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B Zweiman

Publications and source records attributed to B Zweiman.

At least 55 records · Page 3Linked to original sources

Effects of skin-chamber fluids from human allergic reactions on neutrophil activation.

We have found activated neutrophils (PMNs) in skin chambers overlying the site of ongoing human allergic reactions. To determine whether this activation is due to component(s) released early in these IgE-mediated reactions, we investigated the in vitro effects of skin chamber fluids (CF) on resting blood PMNs. These skin CF had been previously obtained, at different time periods, at pollen-antigen-challenged or buffer-control-challenged sites in sensitive human subjects. PMNs incubated with CF obtained during the first hour of antigen challenge (first-hour CF) generated significantly more superoxide (O2-) than spontaneous production (p less than 0.001) and more than PMNs incubated with first-hour buffer-site CF (p less than 0.002). A pattern similar to O2- generation was observed in lactoferrin secretion during the incubation of the three cell aliquots described above (p less than 0.001). After these incubations, the subsequent responsiveness of the PMNs present in the cell buttons to opsonized zymosan, a PMN activator, was assessed. PMNs previously incubated with first-hour CF generated significantly more net O2- in response to opsonized zymosan than did PMNs previously incubated with first-hour buffer-site CF (p less than 0.001) or buffered saline (p less than 0.001). Again, a similar difference in the patterns of net lactoferrin secretion was observed (p less than 0.02). These events were not associated with PMN damage. Analogous studies with CF previously obtained during the second- to first-hour of antigen or buffer challenge stimulated much less than first-hour CF. We conclude that one or more components released early in IgE-mediated skin reactions can activate PMNs. The nature of the activating component(s) is unknown, with no evidence of activation by histamine, antigen, or other components found to date in first-hour CF.

Adult↗

Release of eosinophil granule proteins during IgE-mediated allergic skin reactions.

To determine whether the eosinophil (EOS), a prominent component of human allergic skin reactions, releases its potentially pathogenic components in vivo, we appended collection chambers to the bases of unroofed skin blisters and challenged the sites for varying time periods with either pollen antigen (Ag) or buffer (B)-control solutions. In seven sensitive subjects, continuous challenge with pollen Ag consistently induced release of more major basic protein (MBP) and eosinophil-derived neutrophil (EDN) than did B solution. Low levels of both MBP and EDN were observed during the first hour with increased accumulation during the second to fifth hour. Comparison of Ag- versus B-challenged site responses in individual subjects demonstrated significantly higher levels of both MBP and EDN at Ag than at B sites during the second to fifth hour. Levels of both MBP and EDN in the second to fifth hour correlated significantly with histamine release in the same sites in the first hour (r = 0.66 and 0.83, respectively). Imprints of the skin bases of the chambers after 5 hours demonstrated variable numbers of EOS at the Ag-challenged sites and only occasional EOS at the B-challenged sites; most cells on the skin bases were neutrophils. However, immunofluorescence localization of MBP in biopsy specimens of the blister bases revealed striking extra cellular MBP deposition. These findings indicate that EOS components accumulate in vivo in IgE-mediated human skin reactions, even when prominent EOS accumulation is not visualized, possibly because the EOS are degranulated in the allergic-reaction site. Release of EOS components in these reactions may be linked to earlier mast cell activation.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Cytotoxic effects of myelin basic protein-reactive T cell hybridoma cells on oligodendrocytes.

Cells of a rat/mouse T cell hybridoma reactive to the encephalitogenic peptide of myelin basic protein (MBP) was found to be cytotoxic to 51Cr-labelled rat oligodendrocytes (oligos) inducing 52 +/- 5% 51Cr release vs. 28 +/- 2% spontaneous 51Cr release from replicate oligos. The hybridoma cells were not toxic for rat astrocytes or concanavalin A-stimulated lymphoblasts. Hybridoma T cells reactive to an experimental allergic encephalomyelitis-irrelevant antigen (ovalbumin) were not cytotoxic to oligos. The cytotoxic reaction required cell-cell contact but did not require the in vitro presence of antigen-presenting cells MBP. The target antigen on the oligos is not yet defined. These studies suggest that MBP-reactive T cells can be directly cytotoxic to oligos in the absence of other cell populations.

Animals↗

Extracellular localization of human connective tissue mast cell granule contents.

In early phases of cutaneous inflammation, connective tissue mast cell degranulation is associated with apparent secretion and externalization of immunoreactive chymotryptic serine proteinase. To determine whether this event is associated with structural evidence of granule externalization, we studied the sequential evolution of IgE-mediated hypersensitivity in vivo, as well as mast cell degranulation provoked by a variety of stimuli in cultured explants of human skin. By 1 min after intradermal antigen challenge with ragweed extract, mast cell degranulation was associated with apparent extrusion of intragranule constituents into the pericellular connective tissue. Similar features typified cultured skin explants exposed for 45 min to anti-IgE and other mast cell secretagogues (morphine sulfate, calcium ionophore A23187, compound 48/80, and substance P). Once externalized, granule constituents could be identified within the dermal matrix by their rounded contour and structural similarity to solubilized granule matrices remaining within actively secreting cells. These data indicate that externalization of connective tissue mast cell granule contents occurs early after secretagogue exposure, potentially accounting for infrequent documentation of this event in naturally occurring dermatoses. The ability to recognize externalized granule products at a morphologic level should facilitate the understanding of interactions between mast cell-derived mediators and target structures of the dermal microvasculature.

Adult↗

Release of lactoferrin and elastase in human allergic skin reactions.

Our previous skin chamber studies have shown prominent accumulation of viable neutrophils in human allergic skin reaction sites. To determine whether such neutrophils release components that may be pathogenic in allergic reactions, we have compared the patterns of release of five components: 1) lactoferrin, present in specific granules; 2) and 3) elastase and myeloperoxidase, present mainly in azurophilic granules; 4) lactic dehydrogenase, a cytosolic component generally released during cell damage; 5) histamine, present in mast cells and basophils but not in neutrophils. In 13 pollen-sensitive subjects we found that continuous antigen challenge for 5 h lead to a peak of histamine release into overlying skin chambers during the 1st h, followed by a plateau of low level histamine release over the succeeding 4 h. In contrast, there was no significantly increased released of lactoferrin or elastase during the first h, but significantly increased accumulation of these components at Ag challenge sites over the next 4 h. There was no significant difference at Ag vs buffer control sites in the levels of either myeloperoxidase or lactic dehydrogenase. The increased levels of lactoferrin and elastase at antigen challenge sites in the 2nd to 5th h were not simply a reflection of the greater numbers of neutrophils present in such sites because the levels of these components did not correlate significantly with the number of neutrophils in chamber fluids obtained from individual sites. However, such lactoferrin levels did correlate significantly with the amount of histamine released earlier during the 1st h of Ag challenge at individual sites. These findings suggest a selective in vivo release of neutrophil components in IgE-mediated human allergic skin reactions, possibly related in degree to earlier mast cell activation. Inasmuch as lactoferrin likely plays a role in reactive oxidants effects and elastase is a potent nonspecific protease, release of these agents could play a pathogenic role in late phase allergic reactions.

Adult↗

Pokeweed mitogen-induced immunoglobulin secretory responses of thymic B cells in myasthenia gravis: selective secretion of IgG versus IgM cannot be explained by helper functions of thymic T cells.

The thymus, with its striking B cell infiltrates, is widely regarded as an important element in the pathogenesis of myasthenia gravis (MG) but its role remains to be elucidated. To gain further insight into the functional properties of MG thymic B cells, we studied the heavy chain isotype of immunoglobulin they produced in vitro in response to the T cell-dependent polyclonal activator pokeweed mitogen (PWM). MG thymic cells secreted prominent amounts of IgG but little IgM. In contrast, peripheral blood mononuclear cells (PBM) of the same subjects secreted similar amounts of IgG and IgM as did PBM of control subjects. In cell admixture experiments, MG thymic T cells, like PBM T cells, helped autologous PBM B cells produce IgM as well as IgG, although the overall magnitude of help for both isotypes appeared less than that of PBM T cells. Thus, in response to PWM, MG thymic B cells are largely committed to an IgG response and this likely reflects the intrinsic properties of these cells rather than the immunoregulatory properties of thymic T cells. This IgG isotype switch likely reflects in vivo activation events.

Adult↗

Characteristics of in vitro cytotoxic effects of myelin basic protein-reactive T cell lines on syngeneic oligodendrocytes.

We have previously found that Lewis rat myelin basic protein (MBP)-reactive lymphocytes (Lc) were cytotoxic in vitro to cultured syngeneic oligodendrocytes (oligos). We report here additional studies to characterize this reaction. The effector lymphocytes in the cytotoxic reaction are also encephalitogenic as evidenced by the capacity of other aliquots of these cells to transfer experimental allergic encephalomyelitis (EAE). We confirmed that the presence of both MBP and antigen-presenting cells (APC) are required for this in vitro cytotoxic effect. This reaction (measured by 51Cr release from labeled oligos) is dose-dependent on the effector/target ratio with marked 51Cr release at a 20/l ratio. Effector/target cell contact is required since: (a) 51Cr release is not significantly increased when effector Lc and oligo are separated by a micropore membrane (28% vs. 24% spontaneous release); (b) no cytotoxic activity is present in the supernatant fluid of a toxic reaction. The adhesion of 51Cr-labeled effector Lc to unlabeled oligo is increased in the presence of both MBP and APC (21 +/- 1.0% of cell adhering) as compared with effector Lc + APC (12 +/- 2.7%), or effector Lc alone (14 +/- 2.8%). Surface expression of class I major histocompatibility complex (MHC) antigens was expressed on the surface of the target oligos during this in vitro cytotoxic reaction. This may explain our previously observed MHC restriction in this reaction. The findings described here may explain some of the in vivo pathogenic events in EAE.

Animals↗

Skin reactivity to codeine and histamine during prolonged corticosteroid therapy.

Corticosteroids, used in low to moderate doses for short time intervals, do not suppress immediate percutaneous skin test responses to allergens, compound 48/80, or histamine. During routine skin testing, in our clinic, intradermal injection of codeine (1 mg/ml) and histamine (0.02 mg/ml) are used as positive controls. We had noted that responses to codeine but not histamine are decreased in some patients with asthma who had been receiving prolonged corticosteroid therapy. Therefore, we retrospectively compared skin test responses to codeine and histamine between 25 adult subjects with asthma receiving steroids (group I) and 25 age-matched control subjects (group II). In group I, the mean wheal diameters, induced by codeine but not histamine, were significantly less than diameters in group II. This decreased skin test reactivity to codeine was not due to effects of theophylline also taken by group I subjects, since the skin test reactions of other subjects with asthma, treated with theophylline but not steroids (group III), were not significantly different from reactions in group II. We conclude that prolonged courses of corticosteroids do not appear to alter histamine-induced vascular reactivity in skin but may affect cutaneous mast cell responses by an undefined mechanism.

Adrenal Cortex Hormones↗

In vivo antigen-induced cutaneous mediator release: simultaneous comparisons of histamine, tryptase, and prostaglandin D2 release and the effect of oral corticosteroid administration.

To determine if basophils were responsible for the persistent release of histamine during continuous antigen (Ag) administration in the skin, we compared the release of histamine, tryptase, and prostaglandin D2 (PGD2) at sites of continuous (5 hours) and intermittent Ag and codeine skin-chamber challenge in the skin of 16 atopic and four nonatopic subjects. In addition, we compared the release of these three mediators at sites of continuous Ag challenge in five subjects during oral administration of 1 mg/kg of methylprednisolone. Continuous Ag challenge induced an initial (first hour) peak of histamine release followed by a lower level plateau of histamine release during the next 4 hours. The level of histamine release during the second to fifth hours was significantly higher at these sites of continuous Ag challenge than at the codeine- or intermittent Ag-challenge sites. Levels of both tryptase and PGD2 were increased after the first hour of Ag or codeine challenge, and tryptase decreased progressively thereafter at all sites. In corticosteroid-treated subjects, the persistent histamine release during the second to fifth hours of Ag challenge was significantly reduced. In contrast, corticosteroid therapy did not affect histamine release during the first hour of Ag challenge nor the release of PGD2 or tryptase at any time period. These findings suggest that basophils are the source of the persistent histamine release at sites of continuous in vivo Ag challenge, since such release (1) was unaccompanied by release of tryptase or PGD2 (released from mast cells but not basophils), (2) did not occur after codeine challenge that activates mast cells but not basophils, and (3) was inhibited by steroids that inhibit the accumulation and release of histamine from basophils but not mast cells.

Administration, Oral↗

Determinants of in vivo histamine release in cutaneous allergic reactions in humans.

To determine host factors influencing the magnitude of mediator release during ongoing cutaneous allergic reactions in humans, we compared, in 22 subjects, the first-hour, second- to fifth-hour, and total (0 to 5 hours) skin chamber histamine release to (1) the in vitro reactivity and sensitivity of basophils to antigen for histamine release and (2) skin test sensitivity and reactivity to antigen, histamine, and codeine. There was no significant correlation between the first-hour and second- to fifth-hour histamine release. With a combination of basophil, antigen, histamine, and codeine skin sensitivity and reactivity, 64% to 75% of the magnitude of the first-hour, second- to fifth-hour, and total (0 to 5 hours) skin chamber histamine release could be accounted for. We conclude that antigen-induced in vivo allergic responses are a complex phenomenon dependent, in part, on antigen sensitivity, basophil and mast cell reactivity, and end organ responsiveness to mediators.

Adolescent↗

Release of histamine and tryptase during continuous and interrupted cutaneous challenge with allergen in humans.

To help in understanding the patterns of in vivo mediator release in human allergic skin reactions, we have used a skin chamber model to challenge the denuded bases of skin blisters of 11 sensitive subjects with pollen antigens (Ags) and codeine (C), a mast cell degranulator. Challenges were performed either (1) continuously for 6 hours or (2) in an intermittent fashion that is, Ag or C for the first hour, buffer for the next 4 hours, and then Ag or C during the sixth hour. Fluids in the overlying chamber were assayed for levels of the mast cell components, histamine and tryptase. There was peak release of both histamine and tryptase during the first hour of Ag incubation (89 +/- 11 ng/ml and 1428 +/- 260 ng/ml, respectively). At continuous Ag-challenge sites, there was a plateau of histamine levels (8.0 to 9.5 ng/ml) during the next 4 hours, whereas tryptase levels decreased progressively to baseline levels. Challenge of continuous Ag-incubation sites with C, a mast cell activator, led to another peak release of both histamine and tryptase. At interrupted Ag-challenge sites, histamine levels decreased abruptly, and tryptase levels decreased progressively after the first hour. Rechallenge of such sites with Ag during the sixth hour induced a peak release of histamine but no increase in tryptase levels. Continuous challenge with C for up to 5 hours in other sites induced an initial peak histamine release without a subsequent plateau. However, such a plateau of histamine (but not tryptase) release occurred after an initial C challenge if Ag was subsequently incubated in a continuous fashion.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Platelet-activating factor- and leukotriene B4-induced release of lactoferrin from blood neutrophils of atopic and nonatopic individuals.

We found increased accumulation of neutrophils and their components, lactoferrin (Lf) and elastase, as well as platelet-activating factor (PAF) and leukotriene B4 (LTB4) at sites of ongoing human allergic reactions. To determine whether PAF or LTB4, could be the stimulus for in vivo Lf release, blood neutrophils of 17 subjects were incubated with PAF, LTB4, or the phorbol ester, phorbol myristate acetate (PMA), and the released Lf (ELISA assay) was compared with spontaneous release. Significantly increased Lf release was induced by PAF, 10(-5) to 10(-8) mol/L (p less than 0.002); LTB4, 10(-7) to 10(-8) mol/L (p less than 0.004); and PMA (0.05 micrograms/ml) in a dose-dependent reaction. Cytochalasin was not required for Lf secretion but did enhance such responses. PAF-induced Lf secretion was inhibited by the specific PAF antagonist, BN 52063. More Lf was released from neutrophils of atopic than from nonatopic subjects in response to PAF, 10(-6) mol/L (4.2 micrograms/ml +/- 0.2 versus 2.6 micrograms/ml +/- 0.2; p less than 0.001) but not to LTB4, PMA, or buffer (p, not significant). We conclude that (1) PAF and LTB4 released in vivo could stimulate local neutrophils to release Lf with possible pathogenic effects and (2) neutrophils of atopic subjects are more responsive to PAF than neutrophils of nonatopic subjects in this regard.

Adult↗

Phenotypic characteristics of thymic B lymphocytes in myasthenia gravis.

We have found prominent secretion of immunoglobulin and anti-acetylcholine antibodies by thymic lymphocytes (TL) of myasthenics despite a relative paucity of B (surface IgM+) cells in such TL. To determine whether there was a surface IgM- B cell in the TL which could manifest such responses, we compared the frequency of cells expressing the B cell-specific phenotypic marker CD20 (B1+), surface IgM (SIgM+), surface IgG (SIgG+), and surface IgD (SIgD+) in TL and autologous blood mononuclear cells in 36 myasthenic patients. B1+ cells were significantly more frequent than SIgM+ cells in TL (3.2 +/- 0.6 vs 0.6 +/- 0.2). In double-labeling studies, less than 25% of the B1+ cells coexpressed SIgM. Only 0.3% of the TL were SIgD+. In contrast, the frequencies of B1+ and SIgM+ cells in autologous blood were not significantly different (10.7 +/- 1.3 vs 8.2 +/- 0.8%). About 75% of blood B1+ cells co-expressed SIgM. These findings suggest that mast B cells in these TL have undergone isotope switching during prior in vivo differentiation and could manifest the observed humoral responses.

Antibodies, Monoclonal↗

Theoretical mechanisms by which immunoglobulin therapy might benefit myasthenia gravis.

The mechanisms underlying any clinical improvement observed in some patients with myasthenia gravis (MG) treated with normal immunoglobulin (Ig) are not defined. The pathologic alterations in the postsynaptic motor end plate in MG are likely due at least in part to one or more actions of antibodies against epitopes on the nicotinic acetylcholine receptor (anti-AChR Ab). Such anti-AChR Ab are secreted by B lymphocytes and are increased in the serum of MG patients but not of controls. The stimulus for anti-AChR Ab production in MG is unknown with evidence for a role of thymic abnormalities, immunoregulatory disturbances, and some possible molecular mimicry of exogenous antigens (microbial?). Postulated mechanisms underlying Ig effects in MG include: (i) competing with anti-AChR for binding to AChR; (ii) preventing attachment of Fc receptor-positive inflammatory cells to the anti-AChR Ab bound to the motor end plate; (iii) decreasing synthesis of anti-AChR Ab; and (iv) exerting an anti-idiotypic effect. Evidence for these mechanisms are discussed.

Humans↗

Pathways of kinin formation and role in allergic diseases.

We have developed new assays for the assessment of the plasma kinin forming system which have increased sensitivity and specificity. We utilize double-antibody ELISA assays for quantitation of complexes of activated Hageman factor-C1 inhibitor, kallikrein-C1 inhibitor, and kallikrein-alpha 2-macroglobulin which reflect activation of each enzyme. The fraction of cleaved high-molecular-weight kininogen is determined by immunoblotting using a monoclonal antibody to the light chain, and bradykinin is determined by radioimmunoassay. Activation of the Hageman factor-dependent pathway of kinin formation can occur when plasma is in contact with initiating surfaces or when C1 inhibitor function is diminished. The latter mechanism can occur in hereditary angioedema, in which the protein is absent or dysfunctional, or when plasma is diluted so that the effect of inhibitors is diminished and Hageman factor autoactivation is facilitated. Thus apparent "spontaneous" generation of bradykinin is seen upon incubation of plasma of hereditary angioedema patients under conditions in which normal plasma is unaffected. Studies of late-phase reactions have used a cutaneous model in which induced blisters are unroofed and challenged with antigen or buffer control using chambers which can be changed hourly. A time course of mediator release is obtained by assay of the blister fluids. Whereas most histamine is released during the first half hour, significantly elevated levels of activated Hageman factor and kallikrein complexes with C1 inactivator are seen in antigen-challenged sites between 4 and 6 hr. The presence of such complexes correlated with the presence of late-phase reactions rather than the histamine values or the magnitude of the immediate reaction. Although late-phase reactions are characterized by cellular infiltration, release of a variety of inflammatory low-molecular-weight mediators, and deposition of fibrin, activation of the Hageman factor-dependent pathway of kinin formation is also likely to be contributory.

Angioedema↗

Late appearance of phospholipid platelet-activating factor and leukotriene B4 in human skin after repeated antigen challenge.

Inflammatory mediators were assessed in supernatants of chamber fluids from eight ragweed- or grass-sensitive subjects during antigen-induced cutaneous inflammatory responses. Platelet activating factor (PAF) accumulated at concentrations of 1 pm to 90 mumol/L in six of eight subjects beginning at 3 hours and continuing for 9 hours after antigen challenge. Leukotriene B4 (LTB4) was detectable at cutaneous sites of antigen challenge in five of five subjects throughout the 9-hour period at levels from 1 to 36 nmol, a range of 38% to 80% of which were omega-oxidation metabolites. Histamine levels peaked in the first hour at 106 +/- 18 ng/ml and decreased to a plateau of 11 to 13 ng/ml at 3 to 9 hours after antigen challenge. No PAF and only very low levels of LTB4 (0.1 to 1.3 nmol) and of histamine (less than 2 ng/ml) were detected at buffer-control sites during the 9 hours of study. Continuous antigen exposure thus results in the persistent release of histamine and LTB4 and the late appearance of PAF, all of which may contribute to the chronicity of allergic disorders and may have a bearing on the IgE-mediated, late-phase cutaneous response.

Adult↗