Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Mephentermine”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 19 recordsLinked to original sources

The effect of mephentermine on isolated dog hearts, normal and pretreated with reserpine.

The inotropic activity of the non-catechol sympathomimetic amine, mephentermine sulphate, on the failing dog heart-lung preparation, was 1/10 to 1/20 that of adrenaline. Mephentermine showed no inotropic effect on preparations from animals pretreated with reserpine. The chronotropic and "calorigenic" actions of mephentermine were tested on modified heart-lung preparations to permit a more accurate measurement of coronary flow, and were found to be greater than its inotropic effect relative to adrenaline. Furthermore, the action of mephentermine was longerlasting than that of adrenaline. If adrenaline was infused 15 min after the termination of mephentermine administration and when the action of the latter was still at a maximum, a further increase in heart rate and especially oxygen consumption was observed. In preparations from dogs treated with enough reserpine to deplete the heart of noradrenaline, mephentermine had only slight chronotropic and calorigenic actions. However, further addition of adrenaline after a 15 min pause caused a rise in heart rate, oxygen consumption, and coronary flow which almost duplicated the additive effects of both amines on the preparations not treated with reserpine. It would appear that adrenaline acted on its own and in addition "restored" the action of mephentermine on the reserpinized preparations. The action of adrenaline alone on reserpinized preparations was not increased compared with that on normal preparations. These observations are relevant to a consideration of the mechanism of action of non-catechol sympathomimetic amines on the heart, and are in harmony with the concept that mephentermine, a non-catechol amine, requires the presence of added or stored catechol amines for its action. Reserpine treatment did not alter the mechanical efficiency of the heart despite its depletion of noradrenaline.

Amines↗

Compatibility of mephentermine sulfate with hydrocortisone sodium succinate or aminophylline in 5% dextrose injection.

The compatibility and stability of mephentermine sulfate with hydrocortisone sodium succinate or aminophylline in 5% dextrose injection were studied. Mephentermine sulfate injection (equivalent to mephentermine 300 mg) was added to both hydrocortisone sodium succinate injection (equivalent to hydrocortisone 100 mg--admixture I) and aminophylline injection 250 mg (admixture II), each in 5% dextrose injection 400 ml. The solutions were stored in sealed USP type I containers and stored at 0-4 degrees C, 30 +/- 2 degrees C, and 45 +/- 1 degree C. Aliquots were drawn initially and at 4 and 24 hours for pH, drug content, and degradation product determinations. Mephentermine sulfate content was analyzed by a spectrophotometric method involving ion-pair extraction with tropaeolin 00. Hydrocortisone sodium succinate and aminophylline were analyzed by color reaction with isoniazid and UV spectrophotometry, respectively. The content of mephentermine and total hydrocortisone showed no change in admixture I under all test conditions. Hydrocortisone sodium succinate ester hydrolyzed slowly, but not more than 5% after 24 hours at 45 degrees C. There was no appreciable loss of mephentermine sulfate or aminophylline potency in admixture II. The pH of the solutions did not change over the period of study. The results indicate that both admixtures were compatible and stable under the tested storage conditions for at least 24 hours.

Aminophylline↗

The influence of diuretics on the excretion and metabolism of doping agents - I. Mephentermine.

The urinary excretion of mephentermine and its major metabolite phentermine in human volunteers was followed over a period of several days after oral administration of mephentermine. The excretion of both substances was affected by urinary pH. Maximum excretion was observed 2-4 h after administration and the total proportion of mephentermine excreted during 54 h was 57 to 83%. Based on urinary values, the biological half-life of elimination of mephentermine was 9.9 +/- 2.6 h. The ingestion of acetazolamide shortly after administration of mephentermine resulted in a decrease in excretion of both mephentermine and phentermine during one day; in some instances, the amounts of these substances in the urine were below the detection limit for a period of 3-9 h. The administration of frusemide only produced a urinary diluting effect during 2-4 h after administration.

Journal Article↗

Mephentermine dependence with psychosis. A case report.

Dependence on mephentermine, a widely used sympathomimetic pressor agent, is so far unreported, although misuse of inhalers is recognised. A case of mephentermine dependence associated with chronic psychosis is reported here. Psychosis initially surfaced with chronic dexamphetamine abuse, but was sustained for 3 years by mephentermine. After a period of remission lasting for 4 years, the patient again developed psychosis on restarting abuse of mephentermine, which lasted for 5 years.

Adult↗

Randomised trial of intravenous infusion of ephedrine or mephentermine for management of hypotension during spinal anaesthesia for Caesarean section.

This study compared the effects of intravenous infusions of ephedrine and mephentermine for maintenance of maternal arterial pressure and neonatal outcome in pregnant women receiving subarachnoid block for lower segment Caesarean section. Sixty patients who developed hypotension following subarachnoid block for Caesarean section were randomly divided into two groups of 30 each to receive an intravenous infusion of ephedrine or mephentermine. Hypotension was defined as a decrease in systolic blood pressure of > or = 20% from the baseline value or an absolute value of <100 mmHg, whichever was higher. The vasopressor infusion was titrated to maintain systolic blood pressure between 'hypotension' and baseline values. Baseline haemodynamic parameters, haemodynamic changes subsequent to the start of vasopressor infusion, duration of hypotension and amount of vasopressor required were statistically similar for both groups. Neonatal APGAR scores and acid-base profiles were also comparable. To conclude, mephentermine can be used as safely and effectively as ephedrine for the management of hypotension during spinal anaesthesia in patients undergoing elective Caesarean section.

Adrenergic Agents↗

The identification and analysis of the metabolic products of mephentermine.

Phentermine (Ib), N-hydroxymephentermine (Ic) and N-hydroxyphentermine (Id) were identified as metabolic products after in vitro incubation of mephentermine (Ia) with rabbit liver microsomal fractions. Compounds Ia, Ib and Ic were also identified as excretion products in the urine of a human subject given a single dose of mephentermine (Ia) sulphate. Derivatization with acetic anhydride, trifluoroacetic anhydride and the trimethylsilyl donor reagent N,O-bis-(trimethylsilyl)-trifluoroacetamide (BSTFA) or hexamethyldisilazane (HMDS) were used for qualitative identification of the metabolic products Ib-Id by g.l.c.-mass spectrometry and for quantitative determination of Ia-Id after extraction from rabbit hepatic homogenates. The synthesis of N-hydroxymephentermine (Ic) and the properties of the metabolic products are reported.

Adult↗

[Suitability of mephentermine for the management of arterial hypotension in pregnancy].

10 late pregnant women with hypotension were examined before and after the intravenous injection of 30 mg mephentermin with the method of quantitative sphygmometry, the bloodless graphic registration of the arterial blood pressure and direct electronic timing of pulse wave velocity. Systolic and diastolic blood pressure increase significantly. The cause of this rise in arterial blood pressure is the increase of stroke volume exclusively. Heart rate and total peripheral resistance remain constant. This hemodynamic mode of action is a favourable one in regard to protection of uteroplacental blood flow. Therefore mephentermin is suitable for treatment of hypotension in pregnancy.

Drug Evaluation↗

Urinary and biliary metabolites of mephentermine in male Wistar rats.

1. Excretion of urinary and biliary radioactivity, and metabolites of [3H]mephentermine (MP), after i.p. or subcutaneous administration of [3H]MP to male Wistar rats, were determined by preparative t.l.c.-liquid scintillation counting. 2. About 45% of the radioactivity administered i.p. was excreted in the 24 h urine. The major urinary metabolite was conjugated p-hydroxymephentermine (p-hydroxy-MP), which accounted for about 18% of the administered radioactivity in the 24 h urine. 3. About 4.2% of the radioactivity administered subcutaneously was excreted in bile during 24 h. The major biliary metabolite was conjugated p-hydroxy-MP, which accounted for about 39% of the radioactivity excreted in the bile in 24 h. 4. Urinary and biliary minor metabolites detected were phentermine (Ph), p-hydroxyphentermine (p-hydroxy-Ph), N-hydroxyphentermine (N-hydroxy-Ph), N-hydroxymephentermine (N-hydroxy-MP) and their conjugates, and conjugated MP. 5. The conjugates were considered to be glucuronides from the inhibitory effect of saccharic acid 1,4-lactone on their hydrolysis with beta-glucuronidase. 6. Biliary excretion rates of conjugated p-hydroxy-Ph and p-hydroxy-MP reached maxima at 3 to 4 h, and non-conjugated metabolites were maximal at 1 to 2 h, after administration. 50% of the biliary metabolites was excreted within 5 h.

Animals↗

Isolation of urinary p-hydroxylated metabolites of mephentermine and phentermine in male Wistar rats.

1. p-Hydroxymephentermine (p-hydroxy-MP) and p-hydroxyphentermine (p-hydroxy-Ph) were isolated as hydrochlorides from urine of male Wistar rats repeatedly dosed with mephentermine (MP). In addition, p-hydroxy-Ph was isolated as the hydrochloride from urine of the rats dosed with phentermine (Ph). 2. These results substantiate previous indications that p-hydroxylation of MP and Ph was a primary metabolic reaction in the rat.

Aniline Compounds↗

Metabolism of mephentermine in male guinea pigs and male mice.

1. Urinary metabolites of mephentermine (MP), after i.p. administration of MP to male Hartley guinea pigs and mice, were identified by g.l.c.-electron impact (EI) mass spectrometry. Excretion of urinary radioactivity, and metabolites of 3H-MP, after i.p. administration, were determined by preparative t.l.c.-liquid scintillation counting. 2. About 27% of the radioactivity administered was excreted in the 24 h urine of guinea pigs, and 36% dose was excreted in 5 days. In mice, about 47% of the radioactivity was excreted in the 24 h urine, and 52% in 5 days. 3. Excretion rates of metabolites detected in the 24 h urine of guinea pigs were phentermine (Ph, 7.8%), a conjugate of N-hydroxyphentermine (N-hydroxy-Ph, 3.6%), p-hydroxyphentermine (p-hydroxy-Ph, 1.0%) and its conjugate (2.9%), and other metabolites (conjugates of MP and Ph, N-hydroxymephentermine (N-hydroxy-MP) and its conjugate, p-hydroxymephentermine (p-hydroxy-MP) and its conjugate, and N-hydroxy-Ph; less than 1.0%). The rates of excretion for mice were Ph (11.7%), conjugates of p-hydroxy-MP (3.1%), Ph (2.7%) and p-hydroxy-Ph (1.6%), and N-hydroxy-Ph (1.2%) and other metabolites (conjugates of MP and N-hydroxy-Ph, N-hydroxy-MP and its conjugate, p-hydroxy-Ph, and p-hydroxy-MP; less than 1.0%). 4. These results indicate that MP administered to mice is metabolized mainly to Ph and p-hydroxy-MP by N-demethylation and p-hydroxylation of the parent compound, and in guinea pigs the primary metabolic reaction of MP is N-demethylation producing Ph.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

The formation of metabolites of mephentermine by microsomal and cytosolic preparations of male Wistar rat livers.

1. Metabolites of mephentermine (MP), phentermine (Ph), p-hydroxy-MP, p-hydroxy-Ph, N-hydroxy-MP and N-hydroxy-Ph on incubation with rat liver microsomal and cytosolic preparations were identified by g.l.c. and g.l.c.-mass spectrometry. 2. Identification of the metabolites indicated the following new metabolic routes of MP: NADPH-dependent microsomal formation of p-hydroxy-MP from MP, of p-hydroxy-Ph from p-hydroxy-MP, and the NADH-dependent microsomal formation of Ph from N-hydroxy-Ph.

Animals↗

Intestinal metabolism of mephentermine and its biliary metabolites in male Wistar rats.

1. Intestinal metabolites produced in the incubation (0-24 h) of mephentermine (MP), phentermine (Ph), N-hydroxymephentermine (N-hydroxy-MP), N-hydroxyphentermine (N-hydroxy-Ph), p-hydroxymephentermine (p-hydroxy-MP) and p-hydroxyphentermine (p-hydroxy-Ph) with male Wistar rat intestinal contents under N2 were examined by g.l.c. and g.l.c.-electron impact (EI) mass spectrometry. Metabolites produced in the anaerobic incubation of bile from rats given MP, with the intestinal contents were also examined. In addition, urinary and biliary metabolites of p-hydroxy-MP and p-hydroxy-Ph dosed orally to rat were examined. 2. Metabolites in the anaerobic incubation of N-hydroxy-MP and N-hydroxy-Ph were MP and Ph, and Ph, respectively. No metabolites were detected in the incubation of MP, Ph, p-hydroxy-MP and p-hydroxy-Ph. 3. p-Hydroxy-MP and p-hydroxy-Ph (major), and MP and Ph (minor) were detected when bile from rats given MP was incubated with intestinal contents. 4. Unchanged p-hydroxy-MP, and conjugates of p-hydroxy-MP and p-hydroxy-Ph, were detected in the 24-h urine of rats dosed with p-hydroxy-MP, which accounted for about 3, 72 and 1% dose, respectively. Unchanged p-hydroxy-Ph and conjugated p-hydroxy-Ph were detected in the 24-h urine of rats dosed with p-hydroxy-Ph, which accounted for about 4 and 68% dose, respectively. 5. Conjugated p-hydroxy-MP and conjugated p-hydroxy-Ph, which accounted for about 3% doses, were detected in the 24-h bile of rats dosed with p-hydroxy-MP and p-hydroxy-Ph.(ABSTRACT TRUNCATED AT 250 WORDS)

Administration, Oral↗

Metabolism of mephentermine and its derivatives by the microsomal fraction from male Wistar rat livers.

1. The N-demethylation of mephentermine (MP), p-hydroxymephentermine (p-hydroxy-MP) and N-hydroxymephentermine (N-hydroxy-MP), to produce phentermine (Ph), p-hydroxyphentermine (p-hydroxy-Ph) and N-hydroxyphentermine (N-hydroxy-Ph), and the p-hydroxylation of MP and Ph, to produce p-hydroxy-MP and p-hydroxy-Ph, were examined using rat liver microsomal preparations containing NADPH. Microsomal reduction of N-hydroxy-Ph to Ph was also examined using various cofactors. In addition, enzymic system for the N-demethylation and p-hydroxylation were examined using various inhibitors. 2. N-Hydroxy-MP demethylation to N-hydroxy-Ph proceeded at a rate almost 10-fold faster than other reactions. MP demethylation to Ph, MP oxidation to P-hydroxy-MP, Ph oxidation to p-hydroxy-Ph proceeded at similar rates, whilst p-hydroxy-MP demethylation to p-hydroxy-Ph was catalysed at the slowest rate. Microsomal reduction of N-hydroxy-Ph to Ph required NADH, and the activity was similar to that of MP oxidation to p-hydroxy-MP. 3. N-Demethylation of MP, p-hydroxy-MP and N-hydroxy-MP were inhibited not only by inhibitors of cytochrome P450, but also by methimazole, an inhibitor of the FAD-monooxygenase system. p-Hydroxylations of MP and Ph were inhibited only by inhibitors of cytochrome P450.

Aerobiosis↗

[Clinical-pharmacological studies on the effect of mephentermin and methamphetamine on the hemodynamics of the lung circulation].

In haemodynamic investigations of altogether 40 male probands with normal and restricted functional capacity of the lungs the result of an intravenous injection of mephentermine (30 mg) or methamphetamine (15 mg) was a transient increase of the mean pressure in the pulmonary artery and of the resistance of the pulmonary vessels. Temporarily parallel the arterial mean pressure and the resistance of the vessels in the greater circulatory system in most cases increased by about the same, in healthy persons after application of methamphetamine by a smaller relative amount. In the dosage used the vasoconstrictive effect of methamphetamine was altogether only somewhat more expressed. At the time of the maximum increase of the mean pressure of the pulmonary artery in healthy persons methamphetamine had a negative chronotropic and inotropic effect. It is referred to practical therapeutic consequences.

Adult↗

Ion exchange method for determining mephentermine sulfate in drug formulations: collaborative study.

Ion exchange chromatography is used to separate mephentermine sulfate from drug formulations. The drug is subsequently measured by ultraviolet spectrophotometry. Assays on 4 commercial samples of tablets and injectables gave recoveries from 97.6 to 104% of declared. A collaborative study involving 2 tablet and 2 liquid formulations gave mean recoveries ranging from 94.7 to 99.3% and coefficients of variation from 1.39 to 2.00%.

Chromatography, Ion Exchange↗