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The anti-inflammatory activity of 5H-dibenz[c,e]azepine-5,7(6H)dione, 6,7-dihydro-5H-dibenz[c,e]azepine, N-benzoylbenzamide and 1H-benz[d,e]isoquinoline-1,3(2H)dione derivatives in rodents.

A series of N-substituted 5H-dibenz[c,e]azepin-5,7(6H)dione, 6-substituted 6,7-dihydro-5H-dibenz[c,e]azepine, 1H-benz[d,e]isoquinoline-1,3(2H)dione and N-benzoyl derivatives was shown to have anti-inflammatory and local analgesic activity in rodents. 6-(4-Chlorophenyl)-5H-dibenz[c,e]azepin-5,7(6H)dione demonstrated greater than 50% inhibition of induced edema and the writhing reflex at 25 mg/kg, I.P. in mice. 6-Methyl-6,7-dihydro-5H-dibenz[c,e]azepine and the N-butyl and N-pentyl derivatives of the dibenz-[c,e]azepine and N-benzoylbenzamide series demonstrated potent activity in both screens. The 1H-benz[d,e]isoquinoline-1,3(2H)diones were generally less active than the other three chemical classes of agents tested. However, the 2-(methylthio)ethyl derivative of this series demonstrates good activity in both screens. These agents appeared to be as potent as the standards, indomethacin and phenylbutazone, as anti-inflammatory agents in these animal models. Selected agents, e.g. 6-(4-methylphenyl)-5H-dibenz[c,e]azepin-5,7(6H)dione demonstrated anti-arthritic and anti-gout activities in rodents. The N-methyl and N-butyl derivatives of 6,7-dihydro-5H-dibenz[c,e]azepine afforded good anti-pleurisy activity in rats at 25 mg/kg x 2. The agents which demonstrated potent anti-inflammatory action were found to inhibit acid lysosomal hydrolytic enzyme activities in mouse liver and macrophages at 10(-5) M concentrations. Trypsin, elastase and collagenase activities were also inhibited by the derivatives. Prostaglandin synthetase activity of bovine seminal vesicles and mouse macrophages was inhibited by the compounds at 10(-5) M concentrations.

Animals

[Derivatives of 2,3,4,5,-tetrahydro-1H-pyrido-(3,2-b)azepine and 2,3,4,5-tetrahydro-1H-pyrido(2,3-b)azepine and their corresponding lactams. II. Synthesis and pharmacologic study of their psychotropic activity].

Preparation of the N-(2-diethylaminoethyl) derivatives of lactam (II) and of the N-(3-dimethylaminopropyl) derivative of lactam (XI) is described. Synthesis of the N-[4-(2-hydroxyethyl)piperazinylacetyl]- and 1-carbothiamide derivatives of azepine (I) and of the n-(chloroformyl)- and N-(carbamoyl) derivatives of azepine (XII) are also described. Some pharmacological results indicate a partial tranquilizing activity.

Animals

Hypolipidemic activity of 6-substituted 6,7-dihydro-5H-dibenz[c,e]azepine and the effects of 6,7-dihydro-5H-dibenz[c,e]azepine on lipid metabolism of rodents.

A series of 6-substituted derivatives of 6,7-dihydro-5H-dibenz[c,e]azepine was found to be active hypolipidemic agents in rodents at doses of mg/kg per day. The parent drug was found to suppress the enzyme activity of ATP-dependent citrate lyase, sn-glycerol-3-phosphate acyl transferase, and phosphatidate phosphohydrolase. Treatment with 6,7-dihydro-5H-dibenz[c,e]azepine resulted in a reduction of cholesterol, neutral lipid, and triglyceride content in mouse and rat liver. The agent also afforded a reduction in cholesterol, triglycerides and neutral lipids in the chylomicron and very low density lipoprotein (VLDL) fractions. In the high density lipoprotein (HDL) fraction, the triglyceride, neutral lipids, and phospholipids were lowered but the cholesterol content was not. [H3]Cholesterol distribution studies showed that the 3H-content was lowered in the major organs but was elevated in the chyme and stomach, suggesting that the drug accelerated bile secretion of cholesterol or its metabolites.

Animals

Effects of some dibenzo-azepines on suppressed and nonsuppressed behavior of squirrel monkeys.

Six dibenzo-azepine derivatives were compared for their effects on suppressed and nonsuppressed behavior of squirrel monkeys. Monkeys responded by pressing a lever under a two-component fixed-ratio schedule of food presentation in which responding in one component was suppressed by response-produced electric shock. Intermediate doses (0.3-1.0 mg/kg IM) of selected unsubstituted and 8-chlorine-substituted dibenzo-azepines (perlapine, 106-094, and clozapine) increased responding that was suppressed by electric shock, whereas selected 2-chlorine-substituted dibenzo-azepines (loxapine, clothiapine, and 105-056) did not consistently increase suppressed responding at any dose (0.001-0.1 mg/kg IM). All six dibenzo-azepines decreased nonsuppressed responding in a dose-related manner, with the 2-chlorine-substituted derivatives being 16-50 times more potent than their unsubstituted or 8-chlorine-substituted congeners. These structure-activity relationships indicate that the effects of the dibenzo-azepines on both suppressed and nonsuppressed behavior differ qualitatively depending on the location of the chlorine substituent.

Animals

Tricyclic epines. Novel (E)- and (Z)-11H-dibenz[b,e]azepines as potential central nervous system agents. Variation of the basic side chain.

The synthesis and pharmacological activity of new (E),(Z)-[6-(alkylamino)-11H-dibenz[b,e]azepin-11- ylidene]acetonitriles 12-45 and (E),(Z)-[6-(aminoalkoxy)-11H-dibenz[b,e]azepin-11-ylidene] acetonitriles 46-51 are described. The introduction of the cyanomethylene group into the 11-position of the 11H-dibenz[b,e]azepine framework has been carried out by a Wittig-Horner reaction under mild conditions. The (E),(Z) isomers were separated by fractional crystallization, assignment being achieved by X-ray analysis. A number of (E),(Z)-[6-(alkylamino)-11H-dibenz-[b,e]azepin-11-ylidene] acetonitriles (12, 14, 16, 20) show potent neuroleptic activity (2-7 times that of clozapine) in animal tests. The screening included tests for sedative and anticholinergic activity in mice, apomorphine and tryptamine antagonism in rats, and muscle-relaxing activity in rabbits. The divergence in the activity profile in the case of the separated (E),(Z) isomers has been observed as an interesting new aspect: the (Z) isomers show a significantly higher sedative and muscle-relaxant activity, whereas the (E) isomers possess a higher anticholinergic efficacy and somewhat greater apomorphine antagonism. Broad changes in the basic side chain were made in order to investigate structure-activity relationships. The important geometrical parameters for the molecules, obtained by X-ray analysis, were compared with the corresponding features in dopamine agonists and antagonists.

Animals

Epoxide-diol pathway in the metabolism of 5H-dibenzo[b,f]-azepine (iminostilbene).

5H-Dibenzol[b,f]azepine-10,11-epoxide and 10,11-dihydro-10,11-dihydroxy-5H-dibenzo[b,f]azepine were identified by gas chromatography-mass spectrometry in rat urine as the main biotransformation products in the metabolism of 5H-dibenzo[b,f]azepine (iminostilbene). The presence of these metabolites was confirmed in vitro by incubating iminostilbene with rat liver microsomal enzymes.

Alcohols

[New derivatives of 10,11-dihydro-5H-dibenz[b,f]azepine with antiarrhythmic action].

After an introduction about the importance of the 10, 11-Dihydro-5H-dibenz[b,f]azepine system for the drug research and according to experiences about the change of pharmacodynamic effects in the field of the phenothiazine bases by dialkylaminoacyl substitution in the following report some new 3-carbalkoxyamino-5-omega-aminoacyl-10,11-dihydro-5H-dibenz[b,f]++ +azepines and their intermediates for synthesis are described. In result of pharmacological investigations which showed antiarrhythmic activities the substance 3-carbethoxyamino-5-dimethylaminoacetyl-10,11-Dihydro-5H-dib enz[b, f]azepine X HCl (GS 015, AWD 19-166, Bonnecor) was selected for clinical tests. For studying the biotransformation of this substance the expected main metabolites were prepared by chemical synthesis.

Animals

Synthesis of thieno[2,3-b]azepin-4-ones as potential antineoplastic agents.

In view of the antitumor activity reported for 7,8-dimethylbenzo[b]azepine-2,5-dione, new isosteric thieno[2,3-b]-azepin-4-ones have been prepared by a Dieckmann ring closure reaction. Substituted 2-amino-3-carbethoxythiophenes were tosylated, or benzoylated, and the corresponding sodium salt was alkylated with ethyl 4-bromobutyrate. The resulting product was cyclized in the presence of sodium hydride, and the azepinones were detosylated with 40% sulfuric acid-acetic acid solution. Preliminary biological data do not indicate any siginificant antineoplastic activity.

Animals

6-[N,S-dimethyl-N'-cyanothioureidomethyl]-6,11-dihydro-5H- dibenz[b,e]azepine hydrochloride (Fran 12): a histamine and 5-hydroxytryptamine antagonist with pressor properties.

We have synthesized and examined some of the pharmacological properties of 6-[N,S-dimethyl-N'-cyanoisothioureidomethyl]-6,11-dihydro-5H- dibenz(b,e)azepine hydrochloride (Fran 12), a derivative of 6-methylaminomethyl-6,11-dihydro-5H- dibenz[b,e,]azepine. In the guinea-pig isolated ileum, Fran 12 (10(-7)-10(-5) M) caused parallel rightward shifts of the concentration-response curves to histamine. A Schild plot gave a pA2 of 7.48, with a slope not significantly different from -1.0. In the rat stomach fundus strip and in endothelium-denuded aortic rings, Fran 12 inhibited contractile responses to 5-hydroxytryptamine in a non-competitive manner. In both chloralose-anaesthetized and pithed rats, it inhibited pressor responses to 5-hydroxytryptamine. It had no effect on depressor responses to 5-hydroxytryptamine in anaesthetized rats. In pithed rats, Fran 12 (0.25-2 mg/kg, i.v.) produced dose-dependent increases in blood pressure. These were not inhibited by i.v. phentolamine, prazosin, yohimbine, propranolol, methysergide, pentolinium or atropine but were inhibited by verapamil. These results indicate that Fran 12 is a histamine and 5-hydroxytryptamine antagonist which also exerts pressor effects via a peripheral action. The pressor action does not appear to be mediated via effects on alpha 1- or alpha 2-adrenoceptors, muscarinic or nicotinic cholinoceptors or 5-hydroxytryptamine receptors, although calcium channel activation may play a role.

Adrenergic alpha-Agonists

[Tetrahydropyridoazepine and tetrahydropyridoazepinone derivatives. I. Derivatives of 2,3,4,5-tetrahydro-1H-pyrido[3,2b]azepine and of the corresponding lactam].

Preparation of N-derivatives of 2,3,4,5-tetrahydro-1H-pyrido[3,2-b]azepine and, in one case, of 2,3,4,5-tetrahydro-1H-pyrido[3,2-b]azepine-2-one was achieved by introducing the substituents COCl, CONH2, CO2(CH2)3N(CH3)2, COCH2Br and (CH2)3N(CH3)2. The pharmacological results indicate some effect on the ANS.

Adrenergic alpha-Antagonists

[Derivatographic analysis of 6-beta-[(hexahydro-1H-azepin-1-yl) methylenamino]penicillanic acid].

Derivatographic analysis of 5 samples of 6-beta-(hexahydro-IH-azepin-I-yl)methylenamino penicillanic acid was performed. In addition to the antibiotic the samples had water and acetone in their composition. No effects associated with changes in the physical and chemical state of the substance were observed on the derivatogramme of the samples containing 0.2 and 0.8 per cent of water up 140 degrees C. With a further increase in the temperature an exothermic effect was observed with maximum at 152--153 degrees C connected with melting and chemical degradation of the substance. The derivatogrammes of the samples containing 89--96.4 per cent of the antibiotic were characterized by an endothermic effect with minimum at 65 degrees C caused by evaporation of acetone and partially water from them and by an exothermic effect with maximum at 120 degrees C practically not accompanied by any change in the weight resulting from chemical interaction of the antibiotic with water. The study showed sensitivity of 6-beta-(hexahydro-IH-azepin-I-yl)methylenaminopenicillanic acid to the presence of even insignificant amounts of water in it, maximum elimination of which from the antibiotic is an important factor of increasing its stability.

Crystallization

Influence of 1-dodecylhexahydro-2H-azepin-2-one (Azone) on the in vitro permeation of verapamil hydrochloride across rat, hairless mouse, and human cadaver skin.

The effect of 1-dodecylhexahydro-2H-azepine-2-one (Azone; laurocapran; 1) on the permeation of verapamil hydrochloride (2) through rat skin was studied. Compound 1 was used in various concentrations in the donor phase. The permeation of the drug increased significantly in the presence of 1 and the enhancement in permeation was dependent on the concentration of 1. A comparison of the enhancing effect of 3% 1 on permeation of 2 through rat, hairless mouse, and human cadaver skin was made. Compound 1 altered the permeability of hairless mouse skin significantly, whereas the effect on rat and human skin was comparable and not very drastic.

Animals

Inhibition by talipexole, a thiazolo-azepine derivative, of dopaminergic neurons in the ventral tegmental area.

A microiontophoretic study using rats anesthetized with chloral hydrate and immobilized with gallamine triethiodide was carried out to compare the effect of talipexole (B-HT 920 CL2:2-amino-6-allyl-5,6,7,8-tetrahydro-4H-thiazolo [4,5-d]-azepine-dihydrochloride), a dopamine autoreceptor agonist, on dopaminergic neurons in the ventral tegmental area (VTA) to non-dopaminergic neurons in the VTA. VTA neurons were classified into two types according to the responses to antidromic stimulation of the nucleus accumbens (Acc): type I neurons with a long spike latency (8.69 +/- 0.24 msec) upon Acc stimulation and low spontaneous firing rate (6.80 +/- 1.34/sec), and type II neurons with a short latency (2.76 +/- 0.20 msec) and high spontaneous firing rate (26.77 +/- 7.05/sec), probably corresponding to dopaminergic and non-dopaminergic neurons, respectively. In type I neurons, microiontophoretic application of talipexole and dopamine inhibited antidromic spike generation elicited by Acc stimulation, and talipexole-induced inhibition was antagonized by domperidone (dopamine D-2 antagonist). In type II neurons, however, the antidromic spikes were not affected by either talipexole or dopamine. Furthermore, spontaneous firing was also inhibited by iontophoretically applied talipexole and dopamine in most type I neurons, but rarely affected by either drug. Inhibitory effects of talipexole were antagonized by domperidone. These results suggest that talipexole acts on dopamine D-2 receptors, thereby inhibiting the dopaminergic neurons in the VTA.

Animals

Pharmacodynamics of the new H1-antagonist 3-amino-9,13b-dihydro-1H-dibenz[c,f]imidazo[1,5-a]azepine hydrochloride in volunteers.

The inhibitory effects of 3-amino-9,13b-dihydro-1H-dibenz[1,5-a]azepine hydrochloride (WAL 801 CL), a new H1-receptor antagonist, on histamine-induced skin wheals were studied in 9 volunteers. The study was a double-blind, randomized (Latin square) change-over, intraindividual comparison of the effects of single doses of 2,6 and 18 mg WAL 801 CL and of placebo and 2 mg ketotifen on skin wheals induced by intradermal injections of 5 micrograms hystamine 1, 2, 4, 6 and 8 h after administration of the drugs. The injection of 5 micrograms was also made prior to each drug administration. The effects on psychological performance and the subjective state were also evaluated. The following tests were employed: simple visual reaction time (RT), critical flicker fusion frequency (C3F) and von Zerssen's self-rating scale Bf-S, assessing state of mood. There was a washout period of at least 72 h between each course of treatment. A decrease in the size of the histamine wheal was observed 1 h after WAL 801 CL and was maintained for at least 8 h. The reduction in the size of the histamine wheal was between 44% (2.0 mg) and 71% (18.0 mg). After ketotifen a marked decrease in the wheal area was observed between 4 and 8 h after administration of the drug, with maximum histamine antagonism of 59% after 6 h. The inhibitory effects of 6 and 18 mg WAL 801 CL and 2 mg ketotifen were statistically significant compared with placebo. 8 of 9 subjects felt tired (subjective report) after ketotifen, corresponding changes could be detected by Zerssen's state of mood scale Bf-S, but not by other psychological performance measures (RT, C3F).(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Pharmacological properties of the novel antimuscarinic agent 4-[2-(1,2-benzisoxazol-3-yl)-2-(hexahydro-1H-azepin-1-yl)a cetoxy]-1-et hyl-1- methylpiperidinium iodide.

Pharmacological properties of 4-[2-(1, 2-benzisoxazol-3-yl)-2-(hexahydro-1H-azepin-1-yl)acetoxy]-1- ethyl-1- methylpiperidinium iodide (SX-810) were investigated and the following results were obtained. 1. In isolated guinea-pig ileum, SX-810 showed a competitive antagonistic effect against acetylcholine with a pA2 value of 7.93. 2. SX-810 (10-50 mg/kg p.o. or 10-50 micrograms/kg i.v.) inhibited the gastroduodenal contractions induced by bethanechol and carbachol in anaesthetized rats. 3. SX-810 (10-100 mg/kg p.o.) inhibited spontaneous gastric motility in conscious rats and rabbits. 4. SX-810 (10-100 mg/kg p.o.) inhibited gastric secretion in pylorus-ligated rats. 5. SX-810 (20-200 mg/kg p.o. or 1-10 mg/kg s.c.) inhibited the ulceration induced by pylorus ligation or by exposure to restrained and water-immersed stress in rats. 6. When administered orally to rats, SX-810 had no mydriatic effect even at 3000 mg/kg, but subcutaneously administered SX-810 (0.5-10 mg/kg) exhibited such action. 7. When administered orally to rats, SX-810 (100-500 mg/kg) caused no significant inhibition of the salivation induced by pilocarpine, but subcutaneously administered SX-810 (0.5-10 mg/kg) exhibited an inhibition of the salivation. In rabbits, SX-810 (200-500 mg/kg p.o.) also caused no significant inhibition of the salivation except at an extremely high dose of 1000 mg/kg p.o. 8. SX-810 (100-500 mg/kg p.o.) caused no significant effect on urine and electrolyte excretion in rats. These results indicate that oral use of SX-810 exhibits marked spasmolytic and antiulcerative activities without exerting systemic antimuscarinic side effects.

Animals

Synthesis and antimalarial activity of dibenz[c, e]azepine derivatives.

A series of 6-alkyl-2,10-bis(trifluoromethyl)-5H-dibenz-[c,e]azepines were synthesized via a condensation reaction between 5,5'-bis(trifluoromethyl)-2,2'-diformylbiphenyl and the appropriate amine. These compounds were screened for antimalarial activity and were found to be inactive.

Animals

Oxidation in H2O and D2O of 6-ethyl-5H-dibenz(c,e)azepine and 1-methylnicotinamide by aldehyde oxidase from rabbit liver.

We report the solvent hydrogen isotope effects associated with the oxidation of 6-ethyl-5H-dibenz(c,e)azepine (6-ED) and 1-methylnicotinamide (1-MN) catalyzed by aldehyde oxidase from rabbit liver using two assay methods. The first uses 2,6-dichlorophenolindophenol (DCI) as electron acceptor in an indirect assay in which the bleaching of DCI is measured as the substrate is oxidized. The second uses molecular oxygen as electron acceptor in a direct assay in which the oxidation of 1-MN to its pyridones is accompanied by an increase in absorbance at 300 nm and the oxidation of 6-ED to its lactam product is accompanied by a decrease in absorbance at 335 nm. We have found a solvent hydrogen isotope effect close to unity in the turnover number for each substrate and for each assay method. The solvent hydrogen isotope effects on kcat/Km ranged from 0.4 to 1.1. We conclude that changes in bonding of hydrogen in solvent water, including hydrolysis of or general base attack on an enzyme-intermediate complex, do not play a rate-contributing role in the maximal velocity of oxidation of 1-MN and 6-ED catalyzed by aldehyde oxidase from rabbit liver.

Aldehyde Oxidase