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H Derendorf

Publications and source records attributed to H Derendorf.

At least 19 recordsLinked to original sources

Comparison of talinolol and atenolol effects on blood pressure in relation to lipid and glucose metabolic parameters. Results from the TALIP study.

AIMS: The primary objective of this double-blind, randomized, parallel-group study was to compare the influence ofthe selective beta1-receptor antagonists talinolol (100 mg) and atenolol (50 mg) on the lipid metabolism in hyperlipemic patients with mild to moderate hypertension after 12 weeks of treatment. As a secondary endpoint, the influence of the drug on blood pressure, pulse rate as well as glucose metabolism were examined. Furthermore, pharmacokinetic parameters were assessed. PATIENTS: Of the 198 patients recruited for the study, 166 were randomized to receive atenolol (n = 83) or talinolol (n = 83) for up to 12 weeks, 149 patients received the study medication for up to 48 weeks under double-blind conditions. RESULTS: There was no difference between the antihypertensive effect of both beta1-selective antagonists in patients with mild to moderate hypertension. No clinically relevant differences between the 2 drugs were observed for LDL cholesterol, HDL cholesterol, total cholesterol and triglycerides in the rather low doses given. However, there was evidence for a decrease in LDL cholesterol following treatment with talinolol, but not following treatment with atenolol, in patients with the highest initial blood pressure and in those with normalized blood pressure after 12 weeks of treatment. Parameters of glucose metabolism were not adversely affected by both drugs. Stable pharmacokinetics were observed over the 12-week administration, and steady state conditions were achieved after a 1-week treatment with both active compounds in the target population. Data indicate that once-a-day dosing can be performed with less fluctuation between peak and trough for talinolol in comparison to atenolol. Both treatments were well tolerated.

Administration, Oral↗

Soft cannabinoid analogues as potential anti-glaucoma agents.

Cannabinoids are able to reduce elevated intraocular pressure; however, their use in glaucoma treatment is not approved due to severe systemic side effects. New cannabinoid derivatives have been designed based on a retrometabolic/soft drug approach; they were expected to have local effect, but not systemic side effects. Lead compounds and soft analogues were prepared using Pechmann condensation. In agreement with the SAR hypothesis used for the present soft drug design, all the compounds that were successfully synthesized had IOP lowering effect, but the common metabolite of soft analogues that was found to be inactive. Accordingly, when the soft analogue 8 was administered i.v., its biological effect lasted just for 15 minutes; nevertheless, when administered topically, its effect lasted significantly longer. Its metabolite, though, was inactive when applied either i.v. or topically. Thus, the designed soft analogues proved to be good candidates for topical control of glaucoma without producing systemic side effects. The preliminary i.v. experimental data could be successfully described by an indirect response PK/PD model.

Administration, Topical↗

Data warehousing.

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Drug Industry↗

Current concepts in pharmacokinetics and their implications for clinical medicine.

The history of medicine provides ample evidence of the physicians' struggle with the subject of appropriate drug dosing. Recent studies indicate that drug-related mortality due to inadequate dosing principles still is a leading cause of death, only surpassed by cardiovascular diseases, cancer and stroke. In an effort to rationalize drug therapy, pharmacokinetic (PK) principles were introduced in medical practice in the early 1970s, mainly in the field of therapeutic drug monitoring (TDM). This measure was shown to reduce mortality. Several limitations in traditional PK, however, have led to the belief among many physicians that clinical PK is an unnecessary assignment of limited clinical relevance. Despite the perceived limitations of traditional PK research, remarkable developments have taken place in recent years and have made clinical PK a "physiological-mechanism based endeavor" with important implications for clinical medicine. Notably, the introduction of (1) PK-PD (pharmacokinetic-pharmacodynamic) modeling (2) target site PK (3) population PK and (4) pharmacogenomics has permitted better integration of PK principles into clinical drug therapy. The aim of the present article is to provide an overview of these developments and to discuss their impact on our understanding of clinical drug therapy.

Biological Availability↗

Microdialysis. A novel tool for clinical studies of anti-infective agents.

In vivo microdialysis (MD) is an innovative clinical technique that has been employed in preclinical research and metabolic studies in patients for more than a decade. Recently, MD has been adopted for human drug studies and has opened up the opportunity to quantify tissue drug distribution in vivo. The particular advantage of MD for the anti-infective field relates to the fact that MD allows for online measurement of the unbound, pharmacologically active drug fraction in the interstitial space fluid (ISF), the anatomically defined target site for most bacterial infections. The aim of this review is to provide an overview of the current literature about MD in anti-microbial drug studies. It will be shown that MD has become feasible in most human tissues including brain and lung. So far, several MD studies have demonstrated that anti-microbial concentrations at the effect site may be subinhibitory, although effective concentrations are attained in serum, a finding that has significant impact on clinical decision making. In addition to its property as a pharmacokinetic sampling technique, MD offers unique opportunities in pharmacokinetic-pharmacodynamic (PK-PD) research and has the potential to streamline the decision process on proper drug dosing in drug development.

Anti-Infective Agents↗

Penetration of cefaclor into the interstitial space fluid of skeletal muscle and lung tissue in rats.

PURPOSE: To measure and compare the penetration of cefaclor from the plasma compartment into the interstitial space of lung and skeletal muscle in rats and to integrate the data in a pharmacokinetic model. METHODS: Unbound interstitial concentrations in muscle and lung were measured by in vivo microdialysis following i.v. bolus doses of 50 and 75 mg/kg cefaclor. Unbound muscle concentrations were also measured after a primed, continuous i.v. infusion at an infusion rate of 0.3 mg/kg/min. RESULTS: The cefaclor half-life in plasma, muscle and lung was approximately 1 h. Unbound cefaclor concentrations in muscle and lung were found to be virtually identical. A 2-compartment body model was fitted to the data with a tissue penetration factor (AUC(tissue(unbound)))/AUC(plasma(unbound))) of approximately 0.26 independent of dose, tissue and mode of administration. CONCLUSIONS: Unbound concentrations of cefaclor in the interstitial space fluid of lung and skeletal muscle are of similar magnitude and lower than those in plasma. Using total plasma concentrations would overestimate the antibacterial activity of the drug and therefore its clinical efficacy. Instead, therapeutically active levels of cefaclor at the site of action should be taken into account. Microdialysis allows direct measurement of these unbound concentrations.

Algorithms↗

Evaluation of pulmonary absorption using pharmacokinetic methods.

When assessing inhaled drug absorption, standard pharmacokinetic analyses cannot differentiate drug that reaches the systemic circulation from the lungs from that of the gut. Pulmonary absorption kinetics can be assessed for drugs with negligible gastrointestinal absorption or for drugs that are eliminated via first-pass metabolism. For other drugs, pulmonary absorption kinetics can be studied by blocking gastrointestinal absorption with charcoal, or by studying absorption during the first 30 minutes post inhalation before appreciable oral absorption has occurred. Pharmacokinetic data generally agree well with pulmonary deposition data derived by measuring inhaled radiotracer-labelled drug using gamma-scintigraphy. Monitoring pulmonary and oral absorption also provides information on total systemic exposure and therefore safety. Furthermore, the duration of action of different inhaled drugs and the degree of pulmonary targeting can be obtained by determining the corticosteroid occupancy of lung and systemic glucocorticoid receptors. Pharmacokinetic data from healthy volunteers cannot be extrapolated to patients with asthma, as systemic exposure to inhaled drugs can be markedly less in patients than in healthy volunteers. This correlates with the observed differences in side effects in these two groups. Although pharmacokinetic methods do not provide information on regional deposition, they do generate data on systemic and pulmonary exposure, and so play a role in the development of delivery systems.

Administration, Inhalation↗

Population pharmacokinetics of intramuscular quinine in children with severe malaria.

We present the first population pharmacokinetic analysis of quinine in patients with Plasmodium falciparum malaria. Ghanaian children (n = 120; aged 12 months to 10 years) with severe malaria received an intramuscular loading dose of quinine dihydrochloride (20 mg/kg of body weight). A two-compartment model with first-order absorption and elimination gave post hoc estimates for pharmacokinetic parameters that were consistent with those derived from non-population pharmacokinetic studies (clearance [CL] = 0.05 liter/h/kg of body weight; volume of distribution in the central compartment [V(1)] = 0.65 liter/kg; volume of distribution at steady state = 1.41 liter/kg; half-life at beta phase = 19.9 h). There were no covariates (including age, gender, acidemia, anemia, coma, parasitemia, or anticonvulsant use) that explained interpatient variability in weight-normalized CL and V(1). Intramuscular quinine was associated with minor, local toxicity in some patients (13 of 108; 12%), and 11 patients (10%) experienced one or more episodes of postadmission hypoglycemia. A loading dose of intramuscular quinine results in predictable population pharmacokinetic profiles in children with severe malaria and may be preferred to the intravenous route of administration in some circumstances.

Acidosis, Lactic↗

Pharmacokinetic/pharmacodynamic evaluation of the NHE inhibitor eniporide.

The aim of this study was to investigate the pharmacokinetics and pharmacodynamics of the new cardioprotective sodium/proton exchange (NHE-1) inhibitor eniporide in humans. Eniporide was administered intravenously to healthy volunteers in doses between 2.5 and 100 mg. Concentrations of parent drug and its metabolite were measured by HPLC, and the data were analyzed by noncompartmental and compartmental pharmacokinetic methods. Platelet-swelling time was determined in each subject as a biomarker to assess pharmacodynamic activity. Eniporide showed linear pharmacokinetics with an average half-life of approximately 2 hours. The mean total body clearance was 34.4 L/h. The mean volume of distribution (Vdss) was 77.5 L, and the mean residence time was 2.3 hours. An average of 43% of the dose was recovered unchanged from urine. A pharmacokinetic two-compartment model was found suitable to provide excellent curve fits of the measured plasma concentration profiles. Plasma concentrations of the major metabolite were lower than that of the parent drug. An average of 27% of the dose was found in urine as that metabolite. The effect on platelet swelling could be well characterized by a direct Emax model. The average concentration for half-maximum effect (IC50) was 12 ng/mL. Eniporide was found to have predictable linear pharmacokinetics in the investigated dose range. Platelet-swelling time was shown to be a reproducible individual biomarker for pharmacodynamic activity, with great potential for a surrogate that predicts clinical outcome, since this effect is mediated through the same mechanism of action (NHE-1 inhibition) as the desired cardioprotective activity. Pharmacokinetic/pharmacodynamic modeling allowed a first estimate of the degree of NHE inhibition in the investigated dose range.

Adolescent↗

Pharmacokinetics and pharmacodynamics of dexamethasone sodium-m-sulfobenzoate (DS) after intravenous and intramuscular administration: a comparison with dexamethasone phosphate (DP).

The pharmacokinetics (PK) and pharmacodynamics (effects on blood lymphocytes) of dexamethasone (D) after intravenous (i.v.) administration of dexamethasone phosphate (DP, 10 mg, equivalent to 8.3 mg of dexamethasone) and after intravenous and intramuscular (i.m.) administration of dexamethasone sulfobenzoate sodium (DS, 9.15 mg, equivalent to 6 mg of dexamethasone) were assessed. Only 25% of DS was converted into dexamethasone with a half-life for DS of 5.4 hours and 7.4 hours after i.v. and i.m. administration, respectively. Consequently, the mean residence time of D after both i.m. and i.v. administration of DS (10.4-11.6 h) was longer than that after DP administration (6.1 h). The smaller lymphocyte suppression induced by DS (50% of that after DP administration) was shown to be related to differences in the pharmacokinetics. This study revealed significant differences in the pharmacokinetics of D after administration of DS and DP and stresses the importance of the prodrug for the pharmacological response. Because of the slow and incomplete conversion of DS into dexamethasone, its use in emergency medicine situations should be critically evaluated.

Adult↗

Pharmacokinetics and bioavailability of quercetin glycosides in humans.

Due to its potentially beneficial impact on human health, the polyphenol quercetin has come into the focus of medicinal interest. However, data on the bioavailability of quercetin after oral intake are scarce and contradictory. Previous investigations indicate that the disposition of quercetin may depend on the sugar moiety of the glycoside or the plant matrix. To determine the influence of the sugar moiety or matrix on the absorption of quercetin, two isolated quercetin glycosides and two plant extracts were administered to 12 healthy volunteers in a four-way crossover study. Each subject received an onion supplement or quercetin-4'-O-glucoside (both equivalent to 100 mg quercetin), as well as quercetin-3-O-rutinoside and buckwheat tea (both equivalent to 200 mg quercetin). Samples were analyzed by HPLC with a 12-channel coulometric array detector. In human plasma, only quercetin glucuronides, but no free quercetin, could be detected. There was no significant difference in the bioavailability and pharmacokinetic parameters between the onion supplement and quercetin-4'-O-glucoside. Peak plasma concentrations were 2.3 +/- 1.5 microg x mL(-1) and 2.1 +/- 1.6 microg x mL(-1) (mean +/- SD) and were reached after 0.7 +/- 0.2 hours and 0.7 +/- 0.3 hours, respectively. After administration of buckwheat tea and rutin, however, peak plasma levels were--despite the higher dose-only 0.6 +/- 0.7 microg x mL(-1) and 0.3 +/- 0.3 microg x mL(-1), respectively. Peak concentrations were reached 4.3 +/- 1.8 hours after administration of buckwheat tea and 7.0 +/- 2.9 hours after ingestion of rutin. The terminal elimination half-life was about 11 hours for all treatments. Thus, the disposition of quercetin in humans primarily depends on the sugar moiety. To a minor extent, the plant matrix influences both the rate and extent of absorption in the case of buckwheat tea administration compared with the isolated compound. The site of absorption seems to be different for quercetin-4'-O-glucoside and quercetin-3-O-rutinoside. The significance of specific carriers on the absorption of quercetin glycosides, as well as specific intestinal beta-glucosidases, needs to be further evaluated.

Adult↗

Pharmacokinetics and rectal bioavailability of hydrocortisone acetate after single and multiple administration in healthy subjects and patients.

The pharmacokinetics and bioavailability of hydrocortisone after rectal administration of a hydrocortisone acetate foam were determined after single and multiple dosing in healthy subjects as well as in patients with inflammatory bowel disease. Endogenous hydrocortisone was suppressed by dexamethasone administration. Plasma levels were compared with those observed after intravenous administration of hydrocortisone. Only a very small part of the rectal dose (100 mg) was absorbed; the mean absolute bioavailability was 3.1% in healthy volunteers and 4.5% in patients. There was substantial intersubject variability. Although maximum hydrocortisone levels after single or multiple doses were significantly higher (about 70%) in the patient group, the systemic bioavailability is very low so that the risk of systemic side effects after rectal administration of hydrocortisone acetate foam has to be considered very low.

Administration, Rectal↗

Single-dose and steady-state pharmacokinetic and pharmacodynamic evaluation of therapeutically clinically equivalent doses of inhaled fluticasone propionate and budesonide, given as Diskus or Turbohaler dry-powder inhalers to healthy subjects.

Direct comparisons of the pharmacokinetic (PK) and systemic pharmacodynamic (PD) properties of inhaled corticosteroids after single and multiple dosing in the same subjects are scarce. The objective of this study was to compare thePK/PDproperties of clinically equivalent, single, and multiple doses of dry-powder formulations of inhaled fluticasone propionate (FP 200 and 500 microg via Diskus) and budesonide (BUD, 400 and 1,000 microg via Turbohaler). Fourteen healthy subjects completed a double-blind, double-dummy, randomized, placebo-controlled, five-way crossover study consisting of a single dose administered at 8 a.m. on day 1 followed by 4 days of twice-daily dosing at 8 a.m. and 8 p.m. on days 2 to 5. Serum concentrations of FP and BUD were measured using validated liquid chromatography/ mass spectrometry assays. The 24-hour cumulative cortisol suppression (CCS) in serum was monitored as the pharmacodynamic surrogate marker. Peak serum concentrations following single and multiple dosing were observed 10 to 30 minutes after inhalation for BUD and 30 to 90 minutes afterinhalation of FP with no influence of dose ordosingregimen. After a single dose of 1000 microg BUD and 500 microg FP the median estimates of terminal half-life and mean residence time were 3.5 and 3.9 hours for BUD and 10.1 and 12.0 hours for FP, respectively. Using previously reported intravenous data, the mean absorption times (MAT) were calculated to be around 2 hours and 7 hours for BUD and FP respectively. On average, the area under the curve (A UC) at steady state (day 5) was up to 30% higher for BUD compared to that over a 12-hour period following the first dose on day 1, whereas A UC estimates were 50% to 80% higherforFP at steady state, indicating accumulation. However, the steady-state Cmax values were seven to eight times and AUC values three to four times higher for BUD than for FP. Comparison of active treatment data with placebo showed that CCS after a single dose was not pronounced for any of the doses/drugs studied. On day 5, both doses of BUD caused statistically significant suppression (CCS of 19% for the 400 microg dose and 36% for the 1,000 microg dose). For FP only the high dose had a statistically significant effect on serum cortisol (CCS of 14% for the 200 microg dose and 27% for the 500 microg dose). Compared to BUD, FP has slower pulmonary absorption and slower elimination kinetics. However, following inhalation of therapeutically equipotent, multiple twice-daily doses in healthy subjects, the systemic effects of FP delivered via Diskus on AUC24 serum cortisol were relatively low and similar to those of BUD delivered via Turbohaler.

Administration, Inhalation↗

Microdialysis in peripheral tissues.

The objective of this review is to survey the recent literature regarding the applications of microdialysis in pharmacokinetic studies and facilitating many other studies in peripheral tissues such as muscle, subcutaneous adipose tissue, heart, lung, etc. It has been reported extensively that microdialysis is a useful technique for monitoring free concentrations of compounds in extracellular fluid (ECF), and it is gaining popularity in pharmacokinetic and pharmacodynamic studies, both in experimental animals and humans. The first part of this review discusses the use of microdialysis technique for ECF sampling in peripheral tissues in animal studies. The second part of the review describes the use of microdialysis for ECF sampling in peripheral tissues in human studies. Microdialysis has been applied extensively to measure both endogenous and exogenous compounds in ECF. Of particular benefit is the fact that microdialysis measures the unbound concentrations in the peripheral tissue fluid which have been shown to be responsible for the pharmacological effects. With the increasing number of applications of microdialysis, it is obvious that this method will have an important place in studying drug pharmacokinetics and pharmacodynamics.

Adipose Tissue↗

Clinical and pharmacological aspects of accidental triamcinolone acetonide overdosage: a case study.

Local administration of corticosteroids for rheumatic diseases have had a long history of effective and well-tolerated use. We report here the pharmacodynamics and pharmacokinetics of an accidental triamcinolone acetonide (TCA) overdose. The presented patient was treated with 200 mg TCA and developed Cushing's syndrome 6 weeks later (cortisol and ACTH concentrations were below limits of detection, TCA concentrations were > 3 micrograms/l). Because of her severe symptoms, mifepristone was administered for a period of 19 days. Cortisol concentrations became detectable 2 days after initiation of mifepristone treatment and persisted, being detectable for a period of at least a week after cessation of the drug. Twenty days after cessation, cortisol concentrations were undetectable again. Cushing's syndrome persisted more than 6 months while TCA concentrations remained detectable for at least 80 days. Based on plasma TCA concentrations in our patient, we calculated a terminal half-life of TCA of 33 days as opposed to 5 days observed after intra-articular administration of a therapeutic dose of 40 mg TCA. We conclude that after an accidental overdose in this patient, body TCA disappearance was strongly prolonged due to a very slow (absorption) half-life of the drug in comparison to a therapeutic dose. This finding is explained by a 'flap-flop phenomenon' where drug absorption is the rate-limiting step of overall drug disposition. Caution is, therefore, needed to prevent undesired accumulation of TCA that may lead to protracted Cushing's syndrome.

Anti-Inflammatory Agents↗

A sensitive LC-MS/MS method for the quantification of fluticasone propionate in human plasma.

A sensitive and selective LC-(APCI) MS/MS method capable of quantifying fluticasone propionate (FP) at levels down to 10 pg ml(-1) in human plasma is reported. The method was validated over a linear range from 10 to 1000 pg ml(-1) using a previously published solid-phase extraction procedure with a 13C3-labeled internal standard. The inter and intra batch precision (coefficient of variation) and accuracy (% bias) of the quality controls samples (20, 25, 50, 100, 200, 500 and 1000 pg ml(-1)) were less than 15 and 11%, respectively. The method is robust, rapid (analysis time of 2 min), selective and hence is ideally suited for pharmacokinetic investigations involving inhalation of therapeutic doses of FP.

Administration, Inhalation↗

Population pharmacokinetic/pharmacodynamic modeling of cetrorelix, a novel LH-RH antagonist, and testosterone in rats and dogs.

PURPOSE: Population models for the pharmacokinetic-pharmacodynamic relationship for cetrorelix (CET), a luteinising hormone-releasing hormone (LH-RH) antagonist, and the pharmacodynamic response on testosterone production were investigated in rats and dogs. METHODS: The plasma concentrations of CET and testosterone were determined after intravenous and subcutaneous injections. The population PK/PD-models were developed using P-PHARM software. RESULTS: Absolute bioavailability of cetrorelix was 100% in rats and 97% in dogs. In rats, the pharmacokinetics was explained by a two-compartment model with saturable absorption, while a three-compartment model was used in dogs. Testosterone suppression in both species was described by a sigmoid E(max) model with maximum effect (E(max)) considered as total hormonal suppression. The duration of testosterone suppression in rats was longer at higher doses. The population elimination half-lives after iv-dose were 3.0 h in rats and 9.3 h in dogs. Population mean estimates of IC50 were 1.39 and 1.24 ng/ml in rats and dogs, respectively. CONCLUSIONS: A population pharmacokinetic model was developed to explain the dissolution rate limited absorption from the injection site. The suppression of testosterone could be described by an indirect inhibitory sigmoid E(max) model. In both species 1-2 ng/ml CET in plasma was necessary to suppress testosterone production.

Animals↗