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Ultrastructure of human basophils developing in vitro. Evidence for the acquisition of peroxidase by basophils and for different effects of human and murine growth factors on human basophil and eosinophil maturation.

We examined the ultrastructure of human fetal cord blood mononuclear cells cultured in medium supplemented with supernatants of human T lymphocytes (basophil growth factor, BGF), in medium supplemented with supernatants of cloned mouse leukocytes (mast cell growth factor, MCGF) or in MCGF followed by BGF. These cultures provided the first opportunity to perform detailed morphologic and cytochemical studies of human basophilopoiesis in a nonleukemic setting. Cultures of human fetal cord blood mononuclear cells in BGF contained numerous mature basophils, which underwent a sequence of maturation similar in ultrastructure to that previously described in guinea pigs and mice. The cultures also contained variable but often substantial numbers of eosinophils. Eosinophils exhibited peroxidase activity in secretory structures (Golgi, rough endoplasmic reticulum) and cytoplasmic granules, and peroxidase-positive eosinophil granules were released into the medium by dead eosinophils. By contrast, basophils never exhibited peroxidase-positive Golgi structures or rough endoplasmic reticulum but frequently contained variable numbers of peroxidase-positive granules and occasional small cytoplasmic vesicles. Taken together, these findings suggest that basophils do not synthesize peroxidase but acquire the enzyme by the vesicular uptake of peroxidase released from eosinophils. In medium supplemented with MCGF, cells in the basophil lineage proliferated, but their maturation generally did not progress beyond the early basophilic myelocyte stage. The replacement of MCGF by BGF permitted the basophils (and eosinophils) to complete maturation, as judged by a reduction in overall cell size, increased nuclear segmentation and chromatin condensation, and cytoplasmic granule maturation. Mouse MCGF did not promote the development of mast cells in cultures of human fetal cord blood mononuclear cells, when used either alone or in series with BGF. Indeed, no mast cells were observed in any of the cultures examined in this study. Nor did we find cells with ultrastructural features intermediate between those of basophils and mast cells or with features intermediate between those of basophils and eosinophils.

Animals↗

Non-IgG1 nature of cutaneous basophil hypersensitivity factor in contact sensitivity. III. Cutaneous basophil hypersensitivity factor promotes histamine release from guinea pig bone marrow basophils after antigenic stimulation.

Cutaneous basophil hypersensitivity factor (CBH-F) from the sera of 1-fluoro-2,4-dinitrobenzene contact-sensitized guinea pigs promoted histamine release from bone marrow basophils in the presence of the antigen, dinitrophenylated epidermal microsomes as well as in vivo activity to induce CBH reaction in naive recipients and in vitro activity to mediate antigen-dependent basophil chemotaxis. The amount of histamine released was around 20% of the total release when compared to that of concanavalin A-induced basophil degranulation (50-60%). Divalent cations were required in this reaction because addition of EDTA completely suppressed histamine release from passively sensitized basophils with CBH-F. Though it is not known at present whether the same molecule is involved in basophil chemotaxis and histamine release, this histamine-releasing activity was recovered in the same preparations with basophil chemotactic activity after several purification steps.

Animals↗

Ionic regulation of human basophil releasability. II. Non-releasing basophils are converted into releasing basophils in a low-Na+ medium.

The effects of different extracellular Na+ and Ca2+ concentrations on histamine release from human basophils were investigated. Isosmotic replacement of extracellular Na+ either with choline+, a non-permeant Na+ analogue, or glucose significantly increased spontaneous and anti-IgE-induced histamine release. Basophils from 12 of 49 normal subjects, which were found not to release histamine upon challenge with an optimal dose of anti-IgE in a 135 mM NaCl buffer, were converted into releasing basophils when stimulation with anti-IgE was performed in a low-Na+ medium. The increase in Na+ concentration in the extracellular medium was accompanied by a reduction in the magnitude of basophil response to anti-IgE, which was significantly more pronounced in non-releasers than in releasers (per cent inhibition by 70 mM NaCl 75.5 +/- 3.2 vs 43.5 +/- 9.0, P < 0.01). At higher Na+ concentrations a progressive and almost complete abrogation of histamine release was observed in non-releasers, but not in releasers (maximal per cent inhibition at 140 mM NaCl 97.3 +/- 1.3 vs 50.4 +/- 8.6). The Na+/H+ exchanger monensin had a dose-dependent inhibitory effect on anti-IgE-induced histamine release, and the concentration inhibiting 50% of histamine release was 1.5 x 10(-7) M. When basophils were challenged in the presence of different Na+ and Ca2+ concentrations, it was shown that the two cations have antagonistic effects, which is to say that they down-regulate and upregulate histamine release, respectively. Moreover, the requirement of extracellular Ca2+ was lowered in a low-Na+ medium.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

Non-IgG1 nature of cutaneous basophil hypersensitivity factor in contact sensitivity. II. Demonstration of antigen-dependent basophil chemotactic activity of cutaneous basophil hypersensitivity factor.

It was recently demonstrated that there was a specific activity to induce basophil-rich skin reaction in the sera of contact-sensitized guinea pigs (CBH factor, CBH-F). In the in vitro chemotactic assay system, CBH-F was shown to have weak basophil chemotactic activity but enhanced its activity in the presence of corresponding antigen(s). Furthermore, basophil chemotaxis in reaction to the antigen(s) was observed when the cells were preincubated with CBH-F. It worked mainly for Percoll-separated bone marrow basophils but not for oil-induced peritoneal macrophages. Immunological analysis revealed that CBH-F was a protein with a small molecular weight (MW 4-6 X 10(4] with an antigen binding site and isoelectric point of between 4.5 and 5.0. It did not show any characteristics of IgG1 or IgG2 on immunoadsorbent column and immunoelectrophoresis. Enzyme treatment with insoluble trypsin eliminated the chemotactic activity but this was not the case with neuraminidase treatment.

Animals↗

A comparative study of releasing and nonreleasing human basophils: nonreleasing basophils lack an early component of the signal transduction pathway that follows IgE cross-linking.

Basophils from approximately one fifth of the population were found to be unresponsive (nonreleasers), in terms of both histamine and leukotriene release, to an IgE cross-linking stimulus, such as anti-IgE antibody. Although unresponsive to any IgE-mediated stimulation, these basophils responded to non-IgE-mediated stimuli, such as the phorbol ester, 12-o-tetradecanoyl phorbol-13 acetate, the calcium ionophore, A23187, and to formyl-methionyl-leucyl-phenylalanine peptide. These stimuli produced equal dose-response curves in both releaser (basophils able to respond with greater than 5% histamine release to anti-IgE antibody) and nonreleaser basophils. Nonreleaser basophils possessed statistically similar densities of cell-surface IgE antibody (287,000 versus 400,000 IgE molecules per basophil for releaser and nonreleaser basophils, respectively), and with 12-o-tetradecanoyl phorbol-13 acetate as a probe of anti-IgE-induced cross-linking, the IgE on nonreleaser basophils was found to be cross-linked by the polyclonal anti-IgE antibody used for these studies. Interleukin-3 (IL-3) has previously been demonstrated to enhance markedly both histamine and leukotriene release in human basophils. However, IL-3 was unable to convert nonreleasing basophils into releasing basophils, as measured by anti-IgE antibody. IL-3 equivalently enhanced formyl methionine peptide-induced release in both releaser and nonreleaser basophils, suggesting that the lack of an effect on anti-IgE-induced release was not due to a lack of IL-3 receptors. Although there are several possible interpretations of these data, these results and results of our previous studies of protein kinase C activation and cytosolic Ca++ elevations in human basophils suggest that nonreleasing basophils have a defect in early signal transduction, possibly involving the influx of Ca++.

Antibodies, Anti-Idiotypic↗

Rejection of ticks from guinea pigs by anti-hapten-antibody-mediated degranulation of basophils at cutaneous basophil hypersensitivity sites: role of mediators other than histamine.

Previous studies have established that recruitment of basophils to sites of tick feeding in guinea pigs is required to effect immune resistance. In the current study, actively sensitized guinea pigs treated three times daily with H-1 (mepyramine) and H-2 (cimetidine) histamine receptor antagonists, during the challenge tick infestation period, expressed normal resistance to Amblyomma americanum larvae. Similarly, naive guinea pigs treated with anti-histamines four times daily, beginning 7 days before transfer of immune serum and tick challenge and continuing through the tick infestation period, also expressed normal antibody-mediated resistance to A. americanum. These results indicated that histamine was not an important basophil mediator of the resistance response. Ticks allowed to feed on tissue rich in basophils that were induced by sensitization and subsequent local challenge with non-tick protein antigen, keyhole limpet hemocyanin (KLH), expressed normal yield. Ticks that fed on similar tissue rich in basophils induced by sensitization and challenge with KLH, in which the basophils expressed anti-picryl specificity due to systemic passive transfer of anti-picryl antibodies, were rejected when basophils were induced to degranulate by i.v. challenge with picryl antigen at 6 hr (29% rejection), 12 hr (18% rejection), 24 hr (22% rejection), and 48 hr (37% rejection) post-tick attachment. However, basophil degranulation at 18, 72 and 96 hr post-tick attachment had no adverse effect on tick feeding. These hosts were protected from systemic anaphylaxis by treatment with the anti-histamine mepyramine. Release of histamine occurred at tick feeding sites, but vasoactive effects were blocked by mepyramine treatment as evidenced by a lack of increased vascular permeability (bluing) at these sites compared with non-tick-infested tissues, or to cutaneous basophil hypersensitivity (CBH) sites of animals not protected with mepyramine. These results indicate that local recruitment and subsequent degranulation of basophils via immune mechanisms dependent on non-tick antigens can lead to tick rejection, and that basophil-derived mediators other than histamine are involved in this immune resistance response to A. americanum ticks. The identity of the crucial basophil mediator(s) is not known. The significant susceptibility of ticks to basophil-mediator release at 6 to 12 hr and 24 to 48 hr post-attachment coincides with the tick attaching and fast-feeding phases, respectively, suggesting that these phases of tick parasitism are particularly susceptible to the effect of basophil mediators other than histamine.

Animals↗

Nonreleasing basophils convert to releasing basophils by culturing with IL-3.

The extent of basophil histamine release initiated by IgE cross-linking stimuli has been known to vary greatly among donors. Studies on anti-IgE nonreleasing basophils are useful in understanding the IgE-specific control mechanism of mediator release. We attempted to determine (1) whether a mutation of Fc epsilon RI is present in nonreleasing basophils and (2) whether treatment with IL-3 converts anti-IgE nonreleasing basophils to releasing basophils. Basophils were purified from normal human blood and donors were divided into releasers (maximal histamine release > 5%) and nonreleasers (< 5%). The mutation of Fc epsilon RI alpha, beta, and gamma was evaluated by reverse transcriptase-polymerase chain reaction, and the DNA sequence was determined from amplified polymerase chain reaction products. Although antibodies against Fc epsilon RI failed to cause histamine release in anti-IgE nonreleasing basophils, no primary structural change of Fc epsilon RI was observed in nonreleaser basophils. After culturing with IL-3 for 7 days, nonreleasing basophils released histamine in response to anti-IgE, and dose-response curves of anti-IgE were equal in both releasers and nonreleasers. The conversion of nonreleasing basophils to releasing basophils was evident after 3 days of culture with IL-3. These findings indicate that nonreleasing basophils have recoverable defect(s) in the signal transduction pathway after IgE cross-linking.

Base Sequence↗

Novel technique for the direct flow cytofluorometric analysis of human basophils in unseparated blood and bone marrow, and the characterization of phenotype and peroxidase of human basophils.

BACKGROUND: No technique has been reported to analyze directly the antigen expression on basophil leukocytes when using a flow cytometer; therefore, the exact phenotype of human basophils and the character of the peroxidase in basophils are not well understood. METHODS: Human blood basophils were purified by using an antibody against high-affinity Fc epsilon receptor (hFcepsilonR) and a MACS magnetic cell sorting system and then cytochemically stained. The phenotype and peroxidase of the human basophils were flow cytofluorometrically analyzed directly in unseparated blood and bone marrow samples as hFcepsilonR+/MBP+ (major basic protein)/Hist+ (histamine) light-density cells distributed in the high sidescatter area of lymphocytes on light scattergrams. RESULTS: The peroxidase granules of human basophils were stained by an anti-eosinophil peroxidase (EPO) antibody. The human blood basophils had common granulocyte markers plus CD25, i.e., they were CD11a/ CD11b/CD11c/CD25/CD38/CD13/CD33/hFcepsi lonR/MBP/Hist/ EPO positive, CD71 dim positive, CD14/CD15 partially positive, and CD2/CD3/CD7/CD122/CD16/CD56/CD57/ CD10/CD19/CD20/CD22/HLA-DR/MPO (myeloperoxidase)/CD23 negative. Further examination was done to analyze the expression of colony-stimulating factor receptors on three lineages of granulocytes, i.e., basophils, eosinophils, and neutrophils. The neutrophils were CD114 (G-CSFR)/CD116 (GM-CSFR)/CD124 [interleukin (IL)-4R]/CD126 (IL-6R) positive and CD123 (IL-3R)/CD125 (IL-5R) negative. In contrast, the eosinophils and basophils were CD116/CD123/CD125/CD126 positive and CD114/CD124 negative. CONCLUSIONS: This novel technique for directly characterizing human basophil leukocytes with flow cytometry may be a convenient way to screen the expression of surface antigens and the cytoplasmic expression of CD antigens and other proteins in human blood basophils and to analyze alterations of the character of basophils by cytokines and other biological substances in vivo and in vitro.

Adult↗

Induction of basophil desensitization in physiological medium: enhancement after IgE-dependent upregulation of surface IgE binding on basophils.

BACKGROUND: Although the ability of basophils to release mediators, called releasability, may be an important aspect which influences the proinflammatory role of these cells, clinical approaches aiming at the depletion of the releasability have not been established. We examined whether the desensitization procedure in Ca(2+)-containing physiological conditions can make basophils completely unresponsive to IgE-mediated stimulation, and whether basophil desensitization is affected by the surface IgE levels. METHODS: Human peripheral blood basophils were cultured with low concentrations of anti-IgE antibody or recombinant mite allergen. Following culture, cells were stimulated and their histamine release was measured. RESULTS: Culturing with mite allergen or anti-IgE antibody below threshold concentrations induced potent desensitization in basophils. The desensitizing effect of anti-IgE was dose- and time-dependent; IgE-dependent releasability was completely suppressed when basophils were incubated with a near-threshold concentration of anti-IgE for > or= 4 h. In the continuous presence of subthreshold doses of anti-IgE, basophils remained desensitized even after 3 days. Basophils which had undergone an increase in surface IgE levels after 24-hour culture with IgE demonstrated enhanced desensitization. CONCLUSIONS: Near-threshold stimulation in physiological medium can affect basophils, thereby inducing complete and sustained deprivation of releasability without triggering degranulation. Basophil desensitization is regulated by their surface IgE levels. Induction of full desensitization may represent a potentially important therapeutic strategy for IgE-mediated allergic diseases in which basophils play pathogenic roles.

Animals↗

Human basophil releasability. VI. Changes in basophil releasability in patients with allergic rhinitis or bronchial asthma.

We evaluated basophil releasability in two groups of allergic patients with positive skin tests to Dermatophagoides pteronyssinus major allergen (Der p l) (29 adults with bronchial asthma and 17 with allergic rhinitis) and in 31 age-matched normal donors. Both basophil reactivity (maximal percent histamine release) and basophil sensitivity (the concentration that causes 50% of maximal percent histamine release: HC50) to Der p l in patients with asthma were similar to those in patients with allergic rhinitis. On the contrary, basophil reactivity to anti-IgE was significantly higher in patients with asthma (58.0 +/- 3.6%) than in patients with allergic rhinitis (46.3 +/- 5.2%; p less than 0.05). Both groups of patients showed an increased releasability compared to control subjects (27.3 +/- 4.6%; p less than 0.001), whereas there were no significant differences in basophil sensitivity to anti-IgE among the three groups of donors. Differences were also found with respect to basophil reactivity and sensitivity to f-met peptide, whereas no differences appeared when basophils from the three groups of donors were challenged with the Ca2+ ionophore A23187. There was a significant correlation between basophil reactivity and sensitivity to Der p l and to anti-IgE in both asthmatic and allergic rhinitis patients. A significant correlation was found between basophil reactivity and sensitivity to anti-IgE and serum IgE level only in patients with bronchial asthma, whereas no correlations were found in patients with allergic rhinitis. There was no correlation between in vivo mast cell releasability and in vitro basophil releasability in response to Der p l in either group of allergic patients.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

Characteristics of human basophil sulfidopeptide leukotriene release: releasability defined as the ability of the basophil to respond to dimeric cross-links.

Human basophils release approximately 90 pmol of LTC4/micrograms histamine when challenged with anti-IgE antibody, but donor to donor variation produces a 1000-fold range of response. There is little conversion to LTC4 to LTE4 in purified preparations of basophils, but conversion to LTE4 does occur if cell densities are high during incubation. Like histamine release, leukotriene release is calcium and temperature dependent and is complete in 20 min, with a t1/2 of approximately 8 min. The process of desensitization also ablates leukotriene release, but there is a distinct two phase process where leukotriene release is enhanced after 5 min of desensitization, whereas histamine release is inhibited and total ablation of leukotriene release occurs only after 45 min of desensitization. Human basophils respond well to stimulation with covalently cross-linked trimeric IgE myeloma but respond poorly to dimeric IgE. This differential sensitivity to the two forms of cross-linked IgE is most exaggerated in the context of leukotriene release, where dimer is 30-fold less efficacious and 100- to 1000-fold less potent than trimer on some donors' basophils. This dichotomy of response is also observed in antigen-challenged cells, where the bivalent hapten, BPO2, also poorly induces leukotriene release in accord with the fact that it predominantly induces dimeric cross-links of penicillin-specific IgE. Anti-IgE dose-response curves reveal a region of dimeric cross-link dominance that may explain the peculiar differences observed in pharmacologic studies of basophil release induced with antigen vs anti-IgE. In addition, there is a continuum of "releasability," where some donors' basophils display no response (histamine or leukotriene release) to dimeric IgE, and others' basophils are essentially equally responsive to both dimeric and trimeric IgE. This releasability difference manifests itself by conferring increased sensitivity to antigenic challenge in those donors' basophils capable of responding to dimeric cross-links such that these donors' basophils are capable of releasing histamine upon antigen challenge while possessing only 50 molecules of cell surface antigen-specific IgE; other dimer-insensitive donors' basophils require 6 to 10-fold greater IgE densities for equal histamine release.

Basophils↗

Peripheral blood basophils, basophil progenitors, and nasal metachromatic cells in allergic rhinitis.

Relationships among mature blood basophils, blood basophil colony-forming units in culture (CFU-c), and nasal metachromatic cells (NMC) were investigated using hemopoietic and histochemical techniques in 29 patients with allergic rhinitis and in 7 nonatopic control subjects. Total blood granulocyte and basophil CFU-c were significantly elevated in atopy; the highest levels of basophil CFU-c were found in patients with low total NMC counts in nasal scrapings (Group I), compared with those with intermediate (Group II) or high (Group III) counts: 10 +/- 3 basophil CFU-c per 10(6) cells in 10 Group I patients, 4 +/- 2 in 10 Group II patients, 3 +/- 1 in 9 Group III patients, and 0.1 +/- 0.1 in nonatopic control subjects (p less than 0.05). Mean histamine content and frequency of histamine-positive granulocyte colonies correlated with counts of basophils in colonies (r = 0.864, p less than 0.001). Peripheral blood basophils, which stained metachromatically with toluidine blue at pH 0.5 after Mota's lead acetate but not after formalin fixation, were highest in atopic Group III and lowest in Group I; a similar relationship was observed only for NMC, which also failed to stain after formalin fixation. Metachromatic cells in colonies were similar to formalin-sensitive NMC and to peripheral blood basophils in their sensitivity to different fixatives. Nasal symptoms correlated inversely with the number of basophil CFU and directly with the number of either formalin-sensitive NMC or peripheral blood basophils. These findings confirm and extend evidence for increased nasal metachromatic cells, basophilia, and alterations in basophilopoiesis in atopy.

Adolescent↗

Development of basophils in Mongolian gerbils: formation of basophilic cell clusters in the bone marrow after Nippostrongylus brasiliensis infection.

Development of basophilic leukocytes was studied in the Mongolian gerbil, Meriones unguiculatus, after infection with the nematode Nippostrongylus brasiliensis. After infection, peripheral blood basophilia developed and peaked at 2 weeks. In bone marrow sections, numbers of alcian blue+/safranine- basophilic cells were increased. These cells did not bind berberine sulfate and were clearly distinguishable from the bone marrow-resident mast cells, safranine+ and berberine sulfate+. Alcian blue+/safranine- cells were identified by electron microscopy as basophilic myelocytes in various stages of maturation. In the early period of infection, these cells had round-to-oval granules with a homogenous electron-dense matrix, a well-developed Golgi apparatus and rough endoplasmic reticulum, and a nonsegmented nucleus. By enzyme cytochemical analysis, intense peroxidase activity was demonstrated in all of the specific granules as well as in the rough endoplasmic reticulum and Golgi apparatus. Two weeks after infection, the number of bone marrow basophilic cells further increased, forming distinct clusters or islands composed of up to 100 cells each. On electron micrographs, the basophilic cells in these clusters appeared to be late-stage basophilic myelocytes, ie, having an increased number of granules, a less-conspicuous Golgi apparatus and rough endoplasmic reticulum, a horseshoe-shaped-to-lobulated nucleus, and reduced peroxidase activity. Eosinophils and mast cells were rarely found in the basophilic cell clusters. Four weeks after infection, the clusters had disappeared. These results show that gerbil basophilic myelocytes tend to form cell clusters in the bone marrow during their active proliferation. The comparative paucity of other cell lineages in basophilic cell clusters suggests that basophilia is generated from differentiation/proliferation of precommitted basophil progenitors independently from cells of other lineages.

Alcian Blue↗

Development and characterization of a monoclonal antibody specific for human basophils and the identification of a unique secretory product of basophil activation.

Despite increasing evidence that basophils can infiltrate into inflamed tissues during allergic reactions, determination of the extent of infiltration and elucidation of their role in allergic disease has been frustrated by the lack of reliable means for detecting this cell type in tissues. In the present study, we report on a new monoclonal antibody specific for basophils and on the initial characterization of the antigen it recognizes. Basophils were isolated from peripheral blood by Percoll density gradient centrifugation and a positive-selection immunomagnetic procedure and injected into mice to produce monoclonal antibodies. A hybridoma clone, designated BB1, secreted antibody of the IgG2a isotype; this antibody bound selectively to basophils on immunocytochemistry but did not react with any other cell type or tissue structure, although it did stain a proportion of cells from the basophilic cell line KU812F. In sections of mixed populations of peripheral blood cells, similar numbers of cells stained with Alcian blue dye and BB1 over a wide range of basophil purity. BB1 antibody was effective in identifying basophils in sections of mixed cells or in tissues after fixation with ethanol, Carnoy's solution, or formalin. Staining of basophils with BB1 gave a granular appearance, although flow cytometry indicated that some antigen was also present on the surface of the cell. Activation of these cells with anti-IgE antibody or with the calcium ionophore A23187 provoked release of the antigen in parallel with that of histamine. BB1 antibody did not, by itself, stimulate histamine release. The molecular mass of the antigen was determined on Hedrick-Smith gels to be 124+/-11 kd. This new monoclonal antibody will be a valuable experimental tool in future studies, allowing the reliable detection of basophils in tissues of patients with allergic and chronic inflammatory disease; in addition, the antigen it identifies has potential as a unique marker of basophil activation.

Animals↗

Ablation of immunity to Amblyomma americanum by anti-basophil serum: cooperation between basophils and eosinophils in expression of immunity to ectoparasites (ticks) in guinea pigs.

Basophils infiltrate the skin and other tissues as part of T lymphocyte and/or antibody-mediated immune responses to certain protein antigens, viruses, tumors, and parasites. Although basophils may comprise a significant fraction of leukocytes in these reactions, their precise role has been poorly understood. Guinea pigs expressing acquired immunity to the tick Amblyomma americanum develop basophil- and eosinophil-rich cutaneous inflammatory responses at tick feeding sites, and tick rejection is associated with extensive local basophil degranulation. We report that a specific anti-basophil serum (ABS) eliminate basophils at tick feeding sites and abolished immunity to A. americanum. ABS does not react with eosinophils and did not reduce blood or bone marrow eosinophils; however, ABS-treated animals had diminished eosinophils at tick feeding sites, perhaps because these sites were deficient in basophil-derived eosinophil-chemotactic factors. AES treatment markedly reduced feeding site eosinophils, did not affect basophil levels, and partially impaired tick resistance. Taken together, our experiments suggest cooperation between basophils and eosinophils in the expression of immunity to ticks in guinea pigs.

Animals↗

Cutaneous basophil anaphylaxis. Immediate vasopermeability increases and anaphylactic degranulation of basophils at delayed hypersensitivity reactions challenged with additional antigen.

Many delayed-type reactions contain large infiltrates of basophils whose function is unknown. We have studied these cutaneous basophil hypersensitivity (CBH) reactions in guinea-pigs to ascertain whether basophils that are recruited to delayed reaction sites could be triggered for immediate reactivity. We compared 24 h CBH reactions with nearby skin for immediate hypersensitivity by challenging each site with small amounts of antigen. CBH sites had augmented immediate increases in vascular permeability detected by extravasation of Evan's blue dye. The ability to elicit this augmented anaphylactic phenomenon correlated with the local presence of basophils, and light microscopy at CBH reactions 15 min after antigen challenge showed a 50% decline in basophil counts. Electron microscopy showed that progressive anaphylactic-type degranulation of local basophils occurred within minutes following reintroduction of antigen. There was fusion of vacuoles containing granules, exocytosis of granules, and dissolution of granules, without ultrastructural disruption of cellular integrity. These results establish that basophils in CBH reactions can be triggered with soluble antigen to undergo anaphylactic degranulation, with the immediate release of vasoactive mediators. We have termed this phenomenon 'cutaneous basophil anaphylaxis'. Thus, one function of basophils at sites of delayed hypersensitivity may be to provide the potential for augmented, local, immediate anaphylactic reactivity.

Anaphylaxis↗

Basophilic cell progenitors, nasal metachromatic cells, and peripheral blood basophils in ragweed-allergic patients.

Circulating hematopoietic progenitor cells giving rise to colonies containing basophilic cells (basophilic cell colony-forming units in culture [CFU-c]), nasal epithelial metachromatic cells (basophils and/or mast cells) (NMC), and blood basophils were enumerated before, during, and after a ragweed-pollen season in patients with ragweed hayfever and patients with perennial allergic rhinitis who were not ragweed allergic. In the patients with seasonal hay fever, the following was observed: basophilic cell CFU-c, measured as basophilic cell or histamine-containing colonies, were significantly reduced during the ragweed season compared to before (p less than 0.005) or after (p less than 0.025) the season in the ragweed-allergic group only. Conversely, peripheral blood basophils were higher during the ragweed season than before or after (p less than 0.001) in the ragweed-allergic group, whereas the number of NMC was higher during the season than before the season in this group (p less than 0.05). There were no such changes during the season in the group of patients with perennial allergic rhinitis. The observed seasonal changes in both NMC and circulating basophilic cell CFU-c are discussed in the context of lineage relationships among metachromatic cell types.

Basophils↗

Regulation of human basophil adhesion to endothelium under flow conditions: Different very late antigen 4 regulation on umbilical cord blood-derived and peripheral blood basophils.

BACKGROUND: Although soluble mediators released by basophils in tissue sites contribute to the chronic injury that occurs in hypersensitivity diseases, only limited information is available about how circulating basophils are recruited to tissues. In particular, the interaction of basophils with endothelium under conditions that mimic physiologic flow has not been explored. OBJECTIVE: We sought to identify adhesion molecules regulating the attachment of human basophils to IL-4-activated human umbilical vein endothelial cells (HUVECs) under flow conditions. METHODS: A parallel-plate flow chamber and blocking mAbs were used to define the adhesion molecules involved in the interactions of peripheral blood basophils (PBBs) and cord blood-derived basophils (CBDBs) with IL-4-activated HUVECs and with Chinese hamster ovary (CHO) cell transfectants expressing specific adhesion molecules. A fluorescent ligand specific for very late antigen 4 (VLA-4) was used to directly examine the VLA-4 affinity state of basophils. RESULTS: Flowing PBBs and CBDBs attached to activated HUVECs and to CHO cells expressing P- or E-selectin. However, only CBDBs attached to vascular cell adhesion molecule 1 (VCAM-1)-transfected CHO cells under flow conditions. The attachment of CBDBs to CHO cells was blocked by mAbs directed against E-selectin, P-selectin, and VCAM-1, whereas attachment of PBBs was blocked by E-selectin and P-selectin mAbs. Activating VLA-4 with Mn(2+) on PBBs resulted in adhesion to the VCAM-1-transfected CHO cells, indicating that VLA-4 activity on PBBs can be regulated, at least in part, through affinity changes. The Mn(2+)-induced upregulation of basophil VLA-4 affinity was demonstrated directly by using a fluorescent ligand for VLA-4 and flow cytometry. CONCLUSIONS: The interaction of human CBDBs and PBBs with endothelium under flow conditions is mediated in part by both P- and E-selectin. VLA-4 additionally contributes to the adhesion of flowing CBDBs. However, the affinity of VLA-4 is too low to support the adhesion under flow conditions of unstimulated PBBs.

Animals↗