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  • 1
    ISSN: 1520-4804
    Source: ACS Legacy Archives
    Topics: Chemistry and Pharmacology
    Type of Medium: Electronic Resource
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  • 2
    Electronic Resource
    Electronic Resource
    Springer
    Naunyn-Schmiedeberg's archives of pharmacology 338 (1988), S. 246-249 
    ISSN: 1432-1912
    Keywords: Methoctramine ; Polymethylene tetraamines ; Cardioselectivity ; M1/M2 receptors ; Muscarinic receptor subtypes
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Notes: Summary The antimuscarinic effects of methoctramine (N, N′- bis[6-[(2-methoxybenzyl)amino]hexyl]-1,8-octanediamine tetrahydrochloride), a polymethylene tetraamine endowed with high cardioselectivity in vitro, were assessed in two in vivo preparations. Methoctramine (300 μg/kg i.v.) strongly inhibited the methacholine- and muscarine-induced bradycardia in the anaesthetized and pithed rat, respectively. The same dose of methoctramine did not significantly affect the depressor action of methacholine in the anaesthetized rat mediated by vascular M2 receptors. Furthermore, even high doses of methoctramine (up to 1 mg/kg i. v.) did not reduce the ganglionic M1 receptor-mediated tachycardia and pressor response to muscarine or McN-A-343 in the pithed rat. These data suggest that methoctramine while showing high affinity for cardiac M2α receptors has rather low affinity for ganglionic M1 and vascular M2 receptors. This in vivo study thus provides further evidence to support the view that methoctramine is a potent and highly selective antagonist of cardiac M2α receptors.
    Type of Medium: Electronic Resource
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  • 3
    Electronic Resource
    Electronic Resource
    New York, NY [u.a.] : Wiley-Blackwell
    Chirality 1 (1989), S. 170-173 
    ISSN: 0899-0042
    Keywords: phenglutarimide enantiomers ; enantioselectivity ; antiparkinsonian drugs ; M1-selective antagonists ; rabbit vas deferens ; pirenzepine ; Chemistry ; Organic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: The affinity of the enantiomers of phenglutarimide at three muscarinic receptor subtypes was examined in vitro using field-stimulated rabbit vas deferens (M1 receptors) and guinea pig atria (M2α receptors) and ileum (M2β receptors). Extremely high stereoselectivity was observed and higher affinities (up to 6000-fold) were found for the (+)-S-enantiomer. The stereoselectivity ratios were different at the three subtypes, and the stereochemical demands made by the muscarinic receptors were most stringent at M1 receptors. (+)-(S)-Phenglutarimide was found to be a potent M1-selective antagonist (pA2 at M1 = 8.53). Its receptor selectivity profile is qualitatively similar to that of pirenzepine. (-)-(R)-Phenglutarimide showed no comparable discriminatory properties.
    Additional Material: 1 Ill.
    Type of Medium: Electronic Resource
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  • 4
    ISSN: 0170-2041
    Keywords: Chemistry ; Organic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Description / Table of Contents: On the Absolute Configuration of the Enantiomers of the Antimuscarinic Agents Procyclidine and Tricyclamol Iodide: X-Ray Structural Analysis of (R)-1-[3-Cyclohexyl-3-hydroxy-3-phenyl-propyl]-1-methylpyrrolidinium IodideThe absolute configurations of the antimuscarinic agents procyclidine (1a) and tricyclamol iodide (2a) were established by X-ray structural analysis of (R)-1-[3-Cyclohexyl-3-hydroxy-3-phenyl-propyl]-1-methylpyrrolidinium iodide [(R)-tricyclamol iodide, (R)-2a]. The antimuscarinic potency of (R)-1a and (R)-2a is about 380 and 90 times, respectively, greater than that of the corresponding (S)-configurated enantiomers (guinea-pig ileum).
    Notes: Durch Röntgenstrukturanalyse von (R)-1-[3-Cyclohexyl-3-hydroxy-3-phenylpropyl]-1-methyl-pyrrolidiniumiodid [(R)-Tricyclamoliodid, (R)-2a] wurden die absoluten Konfigurationen der Enantiomere der Antimuskarinika Procyclidin (1a) und Tricyclamoliodid (2a) bestimmt. (R)-1a und (R)-2a sind etwa 380-bzw. 90mal stärker antimuskarinisch wirksam (isoliertes Meerschweinchen-Ileum) als die entsprechenden (S)-konfigurierten Enantiomere.
    Additional Material: 2 Ill.
    Type of Medium: Electronic Resource
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  • 5
    ISSN: 0170-2041
    Keywords: Chemistry ; Organic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Description / Table of Contents: Sila-Pharmaca, 33.  -  Synthesis and Properties of the Selective Antimuscarinic Agent Cyclohexylphenyl(3-piperidinopropyl)silanolThe synthesis of the selective antimuscarinic agent cyclohexylphenyl(3-piperidinopropyl)silanol (1b) is described. Starting with (3-chloropropyl)trimethoxysilane, 1b was obtained by four reaction steps and isolated as hydrochloride 2b with a total yield of about 45%.  -  Because of its high pharmacological selectivity 1b has become a reference drug in experimental pharmacology for the differentiation of muscarinic receptors.
    Notes: Die Synthese des selektiven Antimuskarinikums Cyclohexylphenyl(3-piperidinopropyl)silanol (1b) wird beschrieben. 1b wurde - ausgehend von (3-Chlorpropyl)trimethoxysilan - durch eine vierstufige Reaktionsfolge erhalten und als Hydrochlorid 2b mit einer Gesamt-ausbeute von etwa 45% isoliert.  -  1b ist aufgrund seiner großen pharmakologischen Selektivität zu einer Standardsubstanz in der experimentellen Pharmakologie bei der Differenzierung von Muskarinrezeptoren geworden.
    Type of Medium: Electronic Resource
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  • 6
    ISSN: 0268-2605
    Keywords: o-methoxy-sila-hexocyclium ; sila-hexocyclium ; sila-drugs ; antimuscarinics ; muscarinic receptor subtypes ; Chemistry ; Organic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: The synthesis of the potent and highly selective silicon-containing antimuscarinic agent o-methoxysila-hexocyclium methyl sulfate and its corresponding tertiary amine (isolated as the dihydrochloride) is described. The quarternary compound is an o-methoxy derivative of sila-hexocyclium methyl sulfate, which represents one of the tools currently used in experimental pharmacology for the subclassification of muscarinic receptors. The o-methoxy derivative, the pharmacological profile of which differs substantially from that of the nonmethoxy compound, is also recommended as a tool for the investigation of muscarinic receptor heterogeneity.
    Type of Medium: Electronic Resource
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  • 7
    ISSN: 0009-2940
    Keywords: Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Description / Table of Contents: Sila-Pharmaca, 371). - Preparation and Properties of tbe Enantiomers of the Antimuscarinic Agents Sila-Procyclidine and Sila-Tricyclamol Iodide: optically Active Silanols with Silicon as the Centre of Chirality2)The enantiomers of sila-procyclidine (R)-1b and (S)-1b [ 〉 97% ee (NMR), 99.7% ee (DSC)] were obtained by resolution with L-(+)- and D-(-)-tartaric acid, respectively. Starting from (R)-1b and (S)-1b, the hydrochlorides (R)-2b and (S)-2b were prepared and the enantiomers of sila-tricyclamol iodide (R)-3b and (S)-3b [ 〉 96% ee (NMR)] were synthesized by reaction with CH3I. The optically active silanols show configurational stability in the crystalline state and in inert solvents, whereas they racemize in aqueous solution (3b faster than 1b). By analogy with the stereoselectivity of antimuscarinic action of the enantiomers of the carbon analogues procyclidine (1a) and tricyclamol iodide (3a), the (R) enantiomers of 1b and 3b show a greater affinity for the ileal M2β and atrial M2α muscarinic receptors of the guinea pig than the corresponding (S) antipodes. All silicon compounds exhibit a greater antimuscarinic potency than their carbon analogues, whereas the stereoselectivity of action is more pronounced for the carbon compounds. The differences in affinity for (R)-1b and (S)-1b for ileal and atrial muscarinic receptors confirm the present concept of heterogeneity in muscarinic M2 receptors (M2α: atrial type; M2β: ileal type).
    Notes: Durch Racematspaltung mit L-(+)- bzw. D-(-)-Weinsäure wurden die Enantiomere des Sila-Procyclidins (R)-1b und (S)-1b erhalten [〉 97% ee (NMR), 99.7% ee (DSC)]. Daraus wurden die Hydrochloride (R)-2b und (S)-2b und durch Umsetzung mit CH3I die Enantiomere des Sila-Tricyclamol-iodids (R)-3b und (S)-3b [ 〉 96% ee (NMR)] hergestellt. Die optisch aktiven Silanole sind in kristalliner Form und in inerten Lösungsmitteln konfigurationsstabil, während sie in wässeriger Lösung racemisieren (3b schneller als 1b). In Analogie zur Stereoselektivität der antimuskarinischen Wirkung der Enantiomere der Kohlenstoff-Analoga Procyclidin (1a) und Tricyclamol-iodid (3a) besitzen die (R)-Enantiomere von 1b und 3b eine größere Affinität zu den ilealen M2β- und atrialen M2α- Muskarinrezeptoren des Meerschweinchens als die (S)-Antipoden. Alle Silicium-Verbindungen sind stärker antimuskarinisch wirksam als ihre Kohlenstoff-Analoga, deren Stereoselektivität jedoch stärker ausgeprägt ist. Die Unterschiede in der Affinität von (R)-1b und (S)-1b zu den ilealen und atrialen Muskarinrezeptoren bestätigen das Konzept der Heterogenität muskarinischer M2-Rezeptoren (M2α: atrialer Typ; M2β: ilealer Typ).
    Additional Material: 2 Ill.
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  • 8
    ISSN: 0170-2041
    Keywords: Difenidol, (R)- and (S)-hexahydro- ; Antimuscarinic properties ; Muscarinic receptor subtypes ; Chemistry ; Organic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Description / Table of Contents: Preparation and Properties of the Enantiomers of the Selective Antimuscarinic Agent 1-Cyclohexyl-1-phenyl-4-piperidino-1-butanol (Hexahydro-Difenidol)Using (S)- or (R)-mandelic acid as the resolving agent, the enantiomers of 1-cyclohexyl-1-phenyl-4-piperidino-2-butin-1-ol [(R)-2 and (S)-2] were prepared (enantiomeric purity: ee = 99.7%; calorimetric analysis). Catalytic hydrogenation (Pd/C contact) of (R)-2 and (S)-2 yielded the enantiomers of 1-cyclohexyl-1-phenyl-4-piperidino-1-butanol [(R)- and (S)-hexahydro-difenidol, (R)-1a and (S)-1a] which were isolated as hydrochlorides [(R)-1a ⋅ HCl and (S)-1a ⋅ HCl, ee = 99.7%]. The absolute configuration of the enantiomers of 1a and 2 was determined by an X-ray crystal structure analysis of the mandelate (S)-1a ⋅ (R)-C6H5CH(OH)COOH. (R)-Hexahydro-difenidol [(R)-1a] and (R)-2 exhibit a higher affinity for the atrial M2α and ileal M2β muscarinic receptors of the guinea pig than the respective antipodes (S)-1a and (S)-2 (atrial stereoselectivity index: 17 and 8.6, respectively; ileal stereoselectivity index: 193 and 44, respectively). In addition, (R)-1a and (R)-2 exhibit a significantly higher affinity for the M2β receptors of the ileum than for the M2α receptors of the atrium (atrium/ileum ratio: 21 and 10, respectively). Thus, (R)-1a and (R)-2 are valuable tools for the identification and characterization of muscarinic M2 subtypes. In contrast, the less potent (S)-enantiomers of 1a and 2 do not differentiate between M2α and M2β receptors.
    Notes: Durch Racematspaltung mit (S)- bzw. (R)-Mandelsäure wurden die Enantiomere von 1-Cyclohexyl-1-phenyl-4-piperidino-2-butin-1-ol [(R)-2 und (S)-2] dargestellt (Enantiomerenreinheit: ee = 99.7%, kalorimetrische Analyse). Katalytische Hydrierung (Pd/C-Kontakt) von (R)-2 und (S)-2 ergab die Enantiomere von 1-Cyclohexyl-1-phenyl-4-piperidino-1-butanol [(R)- und (S)-Hexahydro-Difenidol, (R)-1a und (S)-1a], die als Hydrochloride (R)-1a ⋅ HCl und (S)-1a ⋅ HCl isoliert wurden (ee = 99.7%). Die absolute Konfiguration der Enantiomere von 1a und 2 wurde durch Röntgenkristallstrukturanalyse des Mandelats (S)-1a ⋅ (R)-C6H5CH(OH)COOH bestimmt. (R)-Hexahydro-Difenidol [(R)-1a] und (R)-2 besitzen eine höhere Affinität zu den atrialen M2α-und ilealen M2β-Muscarinrezeptoren des Meerschweinchens als die entsprechenden Antipoden (S)-1a und (S)-2 (atrialer Stereoselektivitätsindex: 17 bzw. 8.6; ilealer Stereoselektivitätsindex: 193 bzw. 44). Darüber hinaus besitzen (R)-1a und (R)-2 eine signifikant höhere Affinität zu den M2β-Rezeptoren des Ileums als zu den M2α-Rezeptoren des Atriums und sind somit wertvolle Modellverbindungen zur Identifizierung und Charakterisierung von muscarinischen M2-Subtypen (Atrium/Ileum-Quotient: 21 bzw. 10). Im Gegensatz hierzu vermögen die schwächer wirksamen (S)-Enantiomere von 1a und 2 nicht zwischen den M2α- und M2β-Rezeptoren zu unterscheiden.
    Additional Material: 4 Ill.
    Type of Medium: Electronic Resource
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