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Monocyte chemotactic protein MCP-2 activates human basophil and eosinophil leukocytes similar to MCP-3.

It has been shown that CC chemokines activate basophil and eosinophil leukocytes with different selectivities and patterns of activity. The most effective are monocyte chemotactic protein-1 (MCP-1), a potent stimulus of mediator release in basophils without effects on eosinophils, RANTES, a weak stimulus of release and strong chemoattractant for basophils and eosinophils, and MCP-3, which combines the activities of MCP-1 and RANTES. We have now compared MCP-2, which has 62 and 60% of sequence identity with MCP-1 and MCP-3, respectively, with the other CC chemokines. MCP-2 induced mediator release by human basophils with lower efficacy and potency than MCP-1 and MCP-3. It promoted transient changes of cytosolic-free calcium concentration ([Ca2+]i) and chemotactic responses in both basophils and eosinophils, however somewhat less efficiently than MCP-3 and RANTES. Desensitization studies indicate that MCP-2 interacts with receptors recognizing MCP-1 as well as RANTES. These results demonstrate that MCP-2 and MCP-3 exert qualitatively similar biologic activities on basophils and eosinophils. In basophils that had not been treated with IL-3, MCP-2 induced minimal exocytosis only, but desensitized the cells toward MCP-1 and MCP-3, suggesting that MCP-2 may act as a functional inhibitor of CC chemokine actions. The results of this study further indicate that MCP analogues display partially distinct, partially overlapping bioactivities toward eosinophils and basophils, and may thus regulate inflammatory processes involving these effector cell types.

Basophils↗

Differential expression of complement receptors on human basophils and mast cells. Evidence for mast cell heterogeneity and CD88/C5aR expression on skin mast cells.

Complement-dependent activation of immune cells is regulated by cell surface membrane receptors. In this study, expression of complement receptors (CR) on human blood basophils (n = 11), tissue mast cells (lung, n = 7; skin, n = 10; uterus, n = 4; tonsil, n = 3; heart, n = 10), and on respective human cell lines (basophil line KU-812, mast cell line HMC-1) was analyzed by the use of mAbs and indirect immunofluorescence. Normal blood basophils and KU-812 cells were found to express C5aR (CD88), membrane cofactor protein (CD46), decay-accelerating factor (CD55), and membrane attack complex inhibitory factor (CD59), as well as the previously recognized CR1 (CD35), CR3 alpha (CD11b), CR4 alpha (CD11c), and CR3/4 beta (CD18). Mast cells from all organs as well as HMC-1 cells expressed CD46, CD55, and CD59, but not CD11b, CD21, or CD35. The C5aR (CD88) was detectable on skin mast cells, a subset (5 to 15%) of cardiac mast cells, and on HMC-1 cells, but not on lung, uterus, or tonsillar mast cells (< 5%). Moreover, double immunoperoxidase staining (tryptase vs C5aR/CD88) revealed in situ expression of C5aR on skin, but not lung mast cells. Recombinant human (rh) C5a, at 10(-10) to 10(-7) M, induced secretion of histamine from basophils (rhC5a, 10(-8) M: 53.4 +/- 3.1% vs control < 5%) and from skin mast cells (rhC5a, 10(-8) M: 25.8 +/- 16.1% vs control < 10% histamine release), but not from other mast cells (rhC5a or control: < 10%, p > 0.05). The rhC5a-induced secretion of histamine from basophils and skin mast cells was inhibited by S5/1, a blocking Ab against CD88 (basophils: 37.2% to 75.1%; skin mast cells: 39.2% to 83.9% inhibition, p < 0.05). Together, this study shows that a) basophils and mast cells express a different profile of complement receptors, b) C5a-dependent mediator release in skin mast cells and basophils is mediated via CD88, and c) mast cells constitute a heterogeneous lineage in terms of expression of the C5a binding site CD88.

Antigens, CD↗

The mechanism of basophil histamine release in patients with periodontal disease.

Histamine release from washed peripheral blood basophils of thirty-three subjects with varying degrees of periodontal disease was studied. Dental plaque, serum and basophil leucocytes were collected from individual patients. There was no histamine release when autologous, washed sonicated plaque was added to leucocytes. However, the incubation of autologous plaque with serum at 37 degrees C for 30 min generated a factor which induced histamine release from basophils. This serum factor was stable to heat (56 degrees C, 30 min), eluted from a Sephadex G-100 column at a volume corresponding to a molecular weight of approximately 16,000 daltons and its action was inhibited by antibody to C5. This factor, therefore, is probably C5a. There was a variation in the degree of histamine release seen with the leucocytes of different donors. This variability was a property of the basophil rather than a function of the serum. Basophils from patients with gingival indices of 0.5 to 1.0 had significantly more histamine release than basophils from patients with gingival indices of less than 0.5 or greater than 1.5 (P less than 0.001). These experiments demonstrate that dental plaque activates serum to form C5a which in turn releases histamine from basophils. However, these experiments do not indicate a role for IgE in this reaction since the direct interaction of plaque with basophils did not cause histamine release. The release of mediators from mast cells could play an important role in the induction of the inflammatory response in periodontal disease.

Adolescent↗

[Basophil count of the newborn is not useful in prediction of allergic diseases].

Basophil granulocytes and their mediators are involved in the pathogenesis of allergic inflammation. We evaluated basophil count, blood histamine content, eosinophil count and serum total IgE levels in one hundred-thirteen healthy newborns at birth. 108 children were prospectively studied with a follow-up to 18 months of age for development of topic disorders. No difference was found in newborns with biparental family history of atopy (FHA) in comparison with newborns with monoparental FHA and with newborns without FHA. Children who developed atopic disorders had neonatal basophil count higher than those who did not develop atopic symptoms (p = 0.03). No significant correlation was found between basophil and eosinophil counts (r = 0.013), between basophil count and serum total IgE levels (r = 0.012) and between basophil count and blood histamine content. Positive predictive value and sensitivity of basophil count for allergy up to 18 months of age was respectively only 33% and 27%. Our data indicate that an increased basophil count at birth is not associated with FHA and is not a good predictive marker of atopy.

Age Factors↗

Demonstration of Fcgamma receptors on human basophil granulocytes.

Fcgamma receptors were detected on human basophil granulocytes. The mononuclear cell fraction of human peripheral blood was incubated with heat-aggregated human IgG (HGG) followed by 125I-anti-HGG. Autoradiography of the cells showed that the majority of basophil granulocytes gave a significant number of grains. Basophils were not labeled by preincubation of the same cells with monomeric HGG followed by 125I-anti-HGG. However, the binding of aggregated HGG to basophils was inhibited by the presence of a high concentration of monomeric HGG or its Fc fragment but not by the Fab fragment. Evidence was obtained that Fcgamma receptors are distinct from IgE receptors on the same cells: i) Saturation of basophils with IgE did not affect the binding of aggregated HGG to the cells. ii) Preincubation with and the presence of aggregated HGG failed to affect the binding of 125I-IgE to basophils, or to block passive sensitization of the cells with IgE antibodies. iii) The Fcgamma receptors did not co-cap with IgE receptors. Aggregated HGG failed to induce histamine release from basophils even in the presence of D2O. It was also found that the presence of aggregated HGG on basophils did not modulate IgE-mediated histamine release from the cells.

Basophils↗

Basophil count in neonates is not suitable for atopy predictivity.

Basophil granulocytes and their mediators are involved in the pathogenesis of allergic inflammation. We evaluated basophil count, blood histamine content, eosinophil count and serum total IgE levels in one hundred-thirteen healthy newborns at birth. 102 children were prospectively studied with a follow up to 18 months of age for development of atopic disorders. No difference was found in newborns with biparental family history of atopy (FHA) in comparison with newborns with monoparental FHA and with newborns without FHA. Children who developed atopic disorders had neonatal basophil counts higher than those who did not develop atopic symptoms (p = 0.03). No significant correlation was found between basophil and eosinophil counts (rs = 0.013), between basophil count and serum total IgE levels (rs = 0.012) and between basophil count and blood histamine content. Positive predictive value and sensitivity of basophil count for allergy up to 18 months of age was only 33% and 27%, respectively. Our data indicate that an increased basophil count at birth is not associated with FHA and is not a good predictive marker of atopy.

Basophils↗

Antibody-mediated basophil accumulations in cutaneous hypersensitivity reactions of guinea pigs.

Cutaneous basophil hypersensitivity (CBH) was studied in guinea pigs by using simplified histologic techniques. Animals immunized with oxazolone or picryl conjugates of keyhole limpet hemocyanin (KLH) emulsified with complete (CFA) or incomplete Freund's adjunvant (IFA) were found to have hapten-specific cutaneous basophil reactions when skin tested at 1 week with oxazolone or picryl chloride contant painting or intradermal injection of oxazolone or picryl-conjugated human serum albumin, respectively. Thus, hapten-specific cutaneous basophil reactions were present in guinea pigs immunized with CFA for classical delayed hypersensitivity, and in animals immunized with IFA for Jones-Mote reactions. Hapten-specific 24-hr cutaneous basophil reactions were passively transferred with immune serum from donors sensitized with conjugates of oxazolone or picryl-KLH in CFA or IFA, and with serum from oxazolone contact-sensitized animals as well. As little as 0.5 ml sera obtained from donors 1 week after immunization could systemically transfer cutaneous basophil reactions. It is likely that hapten-specific cutaneous basophil reactions are mediated by small quantities of serum antibodies. We conclude that antibody-mediated cutaneous basophil reactions may be distinctive hypersensitivity responses that can be distinguished from classical anaphylactic, Arthus, and delayed hypersensitivities. It is suggested that CBH reactions are heterogeneous and that antibody products of B lymphocytes, and factors probably derived from T lymphocytes, play a role in basophil accumulations at cutaneous hypersensitivity reactions.

Animals↗

[Morphogenesis and micromorphology of epithelial tumors induced in the rat kidney by nitrosomorpholine. IV. Tubular lesions and basophilic tumors (author's transl)].

The genesis of basophilic cell kidney tumors was investigated stepwise by light and electron microscopy in rats treated with N-nitrosomorpholine for a limited time (stop experiment). Seven weeks after the beginning of the experiment the kidney tubules sometimes showed unusually large "chromophobic" and basophilic cells. After a lag period of 22-97 weeks more than 60% of the animals had developed these atypical tubules. Parallel to the appearance of chromophobic tubules 50% of the carcinogen-treated animals developed basophilic cell kidney tumors. All intermediate stages between chromophobic or basophilic cell tubules and tumors were found. During the neoplastic transformation chromophobic epithelia appeared to change into basophilic cells. Some of the chromophobic renal tubules and most of the renal tubules which consisted of chromophobic and basophilic epithelia stored acid mucopolysaccharides as demonstrated by histochemical methods. The fine structure of the basophilic epitheliomas was relatively uniform. The basophilia observed under the light microscope correlated with abundant membrane-bound and free ribosomes as seen under the electron microscope. The frequent appearance of brush borders and microbodies indicated the origin of the basophilic cell tumors from proximal renal tubules. In some tumor cells many mitochondria were found. These cells resembled oncocytes. However, in contrast to typical oncocytes the mitochondria of these cells were poor in cristae or showed tubular formations of the inner membrane. In some mitochondria homogeneous condensations could be detected in the intracristal space and tooth-like formations were seen on the surface of the cristae. In perpendicular sections these cristae resembled saw blades. Acute tubular lesions and cellular regeneration, as described earlier by other authors in early stages of the development of kidney tumors, were not found. It is suggested that the storage of acid mucopolysaccharides observed in many tubules and in some renal tumors indicates a disturbance of the cellular metabolism which plays an important role in tumor development.

Animals↗

Protein tyrosine kinases in activation signal of human basophils through the immunoglobulin E receptor type l.

Human basophils activated through high-affinity immunoglobulin E (IgE) receptors (Fc epsilon RI) are involved in the late phase of the allergic reaction. To investigate the possible involvement of protein-tyrosine kinases in this activation we used human acute basophilic leukemia (ABL) cells in culture as well as a pure population of normal basophils in vitro-derived from human bone marrow precursor cells (HBMB). ABL cells were 50-80% basophils at various stages of maturation as assessed by staining, morphology, ultrastructure, and flow cytometry analysis, and only basophils in ABL cells expressed Fc epsilon RI. Aggregation of Fc epsilon RI by IgE and anti-IgE, IgE and antigen, or anti-Fc epsilon RI monoclonal antibodies on ABL cells or on HBMB, led to increased tyrosine phosphorylation of 120-, 100-, 80-, 72-, 50- to 65-, and 38-kDa substrates. Tyrosine phosphorylations in ABL cells were in basophils because 1) they were detected after a 5-s stimulation, 2) they were observed under conditions where mediator release is minimal, i.e., in the absence of extracellular calcium, 3) hapten addition during antigen stimulation resulted in almost total disappearance of tyrosine phosphorylations within 30 s. There was correlation between histamine release and tyrosine phosphorylation in anti-IgE dose-responses and in dose-responses of the tyrosine kinase inhibitor genistein. The tyrosine kinase p72syk was detected in the cells. Stimulation of ABL cells for 1 min resulted in extracellular calcium-independent tyrosine phosphorylation and activation of p72syk. Therefore, tyrosine kinases are involved in the early steps of human Fc epsilon RI signaling in basophils. Tyrosine kinases and their substrates could represent new potential therapeutic targets to prevent the development of the allergic reaction.

Aged↗

Cell biology of the basophil.

The cell biology of basophils, based on published studies spanning 1990-1997, is reviewed. These rarest cells of granulocyte lineages are now available in sufficient numbers for such studies to be done, based on new methods for isolating and purifying the cells from peripheral blood and organ sources and for their derivation in growth factor-containing cultures from their precursors de novo. These studies are dependent on electron microscopy for the accurate identification of basophils, studies which have recently established the presence of basophils in two new species--mice and monkeys. Secretory, endocytotic and storage properties of basophils constitute their mechanistic role(s) in human disease; their role(s) in health is, however, obscure. Development of immunoaffinity and enzyme-affinity ultrastructural labeling techniques to image the Charcot-Leyden crystal protein and histamine in human basophils, coupled with ultrastructural analysis of kinetic samples of cells obtained after stimulation with diverse secretogogues, has provided insight into the role of vesicles in secretory transport mechanisms in human basophils as well as the definition of key ultrastructural phenotypes of secreting basophils.

Animals↗

Degranulation of human basophils by picomolar concentrations of IL-3, IL-5, or granulocyte-macrophage colony-stimulating factor.

In most secretory cells, an increase in the cytosolic free Ca2+ concentration ([Ca2+]i) is associated with the exocytosis response. In this study we have evaluated the effect of thapsigargin on histamine release from purified (70% to 97% pure) human basophils of nonallergic donors. Thapsigargin (2 micromol/L), by inhibiting the uptake of Ca2+ in the stores of the endoplasmic reticulum, leads within 1 minute to a gradual increase in [Ca2+]i in human basophils. Incubation of basophils with thapsigargin by itself induced only a very small release of histamine (5.6% +/- 1.8%). However, under suboptimal conditions of stimulation with other agonists, preincubation of basophils with thapsigargin significantly enhanced histamine release. Most strikingly, addition of thapsigargin made basophils extremely sensitive for histamine release induced by IL-3 (maximum histamine release, 71% +/- 7%), IL-5 (maximum histamine release, 43% +/- 8%), or granulocyte-macrophage colony-stimulating factor (GM-CSF) (maximum histamine release, 57% +/- 10%). These cytokines by themselves did not induce histamine release in purified basophils. The effect of thapsigargin was mimicked to a limited extent by addition of platelet-activating factor. We conclude that depletion of the Ca2+ stores may be a critical event in the activation of receptor-mediated histamine release in human basophils.

Basophil Degranulation Test↗

Marked improvement of the basophil activation test by detecting CD203c instead of CD63.

BACKGROUND: The flow cytometric basophil activation test by detection of CD63 expression has been developed as an alternative method for in vitro diagnosis of IgE-mediated reactions to various allergens. Despite promising initial studies, the test remains disappointing in terms of sensitivity. CD203c has recently been demonstrated as a specific activation marker of basophils that is rapidly up-regulated after allergen challenge in sensitized patients. OBJECTIVE: The goal of the present study was to compare basophil activation tests by using either CD203c or CD63 in the diagnosis of immediate-type allergy to latex. METHODS: Twenty-seven patients (health care workers of our institution) who developed clinical features evocative of allergy after contact with latex were included and classified into two groups. Group 1 (n = 16) comprised true allergic patients who presented with typical signs of immediate allergic reaction associated with a positive skin test (prick test). Group 2 (n = 11) consisted of patients whose clinical history was not typical and had negative skin test. Twelve healthy subjects were also studied as controls. We compared the sensitivity of two triple-staining flow cytometric protocols measuring basophil activation after latex stimulation: CD45-IgE-CD63 and CD45-IgE-CD203c. RESULTS: The CD203c protocol showed a higher sensitivity than the CD63 protocol (75% vs. 50%). In comparison, latex-specific IgE sensitivity was found to be 69%. Furthermore, the magnitude of the basophil response was significantly higher with CD203c in comparison with CD63. Specificity was 100% for both protocols. CONCLUSION: Due to superior gating of basophils and a higher range of activation in response to allergen, the basophil activation test is markedly improved by use of CD203c instead of CD63.

Adult↗

CD63 expression on basophils as a tool for the diagnosis of pollen-associated food allergy: sensitivity and specificity.

BACKGROUND: Basophil activation is associated with the expression of CD63. Because allergens can induce basophil activation by cross-linking specific IgE, increased CD63 expression has been proposed as a novel in vitro test for immediate type allergy. OBJECTIVE: We compared the CD63-based basophil activation test (BAT) in the diagnosis of allergy to carrot, celery and hazelnut with skin prick tests (SPT) and measurement of allergen-specific IgE. METHODS: Twenty-nine patients with a history of an oral allergy syndrome induced by carrot, celery or hazelnut (n = 20 for each allergen) and 20 controls were studied. SPT were performed with standardized and native carrot, celery and hazelnut extracts. Allergen-specific IgE was determined by the CAP FEIA method and basophil activation was determined by flow cytometry upon double staining with anti-IgE/anti-CD63 mAb. RESULTS: SPT with native carrot, celery and hazelnut showed sensitivities of 100%, 100% and 90%, and specificities of 80%, 80% and 90%. SPT with commercial extracts of the same allergens gave sensitivities of 85%, 80% and 85%, and specificities of 80%, 80% and 90%. Sensitivity of allergen-specific IgE and the BAT for carrot, celery and hazelnut was 80% vs. 85%, 70% vs. 85%, and 80% vs. 90%, with corresponding specificities of 80% vs. 85%, 80% vs. 80%, and 95% vs. 90%. The cut-off for a positive BAT was 10% CD63+ basophils. Moreover, there was a positive correlation between IgE reactivity and the number of CD63+ basophils for all food allergens (carrot: r = 0.69, celery: r = 0.67, hazelnut: r = 0.66). CONCLUSIONS: Quantification of basophil activation by CD63 expression is a valuable new in vitro method for diagnosis of immediate type food sensitization. Although double-blind placebo-controlled food challenges remain the gold standard, the CD63-based BAT may supplement routine diagnostic tests such as SPT or allergen-specific IgE in the future.

Antigens, CD↗

Transformation into acute basophilic leukaemia in a patient with myelodysplastic syndrome.

We describe a patient with basophilic leukaemia following a 2-year period with myelodysplastic syndrome (refractory anaemia). The marrow showed 59.4% of blasts with 25.0% of mature and immature basophils. The leukaemic blasts contained granules, positively stained with toluidine blue but negative for peroxidase. The basophilic differentiation was confirmed by ultrastructural analysis demonstrating immature basophil granules. In addition, a morphological transition from immature blasts to more mature basophils was observed. Immunophenotypic analysis of blasts and basophils showed positive for CD5, CD7, CD13, CD33 and CD34. Cytogenetic investigation showed an abnormal karyotype, 46,XY,del(5)(q31q35), in 11% of the cells examined when the initial diagnosis of refractory anaemia was made. However, expansion of the same clone up to 100% was observed concomitantly with transformation to basophilic leukaemia.

Anemia, Refractory↗

Comparison of mechanisms of IL-3 induced histamine release and IL-3 priming effect on human basophils.

We have investigated the mechanisms by which interleukin-3 (IL-3) induces histamine release and primes basophils for increased histamine release in response to anti-IgE- and N-formyl-methionyl-leucyl-phenylalanine (fMLP). The responsiveness of basophils from atopic donors was variable, only 5/11 subjects showing release of > 10%, to IL-3 in the range 0.1-100 ng/ml. IL-3-induced histamine release required both extracellular Ca2+ and cell membrane IgE, removal of membrane IgE by lactate stripping or desensitization of basophils by incubation with anti-IgE in a Ca2+-free medium blocking IL-3-induced histamine release. IL-3 also primed basophils for histamine release by anti-IgE and fMLP in the same concentration range as it evoked histamine release. When IL-3 and either anti-IgE or fMLP were combined, the result was additive or supra-additive depending on the basophil donor. Unlike IL-3-evoked histamine release, IL-3 priming of basophils for fMLP-induced histamine release was shown to be independent of the presence of both cell surface IgE and of extracellular calcium. The protein kinase C (PKC) inhibitor, staurosporine (10 nM), inhibited anti-IgE induced histamine release, but neither IL-3 induced histamine release nor IL-3 priming of IgE- and fMLP-induced histamine release. Pertussis toxin (1.0 microg/ml) inhibited fMLP-induced histamine release but not anti-IgE-induced histamine release, IL-3-evoked histamine release or IL-3 priming. These results indicate that IL-3 modulates mediator release from human basophils by two mechanisms; a direct release of histamine which involves cell surface IgE and the influx of extracellular calcium but which is unlikely to proceed by the same mechanism as cross-linkage of IgE, and a priming effect which is independent of IgE and extracellular Ca2+ and which enhances the secretory effects of a wide range of unrelated secretagogues.

Antibodies, Anti-Idiotypic↗

Conditioned media from cultured blood cells of atopic individuals can induce differentiation in the human basophilic leukemia cell line KU812.

The basophilic propagating activity was determined in conditioned media obtained from cell cultures of mononuclear cells from atopic and healthy individuals. The activity was analyzed as the capacity to induce differentiation in the human basophilic cell line KU812. The KU812 cells responded primarily to cultured media with histamine production and secondarily with granulation. Eight atopic individuals, 3 of whom having mild symptoms, with known birch allergies were selected together with 3 control individuals. Total and specific IgE were analyzed in sera, and basophil and eosinophil counts were determined from blood smears after Wright's staining. Significant differences between the symptomatic atopic individuals and the control group were obtained for eosinophil counts (p less than 0.05) and in the KU812 basophilic differentiation activity assay (p less than 0.01). No single test could significantly discriminate between symptomatic and nonsymptomatic individuals, but the KU812 cell assay in combination with the eosinophil count clearly distinguished the symptomatic individuals from the control group. Increased levels of IgE specific to birch allergen were only obtained in the atopic individuals (p less than 0.001). No difference in basophilic propagating activity was observed with supernatants from cells incubated with birch pollen allergen. Serum tested for basophilic propagating activity showed no or decreased values of inducing histamine production in the KU812 cell line. In conclusion, the KU812 assay for basophilic propagating activity was the most useful discriminating test to select symptomatic atopic individuals from nonsymptomatic atopic and control individuals.

Basophils↗

Introduction: basophil histamine release and the diagnosis of food allergy.

The glass fiber-based automated chlorometric microtiter plate whole blood leukocyte histamine release test (LHRT) may provide an in vitro correlate to in vivo allergic responses. Depending upon the high affinity of histamine for glass fibers, the fluorometric assay for histamine has a high correlation with radioimmunoassay for native histamine. For the diagnosis of respiratory allergy, up to 90% concordance between basophil histamine release results and skin test results to common inhalant allergens has been noted, although up to 96% concordance of basophil histamine release results in bronchoprovocation tests may occur. In general, the concordance between LHRT results and either skin test results or allergen inhalation challenge results is greater than the concordance between the LHRT results and radioallergosorbent (RAST) results. The LHRT may be a valuable tool for the investigation of drug allergy and food sensitivity. The ability of the LHRT to detect both IgE-mediated and non-IgE-mediated basophil responses is a potential advantage over RAST testing in situations in which the presence of specific IgE directed toward a potential allergen has not as of yet been demonstrated. False-negative LHRT results may occur in 10 to 20% of subjects who have basophils that fail to respond to anti-IgE as a positive control. Advances in both sample and blood and constitution of sample media may minimize this percentage of nonresponding basophils. Differences between mast cell and basophil responses may occur due to functional heterogeneity between basophils and mast cell subtypes.

Adult↗

The degradation product of the C5a anaphylatoxin C5adesarg retains basophil-activating properties.

The complement cleavage product C5a is a potent agonist of different leukocyte types and also has anaphylatoxic properties through the release of mediators by basophils and tissue mast cells. C5a is very rapidly degraded by serum carboxypeptidase N which cleaves the functionally important carboxy-terminal arginine, generating C5desarg, a chemotactic agonist with little mast cell-activating ability. Here we show that natural human C5adesarg is still a trigger for basophil mediator release superior to other endogenous IgE-independent agonists such as monocyte chemotactic protein (MCP)-1, interleukin (IL)-8, C3a and platelet-activating factor. On a molar basis C5adesarg is only one order of magnitude less potent and about half as efficacious as C5a at inducing basophil degranulation. Priming of basophils with either IL-3, IL-5, granulocyte-macrophage-colony-stimulating factor (GM-CSF) or nerve growth factor (NGF) (with comparable efficacies, but different potencies: IL-3 > NGF > IL-5 > GM-CSF) enhanced histamine release and conditioned the cells to produce large amounts of leukotriene C4 (LTC4), which is not generated by basophils exposed to C5adesarg alone. The efficacy of C5a and C5adesarg at inducing histamine and LTC4 release by primed basophils was similar. Thus, C5adesarg is a stable inducer of release of inflammatory mediators by human basophils, particularly in primed cells, and complement may, therefore, play a role in immediate-type hypersensitivity diseases in allergic late-phase reactions.

Basophils↗