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Genesis of host IgE competence: perinatal IgE tolerance induced by IgE processed and presented by IgE Fc receptor (CD23)-bearing B cells.

A murine model for studying life-long IgE tolerance was previously developed in this laboratory by perinatal IgE injection into neonates. Herein, we demonstrated that normal and immortal CD23+ B cell lines presented processed IgE via CD23-mediated endocytic pathway and triggered perinatal IgE tolerance. The observations were as followed: (a) CD23 on normal B cells or B cell hybridomas mediated IgE-dependent perinatal IgE tolerance and total IgE deficiency; and lack of either antigen-specific IgE or total IgE did not correlate with elevated levels of autologous anti-IgE in individual mice; (b) IgE tolerance-inducing capacity of CD23+ B cell hybridomas was augmented by treatment with antigen-IgE complexes or interleukin 4, and significantly inhibited by anti-CD23 prior to IgE pulsing; (c) antigen-IgE complexes were endocytosed and degraded in acid hydrolases-containing vesicles; and IgE tolerance was abrogated by treating IgE-pulsed 17A11 at 4 degrees C or 20 degrees C followed immediately by fixation, and by treating IgE-pulsed 17A11 with metabolic inhibitors that elevated intracellular pH of the endocytic vesicles. In conclusion, this study suggested that one pivotal step of genetic control of IgE responses may be exercised at the early developmental stage of T cells of the IgE lineage, and that CD23 may facilitate capture of endogenously secreted IgE, and mediate endocytic processing and presentation of self IgE epitope(s), and thus contribute to the genesis of host IgE competence.

Animals↗

Characterization and isolation of IgE class-specific suppressor factor (IgE-TsF) I. The presence of the binding site(s) for IgE and of the H-2 gene products in IgE-TsF.

IgE-specific reverse plaque assay for the direct comparison of the IgE and IgG antibody responses was established and the method was employed for the assessment of the activity of IgE class-specific suppressor factor (IgE-TsF). In the in vitro culture system, the addition of IgE-TsF to DNP-KLH-primed spleen cells inhibited an antigen-induced increase of IgE-producing cells but did not show any effect on the IgG or IgM responses. Absorption of IgE-TsF with IgE-producing hybridoma cells removed the suppressor activity but IgM-producing hybridoma cells did not absorb the suppressor activity. The suppressor activity of IgE-TsF was removed by murine IgE-conjugated Sepharose column but not by IgM-, IgG-, or human IgE-conjugated column. The suppressor activity was eluted from IgE-column with glycine-HCI buffer, pH 3.2, or acetate buffer, pH 4.0, and the suppressor factor eluted from IgE-column was reabsorbed by anti-H-2d conjugated column. The results showed that IgE-specific suppressor factor was composed of the binding sites for IgE molecules and the H-2 gene products.

Absorption↗

Inhibition of IgE synthesis by anti-IgE: role in long-term inhibition of IgE synthesis by neonatally administered soluble IgE.

Inoculation of syngeneic IgE into 2- to 12-day-old mice results in prolonged synthesis of anti-IgE antibodies without further challenge. These anti-IgE antibodies may be largely responsible for the long-term inhibition of synthesis of IgE that is known to result from a perinatal challenge with IgE. This conclusion is supported by the effect of passive inoculation of syngeneic polyclonal anti-IgE antibodies into young mice, which similarly results in selective inhibition of IgE synthesis. Further evidence is the close relationship between the age dependency of IgE-induced inhibition of subsequent IgE synthesis and the ability of IgE to induce anti-IgE antibodies. IgE synthesis was monitored at the level of secretion by B cells as well as serum IgE levels and IgE antibody responses.

Aging↗

Comparison of the receptors for IgE of various rat basophilic leukaemia cell lines. I. Receptors isolated by IgE-sepharose and IgE and anti-IgE.

REceptors for IgE of rat basophilic leukaemia (RBL) cells, maintained in different laboratories were isolated by means of IgE-Sepharose or IgE and anti-IgE, and characterized by SDS-polyacrylamide gel electrophoresis. All cell lines were found to be associated with a receptor molecule (R) which could be isolated either with IgE-Sepharose or IgE and anti-IgE and a second receptor (H) which could only be isolated with the aid of IgE-Sepharose. The relative amounts of these two molecules, as isolated from surface iodinated cells, varied from the RBL cell line to the other and their apparent molecular weights were not identical on all cell lines. Since comparisons were made on the same gel using receptors isolated from cells labelled with different isotopes of iodine, differences in molecular weight must be considered as being intrinsic and not due to methodological variations. These results provide an explanation why differences were observed among receptors for IgE as characterized in various laboratories. In spite of the fact that the various RBL cell lines originated from the same chemically-induced tumour they have, over the years, undergone changes which are reflected in the receptors for IgE.

Animals↗

Auto IgG anti-IgE and IgG x IgE immune complex presence and effects on ELISA-based quantitation of IgE in canine atopic dermatitis, demodectic acariasis and helminthiasis.

Atopic dermatitis is a common allergic disease manifestation in dogs; however, there is no correlation between clinical disease and detectable total serum IgE. Auto antibodies of the IgG subclass against IgE may affect the detection of serum IgE by immunoassay and may be important in the regulation of IgE production by B cells. ELISA were developed to detect serum antibodies specific for IgE using a newly available canine monoclonal IgE of known antigen specificity, generated from a canine x murine heterohybridoma. To test for correlation of auto IgG anti-IgE levels with manifestation of atopic dermatitis, the sera from 101 atopic dogs were compared with sera from non-atopic dogs of various breeds, foxhounds manifesting clinical signs of demodectic acariasis and helminth parasitized random bred dogs for quantities of IgG anti-IgE measured in units/ml compared to a high titer standard serum. To test for serum effects on quantitation of IgE, known amounts of canine monoclonal IgE were added to various sera and measured by capture ELISA with detecting monoclonal antibodies specific for heat labile or heat stabile epitopes. Unheated sera from dogs manifesting clinical atopic dermatitis and helminth parasitized dogs had levels of IgG anti-IgE that were significantly lower than various breeds of dogs not manifesting dermatologic lesions and foxhounds manifesting demodectic acariasis. Heating sera at 56 degrees C for 3 h to denature the high affinity binding site on the IgE heavy chain caused a marked increase over non-heated sera in detectable IgG anti-IgE in almost all dogs. This increase was most profound in helminth-infected dogs and foxhounds manifesting demodectic mange with 7 fold increases each, respectively, and in atopic dogs with a 5 fold increase compared to 3 fold increases for clinically-normal springer spaniels and all soft coated wheaten terriers. The terriers demonstrated an association of lower heated serum values of IgG anti-IgE with manifestation of a familial syndrome of protein-losing enteropathy and protein-losing nephropathy. The ability of mouse anti-canine IgE monoclonal antibodies specific for either heat labile or heat stabile epitopes to detect canine monoclonal IgE added to sera in known amounts varied from serum to serum and at different concentrations of the same serum, but did not correlate with IgG anti-IgE values for these sera. The range of absolute levels of serum IgE in dogs showing little or no inhibition of detection of added IgE was < 0.5 ng/micromilligram to 2 micrograms/micromilligram. It was concluded that the increase in detectable IgG anti-IgE after heating sera indicates that IgG x IgE immune complexes are normally present in most dogs; however, the increase over uncomplexed IgG anti-IgE was most pronounced in dogs manifesting atopic dermatitis and demodectic acariasis. A quantitative comparison of IgG anti-IgE or IgG x IgE to total serum IgE was not made because the ability of monoclonal antibodies specific for either heat labile or heat stable epitopes on the IgE heavy chain to detect IgE added to serum, as well as innate serum IgE, was highly variable in different dilutions of serum from individual to individual.

Animals↗

Effects of syngeneic anti-IgE antibodies on the development of IgE memory and on the secondary IgE response.

The prolonged inhibition of IgE synthesis in mice caused by perinatal inoculation of IgE is attributable, at least in part, to the formation of anti-IgE antibodies. The induction of unresponsiveness with respect to IgE synthesis requires that IgE be administered during a brief interval (2 to approximately 10) days after birth, that corresponds with the time period during which anti-IgE antibodies are induced. Passive administration of syngeneic anti-IgE also inhibits IgE synthesis. We have now investigated the effect of anti-IgE on the induction of memory for IgE production and on secondary IgE responses. Syngeneic anti-IgE antibodies were found to inhibit secondary IgE responses directly during immunization or after adoptive transfer of primed cells. Anti-IgE did not, however, prevent the induction of memory cells for IgE synthesis or cause the loss of memory for IgE synthesis. Inhibition of a secondary IgE response was found to require the presence of anti-IgE and was lost when anti-IgE antibodies were cleared from the mouse. After the transfer of primed cells and secondary challenge anti-IgE was inhibitory only when given during the first 3 to 5 days, after which the primed cells became resistant to inhibition. The failure of anti-IgE to prevent the induction of IgE memory cells is discussed in terms of class switches that occur during the transition from IgM to IgE production.

Animals↗

Production and characterization of rabbit anti-idiotypic antibodies specific to mouse monoclonal anti-human IgE and reacting with IgE-binding factors and lymphocyte receptors for IgE.

A mouse monoclonal antibody specific to human IgE (mAb 75) was employed to immunize a rabbit to obtain anti-idiotypes (aId) bearing the internal image of human IgE determinants and reacting with IgE-binding factors (IgE-BF) and/or lymphocyte receptors for IgE (Fc epsilon R). mAb 75 was selected on the basis of inhibition assays where the binding of mAb 75 to radiolabeled IgE was blocked by IgE-BF. The latter were produced by a lymphoblastoid cell line (RPMI 8866) expressing Fc epsilon R. Sequential samples of rabbit serum, collected during the immunization period, were extensively absorbed on mouse and human Ig-Sepharose 4B. The IgG fractions of the rabbit serum displayed the following activities: (a) they reacted with 125I-labeled mAb 75 but not with other labeled mouse Ig including mAb-aIgE, (b) this binding was inhibited in a dose-dependent fashion by human IgE but not by other human Ig classes nor by heat-inactivated IgE, (c) they reacted with a polyclonal rabbit anti-human IgE and (d) they blocked the binding of 125I-labeled IgE to mAb 75. It was concluded that the rabbit IgG contained aId (RaId) bearing the internal image of heat labile determinants of human IgE. The rosetting of IgE-coated bovine erythrocytes with Fc epsilon R-bearing cells was inhibited by preincubating the receptor-bearing cells with IgG RaId or its F(ab')2 but not with normal rabbit IgG. The ability of RaId to react with IgE-BF as well as with Fc epsilon R was also shown in inhibition experiments where IgE-BF and solubilized Fc epsilon R blocked the binding of mAb 75 to RaId. Finally, Western blot analysis of human colostrum, known to contain IgE-BF, indicated that radioiodinated RaId and IgE identified the same 12-16-kDa molecules corresponding to IgE-BF. It is concluded that RaId expresses the internal image of a heat-labile determinant of IgE which is involved in the binding of IgE to IgE-BF and Fc epsilon R. An alternative interpretation is that RaId reacts with an idiotypic determinant of mAb 75 which is shared by IgE-BF and Fc epsilon R.

Animals↗

Modulation of the biologic activities of IgE-binding factors. III. Switching of a T cell hybrid clone from the formation of IgE-suppressive factor to the formation of IgE-potentiating factor.

Incubation of rat-mouse T cell hybridoma cells, 23B6, with rat immunoglobulin E (IgE) results in the formation of the 15,000-dalton IgE-suppressive factor and the 30,000-dalton IgE-binding factor, which has neither potentiating activity nor suppressive activity on the IgE response. Another T cell hybridoma, 23A4 cells, produces the 30,000-dalton "inactive" IgE-binding factor upon incubation with IgE. Both the 15,000-dalton IgE-suppressive factor and the 30,000-dalton IgE-binding factor lacked affinity for lentil lectin but bound to peanut agglutinin. When the 23B6 cells were incubated with IgE in the presence of lysolecithin, the majority of the 15,000-dalton IgE-binding factor formed by the cells gained affinity for lentil lectin, and this factor selectively potentiated the IgE response. The glycosylation-enhancing factor, which was formed by stimulation of normal spleen cells with lymphocytosis-promoting factor (LPF or pertussigen), also switched 23B6 cells from the formation of IgE-suppressive factor to the formation of IgE-potentiating factor. It was also found that the 30,000-dalton "inactive" IgE-binding factor, formed by both 23B6 and 23A4 cells, gained the ability to potentiate the IgE response, when the cells were cultured with IgE in the presence of glycosylation-enhancing factor. The results indicate that IgE-potentiating factor and IgE-suppressive factor share common precursors, and that biologic activities of IgE-binding factors are decided by their carbohydrate moieties. Incubation of the two hybridoma cells with lysolecithin or glycosylation-enhancing factor results in an increase in the proportion of FC epsilon R+ cells, suggesting that the assembly of N-linked oligosaccharide to precursor molecules is intrinsic for the expression of FC epsilon R.

Animals↗

In vitro synthesis of IgE by human lymphocytes. II. Enhancement of the spontaneous IgE synthesis by IgE-binding factors secreted by RPMI 8866 lymphoblastoid B cells.

RPMI 8866 lymphoblastoid cells, known to express surface Fc epsilon R, were tested for their ability to regulate the in vitro synthesis of human IgE. Cell-free supernatants (CFS) of RPMI 8866 cells enhanced in a dose-dependent fashion the spontaneous IgE synthesis by B cells of allergic individuals. For maximum activity the CFS had to be added during the first 3 days of culture. CFS did not significantly alter the spontaneous synthesis of IgM or IgG, but they suppressed IgA synthesis both in B cell cultures and in pokeweed mitogen-stimulated peripheral blood mononuclear cells cultures. Cyclosporin A did not suppress either the spontaneous Ig production by B cells nor the IgE-potentiating activity of CFS. The enhancing activity of CFS was related to its content in IgE binding factors (IgE-BFs); these factors were detected by their ability to inhibit the rosetting of RPMI 8866 cells with IgE-coated erythrocytes (E-IgE). Both the IgE-BFs and the IgE-potentiating activity of the supernatants of RPMI 8866 cell cultures could be removed by absorption with IgE-Sepharose, from which they could subsequently be eluted with glycine-HCl buffer. IgE-BFs were identified as glycoproteins on the basis of their sensitivity to trypsin and to neuraminidase. By filtration of the RPMI 8866 cell supernatants through a Sephadex G75 column, IgE-binding activity was found to be associated with two fractions with molecular sizes in the range of 10,000-15,000 and 30,000-40,000. The IgA-suppressing activity of the RPMI 8866 culture filtrates could be absorbed with sIgA-Sepharose from which it was subsequently recovered by elution with glycine-HCl buffer. Most unexpectedly, sIgA-Sepharose also removed IgE-BFs and IgE-potentiating activity from the RPMI 8866 supernatants; both could be recovered by subsequent elution from sIgA-Sepharose with gycline-HCl buffer. These data are provisionally interpreted as indicating that the IgE-BFs secreted by RPMI 8866 cells had affinity for both IgE and sIgA and that they exerted a reciprocal effect on the in vitro synthesis of IgE and IgA.

B-Lymphocytes↗

Occurrence of IgE in foals: evidence for transfer of maternal IgE by the colostrum and late onset of endogenous IgE production in the horse.

IgE is the key antibody involved in type I allergies. Allergen mediated crosslinking of IgE bound to high affinity Fcepsilon-receptors on mast cells and basophils stimulates cellular degranulation and release of inflammatory mediators and cytokines. In this report, we demonstrate that IgE antibodies can be transferred from the mother to offspring in horses via the colostrum. We found a clear correlation between the IgE concentration in colostrum and the total IgE concentration in foal sera on day 2 after birth (r(sp)=0.83). Maternal IgE was detected in foal sera by ELISA and on peripheral blood leukocytes of foals by flow cytometry. Both serum and cell membrane-bound IgE were undetectable in newborn foals before colostrum uptake and peaked on days 2-5 after birth. Cell-bound IgE became undetectable at 2 months after birth. Serum IgE disappeared from the circulation within the first 3-4 months of age. These kinetics suggest that the IgE antibodies which are detectable in foals during the first 4 months after birth are of maternal origin only. The endogenous IgE production was found to begin at 9-11 months of age, when IgE could be detected on peripheral blood leukocytes and in foal sera again. After 18 months of life, the total IgE concentrations in foal sera were comparable to those detected in their dams. The late onset of endogenous IgE production offers an explanation for observations that IgE mediated allergies are generally not observed in horses before puberty. The roles of the passively transferred maternal IgE in newborn foals are not yet known, but could be manifold, ranging from passive immunity and induction of immunoregulatory functions to determinative influences of maternal IgE on the antibody repertoire in the offspring.

Aging↗

Regulatory role of IgE-binding factors from rat T lymphocytes. III. IgE-specific suppressive factor with IgE-binding activity.

Incubation with rat IgE of rat mesenteric lymph node cells obtained 8 days after infection with Nippostrongylus brasiliensis (Nb) resulted in the formation of soluble factors with affinity for IgE, i.e., IgE-binding factors(s). The factors were derived from T lymphocytes and were able to suppress an in vitro IgE response without affecting the IgG response. The minimum concentration of rat IgE for the induction of factor formation was 0.3 to 1.0 microgram/ml. Gel filtration of culture filtrates of the IgE-containing culture identified 2 components with IgE-binding activity; one component had a m.w. of between 10,000 and 20,000, and another component had a m.w. of between 25,000 and 50,000. Both factors could be purified by binding to IgE-Sepharose followed by elution at acid pH. Among the two IgE-binding factors, the lower m.w. component had the ability to suppress selectively the IgE response. In contrast to IgE-potentiating factor, which also had affinity for IgE, the IgE-suppressive factor failed to bind to lentil lectin Sepharose. Formation of IgE-specific suppressive factor was not limited to the lymphocytes obtained 8 days after Nb-infection. Incubation with IgE of lymphocytes obtained 4 wk after infection resulted in the formation of both IgE-specific suppressive factor and IgE-potentiating factor, and the activity of the suppressive factor was greater than that of the potentiating factor.

Animals↗

Lymphocytes bearing Fc receptors for IgE. V. Effect of tunicamycin on the formation of IgE-potentiating factor and IgE-suppressive factor by con A-activated lymphocytes.

Attempts were made to induce the formation of soluble factors having affinity for IgE (IgE-binding factors) by activated T cells. Normal rat mesenteric lymph node (MLN) cells were cultured in 1 microgram/ml Con A for 48 hr or in 10 microgram/ml Con A for 72 hr, and Con A-activated lymphocytes were incubated with rat IgE. It was found that IgE induced an increase in the proportion of Fc epsilon R(+) cells in the Con A-activated cells and formation of IgE-binding factors. However, the nature of IgE-binding factors formed by the cells were different depending on the concentration of Con A for activation. Thus, IgE-binding factors formed by 10 microgram/ml Con A-activated cells had a high affinity for lentil lectin and enhanced the IgE-forming cell response of DNP-OA primed cells. In contrast, the majority of IgE-binding factors formed by 1 microgram/ml Con A-activated cells failed to bind to lentil lectin and suppressed the IgE response. Induction of Fc epsilon R by IgE on Con A-activated cells was prevented by tunicamycin, which inhibits protein glycosylation. This antibiotic did not prevent the IgE-induced formation of IgE-binding factors but changed the nature of the factors formed by 10 microgram/ml Con A-activated cells. The majority of IgE-binding factors formed in the presence of tunicamycin lacked affinity for lentil lectin and Con A, and suppressed, rather than enhanced, the IgE response. The nature and amount of IgE-binding factors formed by 1 microgram/ml Con A-activated cells was not affected by tunicamycin. The results suggest that glycosylation of IgE-binding factors during their biosynthesis is an important step in determining their biologic function.

Animals↗

T-cell-independent and T-cell-dependent IgE responses to the nematode Nippostrongylus brasiliensis: comparison of serum IgE and mast-cell-bound IgE.

The IgE immune response was studied in female athymic, nude (Lewis rnu/rnu) and euthymic (Lewis +/+) rats infected with the nematode Nippostrongylus brasiliensis. During the course of the infection, serum IgE levels were followed using an enzyme-linked immunosorbent assay technique (ELISA), while the surface expression and occupancy of IgE receptors on peritoneal mast cells were quantified using flow cytometry after immunolabelling with anti-IgE. The results show that the up-regulation of IgE receptors, which takes place on the mast cells of both athymic and normal rats during the early phase of the immune response, is more pronounced and longer-lasting in normal rats than in athymic ones, thereby suggesting that T cells are necessary for a full response to the parasite infection. The increased IgE occupancy observed on the mast cells during the early phase of the parasite immune response was not reflected in the serum IgE levels, which remained low during the entire infection period in athymic rats. In euthymic rats, on the other hand, there was a pronounced increase in serum IgE, as well as an increase in IgE occupancy on the mast cells, all reaching a peak level after 2 weeks of infection. However, there was no significant correlation between the serum IgE concentration and IgE occupancy or the density of IgE receptors on the mast cells of the individual euthymic rats. This indicates that the quantification of IgE occupancy on the mast cells may be a better way of detecting low-level IgE responses than the measurement of serum IgE. These findings, which were obtained in female Lewis rats, when compared with our previous findings in male rats of the same strain, suggest that sex differences may exist in terms of the intensity and duration of the IgE immune response to the parasite infection.

Animals↗

Modulation of IgE synthesis by IgE-binding factors released by T cells of asthmatic patients with elevated serum IgE.

The culture supernatants of unstimulated T cells (TCS) from asthmatic patients with elevated serum IgE were tested for IgE-binding factors (IgE-BFs) displaying the IgE-potentiating activity. The IgE-BFs were detected by their ability to inhibit the rosetting of RPMI 8866 cells with ox erythrocytes coupled with mouse monoclonal antibody (E-Mab) specific to Fc receptors for IgE (Fc epsilon R). TCS showing the rosette-inhibiting activity significantly enhanced the spontaneous IgE synthesis by B cells of allergic individuals. Interestingly, rosette-inhibiting factors could be removed by absorption with IgE-Sepharose from which they were subsequently eluated with acid buffer, indicating that the rosette inhibition was indeed mediated by IgE-BFs. In addition, such IgE-BFs had affinity for concanavalin A and lost their IgE-potentiating activity after treatment with trypsin and neuraminidase. In contrast, T cells treated with tunicamycin released IgE-suppressing factors capable of inhibiting the IgE-potentiating activity of TCS derived from untreated T cells. On the other hand, the culture supernatants from subpopulations depleted of Fc epsilon R+ T cells but not of Fc gamma R+ T cells contained neither rosette-inhibiting factors nor IgE-potentiating factors, suggesting that IgE-BFs were released by in vivo pre-activated Fc epsilon R+ T cells. With regard to circulating Fc epsilon R+ T cells determined by E-Mab, they were significantly higher in asthmatic patients with elevated serum IgE (0.77 +/- 0.15%) than in normal subjects (0.17 +/- 0.07%) in spite of a very small proportion of T cells bearing Fc epsilon R.

Asthma↗

Production of a monoclonal dinitrophenyl-specific rat IgE and establishment of an IgE capture ELISA for estimating the concentration of rat IgE antibodies to dinitrophenyl-Ascaris suum.

A hybridoma producing monoclonal rat IgE antibodies of antidinitrophenyl (anti-DNP) specificity was generated by fusion of Sp2/0-Ag 14 (SP2) mouse myeloma cells and spleen cells from a DNP-Ascaris-sensitized Brown-Norway rat. Subsequently, the supernatant of the hybridoma (FE-3) was applied to an affinity column of DNP-bovine serum albumin-Sepharose 4B. The adsorbed protein fraction was pooled, concentrated, and further purified using Sephadex G-200. The molecular weight of the isolated protein was approximately 200,000 by SDS-PAGE, and the protein reacted with peroxidase (POD) mouse antirat myeloma IgE on Western blotting. Rabbit antibodies against DNP-specific rat IgE were also prepared by immunizing Japanese white rabbits with monoclonal DNP-specific rat IgE. These antibodies against DNP-specific rat IgE were applied to an affinity column of normal rat serum-Sepharose 4B and monoclonal DNP-specific rat IgG2b-Sepharose 4B to remove any other reactive substances apart from IgE contained in the serum proteins of the rat sensitized with DNP-Ascaris. On ELISA, it was found that the specificity of POD rabbit antibodies against DNP-specific rat IgE for monoclonal DNP-specific rat IgE was the same as that for rat myeloma IgE (IR 162). In addition, determinations of the monoclonal DNP-specific rat IgE revealed that the sensitivity of ELISA using POD-rabbit antibodies against DNP-specific rat IgE [POD-RA(DNP)RE] was higher than that using POD goat antibodies against rat myeloma IgE. Furthermore, an IgE capture ELISA employing the above-mentioned RA(DNP)RE was established for estimating the rat IgE antibodies to DNP-Ascaris suum. A good correlation was found between the antigen-specific IgE antibodies in the serum of Wistar rats estimated by this IgE capture ELISA and those estimated by passive cutaneous anaphylaxis.

Animals↗

Induction of Fc epsilon receptors on normal murine T cells and IgE binding factor(s) by cross-linked IgE or IgE-pulsed adherent cells.

This study aimed to compare the efficiency and extent of induction by monomeric versus cross-linked IgE of specific receptors for IgE on normal murine splenic T cells (Fc epsilon R-T), and to study the ability of IgE-pulsed splenic adherent cells to induce receptors for IgE on T cells. Chemically cross-linked IgE was found to be both more effective and more efficient than monomeric IgE in inducing Fc epsilon R-T as measured by the ability of IgE-pulsed T cells to form specific rosettes with IgE-sensitized trinitrophenylated sheep red blood cells (TNP-SRBC). This phenomenon was dependent on both DNA and protein synthesis, suggesting that induction caused the production of new IgE receptors. It was also found that cross-linked but not monomeric IgE-pulsed normal murine adherent cells as well as their cell-free products could actively induce significant levels of specific Fc epsilon R-T. Both cross-linked IgE-pulsed T cells and adherent cells released IgE binding factor(s). These materials were capable of specifically inhibiting the binding of IgE to rat basophilic leukaemic cells (RBL) in vitro and to rat tissue mast cells in vivo. Collectively, these data provide further evidence to suggest that polymerized forms of IgE and adherent cells play important roles in the regulation of IgE responses.

Animals↗

Binding of cynomolgus monkey IgE to a humanized anti-human IgE antibody and human high affinity IgE receptor.

Antibodies which block IgE binding to its high affinity receptor have the therapeutic potential for treating allergic diseases. A humanized anti-human IgE antibody (E25) was developed for this purpose. Cynomolgus monkeys were used for preclinical studies of E25. We studied the binding of purified human IgE and cynomolgus monkey IgE to E25 and the human high affinity IgE receptor alpha-chain-IgG fusion molecule (Fc epsilon RI-IgG) by surface plasmon resonance. Human IgE and cynomolgus monkey IgE bound to immobilized E25 with similar affinity (apparent Kd = 0.06 and 0.19 nM, respectively). Human IgE and cynomolgus monkey IgE also bound to immobilized Fc epsilon RI-IgG with similar affinity (apparent Kd = 0.28 and 0.30 nM, respectively). These data suggest that the cynomolgus monkey is a valid model for preclinical studies of the E25 antibody and probably for other antibodies which block IgE binding to its receptor. An enzyme-linked immunosorbent assay (ELISA) for measuring cynomolgus monkey IgE was developed to support preclinical studies. This ELISA used FcERI-IgG for capture and peroxidase labelled goat polyclonal antibody to human IgE for detection. Using purified cynomolgus monkey IgE as the standard, the serum IgE levels in six cynomolgus monkeys measured were 4-23 micrograms/ml.

Animals↗

Recombinant soluble form of the human high-affinity immunoglobulin E (IgE) receptor inhibits IgE production through its specific binding to IgE-bearing B cells.

A recombinant soluble form of the alpha subunit of the human high-affinity receptor for IgE (rsFc epsilon RI alpha), one of the potent IgE-binding molecules, was tested for its ability to regulate IL-4-induced IgE synthesis by human lymphocytes. Addition of rsFc epsilon RI alpha to cultures induced a dose-dependent inhibition of the T cell-dependent and independent synthesis of IgE. The suppression of IgE synthesis was observed at the protein and the mRNA levels, and it was IgE class specific. By flow cytometry, specific binding of rsFc epsilon RI alpha was detected on surface IgE-bearing B cells as well as on U266 cells, and it was completely blocked by preincubation with IgE. rsFc epsilon RI alpha bound to the cell surface IgE could be effectively dissociated not only by a large excess of IgE, but also by an anti-rsFc epsilon RI alpha mAb that competes with IgE for the binding to rsFc epsilon RI alpha. This mAb abolished the rsFc epsilon RI alpha-mediated suppression of IgE synthesis. These data suggest that rsFc epsilon RI alpha may have a function in selectively suppressing IgE synthesis through its interaction with the membrane-bound form of IgE.

Adult↗