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  • 11
    Electronic Resource
    Electronic Resource
    Springer
    European journal of clinical pharmacology 33 (1987), S. 237-242 
    ISSN: 1432-1041
    Keywords: thiazinamium ; asthma ; pharmacokinetics ; pharmacodynamics ; optimal concentration
    Source: Springer Online Journal Archives 1860-2000
    Topics: Chemistry and Pharmacology , Medicine
    Notes: Summary The pharmacokinetics and pharmacodynamics of thiazinamium (Multergan) were studied after intravenous and intramuscular administration to 7 males with chronic reversible airways obstruction. Disposition after i.v. administration was described by a clearance of 0.54 l·min−1, central compartment volume of 14.8 l, distribution rate constant 0.092 min−1, and an elimination rate constant of 0.0044 min−1. The corresponding estimates after i.m. administration were 0.324 l·min−1, 34.1 l, 0.035 min−1, and 0.0018 min−1. The bronchodilator response (expressed as % predicted FEV1) after i.v. administration was characterized by maximum increase in FEV1 of 33.9%, with an EC50 of 12.8 ng·ml−1 and an equilibration half-time of 11 min. Corresponding parameter estimates after i.m. administration were 32.2%, 18.8 ng·ml−1, and 9 min. Anticholinergic activity, measured by the change in heart rate after i.v. administration, showed maximum increase of 76 beats·min−1, with an EC50 of 176 ng·ml−1 and an equilibration half-time of 1.3 min. After i.m. administration the corresponding values were 120 beats·min−1, 250 ng·ml−1, and 3 min. The optimal plasma concentration of thiazinamium was about 100 ng·ml−1, which should give a near maximal bronchodilator response (over 80% of predicted normal) and a heart rate of about 100 beats·min−1.
    Type of Medium: Electronic Resource
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  • 12
    ISSN: 1432-1041
    Keywords: Diltiazem ; immediate-release tablet ; controlled-release tablet ; steady state ; pharmacokinetics
    Source: Springer Online Journal Archives 1860-2000
    Topics: Chemistry and Pharmacology , Medicine
    Notes: Abstract We have studied the controlled-release properties and relative systemic availabilities of two dosages of the same controlled-release (CR) diltiazem tablet formulation by comparing them at steady state with those of an immediate-release formulation. We measured 24-hour plasma concentration profiles during 4-day treatments with diltiazem 90 mg CR tablet bd diltiazem 120 mg CR tablet bd, and conventional diltiazem 60 mg immediate-release (IR) tablet tid. The study had a randomized, three-way crossover design. Twelve healthy men (38–52 y) participated. Trough plasma concentrations were determined on days 3 and 4. The 24-h plasma concentration-time profiles were assessed after the last morning dose on day 4 of each period. The following steady-state pharmacokinetic values were calculated: the minimum plasma concentration (Cmin), the maximum plasma concentration (Cmax), the time interval during which the plasma concentration exceeded 75% of Cmax (t75), the area under the plasma concentration-time curve (AUC72–96), the peak-to-trough fluctuation (PTF), and the area-under-the-curve fluctuation (AUCF). Steady state was achieved on day 3. The pharmacokinetics were comparable. For diltiazem CR 90 mg and diltiazem CR 120 mg, AUC84–96 (night) was approximately 75% of AUC72–84 (daytime). The diltiazem plasma concentration increased slowly from about 6 h after the evening dose of both CR tablets, resulting in relatively high plasma concentrations in the early morning hours. Only during treatment with diltiazem CR 120 mg were the plasma concentrations of diltiazem maintained above the minimum therapeutic plasma concentration of 50 μg·1−1 throughout the full 24 h. In conclusion, twice-daily treatment with diltiazem CR tablets can replace thrice-daily treatment with the conventional diltiazem IR tablet. The early morning rise of the diltiazem plasma concentration, which might lead to a lower incidence of ischaemic events, may be an important clinical advantage of both CR tablets. Because of the minimum therapeutic plasma concentration of 50 μg·1−1, twice-daily administration of the 120 mg CR tablet may be preferred from a therapeutic point of view. Diltiazem, a benzothiazepine, is a calcium antagonist used in the treatment of angina pectoris and hypertension. The anti-ischaemic mechanism of diltiazem seems to result from an increase of myocardial oxygen supply and a reduction in myocardial oxygen demand, respectively by coronary artery dilatation and/or direct and indirect haemodynamic effects, such as afterload reduction and heart rate decrease (Braunwald 1982). Its therapeutic effect is evident at daily dosages between 180 and 360 mg (Low et al. 1981). After oral administration it is almost completely absorbed from the gastrointestinal tract, but owing to extensive first-pass metabolism, its systemic availability is approximately 40–50% (Echizen and Eichelbaum 1986). The time to maximum plasma concentrations after oral administration of immediate-release formulations is approximately 3 to 4 h. The elimination half-life of diltiazem is 3.5–7 h, implying that frequent dosing is required to maintain effective plasma concentrations. Therefore, a controlled-release formulation of diltiazem, designed to be taken twice daily, has been developed. The aim of this crossover study was to compare the systemic availability and steady-state pharmacokinetics of a controlled-release diltiazem tablet formulation (90 and 120 mg) with those of a conventional diltiazem immediate-release tablet in healthy volunteers.
    Type of Medium: Electronic Resource
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  • 13
    ISSN: 1432-1041
    Keywords: Growth hormone ; Jet-injection ; pharmacokinetics ; pharmacodynamics ; Somatomedin C ; free fatty acids
    Source: Springer Online Journal Archives 1860-2000
    Topics: Chemistry and Pharmacology , Medicine
    Notes: Abstract The pharmacokinetics and pharmacodynamics of recombinant human growth hormone (rhGH) were studied after a single subcutaneous dose given by jet-injection, and have been compared with the results obtained after conventional needle-injection. Twelve healthy male volunteers completed an open label, randomised, two-way crossover study, with a 7-day washout period between the two single sc doses. Pharmacokinetic parameters were derived from rhGH concentrations in blood samples collected regularly over 24 h after dosing on Day 1 of each period. To investigate the pharmacodynamics, additional samples were taken for the analysis of somatomedin C (IGF-I) and free fatty acids (FFA). A higher and earlier Cmax was found after jet-injection (ratio (%) jet-injected/needle-injected 124; 90%-confidence interval 108 – 142). The AUC0−∞ for rhGH were similar (ratio (%) jet-injected/needle-injected 98; 90%-confidence interval 93 – 103). Both treatments were associated with a significant and similar rise in IGF-I. Both administrations of rhGH were associated with identical rhythmical changes in FFA. The study indicates that jet-injected and needle-injected rhGH are bioequivalent with respect to the amount absorbed. The criterion for bioequivalence is not met for the rate of absorption. It is unlikely that the latter finding will influence the pharmacodynamics of rhGH, since bioequipotency was established for the effect on IGF-I generation. Jet-injection was safe in use and was generally well tolerated.
    Type of Medium: Electronic Resource
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  • 14
    ISSN: 1432-1041
    Keywords: theophylline ; sustained release tablet ; absolute bioavailability ; pharmacokinetics ; individual dosage regimen
    Source: Springer Online Journal Archives 1860-2000
    Topics: Chemistry and Pharmacology , Medicine
    Notes: Summary The systemic disposition of theophylline after taking a new, sustained release tablet (Theolair Retard® 250 mg, Theolair S. R.®, Riker Laboratories) has been studied in 8 hospitalized patients. Absolute bioavailability was determined from the ratios of the areas under the serum concentration-time curves after intake of the tablet and after intravenous infusion of aminophylline in the same patient. The absolute bioavailability of Theolair Retard® 250 mg was 110.9±20.8% (mean ± SD). Maximal serum concentrations were reached after 7.3±3.5 h, the large intersubject variation being due to differences in gastric emptying time. The tablets appear to release theophylline slowly in acid conditions, but more rapidly in an alkaline medium. Invasion was found to be either monophasic with a rate constant of about 0.8 h−1 (intestine), or biphasic with rate constants of 0.2 h−1 (stomach) and 0.8 h−1 (intestine). The peak levels accounted for 7.9±2.2 mg · 1−1. The profiles of the serum concentration-time curves were such that the concentrations remained above 80% of cmax for 6.5±3.3 h. The relevant pharmacokinetic parameters (half-life of elimination, total body clearance and volume of distribution) were determined and were used to calculate the individual dosage regimens required to obtain therapeutic serum concentrations. The optimal dosing interval to obtain an average steady state serum concentration of 12.5 mg · l−1 was 9.8±3.1 h.
    Type of Medium: Electronic Resource
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  • 15
    ISSN: 1432-1041
    Keywords: airway reactivity ; oxyphenonium bromide ; terbutaline ; theophylline ; asthmatic patients ; inhalation ; provocation test
    Source: Springer Online Journal Archives 1860-2000
    Topics: Chemistry and Pharmacology , Medicine
    Notes: Summary The protective effects of oxyphenonium bromide, terbutaline and theophylline were compared in 8 asthmatic patients by determination of the degree of non-specific airway reactivity after 1 week of oral treatment according to a fixed dose scheme in a double-blind random order: oxyphenonium bromide 3×10 mg; terbutaline 3×5 mg; theophylline 2×300 mg and placebo. Controlled, standardized inhalation provocation tests were carried out with histamine, acetylcholine and propranolol. The study was monitored by measuring blood concentrations of the 3 drugs, and their effect on the plasma cAMP concentration was also determined. Significant protection by oxyphenonium bromide against the bronchial obstructive effects of acetylcholine and propranolol was observed, but not against the effect of inhaled histamine. The other two drugs provided no significant protection against the inhaled agents. The absence of any protective effect of terbutaline and theophylline might have resulted from too low a blood concentration. The observed differences in protection could not be explained by changes in pulmonary function. The study suggests dissociation between the bronchodilating effect of a drug and its protective effect against inhaled substances.
    Type of Medium: Electronic Resource
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  • 16
    ISSN: 1432-1041
    Keywords: theophylline ; enprofylline ; liver cirrhosis ; renal failure ; pharmacokinetics
    Source: Springer Online Journal Archives 1860-2000
    Topics: Chemistry and Pharmacology , Medicine
    Notes: Summary We have studied the pharmacokinetics of theophylline and enprofylline in patients with liver cirrhosis, patients with chronic renal failure, and healthy subjects, and have assessed the predictive value of routine tests of liver function and renal function (creatinine clearance) for theophylline and enprofylline total body clearances. Theophylline clearance was significantly decreased in the patients with liver cirrhosis compared with both the patients with renal failure and the healthy subjects (the mean values in the three groups were 24, 47, and 46 ml·h−1·kg−1 respectively. Enprofylline clearance was significantly decreased in the patients with chronic renal failure, compared with both the patients with liver cirrhosis and the healthy subjects (the values in the three groups were 64, 250, and 289 ml·h−1·kg−1 respectively. There was a strong correlation between creatinine clearance and enprofylline clearance, while there was only a poor correlation between the liver function tests and theophylline clearance. It appears that in various clinical situations enprofylline elimination can be predicted more precisely than theophylline elimination, which may make the drug safer in clinical practice.
    Type of Medium: Electronic Resource
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  • 17
    ISSN: 1432-1041
    Keywords: theophylline ; enprofylline ; asthma ; pharmacokinetics ; intravenous infusion ; plateau levels
    Source: Springer Online Journal Archives 1860-2000
    Topics: Chemistry and Pharmacology , Medicine
    Notes: Summary Repeated exponentially decreasing influsions have been used to administer theophylline and enprofylline to show whether it would be feasible to create consecutive plasma concentration plateaus within a few hours. The infusions were carried out on two separate days in 8 stable asthmatics. Before the infusion experiments, the pharmacokinetics of the substances in the individual subjects were determined on a separate day. Plasma concentration rose to the desired level within 5 min after the start of the infusion at each dose level and a stable plasma concentration plateau was maintained during the following 90 min of the infusion. It was possible to achieve 4 subsequent concentration plateaus within a 6 h period. Use of this infusion method resulted in predictable plasma concentrations at all levels and so the method appears safe when the required plasma concentrations are below the toxic level. Apart from clinical situations where effective dosages of drugs must be administered rapidly, the method showed be useful in pharmacological dose-response studies.
    Type of Medium: Electronic Resource
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  • 18
    Electronic Resource
    Electronic Resource
    Springer
    European journal of clinical pharmacology 28 (1985), S. 225-227 
    ISSN: 1432-1041
    Keywords: theophylline ; absorption ; food intake ; aqueous solution ; pharmacokinetics
    Source: Springer Online Journal Archives 1860-2000
    Topics: Chemistry and Pharmacology , Medicine
    Notes: Summary The effect of food on the rate and extent of absorption of theophylline was studied in healthy adults given a single dose of theophylline (aqueous solution of choline theophyllinate containing 270 mg of theophylline) in the evening either on an empty stomach or together with supper. Food appeared to decrease the absorption rate of theophylline significantly, tmax being prolonged from 1.34 h (mean) to 4.40 h and cmax decreased from 7.82 mg·l−1 to 5.47 mg·l−1. The area under the plasma concentration-time curve (AUC) after drug intake with supper was slightly but not significantly smaller, indicating that theophylline (as a solution of choline theophyllinate) can be taken together with food without substantial loss of the quantity of drug absorbed. The elimination rate was not influenced by concomitant intake of supper.
    Type of Medium: Electronic Resource
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  • 19
    Electronic Resource
    Electronic Resource
    Springer
    European journal of clinical pharmacology 20 (1981), S. 435-441 
    ISSN: 1432-1041
    Keywords: theophylline ; renal excretion ; metabolite formation ; capacity-limited kinetics
    Source: Springer Online Journal Archives 1860-2000
    Topics: Chemistry and Pharmacology , Medicine
    Notes: Summary Analysis of urinary excretion after administration of 320 mg of theophylline to six normal volunteers appears to indicate the occurrence of capacity limited formation of most of the theophylline metabolites and non-linear renal excretion of theophylline. The renal clearance is elevated at high concentrations where the metabolic clearance is reduced. Even though the individual process of elimination is non-linear, the compensating relationship appears to yield a constant total elimination clearance. The implication of these results in chronic therapy and dose adjustment is discussed.
    Type of Medium: Electronic Resource
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  • 20
    ISSN: 1432-1041
    Keywords: Alpidem ; Anxiolytics ; pharmacokinetics ; tolerance ; metabolites ; sedation ; adverse events
    Source: Springer Online Journal Archives 1860-2000
    Topics: Chemistry and Pharmacology , Medicine
    Notes: Summary In a double-blind, placebo-controlled, crossover experiment in 21 healthy male volunteers, aged 19 to 27 y, the pharmacokinetics and tolerance of the new anxiolytic drug alpidem (SL80.0342) and its three major metabolites were studied after single doses of 25, 50, 100 and 200 mg. Plasma concentrations of alpidem (in 20 subjects) and metabolites (in 6 subjects) were measured by HPLC over a period of 54 h after dosing. Cmax, tmax and AUC(0–54) and, when possible, t1/2 were determined for alpidem and metabolites and the dose linearity of the parameters was investigated. The time to peak of alpidem was dose independent in most subjects and was short (1–4 h); the mean values at the four dosing levels were 1.9, 1.7, 1.6 and 1.8 h. The peak concentration increased with the dose, the mean values being 17, 34, 88 and 115 ng · ml−1, respectively. In 50% of the subjects cmax tended to stabilize between the 100 and 200 mg dose. Dose linearity was also present for the AUC, which plateaued between the 100 and 200 mg dose in only 3 out of 20 subjects; the mean AUC was 119, 281, 669 and 1117 ng · ml−1 · h, respectively. The apparent half-life of elimination appeared to be dose independent, mean values at the increasing dosing levels being 18.7, 19.9, 18,1 and 17.9 h. A similar relationship between the kinetics parameters and dose of the alpidem was observed for the metabolites SL83.0912, SL80.0522 and SL83.0725. The formation of metabolites was not saturated as their AUCs relative to corresponding alpidem AUCs were not dose related. Thus the kinetics of alpidem and its three major metabolites were linear after doses of 25 to 200 mg. The drug was well tolerated by most of the subjects. Sedation and dizziness occurred mainly after the 100 and 200 mg doses.
    Type of Medium: Electronic Resource
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