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Biomedical subjects

E Mutschler

Publications and source records attributed to E Mutschler.

At least 19 recordsLinked to original sources

Enantiospecific high-performance liquid chromatographic assay with fluorescence detection for the monoamine oxidase inhibitor tranylcypromine and its applicability in pharmacokinetic studies.

In order to be able to measure low concentrations of tranylcypromine enantiomers in biological material, chiral fluorescent derivatization and high-performance liquid chromatography (HPLC) were employed. The internal standard S-(+)-amphetamine and borate-sodium hydroxide buffer pH 11 were added to plasma or urine sample aliquots. o-Phthaldialdehyde was used for precolumn derivatization in combination with the chiral mercaptan N-acetylcysteine. HPLC resolution of the diastereoisomeric derivatives was possible on an octadecylsilane column. The mobile phase consisted of sodium phosphate buffer solution pH 6.5, methanol and tetrahydrofuran. The fluorescence of the eluate was monitored at 344/442 nm. The intra-day coefficients of variation were below 10%, the limit of determination was 0.5 ng/ml. The assay was found to be applicable for routine analyses in a preliminary pharmacokinetic study, in which an oral dose of 20 mg racemic tranylcypromine sulfate was administered to three healthy volunteers. The plasma concentrations were generally low, and those of S-(-)-tranylcypromine significantly exceeded those of the R-(+)-enantiomer. Average maximum concentrations were 57.5 and 6.3 ng/ml for S- and R-tranylcypromine, respectively. While S-tranylcypromine was well detectable within the whole study period (8 h), R-tranylcypromine concentrations fell below the detection limit after 4 h in two out of the three studied volunteers.

Chromatography, High Pressure Liquid

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

Stereoselective interaction of procyclidine, hexahydro-difenidol, hexbutinol and oxyphencyclimine, and of related antagonists, with four muscarinic receptors.

We investigated the binding properties of the (R)- and (S)-enantiomers of the muscarinic antagonists trihexyphenidyl, procyclidine, hexahydro-difenidol, p-fluoro-hexahydro-difenidol, hexbutinol, p-fluoro-hexbutinol, and their corresponding methiodides at muscarinic M1, M2, M3 and M4 receptor subtypes. In addition, binding properties of the (R)- and (S)-enantiomers of oxyphencyclimine were studied. The (R)- enantiomers (eutomers) of all the compounds had a greater affinity than the (S)-isomers for the four muscarinic receptor subtypes. The binding patterns of the (R)- and (S)-enantiomers were generally different. We did not observe any general correlation between the potency of the high-affinity enantiomer and the affinity ratio (eudismic ratio) of the two enantiomers. The results are discussed in terms of a 'four subsites' binding model.

Alkynes

PPADS, a novel functionally selective antagonist of P2 purinoceptor-mediated responses.

We have characterized PPADS (pyridoxalphosphate-6-azophenyl-2',4'-disulfonic acid) as a novel antagonist which selectively blocks P2 purinoceptor-mediated responses in rabbit vas deferens at pre- and postjunctional sites. PPADS did not interact with alpha 1-adrenoceptors, muscarinic M2 and M3 receptors, histamine H1 and adenosine A1 receptors. Thus, PPADS is a novel and useful pharmacological tool to study co-transmission in tissues where ATP and co-existing neurotransmitters act in concert.

Adenosine Triphosphate

Characterization of muscarinic receptors mediating vasodilation in guinea-pig ileum submucosal arterioles by the use of computer-assisted videomicroscopy.

Muscarinic receptors of resistance vessels (submucosal arterioles, outside diameter 50-75 microns) from the guinea-pig small intestine were investigated in vitro using a computer-assisted videomicroscopy system (Diamtrak). The muscarinic receptor which mediates vasodilation of precontracted [U-46619 (300 nM) or (-)-noradrenaline (10 microM)] arterioles was characterized with several muscarinic agonists and subtype-selective antagonists. The following agonists all produced equivalent maximum vasodilation (given in rank order of potency): acetylcholine = arecaidine propargyl ester (APE) greater than oxotremorine = (+/-)-muscarine = (+/-)-methacholine greater than carbachol greater than 4-[[N-(4-chlorophenyl)carbamoyl]oxy]-2-butynyltrimethylammonium iodide (4-Cl-McN-A-343). 4-[[N-(3-Chlorophenyl)-carbamoyl]oxy]-2-butynyltrimethylammonium chloride (McN-A-343) and N-ethyl-guvacine propargyl ester (NEN-APE) produced minimal or no arteriolar vasodilation. The muscarinic antagonists pirenzepine, (+-)-5,11-dihydro-11-[[[2-[2-((dipropylamino)methyl)-1-piperidinyl] ethyl]amino]-carbonyl]-6H-pyrido(2,3-b)(1,4)-benzodiazepin-6-one (AF-DX 384), 11-[[4-[4-(diethylamino)butyl]-1-piperidinyl]acetyl]-5,11-dihydro- 6H-pyrido(2,3-b)(1,4)-benzodiazepin-6-one (AQ-RA 741), p-fluorohexahydro-sila-difenidol (p-F-HHSiD), 4-diphenylacetoxy-N-methylpiperidine methiodide (4-DAMP) and (R)- and (S)-hexahydro-difenidol [(R)-HHD, (S)-HHD] shifted the muscarine, methacholine or carbachol dose-response curve to the right in a competitive manner. Schild analysis of the data yielded pA2 values for pirenzepine (6.74/6.9), AF-DX 384 (6.72), AQ-RA 741 (6.58), p-F-HHSiD (7.53/7.57), 4-DAMP (9.06), (R)-HHD (7.88/8.32) and (S)-HHD (5.52/5.88). Thus, it can be concluded that submucosal arterioles possess only the M3 functional muscarinic receptor, the activation of which causes blood vessel dilation.(ABSTRACT TRUNCATED AT 250 WORDS)

15-Hydroxy-11 alpha,9 alpha-(epoxymethano)prosta-5

Affinity profiles of pizotifen, ketotifen and other tricyclic antimuscarinics at muscarinic receptor subtypes M1, M2 and M3.

The affinity of pizotifen, ketotifen and other tricyclic antimuscarinic drugs for different muscarinic receptor subtypes was investigated in vitro in functional experiments with field-stimulated vas deferens of the rabbit (M1 and M2 receptors) and with ileum and trachea of the guinea-pig (M3 receptors). All compounds were competitive antagonists in the three tissues. Like the close analogue cyproheptadine (pA2 = 7.99-8.08), pizotifen (pA2 = 7.23-7.81) and ketotifen (pA2 = 6.34-6.99) were devoid of selectivity for the receptor subtypes studied. Thiazinamium, although exhibiting high affinity for muscarinic receptors (pA2 = 7.83-8.51), was found to be non-selective. In contrast, the novel pirenzepine analogue nuvenzepine was selective for M1 receptors (pA2 = 6.63-7.74). The lack of selectivity of cyproheptadine, pizotifen and ketotifen is reflected in the chemical structures of these drugs. All three antagonists are composed of a very similar tricyclic ring system linked to a 1-methyl-4-piperidylene ring. The finding that thiazinamium, pizotifen and cyproheptadine were potent muscarinic antagonists and possessed non-selective affinity characteristics may have therapeutic implications.

(4-(m-Chlorophenylcarbamoyloxy)-2-butynyl)trimethy

Bioavailability study of two different verapamil formulations.

Relative bioavailability and bioequivalence of two oral verapamil preparations were investigated (dosage 80 mg, film-coated tablets as reference, dragées as test formulation). The clinical study was performed in a 2-period-cross-over design with 16 male healthy volunteers (mean age 28.8 +/- 3 years). The active metabolite norverapamil was included in the investigation. To assess bioequivalence several pharmacokinetic characteristics (i.e. AUC(o-oo), Cmax, tmax) were taken into account. Shortest 90% confidence intervals were calculated based on parametric (ANOVA, ANOVAlog) and non-parametric (Wilcoxon, Mann-Whitney) statistical tests. A positive decision for bioequivalence was accepted if the confidence intervals did not exceed the limits of 80-120% for AUC and 70-130% for Cmax. A mean relative bioavailability of 127% for the test preparation was found. Thus, bioavailability of the dragées is marked higher than bioavailability of the film-coated tablets.

Adult

Preparation and diuretic properties of novel amiloride analogues.

Fifteen novel amiloride analogues were synthesized and their diuretic properties compared to amiloride and triamterene in white wistar rats. Whereas none of the 6-substituted derivatives exhibited significant natriuretic and antikaliuretic effects, five of the compounds modified in the 2-position were found equal or better than standards. The results are discussed with respect to chemical structure and physiochemical properties.

Amiloride

The influence of hydrochlorothiazide on the pharmacokinetics of enalapril in elderly patients.

In a randomized, cross-over, single-dose study of 19 elderly hypertensive patients (aged 62-84 y, SBP greater than 160 mmHg, DBP greater than 100 mmHg, creatinine clearance 11-93 ml.min-1) we have studied the pharmacokinetics of the angiotensin converting enzyme (ACE) inhibitor enalapril after a single oral dose of either 10 mg enalapril or 10 mg enalapril + 25 mg hydrochlorothiazide. The pharmacokinetics of enalapril were unaffected by hydrochlorothiazide, but there was a significant reduction in renal clearance and a significant increase in AUC(0-24 h) of enalaprilat after hydrochlorothiazide, resulting in higher serum concentrations of the active drug. This was independent of the individual degree of renal impairment and might be due either to an initial reduction of GFR by hydrochlorothiazide or to interference with the tubular secretion of enalaprilat. The relationships between serum enalaprilat and serum ACE activity were similar after both treatments, both consistent with a value for Ki of enalaprilat of about 0.1 nmol.l-1. Thus, serum ACE activity was not affected by hydrochlorothiazide but completely reflected the pharmacokinetics of enalaprilat in both treatments.

Administration, Oral

Constant K+/Na+ excretion ratio during peak diuresis after piretanide but insignificant K+ loss during 24 hours.

The effect of piretanide on Na+ and K+ excretion and on renal haemodynamics has been studied in 14 subjects with a GFR (Inulin clearance) ranging from 140 to 2 ml.min-1. After a two day fluid and salt balance control period, oral piretanide 6 mg induced a natriuresis and kaliuresis, which was proportional to the GFR of the patients. The ratio of drug-induced K+ to Na+ excretion was always 0.13, independent of individual GFR. This was only true for the duration of the action of piretanide, tau, which was 6 h in subjects with normal GFR and 5 h in patients with impaired kidney function. Surprisingly, after tau, i.e. for 24 h after drug administration, less potassium was lost than in the pretreatment period. Neither the GFR nor the renal blood flow (PAH clearance) of the patients were affected by piretanide. In conclusion, piretanide given once a day was an effective natriuretic agent, even in end-stage renal disease, and it produced relatively little K(+)-loss when given once daily.

Adult

Cryptolepis sanguinolenta: antimuscarinic properties of cryptolepine and the alkaloid fraction at M1, M2 and M3 receptors.

From an ethanol extract of the roots of Cryptolepis sanguinolenia the alkaloid fraction and its main constituent cryptolepine were isolated by partitioning at pH 11 and column chromatography using silica gel and chloroform/methanol as eluent. Cryptolepine was identified mainly by EI-MS and 1H/13C-NMR spectroscopy. Cryptolepine (3-30 microM) and the alkaloid fraction of Cryptolepis sanguinolenta (3-10 micrograms/ml) antagonized muscarinic effects at M1 receptors in rabbit vas deferens, M2 receptors in guinea-pig atria, and M3 receptors in guinea-pig ileum. The experiments, using N-methylatropine as reference drug, showed a significant antimuscarinic activity for both cryptolepine and the alkaloid fraction, but no appreciable receptor subtype selectivity (pA2 = 5.00-5.73). Cryptolepine was determined as the antimuscarinic principle of Cryptolepis sanguinolenta. At higher concentrations both materials displayed negative inotropic effects.

Alkaloids

Modulation of electrolyte excretion by potassium retaining diuretics.

Triamterene and amiloride belong to the potassium retaining diuretics of the cycloamidine type. These agents exert natriuretic as well as antikaliuretic effects. After administration of high doses an additional magnesium-sparing property also becomes evident. Whereas amiloride is only metabolized to a minor extent, triamterene is rapidly bio-transformed to the phase-I metabolite, hydroxytriamterene, and the phase-II metabolite, hydroxytriamterene sulphuric acid ester. This acidic phase-II metabolite is still diuretically active, but its electrolyte excretion profile is different from the parent compound: although the natriuretic properties are not altered, the potassium retention is very weak. Further studies in rats with cycloamidine derivatives of the triamterene type containing neutral, acidic or basic side chains at the phenyl moiety as well as with basic pteridine derivatives, revealed further evidence that the natriuretic, antikaliuretic and antimagnesiuretic effects can be influenced almost independently by structural variations of the parent drug. Thus, it was possible to obtain compounds predominantly increasing sodium excretion without affecting potassium or magnesium excretion. On the other hand, substances could be developed with mainly antikaliuretic effects, or compounds, which enhanced sodium and reduced magnesium excretion and did not interfere with the potassium elimination. Based on these findings, it can be concluded that distal tubular transport of sodium, potassium and magnesium may be influenced independently from each other. These renal effects of triamterene and its derivatives seem to be independent of their antiarrhythmic actions, as suggested by recent studies.

Animals

Effects of a new pteridine derivative on urinary sodium, potassium and magnesium excretion in conscious saline-loaded rats.

1. Two recently synthesized pteridine derivatives (RPH 3036; RPH 3038) were tested in conscious saline-loaded rats and showed natriuretic and antimagnesiuretic properties but hardly reduced potassium excretion. 2. In the same model a dose-response curve was performed for RPH 3036. ED50 and Emax values were calculated for the natriuretic (ED50 = 13.4 mumol kg-1; Emax = 1.08 mmol kg-1) and antimagnesiuretic (ED50 = 11.3 mumol kg-1; Emax = -0.099 mmol kg-1) properties of RPH 3036. There were no significant changes of potassium and calcium excretion. 3. After a single dose of RPH 3036 (100 mumol kg-1) the time course of electrolyte excretion was analysed over 6 h. RPH 3036 did not show any significant effects on renal potassium and calcium excretion whereas a pronounced decrease (P less than 0.01) in renal magnesium excretion was evident during the 6 h. A moderate increase of sodium excretion was observed only after 3, 5 and 6 h. 4. A selective reduction of magnesium secretion in the late distal tubule and collecting duct was proposed as a possible mechanism of action of RPH 3036. This would explain the fast onset of action as well as the lack of antikaliuretic and anticalciuretic effects. The high selectivity of RPH 3036 makes it potentially valuable for the future investigation of renal magnesium transport.

Animals

Synthesis, natriuretic, antikaliuretic and antimagnesiuretic properties of an acidic triamterene derivative.

2,4,7-Triamino-6-(4-methanesulfonamidophenyl) pteridine (RPH 3048) is a new acidic triamterene derivative. Relevant physico-chemical constants were determined (solubility at pH 7.4 = 3.7 mg/l; logP at pH 7.4 = 0.2) and pharmacokinetic as well as pharmacodynamic properties were investigated, using male Wistar rats. After intravenous application of the test substances urine was collected, its volume and electrolyte composition determined, and the urine recovery of the drugs was analysed. The comparison of RPH 3048 with triamterene (CAS 396-01-0) revealed almost equipotent natriuretic and potassium-retaining effects for both drugs and an additional relative magnesium-sparing activity of RPH 3048. The urine recovery of RPH 3048 after 6 h was higher (20.6%) than that of triamterene (12.9%). No metabolite of RPH 3048 could be detected in the urine whereas a triamterene metabolite was found. Due to its good solubility in alkaline medium RPH 3048 could be dissolved (at pH 11-12) and then administered intravenously together with a loop diuretic (furosemide). Urinary electrolyte excretion following administration of two different combinations of RPH 3048 and furosemide (combination A: 12.5 mumol/kg RPH 3048 and 25 mumol/kg furosemide; combination B: 25 mumol/kg RPH 3048 and 25 mumol/kg furosemide) was compared to urinary electrolyte excretion of a control group and a group only treated with furosemide (25 mumol/kg). The additional application of RPH 3048 reduced in both groups potassium and magnesium excretion to control level but did not compromise furosemide induced natriuresis. In contrast to earlier investigations these results suggest that it is possible to develop acidic triamterene derivatives with potent antikaliuretic effects.

Animals

Pharmacokinetics of azosemide in patients with T-drain after cholecystectomy.

In an open clinical trial the pharmacokinetics of orally administered azosemide (2-Chloro-5-(1H-tetrazol-5-yl)-4-[(2- thienylmethyl)amino] benzene sulfonamide. Luret, CAS 27589-33-9) was surveyed in a group of 10 patients with T-drain after cholecystectomy. The mean peak concentration was reached after 2.35 h (SE: 0.25 h) and was 474 ng/ml (142 ng/ml). The plasma elimination half-life was estimated to be 6.37 h (1.7 h). In 24 h 5.4% of the dose was excreted unchanged via urine and bile. Only a small fraction of the dose (0.53%) was recovered as glucuronide from urine and bile. Approximately 2% (0.74%) of the dose was excreted unchanged via bile. No other metabolites were detected. Plasma AUCO-24h was 3113 micrograms.h/l. The renal clearance of 27 ml/min (8.8 ml/min) was 3 times higher than the biliary clearance of 10 ml/min (2.4 ml/min). Azosemide is rapidly but incompletely absorbed and shows a longer half-life when compared with other loop diuretics. Enterohepatical circulation and first-pass effect seem to be less significant because low amount of azosemide is excreted via bile.

Adult

Studies on the metabolic clearance of ciclotropium to alpha-phenylciclopentylacetic acid using a new enantiospecific metabolite assay.

Ester hydrolysis represents an important biotransformation pathway for various parasympatholytic agents. Cleavage of the ciclotropium ester bond results in the formation of alpha-phenylciclopentylacetic acid (PCA). The relevance of this metabolic route for ciclotropium bromide (HIT-PCE, CAS 85166-20-7) including its stereochemical aspects was studied in a preliminary pharmacokinetic study. An enantiospecific assay for biological material was developed that is based on chiral derivatization of PCA with N-ethyl-N'-(3-dimethylaminopropyl)carbodiimide (EDAC) and the primary amine S-FLOPA, a chiral coupling component for carboxylic acids derived from S-flunoxaprofen, followed by HPLC resolution. R-(--)-Ibuprofen was used as internal standard. From plasma or urine PCA can be extracted into n-hexane/ethanol (9:1) at pH 4 under addition of sodium chloride. Derivatization with EDAC/FLOPA was performed under addition of 1-hydroxybenzotriazole in anhydrous dichloromethane that contained trace amounts of pyridine (ambient temperature; 2 h reaction time). The chromatographic separation was performed on a silica gel stationary phase (Zorbax Sil) using n-hexane-chloroform-ethanol (100:10:1, by vol.) as mobile phase (flow rate, 2 ml/min; fluorescence-detection, 305/355 nm; elution order of the derivatives, (-) before (+)). Limit of quantification was 1.0 ng/ml for plasma and 10 ng/ml for urine. In the pharmacokinetic study in two healthy volunteers who received a single i.v. dose of 10 mg ciclotropium race-mate the PCA concentrations in plasma were below the detection limit, but approx. 1.5% of the administered dose were excreted into urine as the respective glucuronides.(ABSTRACT TRUNCATED AT 250 WORDS)

Bridged Bicyclo Compounds, Heterocyclic