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P Pizzo

Publications and source records attributed to P Pizzo.

At least 37 records · Page 2Linked to original sources

Oxidized ATP. An irreversible inhibitor of the macrophage purinergic P2Z receptor.

The effects of oxidized ATP (oATP) on responses triggered by extracellular adenosine 5'-triphosphate (ATPe) were investigated in the mouse macrophage-like cell line J774. ATPe induced in this cell line two kinds of responses mediated by two different P2 purinergic receptors: 1) an early permeabilization of the plasma membrane to extracellular hydrophilic markers of M(r) up to 900 mediated by P2Z receptors; and 2) a fast mobilization of Ca2+ from intracellular stores mediated by P2Y receptors. Low oATP concentrations (100 microM) completely blocked the first response without affecting the second. ATPe-dependent cell swelling, vacuolization, and lysis were also inhibited. Antagonism developed slowly, as an incubation at 37 degrees C for at least 2 h in the presence of oATP was needed and was irreversible, thus suggesting that the inhibitory action was due to covalent modification of the receptor. The rate of hydrolysis of exogenous ATP was slightly decreased by oATP, indicating a minor blocking effect of this compound on plasma membrane ecto-ATPases in the concentration range tested. These observations suggest that oATP may be a potentially very useful tool for isolation and characterization of the P2Z purinergic receptor.

Adenosine Triphosphate↗

Synergistic effect of extracellular adenosine 5'-triphosphate and tumor necrosis factor on DNA degradation.

Extracellular ATP (ATPo) was recently considered a possible mediator of cell-mediated cytotoxicity since it is secreted by effector cells following appropriate stimulus and causes lysis as well as DNA degradation of susceptible target cells. This hypothesis however is not readily reconciled with the finding that ATPo-resistant cells are fully susceptible to intact effector cells, which instead suggests that a necessary step in cell-mediated cytotoxicity is the interaction between different molecules released by a cytotoxic cell. By combining ATPo with TNF or lymphotoxin (LT), cytokines which induce late DNA damage, we observed a synergistic effect on target cell death. Under these conditions, the phenomenon of DNA degradation also appeared early, with a kinetics reminiscent of that observed during target cell incubation with intact effector cells. Target cells which are resistant to one of the two molecules exhibited an enhanced rate of cell death when exposed to their association. Target cell lysis and DNA degradation were also Ca(2+)-independent events as they took place following external Ca2+ chelation by EGTA addition and under experimental conditions in which little or no Ca2+ was released from target cell intracellular stores. These findings suggest that ATPo might represent a further mediator which is responsible for the alternative Ca(2+)-independent cytolytic pathway in association with other molecules released by effector cytotoxic lymphocytes.

Adenosine Triphosphate↗

Ontogenesis of chick iris intrinsic muscles: evidence for a smooth-to-striated muscle transition.

The iris sphincter muscle consists of striated muscle fibers in the adult chicken. The ontogenetic development of this muscle has been studied by immunocytochemistry, from Embryonic Day 7 to the time of hatching. The time course of expression of specific markers of either smooth or striated muscle, i.e., smooth and skeletal muscle myosin heavy chains along with the inositol 1,4,5-trisphosphate (IP3) receptor, the intracellular Ca2+ release channel gated by the second messenger IP3, was investigated. We observed the parallel and transient expression, from about Embryonic Day 8 until hatching, of smooth muscle myosin heavy chain and IP3 receptor in early differentiating cells at the pupillary margin, as well as in migrating cells at subsequent stages; the sequential expression of sarcomeric myosin heavy chain around the end of the second embryonic week; and its spreading throughout the iris sphincter by the time of hatching. The present findings are consistent with a smooth muscle differentiation stage as an intermediate stage in the ontogenic development of the iris sphincter muscle of the chicken.

Animals↗

Characterization of the cytotoxic effect of extracellular ATP in J774 mouse macrophages.

Extracellular ATP (ATPo) is known to be cytotoxic to many cell types through a mechanism which is largely unknown. Very recently this nucleotide has been shown to cause cell death by apoptosis, probably by interacting with specific cell-surface receptors. In the present study we have investigated the mechanism of ATPo-dependent cytotoxicity in the macrophage-like mouse cell line J774. It has been previously reported that in this cell type ATPo activates trans-membrane Ca2+ and Na+ fluxes and a drastic increase in the plasma-membrane permeability to hydrophilic solutes smaller than 900 Da. These changes are followed by cell swelling and lysis. We show in the present study that, although this nucleotide triggers a rise in the cytoplasmic Ca2+ concentration, neither cell swelling nor lysis is Ca(2+)-dependent. Furthermore, cell lysis is not dependent on Na+ influx, as it is not prevented by iso-osmotic replacement of extracellular Na+ with choline or N-methylglucamine. On the contrary, ATPo-dependent cytotoxicity, but not the ATPo-dependent increase in plasma-membrane permeability, is completely abrogated in sucrose medium. Under our experimental conditions ATPo does not cause DNA fragmentation in J774 cells. We conclude from these findings that ATPo does not cause apoptosis of J774 macrophages and promotes a Ca(2+)- and Na(+)-independent colloido-osmotic lysis.

Adenosine Triphosphate↗

Role of P2z purinergic receptors in ATP-mediated killing of tumor necrosis factor (TNF)-sensitive and TNF-resistant L929 fibroblasts.

Two closely related cell lines were characterized in their responses to extracellular ATP (ATPo): the fibroblast cell line L929 and a TNF-resistant variant L929/R. Both lines showed ATPo-activated increases in intracellular Ca2+, inward current, and sustained depolarization of the plasma membrane, cell responses compatible with activation of purinergic receptors of the P2y, P2x, or P2z subtype; however, only the L929/R variant was susceptible to ATPo-dependent early permeabilization of the plasma membrane to hydrophilic solutes of M(r) below 900, a response uniquely caused by the activation of P2z receptors. Both cell types were susceptible to the cytotoxic effect of ATPo, but killing of the L929/R variant required much shorter incubations in the presence of this nucleotide. Morphologic examination of ATPo-challenged L929 and L929/R cells showed that cell death occurred by two alternative mechanisms: colloido-osmotic lysis or apoptosis. Occurrence of apoptosis was confirmed by agarose gel analysis of cellular DNA. Although ATPo caused a fast mobilization of intracellular Ca2+, neither colloido-osmotic lysis nor apoptosis were Ca2+ dependent. Our results show that the L929/R variant, but not the L929 parental fibroblast cell line, expresses functional purinergic receptors of the P2z subtype. The presence of P2z receptors confers to L929/R cells enhanced susceptibility to ATPo-mediated cytotoxicity.

Adenosine Triphosphate↗

Mitochondrial DNA is not fragmented during apoptosis.

We have exposed mouse thymocytes and P-815 mastocytoma cells to four different conditions reported to cause apoptosis: 1) incubation in the absence of mitogenic factors; 2) incubation in the presence of dexamethasone; 3) stimulation with external ATP; 4) treatment with high concentrations of the K+ ionophore valinomycin. These treatments caused DNA fragmentation to a varying extent in the two cell types. High stringency hybridization with a cDNA probe specific to a mitochondrial DNA sequence revealed that during apoptosis induced by lack of mitogenic factors, dexamethasone, or extracellular ATP, mitochondrial DNA was not fragmented. On the contrary, valinomycin caused extensive degradation of mitochondrial DNA. These results support the notion that DNA fragmentation during apoptosis is a specific nuclear event and suggest that other agents, such as valinomycin, may act less selectively.

Adenosine Triphosphate↗

Detection of mutations in insulin receptor gene by denaturing gradient gel electrophoresis.

Denaturing gradient gel electrophoresis (DGGE) has been used to screen for mutations in the insulin receptor gene. Each of the 22 exons was amplified by the polymerase chain reaction (PCR). For each exon, one of the two PCR primers contained a guanine-cytosine (GC) clamp at its 5' end. The DNA was analyzed by electrophoresis through a polyacrylamide gel containing a gradient of denaturants. Two geometries for the gels were compared; the gradient of denaturants was oriented either parallel or perpendicular to the electric field. The sensitivity of the technique was evaluated by determining whether DGGE succeeded in detecting known mutations and polymorphisms in the insulin receptor gene. With parallel gels, 12 of 16 sequence variants were detected. The use of perpendicular gels increased the sensitivity of detection so that all 16 sequence variants were successfully detected when DNA was analyzed by a combination of perpendicular and parallel gels. Furthermore, DGGE was used to investigate a patient with leprechaunism whose insulin receptor genes had not previously been studied. Two mutant alleles were identified in this patient. The allele inherited from the father had a mutation substituting alanine for Val-28; in the allele inherited from the mother, arginine was substituted for Gly-366.

Alanine↗

Extracellular ATP causes lysis of mouse thymocytes and activates a plasma membrane ion channel.

Extracellular ATP (ATPo) caused a concentration-dependent lysis of mouse thymocytes. Lysis, as judged by release of the cytosolic enzyme lactate dehydrogenase, was preceded by depolarization of the plasma membrane and by Ca2+ influx. Both Na+ uptake (which sustained plasma membrane depolarization) and Ca2+ influx showed (1) the same dependence on the ATPo concentration; (2) the same nucleotide specificity; and (3) the same Hill coefficient. However, whereas the rise in the cytosolic free Ca2+ concentration ([Ca2+]i) was fully inhibited by the known Ca2+ blocker verapamil, plasma membrane depolarization was enhanced under these conditions. Plasma membrane depolarization was greater and was shifted to lower ATPo concentrations in the absence of extracellular Ca2+ (Ca2+o), whereas the rise in [Ca2+]i was greater in Na(+)-free media. Plasma membrane depolarization also occurred in Na(+)-free choline- or methylglucamine-containing media, and was potentiated by chelation of free divalent ions with EDTA, supporting previous reports pointing to ATP4-as the active species. Among a number of purine and pyrimidine nucleotides, only adenosine 5'-[gamma-thio]triphosphate and ADP were partially effective. Furthermore, ethidium bromide (Mr 380), Lucifer Yellow (Mr 463) and Eosin Yellowish (Mr 692) did not permeate through the ATPo-activated channel. These findings suggest that lytic effects of ATPo in mouse thymocytes depend on the activation of a membrane channel with low selectivity for cations and an Mr cut-off of 200.

Adenosine Triphosphate↗

Use of third-generation cephalosporins. Pseudomonas.

Although the frequency of infection with P. aeruginosa has declined in many centers treating neutropenic patients with cancer, infections still occur and can be accompanied by considerable morbidity and mortality. Furthermore, patterns of infection can change again, and Pseudomonas may reemerge. Thus, in high-risk, immunocompromised patients, adequate bacterial coverage for P. aeruginosa should be part of any empiric regimen. Third-generation cephalosporins are an important part of the therapeutic armamentarium for the empiric management of neutropenic patients. Assuming a low level of resistance at a given center, however, only ceftazidime and cefoperazone possess sufficient antipseudomonal activity to be used for monotherapy. If other third-generation cephalosporins are used, it is imperative that an aminoglycoside or an antipseudomonal penicillin be added. But even when combined with an aminoglycoside, ceftriaxone would not be a good choice for neutropenic patients. It is an important agent in non-neutropenic hosts or in other immunocompromised patients in whom infection with Pseudomonas is unlikely to occur.

Ceftriaxone↗

Receptor-mediated calcium influx in PC12 cells. ATP and bradykinin activate two independent pathways.

In the neurosecretory cell line PC12 the cytosolic free Ca2+ concentration, [Ca2+]i, and membrane potential were affected by both external ATP and the nonapeptide bradykinin, BK. The latter caused a rapid and large release of Ca2+ from intracellular stores (Ca2+ redistribution) and, in the presence of external Ca2+, a long lasting, but moderate Ca2+ influx, which was insensitive to dihydropyridine blockers. On the contrary, ATP evoked a [Ca2+]i rise which rapidly inactivated. At least three different mechanisms accounted for the ATP-induced increase in [Ca2+]i: less than 20% of the total response was due to intracellular Ca2+ redistribution, consistent with a small increase in inositol 1,4,5-trisphosphate level; the rest (over 80%) was equally accounted for by ATP-activated cation channels and voltage-gated Ca2+ channels. ATP and BK (the latter after K+ channel blockade) caused plasma membrane depolarization. With both agonists the inward current was carried by both Na+ and Ca2+, although the BK-activated current appeared to be more selective for Ca2+. Channels triggered by ATP and BK differed not only in their cation selectivity, but also in modulation by both [Ca2+]i and drugs such as the phorbol ester phorbol 12-myristate 13-acetate and the new antagonist of ligand-activated Ca2+ influx, SK&F 96365.

Adenosine Triphosphate↗

Responses of mouse lymphocytes to extracellular ATP. II. Extracellular ATP causes cell type-dependent lysis and DNA fragmentation.

Extracellular ATP (ATPo) caused dose-dependent lysis of YAC-1 and P-815 mouse tumor cells. This event, assessed by 51Cr release, was accompanied by sustained depolarization of the plasma membrane potential and Ca2+ influx. Plasma membrane depolarization and Ca2+ influx occurred within a few seconds of ATPo addition to both cell types, whereas 51Cr was released without apparent lag in YAC-1 cells and after 2 h in P-815 cells. Furthermore, a rise in [Ca2+]i was required for ATPo-dependent lysis of YAC-1 but not P-815 cells. In P-815 cells, ATPo caused an early and [Ca2+]i-independent DNA fragmentation that occurred at lower nucleotide concentrations than those required to trigger 51Cr release. Instead in YAC-1 cells very low concentrations of ATPo caused early lysis (ED50 for lysis about 200 microM) accompanied by only barely detectable DNA fragmentation. Previous studies disclosed that lymphokine-activated killer cells are fully resistant to the membrane-perturbing effects of ATPo. We show that lymphokine-activated killer cells also do not undergo DNA fragmentation even in the presence of high ATPo concentrations. This study complements previous observations on the lytic effects of ATPo and shows that this nucleotide can also cause DNA fragmentation, one of the earliest target cell alterations observed during CTL-mediated lysis.

Adenosine Triphosphate↗

IL-2-based immunotherapy alters circulating neutrophil Fc receptor expression and chemotaxis.

We performed functional assays on polymorphonuclear (PMN) leukocytes from 21 patients with advanced cancers, before, during, and after IL-2 administration. Of these, 19 were treated with high dose bolus IL-2 infusions (10(5) U/kg every 8 h) and 2 patients received low dose continuous infusions of IL-2 (250 U/kg/h). Five of six patients studied after IL-2 therapy had a decrease in their PMN chemotactic response to FMLP after bolus IL-2 (mean 8 doses) or, after the 4th day of continuous infusion IL-2 (pre-IL-2 values of 82% +/- 17% to 45% +/- 1% post-IL-2, p2 less than 0.004) compared with normal control values. In 8 of 10 patients studied, PMN capacity to oxidize intracellular dichlorofluorescein dye, an indirect measurement of O2- production in response to PMA stimulation, decreased after IL-2 administration (pre-IL-2 mean dichlorofluorescein oxidation (by channel number) 243 +/- 128 vs 3-day post-IL-2 87 +/- 86, p2 less than 0.02). Furthermore, a marked decrease in Fc gamma R III (Leu-11, CD16) expression was observed in 12/13 patients' PMN studied after IL-2 therapy (mean percent of PMN population with positive FcR expression was 81.1 +/- 15.4% pre-IL-2 which decreased to 56.0 +/- 30.5% post-IL-2, p2 less than 0.001). Other PMN surface markers (My4, My7, ICAM-1, LFA1, LFA3, Mac1) did not change significantly. PMN-mediated antibody-dependent cellular cytotoxicity did not change after IL-2 therapy (only 4/15 patients demonstrated more than 50% reduction in antibody-dependent cellular cytotoxicity). PMN phagocytosis of Staphylococcus aureus was also not significantly altered by IL-2 administration in six patients studied (pre-IL-2, 99 +/- 17% vs 111 +/- 28% post-IL-2, p2 greater than 0.2). We conclude that the systemic administration of IL-2 by intermittent or continuous administration is associated with marked changes in PMN function and cell surface receptor expression. These alterations may contribute to the apparent increased susceptibility to bacterial infection observed in these patients.

Antibody-Dependent Cell Cytotoxicity↗

Chelation of cytoplasmic Ca2+ increases plasma membrane permeability in murine macrophages.

Cytoplasmic free Ca2+ (Ca2+i) was chelated to 10-20 nM in the macrophage cell line J774 either by incubation with quin2 acetoxymethyl ester in the absence of external Ca2+ (Di Virgilio, F., Lew, P.D., and Pozzan, T. (1984) Nature 310, 691-693) or by loading [ethyl-enebis(oxyethylenenitrilo)]tetraacetic acid (EGTA) into the cytoplasm via reversible permeabilization of the plasma membrane with extracellular ATP (Steinberg, T.H., Newman, A.S., Swanson, J.A., and Silverstein, SS.C. (1987) J. Biol. Chem. 262, 8884-8888; Di Virgilio, F., Meyer, B.C., Greenberg, S., and Silverstein, S.C. (1988) J. Cell Biol. 106, 657-666). After removal of ATP from the incubation medium, ATP-permeabilized Ca2+i-depleted macrophages recovered a near-normal plasma membrane potential which slowly depolarized over a 2-4 h incubation at low [Ca2+]i. In both ATP-treated and quin2-loaded cells, depolarization of plasma membrane potential was paralleled by an increase in plasma membrane permeability to low molecular weight aqueous solutes such as eosin yellowish (Mr 692), ethidium bromide (Mr 394), and lucifer yellow (Mr 463). This increased plasma membrane permeability was not accompanied by release of the cytoplasmic marker lactic dehydrogenase for incubations up to 4 h and was likely a specific effect of Ca2+i depletion since it was not caused by: (i) the mere incubation of macrophages with extracellular EGTA, i.e. at near-normal [Ca2+]i; and (ii) loading into the cytoplasm of diethylenetriaminepentaacetic acid, a specific chelator of heavy metals with low affinity for Ca2+. Treatment of Ca2+i-depleted cells with direct (phorbol 12-myristate 13-acetate) or indirect (platelet-activating factor) activators of protein kinase C prevented the increase in plasma membrane permeability. Down-regulation of protein kinase C rendered Ca2+i-depleted macrophages refractory to the protective effect of phorbol 12-myristate 13-acetate. This report suggests a role for Ca2+i and possibly protein kinase C in the regulation of plasma membrane permeability to low molecular weight aqueous solutes.

Adenosine Triphosphate↗

Extracellular ATP as a possible mediator of cell-mediated cytotoxicity.

Cytotoxic T lymphocytes (CTL) and natural killer (NK) cells lyse target cells by a specialized mechanism that involves the release of soluble 'killer' mediators. While several possible mediators have been demonstrated, it is likely that others have yet to be identified. For more than two decades it has been known that exogenous ATP is lytic to many cell types. In this article Francesco Di Virgilio and colleagues propose that extracellular ATP may be a mediator of cytotoxic cell-dependent lysis.

Adenosine Triphosphate↗

Urinary excretion of a glucose-containing tetrasaccharide. A parameter for increased degradation of glycogen.

The urinary excretion of a glucose-containing oligosaccharide, Glc alpha[1-6Glc alpha[1-4Glc alpha[1-4Glc, (Glc4) has been measured in various physiological and pathological conditions. The Glc4 content of 24 h samples from the same individual was relatively constant, whereas 2 h samples showed up to 4-fold variations in Glc4 concentration. This variation is associated mainly with increased excretion of Glc4 after meals. A carbohydrate-rich diet, starvation or a protein-rich diet, and intense physical activity all affected the urinary excretion of Glc4. Both oral and intravenous administration of glycogen in a Rhesus monkey resulted in increased excretion of Glc4. When Glc4 itself was injected intravenously in small amounts renal clearance was rapid and complete. In contrast, injection of a larger amount resulted in incomplete (approximately 10%) renal clearance, probably due to uptake and metabolism of the oligosaccharide. In patients with glycogen storage diseases, certain malignancies, and pancreatitis, 24 h urinary Glc4 excretion exceeded the normal range. The diagnostic implications of these observations deserve evaluation. The results presented suggest a need for standardization of nutritional status and physical activity when monitoring urinary Glc4 excretion for diagnostic purposes.

Adult↗

Intensive combined modality therapy including low-dose TBI in high-risk Ewing's Sarcoma Patients.

Twenty-four high-risk Ewing's sarcoma patients were treatedf on an intensive combined modality protocol including low-dose fractionated total body irradiation (TBI) and autologous bone marrow infusion (ABMI). Twenty patients (83%) achieved a complete clinical response to the primary and/or metastatic sites following induction therapy. The median disease-free interval was 18 months, and nine patients remain disease-free with a follow-up of 22 to 72 months. Local failure as a manifestation of initial relapse occurred in only three patients (15%), each having synchronous distant failure. Eight patients failed initially with only distant metastases, usually within 1-2 years following a complete clinical response. Two patients with a single metastasis were again rendered disease-free and remain free from second relapse with 18 and 30 months follow-up. No other relapsed patient was able to be rendered disease-free, and most died of progressive disease within 6 to 12 months of relapse. Two patterns of granulocyte recovery following consolidative therapy (include TBI) and ABMI were recognized. Seventeen patients reached a total granulocyte count of >500 cells/mm3 within 4 weeks of ABMI (early graulocyte recovery), while seven patients required >4 weeks from ABMI (late granulocyte recovery). The time of platelet recovery (>50,000/mm3) was different for the groups with early and late granulocyte recovery (25 days vs. 54 days, p <.001). Six of seven patients with late granulocyte recovery received locl high-dose irratiation to >1/2 pelvis prior to bone marrow storage. Patients with late recovery did not tolerate maintenance chemotherapy. However, there was no difference in disease-free and overall survival, when compaing the groups with early and late granulocyte recovery. We conclude that these high-risk Ewing's sarcoma patients remain a poor-prognosis group in spite of intensive combined modality therapy include low-dose TBI. The control of microscopic systemic disease remains the major challenge to improving the cure rate. A new combined modality protocol with high-dose 'therapeutic' TBI (800 rad/2 fractions) is being used and the protocol design is outlined.

Adolescent↗