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I Klebovich

Publications and source records attributed to I Klebovich.

At least 19 recordsLinked to original sources

Determination of deramciclane and N-desmethylderamciclane in human plasma by liquid chromatography-tandem mass spectrometry using off-line robotic sample pretreatment.

A rapid and highly sensitive LC-MS-MS method using deuterium-labelled internal standards was developed and evaluated for the simultaneous determination of deramciclane and its pharmacologically active metabolite (N-desmethylderamciclane). The sample preparation based on liquid-liquid extraction was carried out with an off-line robotic system. Evaluation of this analytical method shows that samples can be assayed with acceptable accuracy and precision in the 0.1 to 50 ng/ml concentration range for both compounds. The method was applied for the quantitative determination of deramciclane and its metabolite in human plasma samples during a food interaction pharmacokinetic study.

Calibration↗

Oral, intraperitoneal and intravenous pharmacokinetics of deramciclane and its N-desmethyl metabolite in the rat.

The pharmacokinetic properties of deramciclane fumarate (EGIS-3886), a new potential anxiolitic agent, and its N-desmethyl metabolite have been investigated in Wistar rats after 10 mgkg(-1) deramciclane fumarate was administered orally, intraperitoneally or intravenously. A highly sensitive, validated and optimized gas chromatographic method with nitrogen selective detection (GC-NPD) using a solid-phase extraction technique was used to determine plasma levels of the parent compound and its N-desmethyl metabolite. After oral administration the absorption of the parent compound was very fast (t(max) 0.5h). The maximum plasma concentration (C(max)) was detected at 44.9, > or =177.8 and > or =2643.0 ngmL(-1) after oral, intraperitoneal and intravenous administration of deramciclane, respectively. For the metabolite the respective Cmax values were 32.0, > or =25.4 and 51.0 ngmL(-1). The pharmacokinetic curves of both the parent compound and its metabolite showed enterohepatic recirculation for all administration routes. The biological half-life (tbeta 1/2) for deramciclane ranged from 3.42 to 5.44 h and for the N-desmethyl metabolite the range was 2.90-5.44 h, after administration of the drug by the three different routes. After intravenous administration AUC0-infinity, of deramciclane was 29.2- and 5.4-times higher than that observed after oral and intraperitoneal treatment, respectively. These AUC0-infinity ratios were only 2.1- and 1.5-times higher for the metabolite. The absolute bioavailability of deramciclane in rats was 3.42% after oral and 18.49% after intraperitoneal administration. The comparative pharmacokinetic study of deramciclane in rat after the different administration routes showed fast absorption. Furthermore, plasma levels were found to be administration route-dependent, low bioavailability of the parent compound indicated an extremely fast and strong first-pass metabolism. The apparent volume of distribution suggested strong tissue binding after administration of the drug by any of the three routes studied.

Administration, Oral↗

The single dose pharmacokinetics and safety of deramciclane in healthy male volunteers.

The pharmacokinetics and tolerability of a new putative non-benzodiazepine type anxiolytic compound deramciclane was studied in two consecutive studies. An open dose-escalation design was used to study doses from 0.2 to 50 mg in 18 healthy male volunteers. In the second study doses from 50 to 150 mg were investigated in 14 healthy males in a double-blind, placebo-controlled, dose escalation study. Deramciclane was rapidly absorbed from the GI-tract and T(max) was 2-4 h. The elimination half-life increased from about 20 h to about 32 h with the increasing dose. Nevertheless, the AUC(0-infinity) values increased linearly within the studies over the dose ranges of 3-50 and 50-150 mg. However, the increase was more than the ratio of the dose over the total dose range of 3-150 mg. Therefore, non-linear pharmacokinetics of deramciclane at high doses cannot be excluded. N-desmethyl deramciclane, which is the active metabolite of deramciclane, was determined in plasma. C(max) was reached at about 6 h. The AUC(0-48 h) for the N-desmethyl metabolite was about one third of the AUC(0-infinity) of the parent compound and the ratio remained constant at each dose level. Deramciclane was safe, and was well tolerated at each dose level.

Adult↗

Whole-body autoradiography and quantitative organ-level distribution study of deramciclane in rats.

The distribution of 3H-labelled deramciclane (EGIS-3886), a new 5-HT2 antagonist with anxiolytic activity, has been investigated by whole-body autoradiography and quantitative organ-level determination after intravenous and oral administration to male and female rats at a dose of 3 mg kg(-1). Pregnant dams were also studied, but by autoradiography only. In the autoradiographic study 32 organs were investigated, while in the quantitative organ-level study the radioactivity in 15 organs were determined. There are no sex differences in the distribution of deramciclane, absorption is rapid, elimination is comparatively fast, no specific organ is targeted, and the accumulation of the compound is very unlikely. Penetration of the blood-brain barrier was complete and extremely fast, a very important feature of a potential anxiolytic drug. There is no penetration of the foetus in pregnant dams. The study demonstrated that deramciclane has advantageous pharmacokinetic properties in rats.

Administration, Oral↗

[Comparative pharmacokinetics of 800 mg of acyclovir-containing Telviran and Zovirax tablets in healthy volunteers].

The authors performed a detailed comparative clinical and pharmacokinetic study with two 800 mg acyclovir containing tablets, namely the Telviran (EGIS Pharmaceuticals Ltd.) and the Zovirax (Wellcome Foundation Ltd.). The determination of the detailed pharmacokinetic parameters and the relative bioavailability was carried out on 24 healthy male volunteers in a two way, open, randomised, cross-over design study after single dose administration. The plasma concentration of acyclovir was determined by a newly developed and validated highly sensitive (LLOQ = 10 ng/ml) HPLC-UV bioanalytical method after sample preparation with RP-18 solid phase extraction method (SPE). The individual pharmacokinetic parameters calculated from the time-plasma concentration curve (tmax, Cmax, AUC0-infinity, AUC0-16, AUC0-t, AUC0-z, AUCRest, t beta 1/2, MRT, Cmax/AUC0-infinity) were compared with statistical methods (ANOVA, ANOVAlog, Confidence interval, Schuirmann, Wilcoxon tests). On the basis of the results of the statistical evaluation and the clinical study, there was no significant difference found between the two acyclovir containing preparations. The comparative pharmacokinetic study demonstrated, that the relative bioavailability of the 800 mg Telviran and Zovirax tablets are equivalent and the two products are bioequivalent.

Acyclovir↗

Pharmacokinetics and safety of deramciclane during multiple oral dosing.

UNLABELLED: Deramciclane is a new putative non-benzodiazepine-type anxiolytic compound. It is a selective serotonin 5-HT(2A) and 5-HT(2C) receptor antagonist and has also inverse agonist properties. The aim of this study was to reveal the pharmacokinetics and tolerability of deramciclane during repeated oral dosing in healthy male volunteers. SUBJECTS, MATERIAL AND METHODS: A randomized double-blind, placebo-controlled design was used. The study had three consecutive groups that received first a single oral dose of 10, 30 and 60 mg of deramciclane followed by twice a day administration for seven days. The total number of subjects was 28. The pharmacokinetic parameters were calculated for a single dose and after repeated administration. Tolerability was assessed by monitoring safety laboratory variables, electrocardiogram, heart rate, blood pressure and adverse events. RESULTS: The steady-state was reached during the seven-day administration. The pharmacokinetics of deramciclane was dose-proportional at steady-state at each dose level. Deramciclane accumulated about three-fold during repeated administration. The relative bioavailability of deramciclane increased about 1.4-fold compared to that of a single dose at each dose level. The mean elimination half-life of deramciclane for 10, 30 and 60 mg doses prolonged from 24.3, 20.9 and 22.9 h after a single dose to 30.5, 25.6 and 28.7 h at steady-state, respectively. Only few adverse events were reported, all mild and transient in nature. The most frequently reported adverse drug reactions were tiredness and headache. There were no deramciclane-induced changes in the clinical chemistry or hematology variables, blood pressure, heart rate or in electrocardiogram. CONCLUSIONS: In conclusion, the pharmacokinetics of deramciclane is linear over the dose range of 10 - 60 mg at steady-state. The slight non-linearity within the dose levels during repeated administration of seven days was regarded as clinically irrelevant. Deramciclane was safe and well tolerated up to doses of 60 mg b.i.d. for seven days.

Administration, Oral↗

Different absorption profiles of deramciclane in man and in dog.

We have studied the dog model for predicting the oral absorption of deramciclane, a novel anxiolytic compound, as a model acid-labile drug. The absorption profile of deramciclane was studied in man and beagle dogs after administration of conventional capsules and enteric coated tablets. Absorption in dogs pretreated with pentagastrin or saline was also studied after administration of conventional capsules. The in-vitro stability of deramciclane was determined over the pH range 1.2-6.0. The rate of degradation of deramciclane increased ten-fold as the pH was reduced from 2.1 to 1.2 (t 1/2 beta (elimination half-life) 9 h and 39 min, respectively). Deramciclane was stable at pH > or = 3. The two formulations were bioequivalent in dogs and there were no significant differences between pharmacokinetic parameters measured for dogs pretreated with pentagastrin or saline. In man the mean relative bioavailability and Cmax (peak plasma concentration) for the conventional capsules were approximately 75% and 83% of those for the enteric coated tablets (P = 0.0004 and P = 0.0031, respectively). This was probably because of degradation of deramciclane at lower pH of man's stomach compared with that of the dog. Pentagastrin was probably unsuccessful in reducing gastric pH and thus no change in absorption was observed. It is concluded that the absorption of deramciclane, and possibly other acid-labile drugs, cannot be predicted by use of the dog model.

Absorption↗

Food interaction pharmacokinetic study of cordaflex 20 mg retard filmtablet in healthy volunteers.

The aim of the present study was to investigate the effect of food consumption on the pharmacokinetics of Cordaflex 20 mg retard filmtablet in healthy volunteers through measuring nifedipine plasma levels by an HPLC-ED method both after fasting and food ingestion. The food interaction pharmacokinetic study of Cordaflex 20 mg retard filmtablet was carried out in 12 healthy male volunteers treated with a single dose of the preparation both after fasting and after food ingestion, in a crossover design allowing 1 week of wash-out period between the 2 treatments. Nifedipine concentration of plasma samples were determined by an isocratic HPLC-ED method [Horvai et al. 1994] with robotic sample processing [Horváth et al. 1995, 1996]. The pharmacokinetic parameters (AUC0-infinity, AUC0-t, Cmax, MRT) were analyzed by calculating 90% confidence interval for logarithmic transformed test/reference ratio values, and Schuirmann's statistical tests, the tmax and HVD values were analyzed by Wilcoxon's nonparametric statistical test. The above statistical tests of the present food interaction study indicated significant differences for each one of the respective pharmacokinetic parameter pairs calculated for treatments after fasting and after food ingestion. On the basis of the above findings and also by comparing the mean pharmacokinetic curves, it was evident, that, in agreement with the data of literature [Kleinbloesem et al. 1993, Schall et al. 1994], food ingestion increased the relative bioavailability and maximum plasma concentration (Cmax). Considering the average of the parameter values and also the respective statistical tests, it was also apparent that the time to maximum plasma concentration (tmax), the mean residence time (MRT), and the half-value duration (HVD) all decreased significantly upon the effect of food ingestion.

Administration, Oral↗

Absorption of the new anxiolytic compound deramciclane in rats, dogs and rabbits.

The absorption of deramciclane fumarate ((1R,2S,4R)-(-)-N,N-dimethyl-2-[(1,7,7-trimethyl-2-phenylbicyclo [2,2,1] hept-2-yl) oxy] ethane amine-2-(E)-butenedioate (1:1), CAS 120444-78-8, EGIS-3886), a new anxiolytic compound, was studied in rats, dogs and rabbits by using 3H-camphor- or 14C-phenyl-labelled radioisomers of the substance. The compound was readily absorbed from the intestinal tract after oral administration. The absorption of 14C-deramciclane was also studied from the isolated intestinal loops of rats (duodenal, jejunal, ileal loops) and dogs (duodenal loop). The absorption was faster in rats and rabbits than in dogs (tmax = 1 h or 6 h, respectively). The radioactivity was not absorbed from the isolated stomach of any species studied for 2 h. Meanwhile, the substance was not decomposed by the gastric juice, as it has been proved by TLC and MS analyses. Deramciclane is preferentially excreted via the bile. The intensity of its bile excretion is higher in rats than in dogs. Higher plasma levels of labelled deramciclane were found in female than in male rats.

Animals↗

[Review of bioanalytic methods in pharmacokinetics].

The analytical methods used in pharmacokinetic practice are reviewed. The system of special pharmacokinetic demands on bioanalytical methods for carrying out the different pharmacokinetic, metabolite kinetic, bioequivalence and food interaction studies is demonstrated in details (high sensitivity; the parallel measurability of the parent compound and its metabolites; species and biological matrices dependent methods; anticoagulation; sample preparation; derivatisation; special calibration system; method selectivity; reproducibility; validation; economicalness). The different immunological methods and separation techniques used in pharmacokinetic practice and the sensitivity of the detectors have been compared and characterized. Without the requirement of completeness, the author has tried to summarize the most important bioanalytical techniques in the view of general and specific feature; the possibilities of application, characteristics of operation and limitations.

Animals↗

[Role of food interaction pharmacokinetic studies in drug development. Food interaction studies of theophylline and nifedipine retard and buspirone tablets].

Due to several mechanism, meals may modify the pharmacokinetics of drug products, thereby eliciting to clinically significant food interaction. Food interactions with the drug substance and with the drug formulation should be distinguished. Food interaction of different drug products containing the same active ingredient can be various depending on the pharmaceutical formulation technology. Particularly, in the case of modified release products, the food/formulation interaction can play an important role in the development of food interaction. Well known example, that bioavailability of theophylline can be influenced in different way (either increased, decreased or unchanged) by concomitant intake of food in the case of different sustained release products. The role and methods of food interaction studies in the different kinds of drug development (new chemical entity, modified release products, generics) are reviewed. Prediction of food effect response on the basis of the physicochemical and pharmacokinetic characteristics of the drug molecule or formulations is discussed. The results of three food interaction studies carried out the products of EGIS Pharmaceuticals Ltd. are also reviewed. The pharmacokinetic parameters of theophyllin 400 mg retard tablet were practically the same in both fasting condition and administration after consumption of a high fat containing standard breakfast. The ingestion of a high fat containing breakfast, increased the AUC of nifedipine from 259.0 +/- 101.2 ng h/ml to 326.7 +/- 122.5 ng h/ml and Cmax from 34.5 +/- 15.9 ng/ml to 74.3 +/- 23.9 ng/ml in case of nifedipine 20 mg retard tablet, in agreement with the data of literature. The statistical evaluation indicated significant differences between the pharmacokinetic parameters in the case of two administrations (before and after meal). The effect of a high fat containing breakfast for a generic version of buspiron 10 mg tablet and the bioequivalence after food consumption were studied in a single-dose, three-way (test and reference products administered after consumption of standard breakfast, as well as test product in fasting condition), cross-over, food effect bioequivalence study. According to the results, the test product--which, in a former study proved to be bioequivalent with the reference product in fasting state--is bioequivalent with the reference product under feeding conditions and the food intake influenced the pharmacokinetics of the test tablets.

Buspirone↗

Pharmacokinetics of deramciclane in rabbits.

The pharmacokinetics of deramciclane (CAS 120444-78-8, EGIS-3886) was investigated in rabbits after i.v., p.o. and s.c. administration of 3 mg/kg 14C-phenyl-deramciclane. The plasma, concentration-time curves of total radioactivity, the parent compound (deramciclane) and its N-demethylated metabolite (EGIS-7056) were determined. The radioactivity level was measured by liquid scintillation technique while the concentration of the parent compound and its metabolite was determined by gas chromatography-mass spectrometry detection. The p.o. and i.v. studies were carried out on the same group of animals, while a separate group of rabbits was used for studying s.c. absorption. Deramciclane was readily absorbed after p.o. and s.c. treatment (tmax 1.0 to 1.4 h). The terminal elimination half-life (t1/2 beta) of the parent compound fell between 5.8 to 7.1 h, while that of the total radioactivity ranged from 21.6 and 26.0 h. The absolute bioavailability of deramciclane calculated from the AUC0-infinity values was found to be 43 and 60% after p.o. and s.c. treatment. The apparent volume of distribution (Vd) and the whole body clearance (Cl) of deramciclane after i.v. administration were 25.0 +/- 7.1 l/kg and 2.6 +/- 0.5 l/h/kg, respectively. The AUC0-infinity values of the parent compound varied between 4.6 and 7.9% of that of total radioactivity, suggesting that deramciclane was subjected to intensive metabolic conversion. The AUC0-infinity of N-desmethyl-deramciclane was 5.7%, compared to that of the parent compound after i.v. administration.

Animals↗

Automated determination of levodopa and carbidopa in plasma by high-performance liquid chromatography-electrochemical detection using an on-line flow injection analysis sample pretreatment unit.

An automated analytical procedure is described for the parallel determination of L-3,4-dihydroxyphenylalanine (levodopa, L-dopa, LD) and the analogous hydrazine compound carbidopa (CD) in dog plasma by ion-pair high-performance liquid chromatography with electrochemical detection (HPLC-ED). After deproteinization of the plasma samples with perchloric acid the catecholamines were extracted from the supernatant by adsorption on a small column filled with alumina. The extraction and redissolution were automatically performed in a flow injection analysis unit (FIA) coupled to the HPLC system. The performance of the whole system was tested on dog plasma samples including specimens taken after oral administration of the anti-Parkinsonism drug Duellin, which is a combination tablet of levodopa and carbidopa.

Animals↗

Liquid chromatographic method for the determination of ticlopidine in human plasma.

A simple high-performance liquid chromatographic method for determination of ticlopidine in human plasma using ultra violet detection was developed. The separation of the investigated compound and internal standard was achieved on a C18 BD column with a 0.01 M potassium dihydrogen phosphate buffer (pH 4)-acetonitrile-methanol (20:40:40, v/v) mobile phase. The detection was performed at 215 nm. The compounds were isolated from plasma by Bond Elut C18 solid-phase extraction, the mean absolute recovery was 84.9%. The limit of quantitation was 10 ng ml(-1), the limit of detection was 5 ng ml(-1). The bioanalytical method was validated with respect to linearity, within- and between-day accuracy and precision. system suitability and stability. All validated parameters were found to be within the internationally required limits. The developed analytical method for ticlopidine was found to be suitable for application in pharmacokinetic studies and human drug monitoring.

Chromatography, High Pressure Liquid↗

Pharmacokinetics of panomifene in healthy volunteers at phase I/a study.

Panomifene (PAN) /E/-1,2,-diphenyl-1-[4-[2-(2-hydroxyethylamino)-ethoxy]-phenyl]-3, 3,3-trifluoropropene is a new original Hungarian compound and is a tamoxifen (TMX) analog. In the phase I/a study presented here the human tolerance, pharmacokinetics and endocrine effects of a single oral dose of panomifene were evaluated in healthy, post-menopausal, female volunteers. As to the dose escalation, pharmacokinetic studies were carried out at doses of 24, 48 and 96 mg in two volunteers, and 120 mg in one volunteer. To find a suitable dose or dose range, for further evaluation of the drug detailed pharmacokinetics were performed at a selected dose level (24 mg) in 10 volunteers. The pharmacokinetic study showed considerable interindividual variability of the parameters, and only a medium correlation between dose and AUC (r=0.876). At the selected dose level (24 mg p.o.) the peak concentration of the plasma was 67.7 +/- 17.4 ng/ml (Cmax(meas)), the time to peak was 3.6 +/- 1.8 h (t[max(meas)]). The mean of the terminal half-life was 70.0 +/- 23.1 h (t(1/2beta)). The area under the plasma concentration time curve (AUC) calculated by the kinetic equation (AUCcalc) was 4814 +/- 1172 and by the trapezoidal rule (AUCtrap) was 4612 +/- 1357 (ng/ml) h.

Dose-Response Relationship, Drug↗

Food interaction study of a new theophylline (Egifilin) 200 and 400 mg retard tablet in healthy volunteers.

The aim of the present food interaction study was to determine the blood plasma levels of theophylline upon the administration of new Egifilin 200 and 400 mg retard tablets, either on an empty stomach or after meal, and to make comparative pharmacokinetic evaluation in 26 healthy volunteers. For determination of the plasma levels of theophylline an improved isocratic HPLC-UV method was used in the concentration range of 0.1-18 micrograms/ml. The mean pharmacokinetic curves obtained with 200 and 400 mg tablets before and after meal were in good agreement also on the basis of statistical evaluation, although, as usual with theophylline, the evaluation of the individual pharmacokinetic curves indicated great variations. The pharmacokinetic parameters (AUCzero-t, AUCzero-infinity, HVD, MRT, Cmax, tmax) calculated for Egifilin 200 and 400 mg retard tablets were analyzed by ANOVA, ANOVAlog, Wilcoxon, and Schuirmann statistical tests as well as by the confidence interval calculation. As it was found, under the circumstances of the present food interaction study, food consumption did not have a biologically significant effect on the pharmacokinetic parameters of either the 200 or the 400 mg Egifilin retard preparations.

Adult↗

[Validity of a liquid chromatographic (HPLC) method for the determination of ticlopidine in human plasma].

A simple high-performance liquid chromatographic method for determination of ticlopidine in human plasma using UV detection was developed. The separation of the investigated compound and internal standard was achieved on "BST Rutin" 10, C18 BD column with a 0.01 M, (pH 4) potassium dihydrogen phosphate bufferacetonitrile-methanol (20:40:40 v/v) mobile phase. The detection was performed at 215 nm. The compounds were isolated from plasma by Bond Elut C18 solid-phase extraction, the mean absolute recovery was 84.9%. The limit of quantitation was 10 ng/ml, the limit of detection was 5 ng/ml. The assay has been validated with respect to accuracy, precision and system suitability. All validated parameters were found to be within the necessary limits. The developed analytical method for ticlopidine was found to be suitable for application in pharmacokinetic studies and human drug monitoring.

Chromatography, High Pressure Liquid↗