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A Buschauer

Publications and source records attributed to A Buschauer.

At least 37 records · Page 2Linked to original sources

High-resolution reversed-phase high-performance liquid chromatography analysis of polyamines and their monoacetyl conjugates by fluorescence detection after derivatization with N-hydroxysuccinimidyl 6-quinolinyl carbamate.

A highly sensitive, accurate, and reproducible HPLC method for the determination of all natural polyamines and their monoacetyl conjugates is described. The presented method is based on precolumn derivatization with N-hydroxysuccinimidyl 6-quinolinyl carbamate (HSQC) followed by C18-HPLC separation using a ternary gradient and fluorescence detection (lambda Ex = 248 nm, lambda Em = 398 nm). The derivatives of the four main polyamines (putrescine, cadaverine, spermidine, and spermine) and the internal standard were synthesized on a preparative scale and characterized, especially with respect to their molar absorptivities and fluorescence quantum yields. The limits of detection of the highly stable derivatives ranged from 30 to 130 fmol (injection volume 10 microliters) for putrescine and N-acetylcadaverine, respectively (signal to noise ratio = 10), with excellent linearity within the range from 1 to 100 microM. High reproducibility for both retention times and peak areas, with coefficients of variation ranging from 0.14 to 0.88% and from 1.83 to 3.80%, respectively, were achieved. Provided that deproteinization of the samples was carried out immediately, recoveries of the analytes from homogenates of pancreatic cancer xenografts were high and reproducible. The optimized method was applied to the determination of the polyamine content of cultured pancreatic cancer cells and of tissue from colorectal adenocarcinoma, proving precise and reproducible quantification in these complex biological matrices.

Acetylation↗

Synthesis and neuropeptide Y Y1 receptor antagonistic activity of N,N-disubstituted omega-guanidino- and omega-aminoalkanoic acid amides.

Potent arpromidine-type histamine H2 receptor agonists such as BU-E-76 (He 90481) were among the first non-peptides reported to display weak neuropeptide Y (NPY) Y1 receptor antagonist activity. In search of new chemical leads for the development of more potent NPY antagonists, a series of N,N-disubstituted omega-guanidino and omega-aminoalkanoic acid amides were synthesized on the basis of structure-activity relationships and molecular modeling studies of arpromidine and related imidazolylpropylguanidines. In one group of compounds the imidazole ring was retained whereas in the second group it was replaced with a phenol group representing a putative mimic of Tyr36 in NPY. Although the substitution patterns have not yet been optimized, the title compounds are NPY Y1 antagonists in human erythroleukemia (HEL) cells (Ca2+ assay) achieving pKB values in the range of 6.3-6.6. For representative new substances tested in the isolated guinea pig right atrium histamine H2 receptor agonism could not be found. In the N-(diphenylalkyl)amide series, compounds with a trimethylene chain were more active Y1 antagonists than the ethylene homologs. Concerning the spacer in the omega-amino or omega-guanidinoalkanoyl portion, the best activity was found in compounds with a four- or five-membered alkyl chain or a 1,4-cyclohexylene group. Surprisingly, in contrast to the phenol series, in the imidazole series the compounds with a side chain amino group turned out to be considerably more potent than the correspondence strongly basic guanidines. Thus, the structure-activity relationships appear to be different for the diphenylalkylamide NPY antagonists with one or two basic groups.

Amides↗

Hyaluronidase pretreatment produces selective melphalan enrichment in malignant melanoma implanted in nude mice.

Preclinical and clinical observations suggest that the administration of hyaluronidase (Hyase) shortly before that of chemotherapy increases the access and, thus, the effectiveness of anticancer drugs in tumors. To examine this hypotheses as well as the selectivity of such a therapeutic approach potentially beneficial in isolated limb perfusion, the Hyase-induced distribution of melphalan was measured in tumor-bearing nude mice with respect to the mode of drug administration using RP-18 ion-pair high-performance liquid chromatography (HPLC) with fluorimetric detection. Melphalan alone (50 micromol/kg) or a combination of melphalan (50 micro mol/kg) and Hyase (100,000 IU/kg) was injected either i.p. or s.c. in the vicinity of the tumors. The s.c. melphalan injection caused a 4-fold rise in melphalan concentration (59 microM) in the tumors as compared with i.p. application (15 microM). Only minor effects were observed with respect to the route of melphalan application on its distribution in other tissues (ca. 13 microM in plasma, 15 microM in muscle, 30 microM in the liver, 26 microM in the kidney, and 21 microM in the testicle). Irrespective of the route of Hyase coadministration, the enzyme increased the concentration of i.p. injected melphalan in all tissues to ca. 20 microM in the tumor, 15 microM in plasma, 27 microM in muscle, 40 microM in the liver, 29 microM in the kidney, and 28 microM in the testicle. In contrast, s.c. injected melphalan was selectively accumulated by the tumors after both s.c. and i.p. Hyase administration (462 and 388 microM, respectively). Melphalan enrichment in the tumors was higher (16- to 32-fold higher than in the other tissues) after i.p. administration of Hyase since, in contrast to s.c. injection of the enzyme, its i.p. administration caused a decrease in the concentration of the cytostatic in all other tissues as compared with the s.c. administration of melphalan alone.

Animals↗

Synthesis and histamine H2-receptor antagonist activity of 4-(1-pyrazolyl)butanamides, guanidinopyrazoles, and related compounds.

A series of 4-(1-pyrazolyl)butanamides, pyrazolylalkyl cyanoguanidines, and related compounds with diverse functional groups (e.g. nitro, amino, guanidino groups) in the 3-position of the pyrazole ring was prepared via 4-(3-nitro-1-pyrazolyl)butanenitrile (5) and the corresponding carboxylic acid 7 as central intermediates. The amides 9a-d were prepared from the primary amines 8a-d which represent partial structures of the H2-receptor antagonists roxatidine, cimetidine, ranitidine, and famotidine. The roxatidine-derived 4-(3-nitro-1-pyrazolyl)butanamide (9a) proved to be the compound with the highest H2-receptor antagonist activity of 23 compounds tested at the isolated guinea pig right atrium preparation, achieving about 6 times famotidine's or 160 times cimetidine's potency. By contrast, in Ghosh-Schild rats 9a did not inhibit histamine-stimulated gastric acid secretion at a dosage of 0.1 mumol/kg i.v. Compounds 20a (the 3-(trifluoroethyl-guanidino)pyrazole analogue of 9a, 12a (the cyanoguanidine analogue) and N-(4-[3-(trifluoroethylguanidino)-1-pyrazolyl]butyl)cyanogua nidine (29), which are about as active as famotidine in the atrium, turned out to be very potent inhibitors of gastric acid secretion as well (e.g., 29: 74% inhibition at 0.025 mumol/kg). These compounds are comparable to famotidine in the rat stomach and by far superior to cimetidine and ranitidine in this test system.

Amides↗

4-(4-Guanidinobenzoyl)-2-imidazolones and related compounds: phosphodiesterase inhibitors and novel cardiotonics with combined histamine H2 receptor agonist and PDE III inhibitor activity.

A series of new positive inotropic agents was synthesized with the aim of combining the pharmacophores of the imidazolone-type phosphodiesterase (PDE) inhibitor enoximone and guanidine-type histamine H2 receptor agonists such as arpromidine. All compounds are para-substituted 4-benzoyl-5-alkyl-2-imidazolones. H2 agonism was incorporated by p-(hetero)arylalkyl substituents, in particular by an imidazolylpropyl guanidine group. In addition analogous ureas, cyanoguanidines, alkyl guanidine carboxylates, and amides were prepared. These functional groups were either directly attached to the phenyl ring or linked by an appropriate spacer. The compounds were screened for positive inotropic activity in the isolated electrically stimulated guinea pig papillary muscle and for inhibition of PDE III (cGMP-inhibited cAMP PDE, isolated from guinea pig heart). The cardiotonics obtained proved to be either PDE III inhibitors, some of them surmounting up to 3-fold the potency of enoximone, or pharmacological hybrids combining both PDE III inhibitor and histamine H2 receptor agonist activities. These hybrids were the most potent positive inotropic substances at the papillary muscle, probably due to their synergistic mechanism of action. The participation of histamine H2 receptors could be demonstrated in the papillary muscle preparation by pretreatment with the H2 antagonist famotidine (10 microM) as well as by further pharmacological experiments using isolated perfused hearts of guinea pigs and rats, isolated guinea pig right atria, adenylyl cyclase and H2 receptor binding assays. At equieffective concentrations the moderate PDE III inhibitor and histamine H2 agonist N1-(4-[(1,3-dihydro-5-methyl-2-oxo-3H-imidazol-4-yl)-carbonyl]phenyl)-N2 - [3-(1H-imidazol-4-yl)propyl]guanidine 65 and the 5-ethyl homologue 66 were about 2 and 10 times more potent than enoximone at the papillary muscle. Moreover, both compounds produced a 2.5-fold higher maximal response than the reference compound.

3',5'-Cyclic-AMP Phosphodiesterases↗

Cationic-amphiphilic arpromidine-derived guanidines and a histamine trifluoromethyl-toluidide derivative may activate pertussis toxin-sensitive G-proteins by a receptor-independent mechanism.

Formyl peptides activate superoxide anion (O2-) formation in human neutrophils and in HL-60 cells via pertussis toxin (PTX)-sensitive guanine nucleotide-binding proteins (G-proteins), and histamine (HA) mediates inhibition of O2- formation via H2-receptors. We have studied the effects of lipophilic arpromidine-derived guanidines, which are potent, full H2-receptor agonists in the guinea pig atrium, on O2- formation and on activation of G-proteins in HL-60 membranes and on purified G-proteins. We have also studied the effects of a HA trifluoromethyl-toluidide derivative (HTMT), a cationic-amphiphilic HA derivative which activates O2- formation in HL-60 cells through a mechanism which is independent of known HA receptor subtypes, on G-protein activation. Guanidines, at concentrations, up to 30 mumol/l inhibited and, at concentrations above 30 mumol/l, enhanced formyl peptide-induce O2- formation in neutrophils. In HL-60 cells, guanidines per se activated O2- formation. The stimulatory effects of guanidines on O2- formation were not inhibited by H1- or H2-receptor antagonists. In HL-60 membranes, guanidines and HTMT, activated high-affinity GTPase in a PTX-sensitive manner. These substances also increased GTP hydrolysis effected by transducin and Gi/G(o)-proteins. Our data suggest that lipophilic guanidines and HTMT may act as receptor-independent activators of PTX-sensitive G-proteins, resulting in stimulation of O2- formation.

Biotransformation↗

[Synthesis and combined H1-/H2 antagonist activity of mepyramine, pheniramine and cyclizine derivatives with cyanoguanidine, urea and nitroethenediamine partial structures].

Compounds with combined histamine H1- and H2-receptor antagonist activity were synthesized by connecting H1- and H2-receptor substructures via cyanoguanidine, urea, or nitroethenediamine moieties. Loss of the strongly basic side-chain nitrogen results in a decrease of H1-receptor activity compared to single reference compounds. At the guinea-pig right atrium (H2-receptor model) compounds with mepyramine or cyclizine structure are also less active than the single references tiotidine, ranitidine, or lamtidine. Nevertheless substances with a pheniramine like partial structure proved to be potent histamine H2-receptor antagonists at the atrium model (about 27 times more active than cimetidine).

Animals↗

Inhibition of IgE- and non-IgE-mediated histamine release from human basophil leukocytes in vitro by a histamine H1-antagonist, desethoxycarbonyl-loratadine.

Loratadine, a new nonsedating histamine H1-antagonist, has been shown to inhibit immunologic release of inflammatory mediators in addition to its H1-receptor blocking properties. After oral administration, the agent is metabolized primarily to desethoxycarbonyl-loratadine (DCL). The basic piperidine, DCL, is readily soluble in water, whereas the nonbasic urethane, loratadine, is insufficiently soluble in water for some in vitro investigations. Therefore we used the metabolite, DCL, to study its influence on in vitro leukocyte histamine release (LHR) in 24 allergic and 22 nonallergic subjects. IgE-mediated and calcium ionophore A23187-induced LHR were inhibited by DCL in a dose-dependent fashion (values of drug concentration to induce 30% inhibition after stimulation with inhalant antigen, anti-IgE, concanavalin A, and calcium ionophore A23187 were 6, 8, 5, and 11 mumol/L, respectively). Higher concentrations of DCL caused mediator release in all subjects (n = 45, 30 mumol/L DC: 11% +/- 2% LHR, 100 mumol/L DCL: 35% +/- 1% LHR), abolishing any inhibitory effect of the drug. Rapid onset of inhibition by 10 mumol/L DCL was found in kinetic studies (n = 10). The inhibition of anti-IgE-induced histamine secretion was synergistically increased by simultaneous preincubation of DCL with the potent histamine H2-agonist, FRA-19. Additional data indicate that the inhibition of LHR by DCL might involve biochemical events that occur after cellular Ca++ influx because LHR induced by N-formyl-methionyl-leucyl-phenylalanine or the phorbol ester, 12-O-tetradecanoyl phorbol-12-acetate, was not significantly affected by DCL.

Basophils↗

Beneficial effect of H2-agonism and H1-antagonism in rat endotoxic shock.

Although histamine release is generally considered harmful in endotoxic shock, several data exist to doubt this view. Own previous studies in rats let us assume a possible beneficial effect only with H1-antagonists, however a detrimental effect on survival with H2-antagonists. Consequently H1- and H2-agonists and antagonists were studied to prove the hypothesis of a beneficial H2-agonistic and H1-antagonistic effect. Two randomized studies were performed in a standardized rat endotoxic shock model (45 mg of Escherichia coli endotoxin/kg body weight (b.w.)). In both, methylprednisolone (50 mg/kg b.w.) and saline were used as positive and negative controls, respectively. Study I compared the effects of H1- and H2-agonists (betahistine, .1 mg/kg/h, and impromidine, 100 micrograms/kg/h) with H1- and H2-antagonists (astemizole and famotidine both 1 mg/kg b.w.; 20 rats/dose). Study II was performed to estimate the dose-response relationship of a new, highly potent H2-agonist with additional H1-antagonistic features (BU-E 75: .01, .1, 1.0, 10, and 100 micrograms/kg/h; 20 rats/dose). Animals receiving impromidine or BU-E 75 all received omeprazole (1 mumol/kg b.w.) to suppress gastric acid secretion. In study I impromidine significantly increased the survival-time and -course compared to famotidine treated animals (p = .01 and p < .05). Study II showed a positive dose-response relationship of BU-E 75 with an increase in survival rates from 30% (.01 microgram/kg/h) to 70% (100 micrograms/kg/h). These data strongly support the hypothesis of a beneficial effect of H2-agonism and H1-antagonism on survival parameters in rat endotoxic shock.

Animals↗

Histamine H1 receptors mediate vasodilation in guinea-pig ileum resistance vessels: characterization with computer-assisted videomicroscopy and new selective agonists.

Histamine receptors on guinea-pig ileum submucosal arterioles (outside diameter 40-80 microns) were studied in vitro using a computer-assisted videomicroscopy system (Diamtrak). Histamine receptor agonists investigated in this study were histamine, the H1 receptor-selective compound, 2-[2-(3-fluorophenyl)-4-imidazolyl]ethanamine (VZ 20), the H2 receptor-selective compounds, dimaprit, impromidine, (+/-)-N1-[3-(4-fluorophenyl)-3-(pyridin-2-yl)propyl]- N2-[3-(1H-imidazol-4-yl)propyl]guanidine (arpromidine) and (+/-)-N1-[3-(3,4-difluorophenyl)-3-(pyridin-2-yl)propyl]- N2-[3-(1H-imidazol-4-yl)propyl]guanidine (BU-E-75), as well as the H3 receptor-selective drug, (R)-alpha-methylhistamine ((R)-alpha-MeHA). Applied to vessels at resting tone, the agonists (1 nM-300 microM) did not change arteriolar diameter. Vessels preconstricted by 10 microM noradrenaline showed similar concentration-dependent vasodilations with histamine and VZ 20 (pD2 = 5.38 and 5.36, respectively). This histamine-induced vasodilation was not affected by tetrodotoxin (0.5 microM) or indomethacin (1 microM), but was completely abolished in the presence of 1 microM of the H1 receptor antagonist, mepyramine. Calculation of the antagonist affinity of mepyramine for the histamine receptors in submucosal arterioles yielded a pA2 of 9.46. In contrast to histamine and VZ 20, the H2 receptor agonist, dimaprit, and the H3 receptor agonist, (R)-alpha-MeHA, were ineffective at preconstricted arterioles. The guanidine-type H2 receptor agonists, impromidine, apromidine and BU-E-75, produced vasodilation at noradrenaline-preconstricted arterioles (-log EC50 = 4.47, 5.30 and 5.39, respectively) but, in contrast to histamine, were ineffective at arterioles preconstricted by U-46619 (300 nM).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Iodoaminopotentidine and related compounds: a new class of ligands with high affinity and selectivity for the histamine H2 receptor.

The synthesis and biological evaluation of a new class of histamine H2 antagonists with N-cyano-N'-[omega-[3-(1-piperidinylmethyl)phenoxy] alkyl]guanidine partial structure are described as part of an extensive research program to find model compounds for the development of new radioligands with high H2 affinity and specific activity. High receptor affinity is achieved by an additional (substituted) aromatic ring, which is connected with the third guanidine N by a carbon chain spacer and an amine, carboxamide, ester, or sulfonamide link ("polar group"). In functional studies for H2 antagonistic activity and other pharmacological actions [e.g. H1 antihistaminic, antimuscarinic, antiadrenergic (alpha 1, beta 1), 5-HT2 blocking activity] in the isolated guinea pig atrium and ileum and rat aorta and tail artery, the compounds proved to be highly potent and selective histamine H2 receptor antagonists. The H2 antagonistic activity is mainly depending on the length of both the N'-alkyl chain (chain A) and the N"-spacer (chain B). Compounds with a C3 chain A and a C2 chain B are most potent in the preferred group of substances, i.e., the carboxamide series. A wide variety of substituents at the aromatic ring is tolerated, among them iodine, amino, and azido groups. These compounds are up to 32 times more potent than cimetidine in the isolated guinea pig right atrium. The replacement of the carboxamide by an ester group (44c) is well tolerated, while replacement of the cyanoguanidine by an urea group results in nearly 100-fold decrease in activity (46c,e). The iodinated benzamides are among the most potent H2 antagonists known so far. The [125I]-labeled form of 31f ([125I]iodoaminopotentidine, [125I]-N-[2-(4-amino-3-iodobenzamido) ethyl]-N'-cyano-N"-[3-[3-(1-piperidinylmethyl) phenoxy]propyl]guanidine) and its photolabile analogue 31h ([125I]iodoazidopotentidine, [125I]-N-[2-(4-azido-3- iodobenzamido)ethyl]-N'-cyano-N"-[3-[3-(1-piperidinyl-methyl)pheno xy] propyl]guanidine) proved to be useful probes for reversible and irreversible labeling of the histamine H2 receptor. Radioligand binding studies in guinea pig cerebral membranes revealed considerably higher H2 receptor affinity for 31f (pKi = 9.15), 31h (pKi = 8.58), and some analogues than functional experiments (guinea pig atrium), presumably reflecting an easier access to the H2 receptors in membranes.

Aniline Compounds↗

The effect of lipophilic substituents on the H2-histaminergic activity of some close analogues of impromidine.

The cimetidine-like moiety of the potent H2-agonist impromidine (9a) and three closely related guanidines (10a, 11a, and 12a) which are modified in the imidazolylpropyl portion, has been replaced by 2-[(2-pyridyl)methylthio]ethyl, 2-(benzylthio)ethyl and 3,3-diphenylpropyl substituents. Guanidines 10-12 were obtained from acidic hydrolysis of corresponding N-benzoyl guanidines 7, 8, and 15, accessible by successive aminolysis of diphenyl N-benzoyl carbonimidate (2) according to known methods. Compared with leads 10a and 11a lipophilic substitution affords almost equipotent H2-agonists 10b-d and 11b-d, while substituents with increasing lipophilicity enhance both intrinsic activity and potency of the weak partial agonist 12a at guinea-pig atrial H2-receptors. Guanidines 10-12 are weak H1-antagonists on the isolated guinea-pig ileum.

Animals↗

Modulation of IgE-mediated histamine release from human leukocytes by a new class of histamine H2-agonists.

A new class of phenyl (pyridylalcyl) guanidines, acting as potent histamine H2-agonists, inhibits IgE-mediated human basophil histamine release in a nanomolar range. IC30-level of three substitutes of this group (arpromidine, BUA-75, and FRA-19) were found to be 0.02, 0.015 and 0.008 microM. The inhibition appeared with a fast onset (plateau after 10 min. preincubation) and claimed its maximum (60 +/- 2.9%, 63 +/- 1.8%, and 61 +/- 3.1%, n = 7) with 10 microM of the compounds. H2-mediated inhibition was totally blocked by 10 microM famotidine, a potent histamine H2-antagonist. The amount of anti-IgE or antigen for the initiation of the immunological release influenced the strength of inhibition of H2-agonist FRA-19 (p less than 0.05). Combined preincubation of FRA-19 with zardaverine, a cAMP-specific phosphodiesterase III/IV inhibitor, produced a synergistical inhibitory effect of leukocyte histamine release, which might explained by their different sites of action on intracellular cAMP levels. The capability of histamine to inhibit its own release is mediated by H2-receptors exclusively. New, potent H2-receptor stimulating compounds with positive inotropic effects possess additional potent anti-allergic properties.

Basophils↗

Synthesis and histamine H2-receptor activity of heterocyclic impromidine analogues.

Analogues of the H2-agonist impromidine with unsubstituted or substituted aromatic or non-aromatic heterocycles instead of the 5-methylimidazole group were prepared via the benzoylguanidine method and tested for H2-agonistic and H1-antagonistic activity in the guinea-pig isolated right atrium and ileum, respectively. Compounds with unsubstituted 2- or 3-pyridyl, 2-pyrazinyl, or 5-pyrimidyl thioether portion proved to be about equipotent in the atrium (about 2-4x histamine). Highest potency was found in the 5-chloro-3-pyridylthioethylguanidine 8h, that is about 20 times more potent as an H2-agonist than histamine, corresponding to about 8 times the activity of the unsubstituted parent compound 8g. It is demonstrated by the piperidinyl- and morpholinylalkyl guanidines 8m-o that an aromatic ring is not required in the affinity-conferring moiety of H2-agonists (8n: 1.3x histamine). Replacement of the (5-methylimidazol-4-yl)methylthio group in the H2-antagonist cimetidine by halogenated pyridyl, pyrazinyl and pyrimidinyl thioethers resulted in compounds inactive as H2-antagonists, giving further evidence for differences in the structural requirements of the affinity-conferring portions of H2-agonists and antagonists and their mode of interaction with the receptor protein.

Animals↗

Histamine increases cytosolic Ca2+ in dibutyryl-cAMP-differentiated HL-60 cells via H1 receptors and is an incomplete secretagogue.

Human neutrophils and dibutyryl-cAMP (Bt2cAMP)-differentiated HL-60 cells possess receptors for the chemotactic peptide N-formyl-L-methionyl-L-leucyl-L-phenylalanine (fMet-Leu-Phe), which mediate activation of phospholipase C, with subsequent increase in cytosolic Ca2+ concentration ([Ca2+]i) and activation of specific cell functions. In many cell types, histamine, via H1 receptors, activates phospholipase C, but it is unknown whether neutrophilic cells possess functional H1 receptors. We compared the effects of histamine with those of fMet-Leu-Phe on activation of these cells. In Bt2cAMP-differentiated HL-60 cells, substances increased [Ca2+]i in the effectiveness order fMet-Leu-Phe greater than histamine greater than betahistine. Pertussis toxin diminished fMet-Leu-Phe-induced rises in [Ca2+]i to a greater extent than those induced by histamine. H1 but not H2 antagonists inhibited histamine- and betahistine-induced rises in [Ca2+]i. fMet-Leu-Phe and histamine activated phospholipase C and increased [Ca2+]i through release of Ca2+ from intracellular stores and sustained influx of Ca2+ from the extracellular space. The substances also induced Mn2+ influx. Ca2+ and Mn2+ influxes were inhibited by 1-(beta-[3-(4-methoxyphenyl)propoxyl]-4-methoxyphenethyl)-1H-imida zole hydrochloride (SK&F 96365). The stimulatory effects of histamine on [Ca2+]i were more sensitive to inhibition by 4 beta-phorbol 12-myristate 13-acetate than were those of fMet-Leu-Phe. Unlike fMet-Leu-Phe, histamine did not activate superoxide anion formation, release of beta-glucuronidase, and tyrosine phosphorylation. In neutrophils, histamine and betahistine did not induce rises in [Ca2+]i. Our data show that (i) in Bt2cAMP-differentiated HL-60 cells, histamine increases [Ca2+]i via H1 receptors coupled to pertussis toxin-sensitive and possibly, pertussis toxin-insensitive heterotrimeric regulatory guanine nucleotide-binding proteins, (ii) histamine activates nonselective cation channels, and (iii) unlike fMet-Leu-Phe, histamine is an incomplete secretagogue.

Betahistine↗

Histamine increases cytosolic Ca2+ in HL-60 promyelocytes predominantly via H2 receptors with an unique agonist/antagonist profile and induces functional differentiation.

Histamine H1 receptors mediate activation of phospholipase C, with subsequent increases in cytosolic Ca2+ concentration ([Ca2+]i), and H2 receptors mediate accumulation of cAMP. HL-60 promyelocytes possess H2 receptors, but it is not known whether these cells also possess H1 receptors. We studied the effects of histamine on [Ca2+]i and the functional importance of histamine receptors in HL-60 promyelocytes. In these cells, histamine and dimaprit increased [Ca2+]i with EC50 values of 15 microM and 30 microM, respectively. Diphenhydramine inhibited the effect of histamine (100 microM) on [Ca2+]i up to 40%, with an IC50 of 100 nM. Famotidine and cimetidine diminished the effect of histamine (100 microM) up to 75%, with IC50 values of 85 nM and 300 nM, respectively. Diphenhydramine plus famotidine abolished histamine-induced rises in [Ca2+]i. Impromidine, with an IC50 of 100 nM, abolished the effect of histamine (100 microM) on [Ca2+]i. Diphenhydramine, famotidine, cimetidine, and impromidine showed marked noncompetitive antagonism with histamine. Histamine-induced increases in [Ca2+]i were largely due to influx of Ca2+ from the extracellular space. Ca2+ influx was inhibited by 1-(beta-[3-(4-methoxyphenyl)propoxyl]-4-methoxyphenethyl)-1H-imida zole hydrochloride (SK&F 96365). Histamine activated phospholipase C. Histamine induced expression of formyl peptide receptors, which effect was abolished by famotidine. In U-937 promonocytes and in the human erythroleukemia cell lines HEL and K-562, histamine did not induce rises in [Ca2+]i. Our data suggest the following. (i) In HL-60 promyelocytes, histamine increases [Ca2+]i predominantly via H2 receptors and to a lesser extent via H1 receptors. (ii) The agonist/antagonist profile of the H2 receptor-mediated increases in [Ca2+]i differs markedly from that for cAMP accumulation, suggesting the involvement of different H2 receptor subtypes. (iii) In HL-60 promyelocytes, histamine activates nonselective cation channels and induces functional differentiation via H2 receptors.

Adenosine Triphosphate↗