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Naturally abundant basophils in the snapping turtle, Chelydra serpentina, possess cytophilic surface antibody with reaginic function.

Basophils constitute 50 to 63% of the blood leukocytes in Chelydra serpentina, the snapping turtle. Immunoglobulin (Ig) on the surface of the turtle basophil was detected by indirect immunofluorescence by using an IgG fraction from rabbit anti-turtle Ig serum (RATIg) and a fluoresceinated goat anti-rabbit antibody incubated at 4 degrees C. However, when the cells were incubated with RATIg at 22 degrees C, the basophil number, as determined by Wright's stain and neutral red counts, decreased dramatically. This morphologic evidence of degranulation was directly proportional to the antiserum concentration. Degranulation also correlated with cell histamine release (r = 0.73). In other experiments, turtle basophils were found to express antigen-specific surface Ig after immunization with sheep red blood cells (SRBC). Washed basophils from immunized turtles formed basophil-SRBC rosettes in vitro. Basophils from control turtles did not. Basophil-SRBC rosettes could also be induced by in vitro passive sensitization by preincubation of normal turtle basophils in the SRBC immune turtle sera. This study shows clearly that the turtle basophil has an immune capacity analogous to the mammalian basophil/mast cell. This study also contains the first direct evidence for the existence of reaginic antibody (or antibodies) in an ectothermic vertebrate. Finally, C. serpentina is proposed as a unique animal model for the study of basophil function.

Animals↗

Cuta neous basophil responses in neonatal guinea pigs: active immunization, hapten specific transfer with small amounts of serum, and preferential elicitation with phytohemagglutinin skin testing.

Previous studies have demonstrated a failure to elicit delayed hypersensitivity skin responses in neonatal guinea pigs despite apparent immunologic competence of their lymphocytes and monocytes. The ability of neonatal guinea pigs to manifest cutaneous basophil hypersensitivity (CBH) responses was examined. Neonates were competent to express macroscopic and microscopic aspects of these delayed reactions. Strong cutaneous basophil responses were elicited in newborns (0 to 2 days old) in a hapten-specific manner after intravenous transfer of small amounts of immune serum (0.5 ml) obtained from adult donors. Also, neonatal guinea pigs actively immunized at birth with hapten-carrier conjugates emulsified with incomplete Freund's adjuvant (IFA) and skin tested when 1 week old had 24-hr hapten-specific cutaneous basophil reactions and CBH reactions to the carrier protein as well. Compared with adult CBH reactions, neonatal responses had equal concentrations of basophils, fewer monocuclear cells, less macroscopic erythema, and almost no induration. Hapten-specific CBH reactions also contained significant infiltrates of eosinophils which were more prominent in the ear skin vs flank skin and in neonates vs adults. Immunization with complete Freund's adjuvant (CFA) resulted in a marked difference between adults and neonates; adult PPD reactions were quite indurated and contained many more monoculear cells and few basophils, whereas neonatal PPD reactions were flat, erythematous, nonindurated, and contained relatively few mononuclear cells and more basophils. Thus, neonatal tuberculin reactions elicited by PPD in animals immunized with CFA were examples of CBH. Skin testing nonimmune guinea pigs with phytohemagglutinin (PHA) also revealed marked differences in 24-hr cutaneous reactions between adults and newborns. Adults had indurated and erythematous reactions which contained approximately 20% basophils and 80% mononuclear cells, whereas similar PHA skin tests in newborns elicited small macroscopic reactions, which microscopically showed large infiltrates containing approximately 80% basophils and 20% mononuclear cells. It was concluded that neonatal guinea pigs were not only competent to manifest basophil-containig delayed-type reactions, but that cutaneous basophil responses were preferentially elicited in these animals under a variety of circumstances. These results underline the fact that basophil accumulations are one aspect of delayed skin test responses and that the regulation of the arrival of these cells in neonates is different from that in adult guinea pigs.

Animals↗

The production of macrophage inflammatory protein-1 alpha by human basophils.

Macrophage inflammatory protein-1alpha (MIP-1alpha) has previously been shown to be produced by mononuclear cells, eosinophils, and neutrophils. Its production by basophils has not been investigated. The objective of this study was to investigate the production of MIP-1alpha by basophils. Peripheral blood basophils were separated by Percoll gradient centrifugation, cultured overnight, and processed for double immunocytochemistry using Abs against MIP-1alpha and FcepsilonRIalpha (alpha subunit of IgE receptor type 1). We demonstrated that basophils expressed immunoreactive MIP-1alpha upon stimulation with anti-IgE. Less than 5% of the basophils stained for MIP-1alpha without stimulation. The secretion of MIP-1alpha by basophils was studied by ELISA. In these experiments, basophils were further enriched to 65 to 99% (median, 86%) by a negative selection method. Basophils released MIP-1alpha when stimulated by Abs against IgE and FCepsilonRIalpha as well as IL-3 and the calcium ionophore, A23187. In parallel experiments, PBMC, eosinophils, and neutrophils did not produce MIP-1alpha in response to anti-IgE, but they did so in response to A23187. No MIP-1alpha release was detected in platelet preparations. Preincubation with IL-3 (15 min or 18 h) augmented anti-IgE-included basophil MIP-1alpha production. The secretion of MIP-1alpha by basophils was detectable shortly after stimulation and gradually increased over 24 h. Since MIP-1alpha has potent inflammatory and histamine-releasing activities, its production by basophils may indicate a positive feedback mechanism for allergic inflammation.

Antibodies, Anti-Idiotypic↗

Localization of Charcot-Leyden crystal protein in individual morphological phenotypes of human basophils stimulated by f-Met peptide.

BACKGROUND: Human basophils undergo anaphylactic degranulation, characterized by extrusion of membrane-free granules, and piecemeal degranulation, characterized by progressive removal of granule contents in the absence of granule extrusion. F-Met peptide stimulates a degranulation continuum in human basophils that includes both forms of secretion. Charcot-Leyden crystal protein is stored in the granules of unstimulated human basophils. OBJECTIVE: The objective of this study was to determine the subcellular localization of the Charcot-Leyden crystal protein in individual morphological basophil phenotypes that are stimulated by f-Met peptide and are associated with secretion. METHODS: A post-embedding immunogold analysis was used to detect changes in the subcellular sites of Charcot-Leyden crystal protein in human basophils stimulated with f-Met peptide. Human basophils from normal donors were purified by countercurrent centrifugal elutriation and Percoll density gradients, stimulated to degranulate with 1 micron f-Met peptide (or incubated in buffer controls), and recovered for histamine assay, electron microscopy and immunogold labelling. Specificity controls included omission of the primary antibody and substitution of the primary antibody with non-immune normal rabbit IgG or with Charcot-Leyden crystal protein-Sepharose-absorbed primary antibody. RESULTS: The results showed new sites of labelling and different densities of labelling for Charcot-Leyden crystal protein in distinctive basophil phenotypes stimulated by f-Met peptide. New sites for Charcot-Leyden crystal protein included nucleus, cytoplasm, degranulation channel, degranulation channel membrane, plasma membrane, and a newly recognized granule population similar to primary granules in eosinophils. These new sites, as well as previously documented sites of Charcot-Leyden crystal protein (granules, intragranular Charcot-Leyden crystals, cytoplasmic vesicles) showed variable labelling when analysed by phenotype. Other sites (besides intragranular Charcot-Leyden crystals) of formed Charcot-Leyden crystals included cytoplasm, degranulation channel, extracellular space and, rarely, nucleus. Analysis of cytoplasmic vesicles, total granules and altered granules, and gold particles in subcellular compartments in seven identifiable phenotypes revealed that f-Met peptide stimulated human basophils to empty their granules by transporting Charcot-Leyden crystal protein in vesicles to the plasma membrane in the absence of granule extrusion in cells exhibiting piecemeal degranulation. In cells exhibiting anaphylactic degranulation, gold-labelled Charcot-Leyden crystals were extruded to the cells' exterior in concert with granule particles and concentric dense membranes contained within granules. Completely degranulated cells had a high density of plasma membrane gold label that was associated with numerous gold-laden endocytotic cytoplasmic vesicles. Basophils reconstituted their main granule population, within which Charcot-Leyden crystals resided, in part by endocytosis of previously released plasma membrane-bound Charcot-Leyden crystal protein. Completely recovered cells displayed decreased Charcot-Leyden crystal protein labelling of the plasma membrane and vesicle compartments, the presence of a highly labelled new granule subset that resembled Charcot-Leyden crystal protein-containing primary granules in eosinophils, and the highest density of granule and intragranular Charcot-Leyden crystal gold labelling of all phenotypes that developed after stimulation. CONCLUSION: Seven individual f-Met peptide-activated human basophil phenotypes labelled by an ultrastructural immunogold method to detect subcellular sites of Charcot-Leyden crystal protein showed changing distributions of this protein which document the capability of human basophils to undergo complex release and recovery reactions that may be pertinent to the functions of Charcot-Leyden crystal protein and the capabilit

Anaphylaxis↗

Secretory IgA induces degranulation of IL-3-primed basophils.

We examined whether secretory IgA (sIgA), known to mediate eosinophil stimulation, has an effect on basophil functions. An immobilized preparation of sIgA, but not of monomeric IgA, induced histamine release (approximately 15% of total histamine contents) from human basophils in vitro. sIgA-induced basophil histamine release was totally dependent on pretreatment with IL-3. IL-5 and granulocyte-macrophage CSF also primed basophils for sIgA-mediated release. Exogenous divalent ions, i.e., Ca2+ and Mg2+, were essential for sIgA-mediated basophil degranulation, and the degranulation was completed within 45 min. A newly synthesized lipid mediator, leukotriene C4, was also liberated from IL-3-primed, sIgA-stimulated basophils. Enzyme digestion experiments revealed that the (Fc)2 x secretory component portion of sIgA is important for sIgA-mediated basophil activation, but the functional binding sites of sIgA on basophils were surmised to be different from FcalphaR. These observations reveal the novel finding that sIgA is able to stimulate basophils as well as eosinophils. Since sIgA is the most abundant Ig isotype in the secretions from mucosal tissues, and basophils are active participants in allergic late-phase reactions, sIgA-mediated basophil mediator release is potentially involved in exacerbation of the inflammation associated with allergic disorders.

Basophils↗

Detection of Anisakis simplex-induced basophil activation by flow cytometry.

BACKGROUND: Laboratory diagnosis of anisakidosis is based on specific serum IgE detection. Recently, detection of allergen-induced basophil activation by flow cytometry has been proposed as a valuable tool for allergy diagnosis. OBJECTIVE: To evaluate if detection of Anisakis-induced basophil activation by flow cytometry is a useful tool in the diagnosis of Anisakis allergy. METHODS: Patients with Anisakis allergy (A.s.+, n = 37), patients reporting chronic urticaria or abdominal pain unrelated to fish ingestion (A.s.-, n = 51), and healthy controls (n = 12) were studied. Specific IgE to Anisakis simplex (A. simplex) was quantified with CAP-FEIA method, and basophil activation test was performed with three different concentrations of an Anisakis crude extract. Basophil gating was performed with CD123 and HLA-DR, and cellular activation was measured with CD63. RESULTS: A.s.+ patients showed significantly higher age and total IgE levels than did the A.s.- patients. Specific IgE to A. simplex correlated with the activated basophil percentages obtained with 15 microg/mL (r = 0.80; P < 0.001), 1.5 microg/mL (r = 0.84; P < 0.001), and 0.15 microg/mL (r = 0.82; P < 0.001) of A. simplex crude extract. Nine individuals (3 in the A.s.+ group and 6 in the A.s.- group) were nonresponders to basophil stimulation with anti-IgE. Five A.s.- patients showed positive IgE values to A. simplex while the basophil activation test was negative. According to the receiver operating characteristics curves performed between A.s.+ vs. A.s.- and A.s.+ vs. healthy controls, the cutoff for a positive basophil activation test was >or=21% (specificity = 96%, sensitivity = 100%), and 16% (sensitivity and specificity of 100%) respectively. When nonresponders were included in the A.s.+ vs. A.s.- analysis, sensitivity decreased to 95%. Multivariate logistic analysis showed that the specific basophil activation was a factor independently associated with clinical symptoms of A. simplex allergy. CONCLUSIONS: Detection of A. simplex-induced basophil activation by flow cytometry is a useful laboratory technique for the diagnosis of anisakidosis, supplementing specific IgE determinations.

Adult↗

The effect of interleukin 3 upon IgE-dependent and IgE-independent basophil degranulation and leukotriene generation.

Recent investigations have shown that the hematopoietic growth factor interleukin 3 (IL 3) enhances histamine release of mature human basophils. Furthermore, basophils exposed to IL 3 generate large amounts of leukotriene C4 in response to C5a, a basophil agonist which by itself is unable to promote lipid mediator formation. Also IL 3 renders the cells responsive to factors which do not otherwise induce basophil mediator release. Here we show in more detail how IL 3 affects the release of preformed and newly synthesized inflammatory mediators by basophils in response to antigen, anti-IgE, N-formyl-methionyl-leucyl-phenylalanine (FMLP) and C5a. In cells triggered by maximally effective concentrations of these agonists, IL 3 enhances histamine release, although it more profoundly affects leukotriene generation, in particular in response to stimuli which by themselves are inefficient or poor inducers of lipid mediator formation. This change in the mediator-release reaction occurs at low IL 3 concentrations, over the same concentration range of IL 3 of 0.01-1.0 U/ml regardless of which triggering agent is used as a second signal. Pretreatment of basophils with IL 3 results in a left shift of the dose-response curves for mediator release of both IgE-dependent and IgE-independent agonists by approximately one order of magnitude. IL 3 affects only the extent and not the time course of IgE-independent peptide-induced basophil degranulation. By contrast, histamine and leukotrienes are released more rapidly in response to IgE-dependent stimulation after IL 3 priming. IL 3 also shortens the lag time and increases the rate of leukotriene generation in basophils triggered by FMLP. The priming process induced by IL 3 does not require extracellular calcium. Basophils exposed to IL 3 release significant amount of mediators in response to C5a, even in EDTA buffers without addition of Ca2+/Mg2+, indicating that in the presence of IL 3 the Ca2(+)-dependent mediator release induced by C5a becomes partially Ca2+ independent. Thus, we find that IL 3 strongly affects the mediator profile, the amounts of mediators released, the dose-response curves and the kinetic of the release reaction in basophils stimulated with diverse agonists. The data further support the hypothesis that IL 3 plays an important role in inflammatory processes, in particular in hypersensitivity reactions.

Basophils↗

An improved method for the purification of basophilic granulocytes from human blood.

Studies on human basophils are hampered by the low number of basophils in peripheral blood. Here we describe the purification of human basophilic granulocytes with immunomagnetic beads to improve an already established method of purification. A 70% pure basophil suspension was incubated with monoclonal antibodies (CD2, CD14, CD16 and CD19) recognizing the contaminating cells. After incubation with magnetic beads coated with goat anti-mouse IgG, the bead-cell rosettes were removed by a magnet. In this way, the basophil purity increased to 94%. The loss of basophils during the bead procedure was about 20%. The amount of histamine per basophil and the spontaneous release of histamine during subsequent incubation of the cells was not altered by the purification procedure. The kinetics and the dose response of histamine release after the addition of anti-IgE or FMLP was also unchanged. Binding of CD63 was not altered, indicating that the purification procedure did not result in activation of the basophils. This improved method for the purification of human basophils should permit the measurement of non-basophil-specific parameters, such as changes in intracellular free Ca2+, without the problem of interference from contaminating cells.

Antibodies, Monoclonal↗

Study of possible mechanisms of basophil accumulation in experimental cutaneous candidiasis in guinea pigs.

It is known that certain lymphokine preparations, bacterial growth products, and factors released through complement activation have in vitro chemotactic activity for basophils. We have developed a model for acute cutaneous candidiasis in guinea pigs in which the lesions are characterized by infecting organisms in the keratin layer, early accumulation of polymorphonuclear leukocytes in the upper epidermis, and subsequent accumulation of basophils along the dermal basement membrane. The present study was undertaken to determine if any of the known chemotactic factors were operating in vivo to attract basophils. Both nonimmune guinea pigs and animals with established delayed hypersensitivity to candida had basophils in the infected skin. While immune animals showed more basophils than did nonimmune animals, the difference was not significant. Intradermal injections of a sonicate of candida or a candida growth filtrate did not cause significant accumulation of basophils. Decomplementation of the animals with cobra venom factor (CVF) did not significantly reduce the basophil numbers. Moreover, basophil accumulation occurred in animals with only minimal serum antibody to candida. These studies indicate that the basophil accumulation is due to a mechanism that is not dependent on cellular immunity, direct chemotactic activity in the candida extract, antibodies, or complement. Therefore, there may exist a previously unrecognized, nonimmunologic mechanism of chemotaxis for basophils which could possibly operate in other types of lesions and could even be involved with attraction of other types of cells.

Animals↗

Separation of human basophils into two fractions with different density and histamine content.

We designed experiments in this study to test the hypothesis suggested by recent purification data that blood basophils comprise two populations of different density, which circulate in numbers characteristic for each human subject. Basophils were separated into two density bands by single step centrifugation on a discontinuous Percoll gradient. Band 1 cells were at the interface between plasma and Percoll of density 1.070 gm/ml. Band 2 cells were at the Percoll 1.070 to 1.080 interface. When the number of band 1 basophils was expressed as a percentage of the total in bands 1 and 2, this relative amount generally remained in a narrow range for blood obtained from the same donor on 3 successive days but differed markedly in different individuals. In a series of leukapheresis experiments, we demonstrated that the percentage of band 1 basophils in postleukapheresis venous blood was strikingly similar to the preleukapheresis value. If basophils that repopulated the leukapheresis-depleted circulation came from the bone marrow, we can conclude that blood levels of basophils in bands 1 and 2 are under physiologic control and that the two types of basophils are released in amounts characteristic for each human subject. Additional evidence for two distinct blood basophil populations was provided by histamine measurements. The histamine content per basophil was consistently higher in cells from band 1 than from band 2, the mean difference between pairs of values for 30 subjects being 0.3 +/- 0.04 pg or about 27% of the band 1 basophil histamine content of 1.1 pg.

Basophils↗

Comparative electron microscopy of basophils and mast cells, in vivo and in vitro.

We compared the fine structure and electron microscopic cytochemical findings of basophils and mast cells from humans, guinea pigs, rabbits, mice and rats. The particulate structure was the most frequently observed and most typical structure of human and rabbit basophil granules and of guinea pig mast cell granules. The most prominent feature of guinea pig basophils and murine mast cells was that the fine structure of the granules was homogeneous. The fine structure of the granules in guinea pig basophils resembled that in murine mast cells, while the fine structure of the granules of guinea pig mast cells resembled those in human and rabbit mast cells. In mouse mast cells in culture, the majority of the granules contained small vesicles, which were also observed in human basophils in culture and in mouse basophils in vivo. The degrees of cytochemical reactivity of acid mucopolysaccharides among the species were different. Peroxidase activity was positive in most basophils and in human mast cells. Among mammals, the granules of basophils and mast cells present heterogeneous fine structure. It is of interest that the basophil granules of some species resemble the mast cell granules rather than the basophil granules of other species.

Animals↗

Analysis of the lineage relationship between mast cells and basophils using the c-kit D816V mutation as a biologic signature.

BACKGROUND: Mast cells and basophils share similar morphologic and functional properties; however, it is not known whether they are derived from a bilineage (basophil/mast cell)-restricted progenitor. OBJECTIVE: To assess whether basophils and mast cells are derived from common committed progenitors using the c-kit D816V mutation as a biologic signature. METHODS: The D816V c-kit mutation found in mast cells of patients with systemic mastocytosis is used as a trackable genetic marker to assess the lineage relationship between mast cells and basophils. Blood and bone marrow aspirates were collected from 33 consecutive patients with mastocytosis with different disease severity. Peripheral blood basophils, monocytes and neutrophils were sorted by immunomagnetic beads. Presence of the D816V c-kit mutation was analyzed by restriction fragment length polymorphism in the genomic DNA and mRNA from sorted cells in all patients and in the genomic DNA of individual basophils of 1 patient. RESULTS: The c-kit D816V mutation was detectable in basophils of 5 patients (15%). All 5 patients had the c-kit mutation also detectable in monocytes and thus had multilineage involvement. Single cell analysis of the genomic DNA in 1 patient showed a similar degree of clonal expansion in basophils, monocytes, and neutrophils. Mutated c-kit was expressed at the mRNA level in all 5 patients. There was no difference in surface Kit expression levels in basophils. CONCLUSION: Basophils carrying the D816V c-kit mutation in mastocytosis were detected only in the context of a multilineage involvement. These results argue against the presence of a bilineage-restricted committed progenitor for mast cells and basophils.

Basophils↗

Chronic urticaria sera increase basophil CD203c expression.

BACKGROUND: Approximately 40% of patients with chronic idiopathic urticaria have antibodies to the alpha subunit of the high-affinity IgE receptor. CD203c is a basophil activation marker known to be upregulated by cross-linking of the FcepsilonRIalpha receptor and may serve as a useful marker to identify these patients. OBJECTIVE: The primary objective was to assess the affect of sera from patients with chronic idiopathic urticaria on basophil CD203c expression. Secondary objectives were to correlate CD203c expression with basophil histamine release and size of the autologous serum skin test and to determine whether the mechanism is mediated by an IgG antibody. METHODS: Sera were obtained from patients with chronic idiopathic urticaria and positive autologous serum skin test or negative autologous serum skin test and normal controls. Sera were incubated with donor whole blood. Activated basophils from whole blood were identified by flow cytometry on the basis of the presence of CD203c on high-expressing IgE positive cells. RESULTS: Incubation of donor basophils with sera from patients with chronic idiopathic urticaria and positive autologous serum skin test demonstrated significant upregulation of CD203c. IgG depletion of representative sera from patients with chronic idiopathic urticaria resulted in significant decrease in CD203c expression on donor basophils. CD203c expression correlated with basophil histamine release and the size of the autologous serum skin test. CONCLUSION: Sera from patients with chronic idiopathic urticaria and positive autologous serum skin test significantly upregulate basophil CD203c and correlate with basophil histamine release. CLINICAL IMPLICATIONS: This article describes an activation marker on basophils whose expression is increased by sera from patients with chronic idiopathic urticaria.

Adult↗

Upregulation of FcepsilonRI on human basophils by IgE antibody is mediated by interaction of IgE with FcepsilonRI.

BACKGROUND: IgE is now known to upregulate the expression of FcepsilonRI on human basophils. It is not known which receptor on basophils mediates this process of upregulation. OBJECTIVE: We sought to determine whether galectin-3, FcepsilonRII (CD23), or FcepsilonRI were involved in the upregulation of FcepsilonRI by IgE. METHODS: The role of galectin-3 was examined by measuring the influence of alpha-lactose on upregulation. Basophils were examined for expression of FcepsilonRII (CD23) by flow cytometry and messenger (m)RNA expression. Functional discrimination between binding to FcepsilonRII or FcepsilonRI was examined through the use of mutant IgE-Fc fragments or anti-FcepsilonRII antibody. RESULTS: Upregulation of FcepsilonRI on basophils in the presence of IgE was not altered by coincubation with alpha-lactose, eliminating a role for galectin-3. Basophils were not found to express FcepsilonRII, as determined by flow cytometry with enriched basophil preparations or RT-PCR with highly purified basophil preparations. A mutant of the Fc fragment of IgE (IgE-Fc), which binds to FcepsilonRI with a greater than 10-fold lower affinity than IgE or wild-type IgE-Fc but exhibits no change in affinity for FcepsilonRII, allowed us to distinguish between the functions of the two Fc receptors. The mutant (R334S; Henry et al 1997) was required at about 30-fold higher concentration than the wild-type IgE-Fc for the same stimulation of FcepsilonRI expression on basophils, thus excluding a role for FcepsilonRII in the response. In addition, treatment of basophils with anti-FcepsilonRII antibody (MHM6), which is known to be competitive with IgE, had no effect on the expression of FcepsilonRI or the ability of IgE to upregulate expression of FcepsilonRI. CONCLUSION: Collectively, these data indicate that IgE interacts with FcepsilonRI to upregulate its expression on human basophils.

Antibodies, Anti-Idiotypic↗

Mite antigen-induced IL-4 and IL-13 production by basophils derived from atopic asthma patients.

BACKGROUND: There is increasing evidence for the role of basophils in the pathogenesis of atopic diseases such as bronchial asthma, atopic dermatitis and atopic rhinitis. Recently, it has been reported that basophils derived from healthy donors produce the immunoregulatory cytokines interleukin (IL)-4 and IL-13 after cross-linking of cell surface IgE. In addition to well-known inflammatory mediators, such as histamine and leukotriene C4. these cytokines produced by basophils are also considered to be associated with atopic diseases. OBJECTIVE: Our first objective was to determine whether or not mite-sensitive atopic asthmatic basophils produce IL-4 and IL-13 in response to mite antigens. Our second objective was to investigate the relationship between antigen-specific or nonspecific IgE in the serum and the production of these cytokines in order to determine the association of basophil-derived cytokines with the pathogenesis of atopic asthma. Our final objective was to study how production of these cytokines could be regulated by some anti-asthma drugs. METHODS: Basophils were purified from peripheral venous blood of 67 atopic asthma patients with elevated RAST for the house dust mite. Cells were stimulated with mite antigens for 6 hours and then IL-4 and IL-13 levels in the supernatants were measured by enzyme-linked immunosorbent assay (ELISA). RESULTS: Mite-sensitive asthmatic basophils produced IL-4 and IL-13 when stimulated with mite antigens. Mite-induced IL-4 production peaked at 6 hours after the stimulation. whereas IL-13 production continued up to 24 hours. The higher the concentration of mite-specific IgE but not total IgE released in the serum, the more IL-4 and IL-13 were produced by basophils in response to mite antigens. The production of these cytokines was significantly suppressed by the anti-asthma drugs theophylline (IL-4, p<0.001, n=6; IL-13, p<0.001, n=10) and dexamethasone (IL-4, p<0.001, n=15; IL-13, p<0.001, n=10). CONCLUSION: Mite-antigen-induced IL-4 and IL-13 production by basophils derived from mite-sensitive asthma patients was associated with the concentration of mite-specific IgE and may play an important role in the pathogenesis of atopic asthma. The inhibitory effect of dexamethasone and theophylline on allergic inflammation may be due to the inhibition of IL-4 and IL-13 production not only by T cells but also by basophils.

Administration, Topical↗

Regulation and kinetics of platelet-activating factor and leukotriene C4 synthesis by activated human basophils.

BACKGROUND: Allergic disease is the result of an interplay of many different cell types, including basophils and mast cells, in combination with various inflammatory lipid mediators, such as platelet-activating factor (PAF) and leukotrienes (LT). LTC4 synthesis by human basophils has been studied quite extensively. However, not much is known about the synthesis of PAF by human basophils. OBJECTIVE: In this study, we have made a comprehensive comparison between the kinetics of PAF and LTC4 synthesis, in highly purified basophils, activated with different stimuli or with combinations of stimuli. METHODS: Synthesis of PAF and LTC4 by human basophils was determined with commercially available assay kits. The basophils were activated with C5a, fMLP, PMA, allergen or anti-IgE, in the absence and presence of IL-3 and/or in combination with elevation of cytosolic free Ca2+ by the sarcoplasmic reticulum Ca2+-ATPase inhibitor thapsigargin. RESULTS: Most stimuli were found to induce both PAF and LTC4 synthesis. PAF synthesis and LTC4 release were enhanced by preincubation of the basophils with IL-3 or by elevation of cytosolic free Ca2+ by thapsigargin. Incubation of human basophils with IL-3 alone or thapsigargin alone did not result in detectable synthesis of PAF and LTC4, whereas the combination of the two resulted in high amounts of PAF and LTC4 synthesis. Depending on the stimulus used, LTC4 release was 5-100-fold higher than PAF synthesis. In addition, PAF, but not LTC4, was transiently detected, probably due to PAF degradation. LTC4 and PAF synthesis was strongly blocked by inhibitors of cytosolic phospholipase A2, indicating that this enzyme is involved in PAF and LTC4 synthesis by activated human basophils. CONCLUSION: This study provides a first comprehensive comparison of PAF and LTC4 synthesis in highly purified human basophils, stimulated with a variety of stimuli.

1-Alkyl-2-acetylglycerophosphocholine Esterase↗

Chemokine stromal cell-derived factor 1alpha activates basophils by means of CXCR4.

BACKGROUND: The CXC chemokine receptor 4 (CXCR4) is predominantly expressed on inactivated naive T lymphocytes, B lymphocytes, dendritic cells, and endothelial cells. CXC chemokine stromal cell-derived factor 1alpha (SDF-1alpha) is the only known ligand for CXCR4. To date, the CXCR4 expression and function of SDF-1alpha in basophils are unknown. OBJECTIVE: The purpose of this study was to investigate the expression of CXCR4 and functions of SDF-1alpha in basophils and to characterize the role of the CXCR4-SDF-1alpha receptor ligand pair in the allergic inflammation. METHODS: Basophil purification, flow cytometry, real-time quantitative RT-PCR assay, Northern blotting, intracellular free Ca(2+) change, chemotaxis assay, and histamine release assay were used. RESULTS: CXCR4 is abundantly expressed on peripheral blood resting basophils (91%). Likewise, CXCR4 messenger (m)RNA is expressed in resting basophils (3.2 x 10(3) copies per 2 x 10(2) cells). The existence of CXCR4 mRNA was also confirmed in basophils by means of Northern blot analysis. SDF-1alpha induces an increase in intracellular free Ca(2+) in basophils. SDF-1alpha activates basophils to chemotaxis (chemotactic index = 3.8) and histamine release (36% of total content) through CXCR4 on the cells. The chemokines SDF-1alpha, eotaxin, RANTES, monocyte chemoattractant protein (MCP) 1, and macrophage inflammatory protein (MIP) 1alpha have been demonstrated at different potencies in induction of chemotaxis (eotaxin > SDF-1alpha > RANTES congruent with MCP-1 >> MIP-1alpha) and histamine release (MCP-1 congruent with SDF-1alpha > eotaxin > RANTES > MIP-1alpha). The optimal concentration seen for SDF-1alpha effects (chemotaxis and histamine release) on basophils was 100 ng/mL. CONCLUSION: These results indicate that the CXCR4-SDF-1alpha receptor ligand pair may be important for the recruitment and activation of the basophils, which is a characteristic effector cell of the allergic inflammation.

Basophils↗

Surface membrane antigen alteration on blood basophils in patients with Hymenoptera venom allergy under immunotherapy.

BACKGROUND: Venom immunotherapy (VIT) provides widespread protection against systemic anaphylactic reactions after a sting of the respective insect. This effect is attributed to a shift from T(H)2 to T(H)1. However, because basophils also produce and release cytokines, such as IL-4 and IL-13, they may be part of the cytokine network. The cytokines may regulate basophilic granulocytes, as suggested by the presence of cytokine receptors IL-2Ralpha, GM-CSFRalpha, IL-1RII, IL-3R, IL-4R, IL-5R, and IL-6R on basophils from nonallergic donors. OBJECTIVE: The purpose of this study was to demonstrate that human basophils from subjects allergic to wasp venom undergoing VIT are regulated by cytokines, as shown by the alteration of the expression of cytokine receptors (and other markers). METHODS: The expression of the surface interleukin receptors and activation antigens on basophils from 19 nonallergic subjects and 48 patients with wasp venom allergy was investigated before, immediately after, and 1 week after VIT (20 patients only). RESULTS: Basophilic granulocytes in allergic subjects, compared with those in healthy persons, showed elevated expression of CD32 (FcgammaRII), CD122 (IL-2Rbeta), CD124 (IL-4Ralpha), CD130 (IL-6 and 11Rbeta), CD154 (CD40L), and HLA-DR. Activation of basophils clearly increased during VIT indicated by increased expression of CD32, CD33, CD35 (CR1), CD63, CD116 (GM-CSFRalpha), CD122, CD124, CD130, and CD154. HLA-DR expression also tended to increase. The expression of IL-5R (CD125) decreased. A significant decrease of the basophilic surface antigens CD11c, CD32, CD35, CD63, CD116, CD122, CD124, CD130, and CD132 (interleukin receptor gamma) was detected 1 week after the end of rush VIT. CONCLUSION: The rise in CD63 during VIT indicates a partial basophil degranulation with release of stored protein mediators, including IL-4. IL-4 may cause a transient upregulation of different surface antigens in an autocrine manner. Thereafter, cytokines released by T cells, which as a result of VIT have changed from a T(H)2 type to a more T(H)1 type, downregulate the activation of the basophilic granulocytes.

Adult↗