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At least 19 recordsLinked to original sources

Probes for narcotic receptor mediated phenomena. 9. Synthesis of (+/-)-(3 alpha,6a alpha,11a beta)-1,3,4,5,6,11a-hexahydro-2-methyl-2H-3,6a- methanobenzofuro[2,3-c]azocin-10-ol, an oxide-bridged 5-(m-hydroxyphenyl)morphan.

The synthesis of racemic (3 alpha,6a alpha,11a beta)-1,3,4,5,6,11a- hexahydro-2-methyl-2H-3,6a-methanobenzofuro[2,3-c]azocin -10-ol (2d) is described. The route used acid-catalyzed ring closure of enamine 5 to yield the unsaturated phenylmorphan 6. Conversion of 6 to oxide-bridged 2d was accomplished in a multistep fashion that utilized the introduction of a bromine atom, followed by O-demethylation of the phenolic methyl ethers and base-catalyzed intramolecular phenoxide displacement of the bromine. Compound (+/-)-2d represents an oxide-bridged derivative of the potent 5-(m-hydroxyphenyl)morphan class of opioid analgesics 1. Unlike the 5-(m-hydroxyphenyl)morphans that have a freely rotating phenyl group, 2d has the phenyl ring conformationally restricted at an angle of 49 degrees relative to atoms 1, 3, 11a, and 12 of 2d. The low binding of (+/-)-2d to rat brain homogenate receptor preparations [IC50 = 1000 nM] may indicate that the phenyl angle of 49 degrees is not suitable for binding to opioid receptors.

Animals↗

Selective alpha-adrenoceptor blocking actions of a new derivative of 2-halogenotheylamine: 6-(2-bromoethyl)-10,11-methylenedioxy-5,6,7,8-tetrahydrodibenz[c,e]azocine.

A new compound, 6-(2-bromoethyl)-10,11-methylenedioxy-5,6,7,8-tetrahydrodibenz [c,e] azocine (DA-VIII-MBr) was found to have a more selective alpha-adrenergic blocking action than dibenamine or phenoxybenzamine. From dose-response curves for adrenaline and 5-hydroxytryptamine (5-HT) obtained in strips of rat aorta before and after incubation with each of the three blocking agents, the fractions of receptors remaining active for adrenaline and 5-HT, respectively, were estimated. After blockade with DA-VIII-MBr the receptors for adrenaline were blocked considerably, but those for 5-HT were little affected. Dibenamine blocked the receptors to adrenaline and 5-HT almost equally. The effective dose of phenoxybenzamine for adrenaline receptors was less than one hundredth that of dibenamine or DA-VIII-MBr, but specificity for these receptors was intermediate between those of dibenamine and DA-VIII-MBr. The structure of DA-VIII-MBr is an analog of apogalanthamine and its nitrogen atom bears the 2-halogenoethylamine group in part of an eight membered ring.

Adrenergic alpha-Antagonists↗

Effect of the azetidine and azocine rings of okaramine B on insecticidal activity.

Four degraded okaramine B (2) products, 4',5'-dihydrookaramine B (3), two azetidine ring-opened compounds (4 and 5) and 1',2',4',5'-tetrahydrookaramine B (6), were prepared and their insecticidal activity was examined. Neither compounds 4 nor 5 showed such activity against silkworms, indicating that the azetidine ring moiety played an important role in the insecticidal activity. Moreover, both compounds 3 and 6 exhibited lower activity than 2, which means that the azocine ring moiety was indispensable to form the active conformation.

Alkaloids↗

Alpha-adrenolytic and anti-serotonin activities of apogalanthamine analogs on the rat aortic strips.

Most of apogalanthamine analogs were more specific in alpha-adrenolytic activity than in anti-serotonin activity. In this report, 1,2,11-trimethoxy-N-methyl-5,6,7,8-tetrahydrodibenz[c,e]azocine(abbreviated as K-35) was found to be stronger in activity against serotonin (pA2 = 7.11 +/- 0.08) than against adrenaline (pA2 = 6.24 +/- 0.06). Apogalanthamine analogs have a tetrahydrodibenz[c,e]azocine structure, in which one benzene can be regarded as a part of benzylamine and other as a part of phenethylamine. From the pharmacological point of view, various azocine compounds were tested, the phenethylamine in the azocine structure is demonstrated to contribute toward the alpha-adrenolytic activity and the benzylamine having two methoxy groups contributes toward the anti-serotonin activity.

Adrenergic alpha-Antagonists↗

Synthesis of certain 4-oxo-1.2.3.4-tetrahydroquinoline and benzazocine derivatives likely to possess analgesic activity.

Cyanoethylation of anthranilic acid afforded the N-cyanoethyl derivative which on treatment with ethanolic and methanolic hydrogen chloride yielded the corresponding diethyl and dimethyl esters respectively. Application of the Dieckmann's conditions to the N-acetyl derivatives of the two esters using sodium hydride and sodium ethoxide afforded different products. With the former, the expected products were obtained, while with the latter catalyst both esters furnished one and the same compound which was shown to be a benzazocine trione. The structure of the azocine was inferred from elemental analysis, spectroscopic data and formation of derivatives.

Analgesics↗

Alpha-adrenolytic properties of apogalanthamine and azapetine analogs.

Selectivities were examined between alpha 1 and alpha 2-adrenolytic activities of two apogalanthamine analogs (dibenzazocine derivatives), 6-methyl-5,6,7,8-tetrahydrodibenz[c,e]-azocine (DA-VIII-Me) and its N-allyl analog (DA-VIII-allyl), and two dibenzazepine derivatives, azapetine (DA-VII-allyl) and its N-methyl analog (DA-VII-Me). The alpha-adrenolytic activities were evaluated as inhibitory effects against the response to norepinephrine of isolated vas deferens and anococcygeus muscle of rats. The pA2 values for DA-VIII-Me, DA-VIII-allyl, DA-VII-Me and azapetine on the isolated rat vas deferens were 7.32, 7.76. 6.61 and 7.78 respectively, which were similar to those on the anococcygeus muscle. The alpha 2-adrenolytic activities of these compounds against the twitch-inhibitory response to clonidine in transmurally stimulated rat vas deferens and guinea-pig ileum were less potent than those against the above alpha 1-adrenoceptors. In addition, their inhibitory activities on the aggregation of human platelets induced by norepinephrine were weaker than those of phentolamine and yohimbine. These results indicate that the apogalanthamine and azapetine analogs tested are more selective in blocking alpha 1-adrenoceptors than alpha 2-adrenoceptors.

Adrenergic alpha-Antagonists↗

Tetrahydroquinolizinium ylides: preparation and 1,3-dipolar cycloaddition.

By the Cu(II)-catalyzed reaction of 2-(4-diazo-3-oxoalkyl)pyridines (2), 4-alkoxycarbonyl (or 4-acyl)-3-oxo-1,2,3,4-tetrahydroquinolizinium ylides (3) were obtained in high yields. From the cycloaddition reaction of 3 with acetylenic esters (propynoates or acetylenedicarboxylates) the labile [2 + 3] cycloadducts, 3-oxo-3H-2a,4,5,8a-tetrahydropyrrolo[2,1,5-de]quinolizine-2a-carboxylates (8 or 12), were identified, which further reacted with DMAD (dimethyl acetylenedicarboxylate) to afford azocine derivatives (15 or 16) and produced pyrrolodihydroquinolizines (9 or 20) by dealkoxycarbonylation.

Journal Article↗

Developmental profiles of various cholinergic markers in the rat main olfactory bulb using quantitative autoradiography.

The existence of possible relationships among the developmental profile of various cholinergic markers in the main olfactory bulb (OB) was assessed by using in vitro quantitative autoradiography. Muscarinic receptors were visualized with [3H]pirenzepine (muscarinic M1-like sites) and [3H]AF-DX 384 (muscarinic M2-like sites); nicotinic receptors by using [3H]cytisine (nicotinic 42-like subtype) and [125I] alpha-bungarotoxin (nicotinic 7-like subtype); cholinergic nerve terminals by using [3H]vesamicol (vesicular acetylcholine transport sites) and [3H]hemicholinium-3 (high-affinity choline uptake sites). These various cholinergic markers exhibited their lowest levels at birth and reached adult values by the end of the 4-5 postnatal weeks. However, the density of presynaptic cholinergic markers and nicotinic receptors at postnatal day 2 represented a large proportion of the levels observed in adulthood, and displays a transient overexpression around postnatal day 20. In contrast, the postnatal development of cholinergic muscarinic M1-like and M2-like receptors is apparently regulated independently of the presynaptic cholinergic markers and nicotinic receptors. Two neurochemically and anatomically separate olfactory glomeruli subsets were observed in the posterior OB of the developing rat. These atypical glomeruli expressed large amounts of [3H]vesamicol-and [3H]hemicholinium binding sites without significant amounts of muscarinic M1, M2, or nicotinic alpha 4 beta 2 receptor binding sites. A significant density of [125I] alpha-bungarotoxin binding sites could be detected only at early postnatal ages. A few olfactory glomeruli specifically restricted to the dorsal posterior OB expressed a high density of [3H]cytisine binding sites but lacked significant binding of the two presynaptic cholinergic markers used here, suggesting their noncholinergic but cholinoceptive nature.

Alkaloids↗

Enhancement of the molecular ion yield in plasma desorption mass spectrometry using explosive matrices.

The working hypothesis of this study was that the chemical energy of matrix material may be released, although only on a microscale, under MeV ion bombardment and may assist ejection of large intact bioorganic molecules. To test the hypothesis, the performance of several common explosives, as matrices in plasma desorption mass spectrometry, was compared to the standard matrix, nitrocellulose (NC), which is also a high explosive. Two explosives, RDX and HMX, were found to be new, effective matrices for peptides and proteins. While the performance of RDX was comparable with that of nitrocellulose, HMX gave a superior molecular ion yield and a higher average charge state of desorbed molecular ions compared with NC. Noth RDX and HMX have a similar chemical composition and structure, although the latter is a more powerful explosive. The measured total ion yield allows the conclusion that the increase in the amount of ejected material, due to the chemical energy release in high explosives under MeV ion bombardment, is limited, perhaps to a factor of 2 to 3. The fact that not all tested explosives gave molecular ions from peptides and proteins suggests that other factors, such as gas-phase chemistry, may play a significant role in molecular ion formation.

Animals↗

In-line coupling capillary electrochromatography with amperometric detection for analysis of explosive compounds.

Amperometric detection at a bare gold electrode has been in-line coupled with capillary electrochromatography (CEC) for analysis of nitroaromatic and nitroamine explosives in contaminated soils and ground water. The CEC column packed with 3 microm C18 particles performed best using a mobile phase containing 70-80% methanol, 30 or 20% water, 5 mM sodium dodecyl sulfate (SDS) and 10mM 2-(N-morpholino)ethanesulfonic acid (MES). In contrast, the separation column packed with 1.5 km C18 particles exhibited the best separation when only 30% methanol was added to a mobile phase containing 70% water, 7 mM SDS, and 10 mM MES. The detection, based on electrochemical reduction of the explosives (-0.7 or -1 V vs. Ag/AgCl, depending upon the level of methanol in the mobile phase), was compatible with such mobile phases. The detection limits for 13 explosives ranged from 100 to 200 ppb, i.e., about twofold better than those obtained with electrokinetic chromatography (EKC)/amperometric detection. From an operational viewpoint, exhaustive column conditioning was a prerequisite and care should be taken to prevent bubble formation and current breakdown during the course of separation. The CEC column equipped with amperometric detection successfully measured explosives in ground water and extracts prepared from contaminated soils and the results obtained agreed well with those of the U.S. Environmental protection Agency (EPA) method.

Azocines↗