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Biomedical subjects

G Marone

Publications and source records attributed to G Marone.

At least 145 records · Page 8Linked to original sources

Modulation of the release of histamine and arachidonic acid metabolites from human basophils and mast cells by auranofin.

In these experiments the effects of pharmacological concentrations of auranofin, a new absorbable gold compound, were assessed on the release of histamine and peptide leukotriene C4 (LTC4) from human basophils and lung mast cells. Auranofin, at pharmacological concentrations, inhibited in vitro histamine and LTC4 release from human basophils induced by anti-IgE. Inhibition began at about 3 X 10(-7) M and was maximum at 10(-5) M. We also evaluated the effect of auranofin on the release of histamine and LTC4 induced by anti-IgE from mast cells purified from human lung. Auranofin (3 X 10(-7) to 10(-5) M) dose-dependently inhibited the release of histamine and LTC4 from human lung mast cells. Thus pharmacological concentrations of auranofin cause dose-related inhibition of histamine release and de novo synthesis of LTC4 by human basophils and lung mast cells.

Adult↗

Physiological concentrations of zinc inhibit the release of histamine from human basophils and lung mast cells.

We have previously shown that physiological concentrations of zinc (congruent to 7 X 10(-6) M) inhibit the release of histamine from human basophil leukocytes (Marone et al., J. Pharmacol. Exp. Ther. 217: 292, 1981). In these experiments we compared the effect of zinc chloride on the release of chemical mediators from human basophils and mast cells isolated from human lung. Preincubation (5 min, 37 degrees C) of human basophils and lung mast cells with zinc chloride (10(-6)-3 X 10(-5) M) caused dose-related inhibition of histamine and peptide leukotriene C4 (LTC4) release induced by anti-IgE. Increase Ca2+ concentrations (0.3 to 6 mM) in the extracellular medium completely reversed the inhibitory effect of zinc on anti-IgE-mediated histamine secretion. Zinc chloride was a competitive antagonist of the action of Ca2+ in histamine secretion induced by anti-IgE with a dissociation constant (Kd) of about 10(-5) M in both the basophil and mast cell systems. Thus physiological concentrations of zinc inhibit the release of histamine from human basophils and lung mast cells, presumably by blocking Ca2+ uptake induced by anti-IgE activation.

Basophils↗

IgE-mediated activation of human heart in vitro.

We used human cardiac tissue from the right atrial appendages of patients undergoing corrective heart surgery to study content and de novo synthesis of mediators in the human heart. Human heart tissue contained 1.7 +/- 0.1 micrograms/g wet weight of histamine (mean +/- S.E.M.) and spontaneously produced 6-keto-PGF1 alpha (38.4 ng/g wet weight/min), PGF1 alpha (1.9 ng/g wet weight/min), PGE (1.7 ng/g wet weight/min) and thromboxane B2 (TxB2) (1.7 ng/g wet weight/min). Spontaneous release of PGD2, leukotriene C4 and histamine was negligible. Rabbit anti-human IgE (1-10 micrograms/ml) dose-dependently induced the release of histamine (5 to 15% of the total histamine content) and of PGD2 (5 to 100 ng/g of wet tissue). The effect of anti-IgE was dose-related and reached a maximum after 30-45 min of incubation. A significant linear correlation (rs = 0.90; p less than 0.001) was found between de novo synthesis of PGD2 and the secretion of histamine induced by anti-IgE challenge of human heart. These results support the concept that PGI2 is the main, but not the sole, product of arachidonic acid metabolism synthesized by human heart in vitro. Additionally, anti-IgE challenge of human heart in vitro induces the release of histamine and PGD2. The local concentrations of these mediators appear high enough to play some role in the modulation of several cardiac functions in vivo.

Animals↗

Human basophil releasability. I. Age-related changes in basophil releasability.

Releasability of human basophils (i.e., the response to a standard stimulus) is an important parameter in several pathophysiologic conditions. We studied the IgE (anti-IgE)- and non-IgE-mediated (f-met peptide and Ca2+ ionophore A23187) releasability of human basophils obtained from 63 normal donors whose ages ranged from 1 to 86 years. The maximum percent of histamine release induced by anti-IgE was significantly correlated (rs = 0.57; p less than 0.001) with the age of donors. The sensitivity to a standard concentration of anti-IgE (3 X 10(-2) mcg/ml) was also correlated with the age of cell donors (rs = 0.68; p less than 0.001). In the population of 63 donors tested, the maximum percent of histamine release and the cell sensitivity to anti-IgE appeared to be independent of the serum concentration of IgE. However, we found a positive correlation (rs = 0.55; p less than 0.05) between serum IgE level and anti-IgE-induced histamine release in the group less than 20 years of age. In contrast, a negative correlation (rs = -0.32; p less than 0.05) between serum IgE level and anti-IgE-induced histamine secretion was found in the group greater than 21 years of age. The maximum percent of histamine release induced by f-met peptide and Ca2+ ionophore A23187 appeared to be independent to both the age of the donors and the serum IgE level.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

Human basophil releasability. II. Changes in basophil releasability in patients with atopic dermatitis.

"Releasability" is the theory whereby biochemical events in basophils influence the capacity to release chemical mediators in response to activating stimuli. We have compared the releasability of basophils from 21 young patients with atopic dermatitis (AD) with that from 17 normal donors of matched ages. Basophils were challenged with several different stimuli: rabbit antihuman Fc epsilon (anti-IgE), N-formyl-methionyl-leucyl-phenylalanine (f-met-peptide), Ca++ ionophore A23187, and D2O. Basophils from patients with AD released significantly more histamine both "spontaneously" and in response to D2O than did controls. The basophils of patients with AD were significantly more responsive to anti-IgE and to A23187. There was no difference between the percent f-met-peptide-induced histamine release in patients with AD vs controls. No significant correlation between percent histamine release with optimal or suboptimal concentrations of the stimuli and serum IgE level was found. There was a significant correlation between the sensitivity of the cells to release with f-met-peptide and the response to A23187 both in control and in AD patients. Since basophils are thought to play some role at the site of inflammation in AD, their increased releasability might contribute to the symptoms of these patients.

Adolescent↗

The Wiskott-Aldrich syndrome: studies of platelets, basophils and polymorphonuclear leucocytes.

Platelets, basophils and neutrophils from a patient with the Wiskott-Aldrich syndrome (WAS) were exposed to stimuli that activate specific membrane receptor or directly initiate biochemical events (e.g. the Ca2+ ionophore A23187 and ionomycin or arachidonic acid). Platelets from this patient did not aggregate in response to ADP, collagen, thrombin or adrenaline, which activate specific membrane receptors. Platelet aggregation, however, was normal in response to compound A23187, ionomycin or exogenous arachidonic acid. Histamine release from basophils of the WAS patient was normal in response to anti-IgE, a formylated peptide (f-met peptide), and to A23187. Similarly, the release of the lysosomal enzymes, beta-glucuronidase and lysozyme, from neutrophils of the WAS patient in response to serum treated zymosan (Zx), f-met peptide, and A23187 was not significantly different from that of his parents and 13 normal donors. These results suggest that the primary defect in WAS is selectively present in platelets and is located in a biochemical step between receptor activation and Ca2+ influx and/or initiation of arachidonate metabolism.

Arachidonic Acid↗

Effect of activation of the H1 receptor on coronary hemodynamics in man.

We evaluated the effects of selective activation of H1 receptors on coronary hemodynamics in 16 patients divided into two groups: group A, 11 patients with atypical angina or valvular heart disease and normal coronary arteries, and group B, five patients with spontaneous angina, four of whom had significant (greater than 70% stenosis) coronary artery disease and one with normal coronaries. Selective H1 receptor stimulation was achieved by infusing 0.5 microgram/kg/min of histamine intravenously for 5 min after pretreatment with cimetidine (25 mg/kg). Heart rate was maintained constant (100 beats/min) by coronary sinus pacing and coronary blood flow (CBF) was measured by thermodilution. In group A, during histamine infusion mean aortic pressure fell from 99 +/- 5 to 77 +/- 4 mm Hg (mean +/- SEM, p less than .001), coronary vascular resistance (CVR) decreased from 1.07 +/- 0.17 to 0.82 +/- 0.14 mm Hg/ml/min (p less than .02), and CBF and myocardial oxygen consumption remained unchanged. None of the patients in this subgroup developed angina during histamine infusion. In group B, while no significant average changes in mean arterial pressure, CVR, or CBF were observed, two of the five patients (40%) developed angina during histamine infusion, accompanied by ST-T elevation, a decrease in CBF, and an increase in CVR. In one of these two patients circumflex coronary arterial spasm was angiographically demonstrated during histamine-induced angina. Our results suggest that stimulation of the H1 receptor induces a reduction of CVR, probably resulting from vasodilation of small coronary resistance vessels.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Evidence for an adenosine A2/Ra receptor on human basophils.

5'-N-ethylcarboxamideadenosine (NECA) greater than 2-chloroadenosine greater than adenosine greater than (-)-N6-(R-phenyl-isopropyl)-adenosine greater than (+)-N6-(S-phenylisopropyl)-adenosine, in that order of potency, inhibited in vitro antigen-induced histamine release from human basophils in a dose-dependent fashion. Inhibition occurred only during the first stage of antigen-induced histamine release and the nucleosides failed to inhibit the release caused by the Ca2+ ionophore, A23187. 6-nitrobenzylthioinosine and dipyridamole, which inhibit adenosine uptake, and erythro-9-(2-hydroxy-3-nonyl)adenine, which blocks adenosine metabolism, did not impair the inhibition caused by NECA and adenosine. 8-phenyltheophylline and theophylline, two competitive antagonists of adenosine receptors, blocked the inhibition caused by NECA and adenosine. These data suggest that NECA and other adenosine analogs activate a specific cell surface adenosine receptor which possesses properties similar to those of an adenosine A2/Ra receptor.

Adenosine↗

Effects of histamine H1-receptor stimulation on coronary hemodynamics in man.

Exogenous histamine in man induces significant cardiovascular effects mediated by activation of H1 and H2-receptors present on human heart and on coronary arteries. We studied the effects of selective H1-receptor stimulation on human coronary hemodynamics in 10 patients undergoing cardiac catheterization. All patients were pretreated with cimetidine before the histamine infusion (0.5 micrograms/kg/min i.v. for 5 min). Six of these patients had normal coronary arteries and four had single vessel coronary artery disease (CAD) and vasospastic angina. During the study heart rate was held constant (100 beats/min) by coronary sinus pacing. We measured mean aortic pressure (MAP), coronary sinus blood flow (CSBF), coronary vascular resistance (CVR) and myocardial oxygen consumption (MVO2) at rest, during histamine infusion, and 10 min after the end of the infusion. During infusion, MAP decreased from 103 +/- 5 to 85 +/- 6 mmHg (p less than 0.02) and CVR from 1.00 +/- 0.16 to 0.81 +/- 0.14 mmHg/ml/min (p less than 0.05); CSBF and MVO2 did not significantly change. All parameters returned to baseline at the end of the infusion. The response was similar in patients with normal coronary arteries and in 3 patients with CAD. Only one patient with CAD developed angina with ST segment elevation in D3, reduction in CSBF and an increase in CVR. These results indicate that H1-receptor stimulation in man induces significant coronary dilatation and that histamine infusion after cimetidine pretreatment is unlikely to provoke coronary spasm in patients with vasospastic angina.

Adult↗

Non-invasive assessment of electrophysiological effects of histamine infusion in man.

The electrophysiological changes induced by sequential infusion of histamine (H) (0.4 and 1.0 mcg/kg/min for 10 min each) were investigated by conventional ECG and High Resolution ECG (H.R.ECG). The latter permits external non-invasive recording of the potentials generated in the cardiac conduction system. H was infused i.v. in 5 normal volunteers with a mean age of 30 years. H infusions were begun with 0.4 mcg/kg/min and continued for 10 min. After a 60 min recovery period a second 10 min infusion (1 mcg/kg/min) was administered. In man H produced a dose-dependent increase in heart rate, a significant depression of the ST-T complex, and a depression in STJ point. The QRS complex duration was unmodified. H.R.ECG showed significant changes in the morphology and voltage of the atrial activity. The electrophysiological effects disappeared within a few minutes after discontinuing the infusions of H.

Adolescent↗

Histamine release from human basophils by pepstatin A.

Pepstatin A, a pentapeptide isolated from cultures of actinomycetes, induced histamine secretion from human basophils in the concentration range of 3 X 10(-7) to 10(-4) M. The characteristics of this reaction were similar to those of f-met-peptide-induced histamine release: pepstatin A-induced release required Ca2+ and the release reaction was complete within 2 min at 22 or 37 degrees C, but did not occur at 4 degrees C. Release by both pepstatin A and f-met-peptide was reversibly inhibited by two non-releasing analogs of f-met-peptide, CBZ-Phe-Met and BOC-Met-Leu-Phe. Further, there was complete cross-desensitization between pepstatin A and f-met-peptide, while cells desensitized to pepstatin A released normally with anti-IgE and vice versa. A variety of pharmacological agents had similar effects on both pepstatin A and f-met-peptide-induced release (e.g., no enhancement with D2O; marked enhancement with cytochalasin B). We suggest that pepstatin A induces histamine release from human basophils by activating a cell surface receptor(s), also activated by the synthetic tripeptide f-met-peptide.

Basophils↗

Activation of human basophils by Staphylococcus aureus Cowan I. II. Alternative F(ab')-mediated mechanism.

We investigated the capacity of Staphylococcus aureus Cowan I (Cowan Staph A+) and Staphylococcus aureus Wood 46 (Wood Staph A-) to induce histamine release from human basophils in vitro. Cowan Staph A+ (3 X 10(6) to 3 X 10(8)/ml), which synthesizes protein A (Staph A), stimulated the release of histamine from basophils, whereas Wood Staph A- (3 X 10(6) to 3 X 10(9)/ml), which does not synthesize Staph A, did not induce histamine secretion. Soluble Staph A (10(-3) to 10 micrograms/ml) also induced histamine secretion from human basophils, Hyperiodination of Staph A, which destroys over 90% of the original Fc reactivity without altering the Fab binding site, did not alter this protein's ability to induce histamine release. The stimulating effect of Staph A was suppressed by preincubation with human polyclonal IgG and a human monoclonal IgM, which have F(ab')-Staph A reactivity. In contrast, rabbit IgG and a human monoclonal IgM possessing only Fc-Staph A reactivity did not inhibit Staph A activity. Preincubation with Staph A or Cowan Staph A+ resulted in complete cross-desensitization to a subsequent challenge with homologous and heterologous stimuli. These results indicate that Staph A and Cowan Staph A+ activate human basophils by interacting with the F(ab')2 region of IgE and/or IgG present on the cell surface.

Basophils↗

Studies on human basophil releasability.

Basophil releasability is an important parameter in several pathophysiological conditions. In normal donors, the maximum percent histamine release and cell sensitivity to rabbit anti-Fc epsilon (anti-IgE) is correlated with the age of cell donors. A positive correlation between serum IgE level and anti-IgE-induced histamine release was found in subjects below 20 years old. The response to formyl-Met-Leu-Phe (f-met peptide) was significantly reduced in subjects above 60 years old. In twins, IgE-mediated releasability and serum IgE levels appear to be controlled by two different genetic mechanisms. Basophils of patients with atopic dermatitis were more responsive than those of control subjects of matched ages to anti-IgE.

Adolescent↗

Histamine and human heart.

Heart fragments obtained from human right atrium contain 1.5 +/- 0.2 micrograms of histamine per gram of wet tissue. Human heart spontaneously synthesizes significant amounts of PGI2, PGF2 alpha, PGE2 and TxA2. The Ca2+ ionophore A 23187 (0.5-3 micrograms/ml) dose-dependently induces histamine release and prostanoid production. Histamine (0.5-1 micrograms/kg/min) infusion in 10 normal donors produced an increase in heart rate and a significant depression of the ST segment. Selective H1 receptor stimulation in patients undergoing cardiac catheterization resulted in a decrease of the mean aortic pressure and of coronary vascular resistance.

Basophils↗

Activation of human basophils by bacterial products.

Staphylococcus aureus Cowan I (Cowan Staph A+), which synthesizes protein A (Staph A), induced histamine release from human basophils. In contrast, S. aureus Wood 46 (Wood Staph A-), which does not synthetize Staph A, did not induce histamine secretion. Soluble Staph A and Cowan Staph A+ induced histamine release by interacting with the alternative F(ab')2-binding site of IgE and/or IgG present on human basophils. Pepstatin A, a pentapeptide synthetized by various actinomycetes, induced histamine secretion by activating a specific membrane receptor, which is also activated by synthetic formylmethionine-containing peptides.

Basophils↗

Adenosine receptors on human inflammatory cells.

Adenosine is a natural nucleoside that plays a physiological role in the modulation of human inflammatory cells. We have investigated the presence of adenosine A2/Ra and A1/Ri receptors and of the P-site on human inflammatory cells. Human B and T(OKT4+ and OKT8+) lymphocytes, polymorphonuclear leucocytes, monocytes, basophils and platelets possess a membrane adenosine A2/Ra receptor. The activation of adenosine A2/Ra receptor increases the intracellular level of cyclic AMP in these cells. Human lymphocytes and neutrophils possess also an inhibitory adenosine A1/Ri receptor and a P-site whose activation inhibits the effect of many adenylate cyclase agonists including isoproterenol, PGE1, histamine, adenosine, cholera toxin and forskolin.

Adenosine↗