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T Meshulam

Publications and source records attributed to T Meshulam.

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Flow cytometric kinetic measurements of neutrophil phospholipase A activation.

The interrelationships between activation of phospholipases and neutrophil stimulus-induced Ca2+ responses remain unclear. We report here that immune complexes activate a phosphatidylcholine-specific phospholipase A in a neutrophil only after the cytoplasmic Ca2+ transient has been initiated in the same cell, while chemotactic peptide activation does not proceed via such a phospholipase A-mediated mechanism. Measurements of [Ca2+] changes and of phosphatidylcholine-specific phospholipase A activity were made by flow cytometry, using Indo-1 for Ca2+ indication, and a new fluorescent probe, bis-BODIPY-phosphatidylcholine, localized in the inner leaflet of the plasma membrane, to measure phospholipase A activation. Both 100 nM formyl-methionyl-leucyl-phenylalanine (with or without cytochalasin B) and 60 micrograms/ml insoluble immune complexes elicited cytoplasmic Ca2+ transients, but only insoluble immune complexes stimulated phospholipase A activation in a subpopulation of cells exhibiting an elevation of [Ca2+]in. Phospholipase A activation followed the Ca2+ transient, starting, in each cell, after [Ca2+]in had begun to decrease as Ca2+ redistributed in the activated cell. The products of this phospholipase activation were confirmed by thin layer chromatography. We conclude that neutrophils respond to immune complexes with an elevated cytoplasmic Ca(2+)-requiring phosphatidylcholine-specific phospholipase A activation and to chemotactic peptides by a different mechanism.

Boron Compounds

In vitro, Candida albicans releases the immune modulator adenosine and a second, high-molecular weight agent that blocks neutrophil killing.

We previously described a lyophilized supernatant from germinated Candida albicans that blocks human neutrophil (PMN) O2- production and degranulation stimulated by several PMN agonists but does not block stimulation by PMA. In studies to further characterize this Candida hyphal inhibitory product (CHIP), we noted several physicochemical parallels with the purine nucleoside adenosine (Ado). A Sephadex G-10 semipurified fraction of CHIP had an absorption peak near 260 nm, an apparent m.w. of less than 400, and was resistant to boiling and proteases. Maximally effective doses of CHIP (100 micrograms/ml) and Ado (100 microM) blocked 0.1 microM FMLP-stimulated O2- production by 76.8 +/- 4.1 and 81.7 +/- 4.8%, respectively. Ado deaminase, known to inactivate Ado, reversed inhibition by both Ado and CHIP. Results were comparable for the effect of CHIP and Ado on FMLP-stimulated beta-glucuronidase and lactoferrin release. Activation of the respiratory burst by opsonized C. albicans yeast was also inhibited by CHIP and Ado, but the extent of inhibition was less than for FMLP. At yeast:PMN ratios of 4:1, 10:1, and 40:1, CHIP inhibited O2- by -3.8%, 14.3%, and 12.8%, respectively; Ado blocked production by 32.9%, 24.2%, and 11.5%, respectively. The effect of CHIP and Ado on Candida killing by PMN was compared using two viability assays in each of four experiments. Ado (100 microM) had no effect on killing, although CHIP (100 micrograms/ml) inhibited killing in the MTT assay at 15 and 45 min by 81.6 +/- 6.3 and 24.7 +/- 6.2%, respectively; as assayed by CFU, CHIP inhibited killing by 34.1 +/- 6.2 and 10.3 +/- 2.5%, respectively. The ability of CHIP to inhibit killing was not affected by adding Ado deaminase, providing additional evidence that an Ado-like effect by CHIP is not essential for killing inhibition. Killing of opsonized Streptococcus pneumoniae was also inhibited in a concentration-dependent manner. Reverse-phase HPLC of the semipurified fraction revealed a peak, eluting identically to authentic Ado, which was eliminated by adding Ado deaminase. Ado content of the G-10 fraction was sufficient to account fully for the FMLP-inhibitory activity. The antikilling activity was resistant to boiling and proteases but was eliminated by mild periodation. Fractions eluting from a Sephadex CL6B column between 0.8 and 2.0 x 10(6) m.w. had increased sp. act. for killing inhibition. Sp. act. increased as carbohydrate content increased, but killing inhibition by various Candida cell wall constituents was absent to modest compared to inhibition induced by CHIP.(ABSTRACT TRUNCATED AT 400 WORDS)

Adenosine

Effect of cilofungin (LY121019), a fungal cell wall synthesis inhibitor, on interactions of Candida albicans with human neutrophils.

The effects of cilofungin, a lipopeptide antifungal agent active against several species of Candida, on human neutrophil candidacidal activity were investigated. While no increase or decrease in neutrophil killing of blastospores was observed when cilofungin was simultaneously incubated with neutrophils and yeasts, preincubation of yeasts with serum containing cilofungin resulted in approximately 90% decrease in killing of five of six strains. Attachment/phagocytosis of these strains was unchanged from controls. We conclude that cilofungin interferes with opsonization of most strains of C. albicans, resulting in a marked decrease in neutrophil candidacidal activity, a phenomenon which may be of significance in vivo in certain tissues where access to antibodies and/or complement is limited.

Antifungal Agents

Defective leukocyte fungicidal activity in end-organ resistance to 1,25-dihydroxyvitamin D.

Recent studies have shown 1,25(OH)2D3 receptor-mediated modulation of leukocyte proliferation, differentiation, and function. We examined the phagocytosis and killing of microorganisms by neutrophils and monocytes from five patients of three families with hereditary resistance to 1,25(OH)2D3. Phagocytosis of microorganisms by patients' neutrophils and monocytes was normal. However, defective neutrophil killing activity toward Candida albicans (30-40% of controls) was found in all patients. The killing of Staphylococcus aureus was normal. The neutrophil chemiluminescence, nitroblue tetrazolium (NBT) dye reduction, and the generation of superoxide ions and hydrogen peroxide by neutrophils and monocytes after induction by either soluble stimuli or zymozan particles, did not differ from those in controls. The neutrophil myeloperoxidase activity was also normal. Monocytes obtained from two patients of different families before long-term calcium infusion therapy and after they became normocalcemic, demonstrated a similar impaired fungicidal activity toward Saccharomyces cerevisiae, indicating that hypocalcemia itself was not the cause of the killing defect. However, the addition of the Ca+2 ionophore A23187 (1 microM) to the test medium restored the monocyte fungicidal activity to normal. As patients' neutrophil cytosolic free calcium concentration was similar to that in controls, it is suggested that 1,25-(OH)2D3 exerts its effect on leukocyte function by a putative receptor-mediated regulation of subcellular calcium localization which may be important for fungicidal activity.

Calcitriol

Temporal association of calcium mobilization, inositol trisphosphate generation, and superoxide anion release by human neutrophils activated by serum opsonized and nonopsonized particulate stimuli.

We have investigated the involvement of phospholipase C mediated polyphosphoinositide turnover in activation of polymorphonuclear leukocytes by particulate stimuli. Results showed that stimulation of leukocytes with serum opsonized zymosan (ingestible particle), serum opsonized Candida albicans hyphae (noningestible particle), or nonopsonized hyphae was followed by a transient rise in cellular inositol phosphates as has been described for neutrophil activation via the formyl peptide receptor. The kinetics of inositol trisphosphate generation paralleled both the time course of changes in cytosolic calcium concentration and the onset of superoxide anion generation, suggesting that these may be related events.

Calcium

Clostridium difficile toxin A stimulates intracellular calcium release and chemotactic response in human granulocytes.

Clostridium difficile, a common enteric pathogen, mediates tissue damage and intestinal fluid secretion by release of two protein exotoxins: toxin A, an enterotoxin, and toxin B, a cytotoxin. Because toxin A elicits an intense inflammatory reaction in vivo, we studied the effects of highly purified C. difficile toxins on activation of human granulocytes. Toxin A at concentrations of 10(-7) to 10(-6) M, but not toxin B, elicited a significant chemotactic and chemokinetic response by granulocytes that was comparable with that induced by the chemotactic factor N-FMLP (10(-7) M). Neither toxin stimulated release of superoxide anion from granulocytes. Toxin A produced a rapid, transient rise in cytosolic [Ca2+]i, as measured by quin 2 fluorescence. Pertussis toxin and depletion of intra- and extracellular calcium blocked the toxin A effect on cytosolic [Ca2+]i. These findings suggest that the inflammatory effects of C. difficile toxin A in the intestine may be related to its ability to mobilize intracellular Ca2+ and elicit a chemotactic response by granulocytes.

Bacterial Toxins

Effects of recombinant human granulocyte and macrophage colony-stimulating factors on signal transduction pathways in human granulocytes.

We studied the ability of the recombinant human-active hemopoietic growth factors granulocyte-macrophage colony-stimulating factor (GM-CSFrh) and granulocyte colony-stimulating factor (G-CSFrh) to activate receptor-mediated transduction pathways which have been implicated in the stimulation of cytotoxic functions in granulocytes. With the use of a panel of fluorescent probes, we found that these two growth factors exerted no detectable immediate effect on the resting transmembrane electrical potential, the intracellular concentration of free calcium ions, or the cytosolic pH of isolated, mature granulocytes. However, when granulocytes were "primed" by preincubation for 90 min with GM-CSFrh or G-CSFrh, the rate of membrane depolarization induced by 10(-7) M N-formyl-methionyl-leucyl-phenylalanine, but not the rate of rise in free calcium ions, was greatly accelerated. In examining potential mechanisms to account for the priming effect of these growth factors, we found that although they did not induce translocation of protein kinase C or stimulate significant degranulation, they each directly caused prompt release of arachidonic acid from plasma membrane phospholipids. Our data indicate that although GM-CSFrh and G-CSFrh do not activate the transduction signals that have most clearly been implicated in receptor-mediated activation of cytotoxic functions in granulocytes--namely, those coupled to membrane depolarization or release of intracellular calcium ions--they appear directly to induce the release of arachidonic acid esterified to membrane phospholipids, an event which may represent the receptor-mediated activation of membrane phospholipases and which may contribute to the "priming" of the cells for enhancement of their functional responsiveness.

Arachidonic Acid

The effects of phorbol myristate acetate and chemotactic peptide on transmembrane potentials and cytosolic free calcium in mature granulocytes evolve sequentially as the cells differentiate.

We isolated myeloid precursors from human marrow and studied the effects of phorbol myristate acetate (PMA) and N-formyl-methionyl-leucyl-phenylalanine (fMLP) upon transmembrane potentials and cytosolic calcium ([Ca2+]i) as the cells matured. Using a panel of fluorescent probes, we found that membrane depolarization induced by PMA and fMLP in granulocytes, and elevation in [Ca2+]i stimulated by fMLP, were absent in myeloblasts. When we induced differentiation with granulocyte-macrophage colony-stimulating factors, we found that both ionic responses appeared at approximately the promyelocyte stage. By using di-O-C5(3), we detected an initial phase of fMLP-induced hyperpolarization which appeared ontogenetically earlier than depolarization and which could be evoked in mature granulocytes with lower concentrations of the ligand. Hyperpolarization was partially dependent on extracellular Na+, was abrogated by increasing the external K+ concentration, and was accompanied by mild acidification of the cytoplasm. Bordetella pertussis toxin abolished both hyperpolarization and depolarization. Our findings indicate that shifts in [Ca2+]i and membrane potential changes in response to PMA and fMLP evolve as granulocytes mature. In addition, transmembrane ionic fluxes induced by fMLP appear to be more complex than previously considered, involving at least two separable phases of membrane potential change.

Aminoquinolines

Escherichia coli adherence to human transitional cell tumors: a simple research model of bacterial attachment to the lower urinary tract.

A simple model for assaying bacterial adherence to the urinary tract is presented. Cell suspensions of freshly excised transitional cell tumors were used as substrata for attachment of 3H-adenine-labeled Escherichia coli urine isolates. Quantitative radioactive counts were confirmed by microscopic observations in replicate assays of each condition tested. This model provided for species and organ specificity in studies of the bacterial adherence role in urinary tract infections.

Bacterial Adhesion

Activation of human neutrophils by monoclonal antibody PMN7C3: cell movement and adhesion can be triggered independently from the respiratory burst.

Anti-neutrophil monoclonal antibody PMN7C3 (IgG3) recognizes glycoproteins bearing the oligosaccharide lacto-N-fucopentaose III, including the C3bi receptor, LFA-1, and p150,95 on the plasma membrane and a group of granule-associated glycoproteins. We have previously shown that binding of this antibody to polymorphonuclear leukocytes (PMNs) stimulates a transient rise in cytosolic free calcium concentration but does not trigger the neutrophil respiratory burst. We now demonstrate that binding of PMN7C3 (and five other monoclonal antibodies recognizing the same antigen) to human neutrophils activates several other cellular responses. Addition of PMN7C3 to monolayers of neutrophils induces a rapid change in cell shape followed by pseudopod formation and increased migration. With incubation at 37 degrees C, the neutrophils aggregate in clusters (leukoagglutination). Quantitation of cell movement in a multiwell chemotaxis assembly or by migration of PMNs under agarose revealed that PMN7C3 is both chemotactic and chemokinetic. Pretreatment with the antibody inhibits subsequent chemotactic response to other stimuli. Monoclonal antibodies binding to other neutrophil antigens do not mimic these effects. These data suggest that cell movement and adhesion can be triggered independently from the respiratory burst. PMN7C3 may be a useful probe with which to study the events that link receptor-ligand binding to cellular response.

Antibodies, Monoclonal

Comparative study of the endotoxin-stimulated nitroblue tetrazolium test in disease and health.

Endotoxin-stimulated nitroblue tetrazolium (NBT) reduction was evaluated in 853 individuals: 270 healthy controls, 334 with various non-neoplastic conditions, 220 with solid non-lymphomatous tumours, and 29 with lymphoma. Each of the above groups was divided into three age subgroups: less than 60, 60-69, and greater than or equal to 70 years. In the controls and in patients with nonmalignant diseases, significantly lower values were recorded for elderly subjects (greater than or equal to 60 years) compared with younger subjects of the same group, whereas in cancer patients the results were independent of age. Under the age of 60, stimulated values for both patient groups were significantly lower than the control values, and in patients with solid non-lymphomatous tumours significantly lower values were attained than in the other patients. NBT reduction in lymphoma patients was comparable to that of the controls. In the elderly (age greater than or equal to 70) no significant differences were noted between patients and controls. It is suggested that stimulated NBT reduction declines with advancing age. While this test clearly demonstrates some leucocyte dysfunction in solid cancer, its value in investigating neutrophil behaviour in elderly subjects is questioned.

Adult

Neutrophil function in cured cancer patients.

Spontaneous and endotoxin-stimulated nitroblue tetrazolium (NBT) dye reduction was evaluated in 86 individuals cured of various types of solid malignancies and in 55 healthy adults. Oxygen consumption tests, at rest and during phagocytosis, were performed with polymorphonuclear leukocytes of 22 patients and 10 controls, chosen at random. The results revealed an impaired capacity of patients' neutrophils to reduce NBT. The decrease in the stimulated reduction values was more pronounced (p less than 0.0005) than in spontaneous values (p less than 0.01), and was also noticed in patients who had been treated by surgery alone and in those with a disease-free interval of 10 years or more. Oxygen consumption by patients' leukocytes was similar to that of controls. The present results, especially those of the endotoxin-stimulated NBT test, might reflect a neutrophil dysfunction in cured cancer patients. The nature of such an abnormality and its possible clinical implication are still obscure.

Adult

Spontaneous and stimulated nitroblue tetrazolium tests of leukocytes from patients with solid malignant tumors.

Histochemical nitroblue tetrazolium (NBT) reduction tests, spontaneous and endotoxin-stimulated, were performed on samples of blood from 202 adult patients with solid neoplastic tumors and 37 healthy control subjects. The patients were classified according to activity of the disease, chemotherapy, and presence of bacterial infection. The NBT test did not prove helpful in detecting the latter condition in these patients. Low median spontaneous reduction values were recorded for patients with active malignancies, or receiving chemotherapy, compared with controls or cured patients without chemotherapy. Stimulated reduction values were significantly lower for all groups of patients than for controls, although for those apparently cured and untreated, stimulated reduction attained significantly higher values than for the other patients. A leukocyte dysfunction caused by both the underlying disease and its chemotherapy is assumed, and the usefulness of the endotoxin-stimulated NBT reduction test in detecting this dysfunction is stressed.

Adult

Polymorphonuclear leucocyte function in Behçet's disease.

Polymorphonuclear leucocyte function was investigated in 19 patients with active Behçet's disease. Spontaneous free leucocyte migration was found to be significantly reduced, yet after stimulation the leucocyte's chemotactic activity was considerably increase (p less than 0-05) when compared to control leucocytes. Control leucocytes migrated more rapidly when incubated in serum taken from patients with Behçet's disease (p less than 0-005). The enhanced chemotactic activity in Bechçet's disease appears to be due to both serum and intrinsic leucocyte factors. Spontaneous nitroblue tetrazolium reduction was found to be normal, although after stimulation leucocyte nitroblue tetrazolium reduction was lower than in the control group (P less than 0-025), as was leucocyte oxygen utilisation. It is suggested that the hyperreactive cellular inflammatory response that characterises Behçet's disease may be due to increased chemotactic activity and minor alterations in functional metabolic activity of leucocytes.

Adult