3 weeks before examination. Granulocytes from the symptomatic patients showed a significantly higher PAF generation (median 125 ng/10(6) cells, range 7-189 ng/10(6) cells) when compared to asymptomatic patients (p less than 0.001, median 14 ng/10(6) cells, range 6-33 ng/10(6) cells) or controls (p less than 0.001, median 11 ng/10(6) cells, range 3-26 ng/10(6) cells). In contrast, LTC4 generation was increased in both patient groups. The results suggest a regulatory role of PAF in the exacerbation of asthma.

Adolescent↗

Coexpression of CD4 and CD8 on mitogen-activated peripheral blood T cells from children with asthma: possible involvement of interleukin 4.

Mononuclear cells were isolated from the peripheral blood of 28 asthmatic and 18 healthy children aged 3 to 16 years. The cells were stimulated with phytohemagglutinin for 96 hours. Activated cells were detected microscopically by MTT staining. Expression of cell surface antigens was detected by indirect immune fluorescence using CD4-specific and CD8-specific monoclonal antibodies. Results indicate an enhanced expression of CD8 on mitogen-activated T cells from asthmatic children compared with cells from healthy controls (median 43% versus 27%). Further experiments revealed that CD8 is coexpressed with CD4 on activated lymphocytes. Coexpression is significantly enhanced with lymphocytes from asthmatic patients compared with normal controls. In addition, interleukin 4 is able to enhance this coexpression with lymphocytes from healthy but not asthmatic children suggesting an in vivo preactivation of lymphocytes from asthmatic patients with interleukin 4.

Adolescent↗

[Counseling of parents with children with atopic dermatitis].

Parents who have a child suffering from atopic dermatitis usually have to deal with a lot of problems. They seldom find support in coping with this problem. If families are left alone with these difficulties for a long period of time, chronical problems have to be expected, that might disturb the relationship between the parents and their child. A counseling program for parents of children suffering from atopic dermatitis is presented which was developed to prevent distress and helplessness of the parents. The program involved the following topics: 1. Medical information 2. Coping with scratching and itching 3. Care of the skin 4. Relaxation training. 5. Educational problems. Preliminary experiences with 23 parents indicate the usefulness of the counseling program as an important adjunct to the dermatological therapy of atopic eczema in childhood.

Adaptation, Psychological↗

T cell receptor gamma delta bearing cells are decreased in the peripheral blood of patients with atopic diseases.

The biological role of T cell receptor (TCR) gamma delta bearing cells is currently not fully understood. Recently, a monoclonal antibody (TCR delta 1) reacting against the whole molecule became available which facilitates the direct analysis of TCR-gamma delta+ cells. We studied 11 children with atopic dermatitis, 20 children with atopic asthma, 18 adults with atopic dermatitis and 38 healthy age matched controls aged 4-51 years. Lymphocytes were isolated from heparinized peripheral blood and the proportion of TCR-gamma delta+ lymphocytes was determined by FACS analysis. Patients with atopic diseases yielded a significantly (P less than 0.01) lower proportion of TCR-gamma delta+ cells compared with normal controls (median 4.8% versus 7.1%). The percentage of TCR-gamma delta+ cells showed an age-dependent decline in both the patient group (r = -0.49, P less than 0.01) and the control group (r = -0.40, P less than 0.01). In addition, the proportion of cells which expressed CD8, TCR-gamma delta or CD4, TCR-gamma delta simultaneously was determined by double labelling immunofluorescence. Whereas CD4+, TCR-gamma delta+ cells could be identified in only a few individuals, CD8+, TCR-gamma delta+ cells were found in nearly all controls (median 2.4%, range 0.0-10.8%); atopic patients displayed significantly (P less than 0.01) lower proportions of CD8+, TCR-gamma delta+ cells.

Adolescent↗

Imbalance of CD4+CD45R+ and CD4+CD29+ T helper cell subsets in patients with atopic diseases.

To evaluate the proportion of helper cell subsets we studied 18 children with atopic dermatitis, 30 patients with asthma, 27 healthy age-matched controls aged 1 to 17 years and 11 atopic controls without symptoms related to atopy, aged 9-22 years. Lymphocytes were isolated from heparinized peripheral blood and the proportion of CD4+CD29+ and CD4+CD45R+ cells was determined by double-labelling immunofluorescence. Children with atopic dermatitis yielded a significantly (P less than 0.01) higher proportion of CD4+CD45R+ (median 75%) cells compared with normal controls (median 66.6%), whereas the proportion of CD4+CD29+ cells was significantly (P less than 0.01) lower in patients with atopic dermatitis (median 20.4 versus 29.6%). Interestingly, the percentage of CD4+CD45R+ cells shows an age-dependent decline (r = -0.67, P less than 0.01) in the control group, which is not found in the patient group.

Adolescent↗