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The selective localization of B lymphocytes in the spleen and the role of complement receptors.

The role of complement receptors on the localization of T and B cells in the spleen of mice was studied using short-term homing experiments in cobra venom factor (CoF)-treated animals. The localization ratio of B and T cells in the spleen of CoF-treated mice decreased significantly compared to control recipients. No changes could be found in the relative distribution of resident T and B cells in the spleen or other lymphoid organs of CoF-treated animals and when their spleen or lymph node cells were transferred, the localization pattern was normal. When cells were incubated in serum prior to transfer a disturbed localization ratio in the spleen of untreated recipients was observed. This was due to a blockade of complement receptors as determined by the inability of the incubated cells to form EAC rosettes. No blockade of EAC rosettes and no changes in localization ratios upon transfer could be observed when the cells were incubated in functionally C3-depleted serum. The results suggest a role for the complement-receptor on B cells in the initial localization in the spleen, whereas no influence upon the selective localization in high endothelial venules-bearing organs was found.

Animals

Modulation of neutrophil expression of C3b receptors (CR1) by soluble monomeric human C3b.

Upon incubation at 37 degrees C with purified human C3b (500 micrograms/ml), polymorphonuclear neutrophils (PMN) were found to express up to 50% more C3b receptors (CR1) than PMN incubated with buffer alone. This up-regulation of CR1, assessed by the binding of radiolabeled CR1-specific monoclonal antibody, was dependent on the dose of C3b, occurred within 10-20 min and was stable for at least 90 min. PMN incubated with C3b also demonstrated enhanced CR1-dependent binding functions, such as EC3b rosette formation and phagocytosis of EIgGC3b particles. C3b at a concentration of 500 micrograms/ml induced up to 90% increase in the attachment or the phagocytic index. However, CR1 remained unable to promote phagocytosis of EC3b intermediates. Fc receptor-mediated functions were unaffected by the treatment with C3b. The active factor was characterized as monomeric C3b and, in particular, shown to be distinct from C5a. C3b purified by anion-exchange fast protein liquid chromatography on a Mono Q column or eluted from a monoclonal anti-C3b-Sepharose retained its modulating activity, while native C3 or C3 fragments such as iC3b, C3c or C3d,g were ineffective.

Antibodies, Monoclonal

Chronic experimental autoimmune encephalomyelitis induced by the 89-101 myelin basic protein peptide in B10RIII (H-2r) mice.

Development of experimental allergic encephalomyelitis (EAE) in the SJL (H-2s) mice is associated with a T cell-dependent autoimmune response to the C-terminal part of the myelin basic protein (MBP). In this study the influence of both H-2 and non-H-2 genetic background on EAE induced with the MBP89-101 peptide is described. Analysis of different H-2q haplotype strains, B10G, B10Q, SWR and NFR/N, showed that the B10 background is relatively resistant to disease induction. Both SWR and NFR/N were susceptible to EAE showing that the H-2q haplotype is permissive for EAE development induced with MBP89-101 and that the T cell receptor (TcR) haplotype or complement C5 deficiency exert no significant influence on disease susceptibility. In a series of H-2-congenic strains on the B10 background only B10RIII (H-2r) mice were susceptible to EAE. The B10RIII mice developed a severe EAE with early onset and chronic progressive or relapsing course of disease. In addition, B10RIII mice treated with Freund's complete adjuvant and pertussis toxin alone showed an early monophasic disease. The clinical observations were confirmed by immunohistopathologic analysis of the central nervous system. In these studies, we also applied antibodies to different TcR V beta elements which showed no specific limitation of the used TcR among infiltrating T cells in the target tissue in any of the strains. It is concluded that an MBP peptide-specific disease can be induced in three different haplotypes and it is possible that shared structures between the As, Aq and Ar molecules are of importance for the trigger of encephalitogenic T cells with different TcR V elements. The presently described chronic EAE model induced in the B10RIII mice will be of value as a model for multiple sclerosis.

Adjuvants, Immunologic

Elevation of chemotactic factor inactivator in alcoholic liver disease.

Defective regulation of neutrophil chemotaxis occurs in patients with alcoholic liver disease. One potent mediator of neutrophil chemotaxis is the complement-derived neutrophil chemoattractant, C5a, which can be inhibited by a serum protein, chemotactic factor inactivator. We hypothesized that chemotactic factor inactivator elevation might, in part, explain the defective neutrophil chemotaxis seen in patients with alcoholic hepatitis. To test this hypothesis, sera were collected from 22 patients with alcoholic hepatitis and 9 normal controls, and evaluated for the antigenic presence of chemotactic factor inactivator using an ELISA test. Chemotactic factor inactivator levels were found to be markedly elevated in patients with alcoholic hepatitis (162 +/- 24 micrograms per ml) compared to normals (60 +/- 3 micrograms per ml, p less than 0.01). Subdividing the hepatitis patients revealed that the elevation of chemotactic factor inactivator was found to be greatest in those patients with mild alcoholic hepatitis (prothrombin time within normal limits and bilirubin less than or equal to 5 mg per dl, 256 +/- 44 micrograms per ml, p less than 0.001), while the group with the severest hepatic dysfunction (prolonged prothrombin time and bilirubin greater than 5 mg per dl) did not differ significantly from controls (71 +/- 11 micrograms/ml, p less than 0.2). Importantly, the inhibition of C5a-induced chemotactic activity by partially purified chemotactic factor inactivator correlated with antigenic amounts of chemotactic factor inactivator in serum (r = 0.63, p less than 0.05). The C5a inhibitory activity in sera obtained from patients with alcoholic hepatitis coprecipitated with chemotactic factor inactivator when serum was precipitated by ammonium sulfate precipitation (45 to 64% saturation).(ABSTRACT TRUNCATED AT 250 WORDS)

Aminopeptidases

Effect of leukocyte activation on the formation of heterotypic tumor-cell aggregates in vitro.

Walker tumor cell (1 x 10(6) cells/ml) were incubated at 37 degrees C in a stirred cuvette with rat peritoneal exudate cells (9 x 10(6) cells/ml) with or without the synthetic leukocyte chemo-attractant fMLP (2 x 10(6) M) or biologically active concentrations of the major endogenous chemo-attractant, C5a. Aggregation, induced by the chemo-attractants, was detected after 3 min by a platelet aggregometer and by studying cytocentrifuge preparations. The response was amplified in the presence of cytochalasin B (5 micrograms/ml). Tumor cells could be identified in the aggregates by their morphology or by autoradiography after labeling with 3H-thymidine. Although tumor cells were incorporated into the leukocyte aggregates, there was no appreciable change in the number of aggregates formed between tumor cells themselves. Levine III human breast tumor cells (1 x 10(6)/ml) in heparinized human blood were incorporated into leukocyte aggregates within 30 min of adding 50 U cobra venom factor to activate complement. Aggregation correlated with a decrease in complement hemolytic activity (CH50). The aggregation reaction was not cytotoxic to tumor cells when evaluated by Trypan blue exclusion or by 51Cr release. We conclude that local tumor cells can be incorporated into aggregates formed when leukocytes are stimulated by chemo-attractants. We postulate that intravascular activation of neutrophils might affect the localization of circulating tumor cells by incorporating them into microembolic cell aggregates and by causing damage to the pulmonary endothelium.

Animals

Serotherapy of cancer: cellular changes in primary rat mammary carcinomas after infusion of syngeneic sera absorbed with protein A-Sepharose.

Serotherapy and plasma therapy have proved to be effective in the treatment of diverse neoplasms. The mechanisms of the tumoricidal or growth-inhibitory effects are unknown. We previously reported that activation of the alternative pathway of complement in absorbed sera correlated with the presence of anti-tumor activity. Complement components generated during absorption may serve as the initial mediators of cytotoxicity; for example, C5a may function in its role as a chemo-attractant. To further investigate the anti-tumor mechanisms, we undertook a series of sequential histological studies of in vivo changes in tumors following i.v. serotherapy. We found diffuse inflammatory cellular infiltrates in the interstitial compartments of primary mammary carcinomas of rats within 3-4 hr of administration of protein A-Sepharose absorbed syngeneic serum. The number of inflammatory cells was significantly higher in tumors from treated rats: total infiltrating cells (p = 0.002), eosinophils (p = 0.001), neutrophils (p = 0.001), macrophages (p = 0.001), lymphocytes (p = 0.004) and plasma cells (p = 0.001). Also, the mitotic index of tumor cells was significantly lower 4 hr after serotherapy when compared with that of untreated rat tumor cells. C3 in tumor tissue was decreased at 4 hr following serotherapy. Fibrosis was present in tumor nodules with retarded growth 5 weeks after the start of serotherapy. Localization of the infiltrating cells to tumor interstitial compartments prevents direct contact between inflammatory cells and neoplastic cells, making it unlikely that direct cell-cell killing occurs. Indirect cell killing within the tumor bed apparently occurs through several mechanisms involving interactions between serotherapy-initiated humoral mediators and inflammatory cells. The resulting anti-tumor effects include microvascular injury leading to localized ischemia, tumor infarction, and fibroblastic reactions obstructing tumor invasion and growth.

Animals

Reduction in complement activation from biomaterials by removal of air nuclei from the surface roughness.

The activation of the rabbit complement system by each of three different synthetic materials is reported. Samples of each type of material were subjected to one of two different priming procedures. One priming procedure was intended to remove the air nuclei from the surface roughness of the materials; the other procedure was just the normal one. It was found that the removal of the air nuclei during priming reduced the complement activation by each of the two materials of lower surface tension, but not by a statistically significant amount for the material of highest surface tension, cellophane. For the denucleated samples of the three materials, the amount of complement activation was found to correlate with the critical surface tension of the materials; if the samples of the materials were normally primed, there was no correlation of the amount of complement activation with the critical surface tension of the material.

Air

Vascular graft-associated complement activation and leukocyte adhesion in an artificial circulation.

Complement-associated leukocyte adhesion appears to be a consistent in vitro and in vivo finding for many types of polymers; however, very little work has been done on the interaction of leukocytes with vascular graft materials. An in vitro perfusion system was used to study complement and leukocyte activation associated with the following vascular graft materials when tested with human blood: expanded polytetrafluoroethylene (ePTFE), crimped Dacron Bionit (DB) and preclotted Dacron Bionit. A decrease in the total leukocyte concentration with perfusion time was seen for all materials tested, and paralleled leukocyte adhesion to the graft surface as observed by scanning electron microscopy. The most dramatic decrease in leukocyte concentration was observed for the interaction of heparinized whole blood with Dacron. This was due to a selective decrease in neutrophils and monocytes, and was correlated with an increase in both leukocyte adhesiveness and complement activation, as measured by C5a elevation. Inhibiting complement activation by use of the anticoagulant, sodium citrate, curtailed Dacron-induced leukocyte adhesion. Little leukocyte or complement activation was observed for ePTFE or the silicone rubber control regardless of the anticoagulant used.

Adult

Neutrophil degranulation: evidence pertaining to its mediation by the combined effects of leukotriene B4, platelet-activating factor, and 5-HETE.

Stimulus-activated polymorphonuclear neutrophils (PMN) produce leukotriene B4 (LTB4), 5-hydroxyeicosatetraenoate (5-HETE), and platelet-activating factor (PAF). Each of these lipids promotes PMN degranulation; in combination they have additive and potentiating effects that result in prominent degranulation responses at relatively low concentrations. Thus, the combined interactions of LTB4, 5-HETE, and PAF may mediate responses in PMN activated by other stimuli. This possibility was examined by measuring the responses of PMN made insensitive to one or more of these lipids. Cells were pretreated with LTB4, 5-HETE, and/or PAF for 8 min; exposed for 2 min to cytochalasin B (which is required for lipid-induced degranulation); and then challenged. PMN challenged with only buffer released minimal amounts of granule-bound enzymes. Furthermore, the lipid-pretreated cells were hyporesponsive to challenge with 1) various combinations of these same lipids or 2) ionophore A23187. The relative potencies of the lipids in producing hyporesponsiveness to themselves or A23187 were: 5-HETE less than PAF less than or equal to LTB4 less than PAF + LTB4 less than PAF + LTB4 + 5-HETE. For both types of challenge, reduced responsiveness occurred in cells pretreated with greater than 0.1 nM LTB4 and/or greater than 0.2 nM PAF, persisted in cells washed after lipid pretreatment, and did not develop in cells pretreated with various combinations of bioinactive structural analogues of the lipids. Thus, PAF, LTB4, and 5-HETE interacted to desensitize PMN, and the degranulating actions of A23187 required cells that were fully responsive to each of the three lipids. This supports the concept that the lipids act together in mediating certain of the ionophore's effects. However, lipid-desensitized PMN degranulated fully when challenged with C5a, a formylated oligopeptide, or phorbol myristate acetate. Degranulation responses, therefore, may proceed through various pathways, only some of which involve the lipid products studied here.

Animals

Production of C5a antagonist by synovial and peritoneal tissue fibroblasts.

Fibroblasts grown from synovial and peritoneal tissues release into the medium an inhibitor of neutrophil chemotaxis. The inhibitor resembles the antagonist previously described in synovial and peritoneal fluids. It is a heat stable (56 degrees C) protein of MW approximately 40 kDa that counteracts the chemotactic activity of zymosan-activated serum or purified C5a but not the peptide chemoattractant F-met-leu-phe. No chemotactic inhibitor was detected in media from skin fibroblast cultures or in formal human sera. It is suggested that the inhibitor is produced locally by synovial and peritoneal fibroblasts and that it might play a role in the regulation of inflammation at sites lined with mesothelium.

Chemotactic Factors

Thrombin chemotactic stimulation of HL-60 cells: studies on thrombin responsiveness as a function of differentiation.

Thrombin, a major procoagulant enzyme and growth factor, is also selectively chemotactic for monocytes and macrophages but not for neutrophils. This effect stands in contrast to other well-known chemotactic agents such as fMet-Leu-Phe, C5a fragments, and LTB4, which stimulate directed cell movement in both cell types, and have important physiological implications. The human leukemic cell line HL-60, which is capable of differentiating either along granulocytic or monocytic lineages, was therefore used to explore the development of this selective monocyte/macrophage chemotactic response to thrombin. Esterolytically inactive DIP-alpha-thrombin, as well as the thrombin-derived chemotactic peptide CB67-129, elicits a dose-dependent chemotactic response in HL-60 cells differentiated to monocytelike cells by treatment with 1,25(OH)2D3 (HL-60/mono), whereas no such response is evident in either undifferentiated HL-60 cells or in cells differentiated into granulocytes by treatment with DMSO (HL-60/gran). Similarly, early events which characterize stimulation of inflammatory cells by chemotactic agents are also evident, but only in monocyte-differentiated cells. In HL-60/mono, thrombin selectively stimulates rapid cytosolic Ca2+ elevation as well as rapid cytoskeletal association of cytosolic actin. Following thrombin stimulation, maximal actin association in these cells occurs within 30 sec (declining to basal levels at the end of 5 min), and maximal Ca2+ elevations are also evident within 15-20 sec, suggesting a temporal relationship between these two events. Thus, the events accompanying stimulation of HL-60/mono by thrombin are characteristic of those seen following stimulation of inflammatory cells by chemotaxins, with a major difference being the selectivity of thrombin as a chemotaxin for cells of macrophage/monocytic lineage. The selective chemotactic responsiveness of HL-60/mono to thrombin appears to relate to the development of specific receptors on these cells as part of monocytic differentiation: HL-60/mono (but HL-60/gran nor undifferentiated HL-60) are capable of significant specific 125-I-labeled alpha-thrombin-binding (ka approximately 20 nM), and possess an estimated 400,000 thrombin-binding sites per cell. Our findings further suggest that the thrombin response of HL-60 and particularly the expression of thrombin receptors on these cells may serve as a useful model system for exploring the biology of monocyte/macrophage differentiation.

Actins

Analysis of human monocyte chemoattractant binding by flow cytometry.

The chemotactic peptide fMet-Leu-Phe-Lys is a potent chemoattractant for human blood monocytes. However, only one-third of the monocytes respond. To determine whether or not lack of response reflected absence of attractant receptors, we equilibrated peripheral blood mononuclear cells with fMet-Leu-Phe-Lys-FITC and analyzed binding by flow cytometry. The fluoresceinated peptide bound rapidly at 0 degree C, and the amount bound approached saturation with increasing concentration. The percentage of blood monocytes that bound the peptide was 60 +/- 8 (SEM for seven experiments). In contrast, only 36 +/- 3% (SEM for 16 experiments) of monocytes responded to the attractant by directed migration. It follows that, among the 64 nonmigrating monocytes per 100 total monocytes, approximately 40, or two-thirds of them, fail to bind attractant; the remaining one-third bind attractant but do not respond with directed movement.

Chemotaxis, Leukocyte

Modulation of neutrophil-reduced pyridine nucleotide content following stimulation with phorbol myristate acetate and chemotactic factors.

Modulation of NAD(P)H in human neutrophils (PMN) following stimulation with phorbol myristate acetate (PMA) or chemotactic factors was determined by flow cytometry. Stimulation of PMN with 1 microgram/ml of PMA results in a time-dependent decrease in fluorescence, attributable to the oxidation of NAD(P)H. The decrease in fluorescence did not occur with PMN from a patient with chronic granulomatous disease (CGD) and was observed in only half of PMN from the mother of the patient. Loss of fluorescence in normal PMN was maximal following 7-15 min of stimulation with PMA. Simultaneous measurement of PMA-stimulated NAD(P)H oxidation and H2O2 production showed that NAD(P)H oxidation occurred as an all-or-none response while H2O2 production showed a graded response. These data suggest that with PMA stimulation, a threshold exists beyond which constitutive NAD(P)+ reduction is suppressed and complete oxidation of NAD(P)H occurs, while H2O2 production is proportional to the concentration of PMA. PMA-stimulated oxidation of NAD(P)H was reversible, and fluorescence returned to the initial level or higher after 40-60 min. Oxidation of NAD(P)H also occurred when cytochalasin B-treated PMN were stimulated with 25 nM C5a or 100 nM formyl-methionyl-leucyl-phenylalanine (f-MLP), but occurred more rapidly, peaking at 1 to 3 min. Fluorescence also returned by 5-6 min. This response to C5a and f-MLP was graded and proportional to the concentration of chemotactic factor used. Comparative studies showed that the cytochalasin-B treatment was essential for measurement of NAD(P)H oxidation, in response to C5a and F-MLP.

Complement C5

Induction of chemotaxis in mouse peritoneal macrophages by activators of protein kinase C.

Two activators of calcium and phospholipid dependent protein kinase (protein kinase C), the tumor promoter, 12-O-tetradecanoyl-phorbol-13-acetate (TPA) and the synthetic diacylglycerol, 1-oleoyl-2-acetylglycerol (OAG), were compared as chemotactic agents for mouse peritoneal macrophages. Both of these compounds were found to induce chemotaxis in the macrophages to a similar extent in a time and dose dependent manner. Induction of chemotaxis was observed in the concentration range of 10-100 nM for TPA and 25-250 microM for OAG. Two structurally related synthetic sn 1,2-diacylglycerols, 1,2-dioctanoylglycerol (diC8) and 1,2-didecanoylglycerol (diC10), were also found to be chemotactic for macrophages, while monoacylglycerol (2-monoolein) was inactive. Of the diacylglycerols, OAG was found to be the most active followed by diC8 and diC10. In contrast to TPA, the synthetic diacylglycerols had no effect on superoxide anion release by the cells, suggesting that the mechanism of superoxide anion release by TPA in macrophages is distinct from chemotaxis. Phorbol-12,13-diacetate, a biologically inactive phorbol ester analog that inhibits the binding of TPA to its cellular receptors, inhibited macrophage chemotaxis induced by TPA, the synthetic diacylglycerols, and the complement fragment, C5a. Taken together, our results suggest that chemotaxis in macrophages may be mediated by activation of protein kinase C.

Animals

Bacterial lipopolysaccharide enhances chemoattractant-induced elastase secretion by human neutrophils.

Bacterial lipopolysaccharide (LPS) has previously been shown to enhance a number of chemoattractant-induced responses by human neutrophils. The possible role of elastase, a neutral protease with broad substrate specificity, in neutrophil-mediated vascular injury of a variety of diseases prompted us to examine a) whether or not LPS enhances the direct chemoattractant-induced secretion of elastase, b) the quantitative requirements of LPS and chemotactic factors, and c) some structural requirements of LPS for this effect. Our results show that LPS at 10 ng/ml and above, enhanced formyl-methionyl-leucyl-phenylalanine-induced neutrophil secretion of elastase, as well as secretion of myeloperoxidase and vitamin B12-binding protein. This effect was independent of cytochalasins or surface stimulation, and thus may occur during chemotactic factor stimulation in vivo. LPS also enhanced neutrophil secretory responses to the complement fragments C5a, C5a des arg, and, to a lesser degree, to leukotriene B4 and platelet-activating factor. This enhancement effect appeared to require the presence of the lipid A moiety and/or parts of the core polysaccharide but not the O-antigen portion of the LPS molecule. Our findings identify a possible LPS-dependent mechanism of neutrophil elastase-mediated tissue injury in Gram-negative infections.

Antigens, Bacterial

Functional and biochemical properties of rat Kupffer cells and peritoneal macrophages.

Functional and biochemical techniques were used to further characterize heterogeneity between rat Kupffer cells and peritoneal macrophages. Both macrophage cell types were found to phagocytize antibody coated sheep red blood cells in a time-dependent manner. However, Kupffer cells were two to three times more phagocytic than were peritoneal macrophages. In contrast, the peritoneal cells released significantly more superoxide anion in response to the complement cleavage product, C5a and the phorbol ester tumor promoter, 12-0-tetradecanoyl-phorbol-13-acetate, and produced more hydrogen peroxide than did the liver macrophages. Both cell types responded chemotactically to C5a. These results suggest that macrophages may develop specialized functions depending on the needs of their local environment. Using one and two dimensional SDS-polyacrylamide gel electrophoresis, we also compared the production of newly synthesized proteins by Kupffer cells and peritoneal macrophages. In general, the macrophages were found to produce similar types and numbers of proteins with some exceptions. These included proteins that were unique to peritoneal macrophages and other proteins observed only in Kupffer cells. The production of these proteins in liver macrophages did not appear to correlate with levels of functional activation, but may be more related to the tissue origin of the cells.

Animals

In vivo neutrophil emigration in response to interleukin-1 and tumor necrosis factor-alpha.

The migration of polymorphonuclear leukocytes (PMN) in response to recombinant interleukin-1 (IL-1), tumor necrosis factor-alpha (TNF), C5a, and f-met-leu-phe-lys (FMLPL) in vivo was studied using a mouse subcutaneous sponge implantation model. In this model sponges were implanted in C3H/OUJ mice, and 2 days later they were injected with the test sample. After varying times, sponges were removed and digested with collagenase, and total cell counts and differentials were enumerated. IL-1 was found to stimulate a significant influx of PMN, which peaked at 6 hr and declined to near baseline levels by 24 hr. This response was dose-dependent, with the greatest response observed when 5 units of IL-1 were injected. When the IL-1 concentration was increased to 10 U, the total number of PMN migrating into the sponge was decreased, compared with that observed with 5 U of IL-1. The overall number of PMN migrating into the sponge 6 hr after injecting 5 U of IL-1 averaged 269% of the number of PMN migrating randomly into the sponge. No difference in the total number of macrophages or lymphocytes in control or IL-1-injected sponges was observed in this time frame. Heat treatment of the IL-1 at 90 degrees C for 30 min ablated the response. Similar studies with TNF and C5a showed that both of these agents also stimulated an influx of PMN that peaked 6 hr postinjection. In contrast, FMLPL did not stimulate a PMN response. When IL-1 and TNF were injected simultaneously, an additive response was observed. These data indicate that IL-1, TNF, and C5a can all stimulate a PMN response in vivo and support the hypothesis that these substances are actively involved in the mobilization of PMN to inflammatory sites in vivo.

Animals

Differential release of mediators from human basophils: differences in arachidonic acid metabolism following activation by unrelated stimuli.

We have examined the release of histamine and LTC4 from purified human basophils challenged with several different stimuli, both physiological and nonphysiological. Basophils (n = 16) challenged with 0.1 micrograms/ml anti-IgE released 38 +/- 4% of their available histamine and 39 +/- 12 ng LTC4/10(6) basophils within 15-30 min. F-Met peptide (n = 8) caused the release of 54 +/- 8% histamine and 42 +/- 25 ng LTC4/10(6) basophils within a period of 2-5 min. C5a caused the release of 22 +/- 3% histamine from selected donors but failed to initiate any LTC4 release unless combined with D2O or 5 mM extracellular calcium. The two nonphysiological stimuli A23187 and TPA caused extensive histamine release, 67 +/- 8 and 82 +/- 11%, respectively, and while A23187 initiated a large and rapid release of leukotriene, TPA failed to release any LTC4 even when combined with D2O or 2-5 mM extracellular calcium. Increased concentrations of extracellular calcium enhanced anti-IgE and f-Met peptide induced release of LTC4 but inhibited the A23187 induced release of leukotriene. A single peak of immunoreactive leukotriene C4 that comigrated with the authentic standard was identified using HPLC followed by radioimmunoassay. No LTD4 or LTE4 could be detected. Purified human basophils incubated with 0.2 microM [3H]AA incorporated 290 pmol/10(6) cells, or 32 +/- 5% of the available label within 60 min. The [3H]AA was taken principally into the phospholipids (73 +/- 5%), with 20 +/- 3% as neutral lipid, and only 5 +/- 2% remaining as the free acid. Three phospholipid subclasses, phosphatidylcholine, PC (24 +/- 2%), phosphatidylinositol, PI (22 +/- 1%), and phosphatidylethanolamine, PE (15 +/- 3%), accounted for the majority of the incorporated [3H]AA while the remainder of the phospholipids accounted for less than 5% of the total cpm. HPLC analysis of the lipid mediators released during stimulation with 0.1 micrograms/ml anti-IgE revealed [3H]LTC4 (2.4 +/- 1.0%), [3H]5HETE (1.0 +/- 0.1%), unmetabolized [3H]AA (91 +/- 2%), and an unidentified peak (3.4 +/- 1.4%). The unknown metabolite eluted with the prostaglandins, was inhibited by indomethacin, and appeared to have a relatively high specific activity. It may thus represent an artifact of the labeling procedure rather than a novel basophil-derived prostaglandin.

Arachidonic Acids