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Flavonols inhibit proinflammatory mediator release, intracellular calcium ion levels and protein kinase C theta phosphorylation in human mast cells.

Mast cells participate in allergies, and also in immunity and inflammation by secreting proinflammatory cytokines. Flavonoids are naturally occurring polyphenolic plant compounds, one group of which -- the flavonols, inhibits histamine and some cytokine release from rodent basophils and mast cells. However, the effect of flavonols on proinflammatory mediator release and their possible mechanism of action in human mast cells is not well defined. Human umbilical cord blood-derived cultured mast cells (hCBMCs) grown in the presence of stem cell factor (SCF) and interleukin (IL)-6 were preincubated for 15 min with the flavonols quercetin, kaempferol, myricetin and morin (0.01, 0.1, 1, 10 or 100 microM), followed by activation with anti-IgE. Secretion was quantitated for IL-6, IL-8, tumor necrosis factor-alpha (TNF-alpha), histamine and tryptase levels. Release of IL-6, IL-8 and TNF-alpha was inhibited by 82-93% at 100 microM quercetin and kaempferol, and 31-70% by myricetin and morin. Tryptase release was inhibited by 79-96% at 100 microM quercetin, kampferol and myricetin, but only 39% by morin; histamine release was inhibited 52-77% by the first three flavonols, but only 28% by morin. These flavonols suppressed intracellular calcium ion elevations in a dose-response manner, with morin being the weakest; they also inhibited phosphorylation of the calcium-insensitive protein kinase C theta (PKC theta). Flavonol inhibition of IgE-mediated proinflammatory mediator release from hCBMCs may be due to inhibition of intracellular calcium influx and PKC theta signaling. Flavonols may therefore be suitable for the treatment of allergic and inflammatory diseases.

Calcium↗

Plasminogen activator release from cultured murine mast cells.

Mast cells from the Furth murine mastocytoma tumour line were found to contain significant levels of plasminogen activator (PA). Cultured cells released PA activity into the culture medium in parallel with the release of histamine, and both were proportionately increased following exposure to degranulating agents. Pretreatment of the mast cells with cycloheximide did not alter their total PA content or their ability to release PA. These studies suggest that PA is a prestored granule constituent. The ability of PA to generate plasmin from plasminogen suggests an important role for mast cell PA in fibrinolysis and tissue degradation, observations that have been associated with mast cell degranulation and infiltration in vivo.

Animals↗

Induction of MHC class II antigen expression on human HMC-1 mast cells.

Mast cells are not only the primary effector cells of immediate type immune reactions, but they have recently also been considered to contribute to the induction of an immune response. Data on the ability of the cells to express major histocompatibility complex (MHC) antigens and the mechanisms involved are however controversial or unclear. We have therefore studied the expression of MHCI and the induction of MHCII molecules on leukemic HMC-1 mast cells by immunohistochemistry. Cells were incubated for up to 72 h in the presence of IFN gamma, TNF alpha and IL-4, and immunohistochemical staining was done with monoclonal antibodies with specificity for HLA class I heavy chain, HLA-DQ (Tü22), HLA-DR (Tü36) and HLA-DQ, -R and -P (Tü35). All unstimulated mast cells expressed MHC class I, but almost no class II antigens. Incubation with IFN gamma caused a rapid, dose-dependent induction of MHC class II molecules, with Tü35 staining maximally one third of the cells within 24 h at the highest dose tested (100 IU/ml), with decline on extended culture. TNF alpha (2 ng/ml) was less effective but caused more persistent induction with time. IL-4 (200 ng/ml) had hardly any effects at all. Staining with Tü22 and Tü36 was always lower than with Tü35, and additive or even synergistic results were obtained when cells were stimulated with a combination of IFN gamma and TNF alpha. These findings support the concept that mast cells can facultatively participate in immune recognition processes depending on the type of pathological conditions in their microenvironment which allow expression of MHC class II molecules.

Antibodies, Monoclonal↗

Identification and characterization of multiple forms of tryptase from human mast cells.

Mast cell tryptase purified from human adult skin (AS), adult lung (AL) and newborn foreskin (NS) with a monoclonal antitryptase B2 immunoaffinity Sepharose column was further fractionated by HPLC using a Mono-S cation exchange column at pH 6.5. Tryptases exhibited two clearly separated major fractions, both of which also revealed at least two overlapping peaks. Native tryptase molecules from skin consisted of two diffuse protein bands in SDS-PAGE at about 31 and 35 kDa, whereas those from lung usually exhibited a predominant diffuse band at about 29 kDa. The forms of tryptases separated by Mono-S HPLC gave a different banding pattern in SDS-PAGE. Tryptase from NS exhibited chromatographic peaks that each showed Mr values approximately 1-3 kDa higher than those of tryptase from AS. By gel filtration, the Mr values for native major fractions of tryptases derived from AS and AL were 178 kDa and 141 kDa, respectively. After carbohydrate removal by glycanase, the observed differences in Mr values in SDS-PAGE reduced to two similar sharp bands of Mr approximately 28 kDa and 30 kDa for all tryptase preparations. AS and AL tryptases and their subfractions exhibited similar enzyme kinetic values and similar immunoreactivities in a tryptase immunoassay. Inactivation rates at physiologic ionic strength were similar for both AL and AS tryptases. The results show the enzymatic and antigenic similarity between lung and skin tryptases, and suggest that tryptase is stored mainly as beta-tryptase in human mast cells. Tryptase immunoassay measures similarly both lung and skin tryptases and, thus, this assay is suitable for detection of mast cell activation, in contrast to assays for other proteinases of mast cells, e.g. chymase, cathepsin G and carboxypeptidase, that are present in MC(TC) cells mainly in skin only.

Adult↗

Interaction of neuropeptides with human mast cells.

Mast cells of human skin, but not lung, adenoids, tonsils, or intestine, release histamine in response to substance P, vasoactive intestinal polypeptide, and somatostatin. The substance P receptor of skin mast cells is not of the NK-1, NK-2 or NK-3 subtypes of smooth muscle. Time course and calcium dependency of release by peptides differed from anti-IgE. With anti-IgE, the molar ratios of histamine:PGD2:LTC4 generated by skin mast cells was 1,000:25:2, whereas with substance P these ratios were 1,000:1:0.1. Similar results were obtained with the other neuropeptides. The ability of peptides to stimulate skin mast cell histamine release suggests a mechanism whereby their release from dermal nerve endings is coupled to changes in microvasculature.

Histamine Release↗

Immunohistochemical localization of mast cells and mast cell-nerve interactions in oral lichen planus.

OBJECTIVES: Mast cell mediators are likely to be involved in at least some aspects of the immunopathogenesis of oral lichen planus (OLP). The aim of this project was to map mast cell populations in OLP and identify possible sites of mast cell-nerve interactions. MATERIALS AND METHODS: Monoclonal antibodies specific for tryptase and neurofilaments were used to identify mast cells and nerves respectively in an immunohistochemical study of OLP (n = 25) and normal oral buccal mucosa (NOBM) (n = 13) using a double-labelling protocol. Data analysis used paired t-test, multiway analysis of variance and Wilcoxon rank tests. RESULTS: Morphometric analyses showed the greatest mast cell density in the most superficial of the three depth layers examined in OLP, an increase of 130% compared with NOBM. Mast cells associated with neurofilaments ranged from 21.9% in OLP to 10.2% in NOBM. Mean epithelial thickness was significantly lower in OLP (P < 0.001) but without a strong correlation with mast cell density. CONCLUSIONS: Increased mast cell and mast cell-nerve interactions in OLP suggest both a controlling role over the lesional cell populations and a secondary role to the immune response once this becomes established.

Analysis of Variance↗

Evidence for a Na+/Ca2+ exchange mechanism in rat peritoneal mast cells.

Mast cells lose their ability to secrete when incubated in nominally Ca2+-free medium, but the Na+/K+ pump inhibitor ouabain prevents this loss, suggesting a Na+ dependence of the Ca2+ gradient in rat mast cells. The present study includes measurements of histamine release from cell suspensions, and fura-2/AM and current-clamp experiments on single cells. KB-R7943, an inhibitor of the reverse mode of the Na+/Ca2+ exchanger, 2,4-dichlorobenzamil and La3+ counteracted the increase in histamine release induced by ouabain in a dose-dependent manner. The Ca2+ response to compound 48/80 was reduced by preincubation of the mast cells for 30 min in nominally Ca2+-free medium. This reduction was partly prevented by ouabain or by a low extracellular Na+ concentration. Superfusion of cells with a medium containing a low Na+concentration resulted in a hyperpolarization of the cells of 38.6+/-8.6 mV, n=8, followed by a repolarization after the superfusion had ceased (45.7+/-5.9 mV, n=4). KB-R7943 reduced the hyperpolarization and repolarization induced by a low extracellular Na+ concentration to 15.5+/-2.9 mV (n=7) and 0.2+/-3.4 mV (n=3), respectively. These results are consistent with the presence of a Na+/Ca2+ exchanger in rat peritoneal mast cells.

Amiloride↗

Effect of activated human mast cells and mast cell-derived mediators on proliferation, type I collagen production and glycosaminoglycans synthesis by human dermal fibroblasts.

Although an increased number of mast cells in fibrotic tissues such as scleroderma, keloid or healing wound has been highlighted, it is still unclear whether or not mast cells are fibrogenic. The aim of the present study is to determine whether functionally active human mast cells can provide human dermal fibroblasts directly with fibrogenic properties. In order to examine the effects of IgE-mediated mast cell activation on fibroblast proliferation and synthesis of type I collagen, we utilized an in vitro defined system in which cultured human mast cells were co-cultured with human dermal fibroblasts. We also employed a three-dimensional fibroblast culture system using supplementation of L-ascorbic acid as an assay system to investigate the effects of mast cell-derived mediators on synthesis of glycosaminoglycans by human fibroblast. Fibroblast proliferation was actively stimulated with IgE-activated mast cells. However, this stimulatory effect was canceled in co-cultures with a higher number of IgE-activated mast cells. In the presence of a higher number of activated mast cells, the fibroblast cell layer was destroyed, in contrast to an intact cell layer in the presence of same number of the mast cells without activation. Type I collagen synthesis was unchanged in fibroblasts co-cultured with mast cells. The total amount of main disaccharide units, particularly DELTADi-HA, was increased when fibroblasts were exposed to histamine. Thus, we conclude that other factors, in addition to mast cells, are important in the development of human tissue fibrosis or sclerosis.

Cell Division↗

Mast cell granules potentiate endotoxin-induced interleukin-6 production by endothelial cells.

Mast cells are constituent cells of vascular tissue and their numbers are increased in atherosclerotic vessels. To gain insight into the role of mast cells in vascular inflammation, the effect of mast cell granules (MCG) on endothelial cell production of interleukin-6 (IL-6) was examined. Human umbilical vein endothelial cells (HUVEC) were cultured with lipopolysaccharide (LPS) in the presence or absence of rat peritoneal MCG and IL-6 production was assayed by enzyme-linked immunosorbent assay. The interaction of MCG with HUVEC in culture was examined by electron microscopy (EM). The EM studies revealed that MCG are internalized by HUVEC and appear intact even after 24 h in culture. Unactivated HUVEC produced little or no IL-6 either in the presence or absence of MCG. Treatment of HUVEC with LPS stimulated IL-6 production in a dose- and time-dependent fashion. Addition of MCG to LPS-activated HUVEC-resulted in the potentiation of IL-6 production at all LPS doses. MCG-induced enhancement of IL-6 production was evident even at a mast cell-to-endothelial cell ratio of 1:32. The enhancement of IL-6 production by MCG was also seen when tumor necrosis factor alpha was used as an activator. Although potentiation was evident when MCG were added 6 h before or after LPS stimulation, the maximum effect was noted when MCG and LPS were added simultaneously. MCG-mediated enhancement of IL-6 production was abrogated by pretreating MCG with protease inhibitors. Although MCG proteases potentiate IL-6 production by HUVEC, they do not degrade secreted IL-6. These results demonstrate that MCG interact with endothelial cells and modulate the production of an important inflammatory cytokine.

Animals↗

p28, a novel IgE receptor-associated protein, is a sensor of receptor occupation by its ligand in mast cells.

Mast cells express the high affinity receptor for IgE (FcepsilonRI). Aggregation of this receptor by IgE and antigen leads to a signaling cascade resulting in the secretion of histamine, in the synthesis of other pro-inflammatory mediators such as leukotrienes and prostaglandins, and in the production of various cytokines, all of which participate in the development of the allergic reaction. In the last years, growing evidence accumulated that binding of IgEs to FcepsilonRI in itself induces active signals leading to mast cell survival, increased expression of FcepsilonRI, transient induction of histidine decarboxylase synthesis, and increased cell adhesion. The mechanisms underlying monomeric IgE signaling in the absence of receptor aggregation are still poorly understood. Here, we show that a protein of 28 kDa (p28) is physically and constitutively associated with FcepsilonRI in mast cells. Coimmunoprecipitation studies from (125)I surface-labeled cells demonstrated that this association involves at least 50% of membrane-expressed FcepsilonRI. After the addition of monomeric IgE to the cells, the p28.FcepsilonRI complex dissociates almost completely in less than 2 min. This dissociation is temperature-sensitive and is not due to the recruitment of additional proteins to the complex. Stripping bound IgE from the cells by acidic treatment promotes a rapid reassociation between p28 and FcepsilonRI. Altogether, these data are consistent with a conformational regulation of the complex. Thus, p28 is a sensor for FcepsilonRI occupation by IgE on mast cells, and its dissociation from the receptor could represent an early step of monomeric IgE signaling.

Animals↗

Cytokine secretion by human mast cells.

Mast cells have been traditionally viewed as effector cells of immediate-type hypersensitivity reactions. Besides this, mast cell activation and degranulation have been associated with various biologically and clinically important functions. Results of the past few years suggest that mast cells are involved in the development of late-phase reactions and influence other chronic inflammatory responses through the generation and secretion of various multipotential cytokines.

Cytokines↗

Prolonged effect of a single serotonin treatment in adult age on the serotonin and histamine content of white blood cells and mast cells of rats.

Hormonal imprinting was provoked by serotonin treatment in adult age. Three weeks after treatment with 100 microg serotonin, the serotonin and histamine content of peritoneal cells (mast cells, lymphocytes and the monocyte-macrophage-granulocyte group), white blood cells (lymphocytes, granulocytes and monocytes) and thymic lymphocytes was studied by flow cytometry. The content of both amines was significantly higher in the mast cells of males and lower in females. Blood lymphocytes contained a higher serotonin and histamine level in males, and a lower serotonin level in females. The peritoneal monocyte-macrophage-granulocyte group contained less serotonin in both males and females. Thymocytes contained higher levels of both amines in females and higher histamine level in males. The experiments demonstrate that a single treatment at adult age can provoke imprinting, which alters-in the present case-the serotonin and histamine content of immune cells durably.

Age Factors↗

Unique functional characteristics of mucosal mast cells.

Mast cells have been isolated from the intestine (IMC) of rats previously infected with the nematode, Nippostrongylus brasiliensis. Functional studies on IMC have shown that they are responsive to antigen and possess surface IgE but, in contrast to peritoneal mast cells (PMC), IMC are unresponsive to the basic secretagogues, 48/80 and bee venom peptide 401, and hyporesponsive to ionophores. Furthermore, sodium cromoglycate, AH9679 and theophylline inhibited secretion by PMC but not IMC, whereas doxantrazole inhibited secretion by both cells. Histochemical investigations established that there is mast cell heterogeneity in the human intestine as well as in the rat. Since GALT and BALT are important in intestinal mastocytosis it is important to determine whether the distinct functional properties of IMC reflect a distinct precursor population, inducer cell, or other factors in GALT or BALT.

Animals↗

Protective roles of mast cells and mast cell-derived TNF in murine malaria.

TNF plays important roles in the protection and onset of malaria. Although mast cells are known as a source of TNF, little is known about the relationship between mast cells and pathogenesis of malaria. In this study, mast cell-deficient WBB6F1-W/W(v) (W/W(v)) and the control littermate WBB6F1+/+ (+/+) mice were infected with 1 x 10(5) of Plasmodium berghei ANKA. +/+ mice had lower parasitemia with higher TNF levels, as compared with W/W(v) mice. Diminished resistance in W/W(v) mice was considered to be due to mast cells and TNF. This fact was confirmed by experiments in W/W(v) mice reconstituted with bone marrow-derived mast cells (BMMCs) of +/+ mice or of TNF-/- mice. W/W(v) mice with BMMCs of +/+ mice exhibit lower parasitemia and mortality accompanying significantly higher TNF levels than those of W/W(v) mice. Parasitemia in W/W(v) mice with BMMCs of TNF-/- mice was higher than that in +/+ mice. Activation of mast cells by anti-IgE or compound 48/80 resulted in release of TNF and decrease of parasitemia. In addition, splenic hypertrophy and increased number of mast cells in the spleen were observed after infection in +/+ mice and W/W(v) mice reconstituted with BMMCs of +/+ mice as compared with W/W(v) mice. These findings propose a novel mechanism that mast cells and mast cell-derived TNF play protective roles in malaria.

Animals↗

Amiloride-dependent transport is the main mechanism implicated in sodium influx regulation in rat mast cells.

Mast cell sodium regulation is a largely unknown field. In our effort to study the mechanisms by which mast cells regulate sodium levels, we have examined the effect of amiloride and ouabain on 22Na entry in rat mast cells in isotonic and hypertonic conditions. Ouabain (0.5 mM) enhances sodium uptake by 32% in isotonic conditions. Hypertonicity increases by 400% the uptake of sodium through an amiloride (1 mM) dependent mechanism. Ouabain has no appreciable effect on the entry of 22Na in hypertonic conditions.

Amiloride↗

Role of C3a and C5a in the activation of mast cells.

Mast cells and basophils are known to be triggered by allergens via cross-linking with their high-affinity IgE-binding receptors, Fc epsilon RI. The anaphylatoxic activity of the complement-derived peptides C3a and C5a has been known for a long time; however, it has also been reported that serosal- and mucosal-type mast cells respond differently to peptidergic stimuli. The mechanism of mast cell activation by cross-linking of Fc epsilon RI has been the subject of intensive studies in the past few years, while the action mode of the anaphylatoxic complement peptides has been revealed only recently. We report about a novel function of C3a: its inhibitory activity on IgE-mediated triggering of the mucosal RBL-2H3 cells. Surprisingly, the other anaphylatoxic peptide C5a, which has been shown to be significantly more effective in several biological assays, did not influence antigen-induced triggering of the RBL-2H3 cell line at all.

Animals↗

Diphenyleneiodonium prevents reactive oxygen species generation, tyrosine phosphorylation, and histamine release in RBL-2H3 mast cells.

Mast cells play a central role in immediate allergic reactions mediated by immunoglobulin E. It has recently been reported that mast cells generate intracellular reactive oxygen species (ROS) in response to stimulation with divergent physiologically relevant stimulants. However, the physiological role of ROS is poorly understood. Here we demonstrate that mast cell model rat basophilic leukemia (RBL-2H3) cells generate ROS in response to antigen and the calcium-ionophore A23187 via activation of diphenyleneiodonuim (DPI)-sensitive enzyme and that blockade of ROS generation by DPI suppresses histamine release induced by either stimulant. Increased tyrosine phosphorylation of pp125(FAK) and a 77-kDa protein coprecipitating specifically with the kinase occurred in parallel with the secretion, and blockade of ROS generation by DPI also suppressed the tyrosine phosphorylation of both proteins. These findings suggest that ROS generated by a flavoenzyme-dependent mechanism may be involved in histamine release through the pp125(FAK) pathway.

Animals↗

The biology of the mast cell.

Mast cells are ancient, versatile immune effector cells. On the one hand, they are endowed with unique effector capabilities and activation responses that initiate innate immunity to bacteria and are essential to host defense against helminthic parasites. On the other hand, they are the major effector of type I hypersensitivity and an important participant in a number of disease processes. This review focuses on the mechanisms of mast cell development, the cytokine control of this process, and the amplification of mast cell effector systems as an important determinant of disease.

Antigen-Presenting Cells↗