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Biomedical subjects

J S Barrett

Publications and source records attributed to J S Barrett.

At least 19 recordsLinked to original sources

Review article: fructose malabsorption and the bigger picture.

Fructose is found widely in the diet as a free hexose, as the disaccharide, sucrose and in a polymerized form (fructans). Free fructose has limited absorption in the small intestine, with up to one half of the population unable to completely absorb a load of 25 g. Average daily intake of fructose varies from 11 to 54 g around the world. Fructans are not hydrolysed or absorbed in the small intestine. The physiological consequences of their malabsorption include increasing osmotic load, providing substrate for rapid bacterial fermentation, changing gastrointestinal motility, promoting mucosal biofilm and altering the profile of bacteria. These effects are additive with other short-chain poorly absorbed carbohydrates such as sorbitol. The clinical significance of these events depends upon the response of the bowel to such changes; they have a higher chance of inducing symptoms in patients with functional gut disorders than asymptomatic subjects. Restricting dietary intake of free fructose and/or fructans may have durable symptomatic benefits in a high proportion of patients with functional gut disorders, but high quality evidence is lacking. It is proposed that confusion over the clinical relevance of fructose malabsorption may be reduced by regarding it not as an abnormality but as a physiological process offering an opportunity to improve functional gastrointestinal symptoms by dietary change.

Adolescent↗

Effect of ketoconazole on the pharmacokinetics and safety of telithromycin and clarithromycin in older subjects with renal impairment.

OBJECTIVE: The objective of this study was to determine the effect of multiple impairments in drug elimination on the pharmacokinetics and pharmacodynamics (effect on QTc interval), using clarithromycin as a comparator. METHODS: Thirty-two subjects aged > or = 60 years with renal impairment who were otherwise medically stable were recruited into this parallel-group study. Following stratification according to creatinine clearance (CL(CR)), subjects were randomized to a five-day treatment with ketoconazole (400 mg once daily) alone, or a five-day treatment with ketoconazole (400 mg once daily) and telithromycin (800 mg once daily) given concomitantly or a five-day treatment with ketoconazole (400 mg once daily) and clarithromycin (500 mg twice daily) given concomitantly. Steady-state pharmacokinetics and safety, including serial electrocardiograms, were assessed. RESULTS: In subjects with CL(CR) 30 - 80 ml/min, the mean maximal telithromycin concentration at steady state (C(max),ss) was 3.6 mg/l and the steady state area under the plasma concentration-time curve from time zero to 24 hours (AUC(0-24 h) ss) was 33.4 mg x h/l. The mean C(max), ss and AUC(0-12 h)ss for clarithromycin were 6.2 mg/l and 56.1 mg x h/l, respectively. The increases in telithromycin C(max) ss and AUC(0-24 h) ss compared to corresponding data for healthy young subjects were 1.6- and 2.7-fold, respectively, whereas corresponding increases for clarithromycin were 2.2- and 3.3-fold, respectively. In the telithromycin plus ketoconazole group deltaQTc values were equal or < 60 ms. All QTc values were equal or < 450 ms in males and equal or < 470 ms in females. CONCLUSIONS: The increase in telithromycin plasma concentrations during ketoconazole-mediated inhibition of CYP3A4 in subjects aged 60 years or older with renal impairment was similar to that for clarithromycin under the same conditions. Telithromycin was well tolerated and produced no clinically significant prolongations in the QTc interval.

Aged↗

Population pharmacokinetics and pharmacodynamics of ciclesonide.

Ciclesonide is a novel glucocorticoid that is converted into ciclesonide--active principle (CIC-AP) in the lung. The study objectives were to identify a structural model for population pharmacokinetic (PK) analysis of CIC-AP using nonlinear mixed-effects modeling, assess the influence of select covariates on PK and/or pharmacodynamic (PD) parameters, and investigate the effects of CIC-AP on endogenous cortisol. Pooled concentration data from nine phase I studies (dose: 400-3600 micrograms) involving healthy and asthmatic patients were included in the PK analysis. There were 151 subjects (3300 observations) for the CIC-AP population PK analysis. Various models examined inter- and intrasubject variability for the PK parameters. Population estimates of the PK parameters of clearance and volume of distribution were 396 L/h (64.8% co-efficient of variation [CV]) and 1190 L (41.2% CV), respectively. Pharmacodynamic population estimates included maximum cortisol release rate, 3140 ng/h (5.4% CV). The EC50 of CIC-AP was 0.88 ng/mL. Ciclesonide is a safe corticosteroid that causes negligible cortisol suppression. The disposition and effect of CIC-AP can be described using mixed-effect modeling. The estimated EC50 is similar to mean Cmax from an 800-micrograms dose, further suggesting CIC-AP has little effect on cortisol suppression.

Administration, Inhalation↗

Population pharmacokinetic meta-analysis with efavirenz.

A population-based pharmacokinetic (PK) model has been developed for efavirenz based on 16 phase I studies. The combined data set consisted of 334 healthy volunteers, 2,907 efavirenz dose administrations and 9,342 measured plasma concentrations across a range of doses from 100-600 mg. The pharmacokinetic structural model was a 2-compartment model with first-order absorption with differentiation between single- and multiple-dose exposure to account for known hepatic cytochrome P450 induction of efavirenz metabolism. Model-building was performed on the index data set (66% of the total database), as a data-splitting technique was used to validate the final model using NONMEM. The final model confirmed the appropriateness of separate clearance terms for single and multiple dose administration (2.65 versus 10.2 l/h, respectively). Clearance increased with dose and frequency of administration. A lower clearance was predicted in Asians and Blacks relative to Caucasians. A slightly lower clearance was observed in females relative to males (9.08 compared to 10.2 l/h in males) and interactions on clearance due to co-administration of fluconazole, ritonavir, rifampin, indinavir and azithromycin were identified. The magnitudes of these effects were small and did not suggest dose adjustment in the various subpopulations. With little exception, these results agree with the findings from the non-compartmental analyses. The residual variability was 21% CV and the intersubject variation in CL/F and V/F was 48 and 85%, respectively. The phase I meta-analysis was able to substantiate the pharmacokinetic characteristics of efavirenz derived from the composite of individual well-defined studies. The model was deemed adequate for subsequent evaluation in HIV-infected patients. Covariates and outlier classes identified in this phase I meta-analysis were similarly identified in subsequent analyses of patient data.

Administration, Oral↗

Data warehouse implementation with clinical pharmacokinetic/pharmacodynamic data.

OBJECTIVES: We have created a data warehouse for human pharmacokinetic (PK) and pharmacodynamic (PD) data generated primarily within the Clinical PK Group of the Drug Metabolism and Pharmacokinetics (DM&PK) Department of DuPont Pharmaceuticals. METHODS: Data which enters an Oracle-based LIMS directly from chromatography systems or through files from contract research organizations are accessed via SAS/PH.Kinetics, GLP-compliant data analysis software residing on individual users' workstations. Upon completion of the final PK or PD analysis, data are pushed to a predefined location. Data analyzed/created with other software (i.e., WinNonlin, NONMEM, Adapt, etc.) are added to this file repository as well. The warehouse creates views to these data and accumulates metadata on all data sources defined in the warehouse. The warehouse is managed via the SAS/Warehouse Administrator product that defines the environment, creates summarized data structures, and schedules data refresh. RESULTS: The clinical PK/PD warehouse encompasses laboratory, biometric, PK and PD data streams. Detailed logical tables for each compound are created/updated as the clinical PK/PD data warehouse is populated. The data model defined to the warehouse is based on a star schema. Summarized data structures such as multidimensional data bases (MDDB), infomarts, and datamarts are created from detail tables. Data mining and querying of highly summarized data as well as drill-down to detail data is possible via the creation of exploitation tools which front-end the warehouse data. Based on periodic refreshing of the warehouse data, these applications are able to access the most current data available and do not require a manual interface to update/populate the data store. Prototype applications have been web-enabled to facilitate their usage to varied data customers across platform and location. The warehouse also contains automated mechanisms for the construction of study data listings and SAS transport files for eventual incorporation into an electronic submission. CONCLUSIONS: This environment permits the management of online analytical processing via a single administrator once the data model and warehouse configuration have been designed. The expansion of the current environment will eventually connect data from all phases of research and development ensuring the return on investment and hopefully efficiencies in data processing unforeseen with earlier legacy systems.

Adult↗

The epiphany of data warehousing technologies in the pharmaceutical industry.

The highly competitive pharmaceutical industry has seen many external changes to its landscape as companies consume each other increasing their pipelines while removing redundant functions and processes. Internally, companies have sought to streamline the discovery and development phases in an attempt to improve candidate selection and reduce the time to regulatory filing. In conjunction with efforts to screen and develop more compounds faster and more efficiently, database management systems (DBMS) have been developed for numerous groups supporting various R&D efforts. An outgrowth of DBMS evolution has been the birth of data warehousing. Often confused with DBMS, data warehousing provides a conduit for data residing across platforms, networks, and in different data structures. Through the use of metadata, the warehouse establishes connectivity of varied data stores (operational detail data, ODD) and permits identification of data ownership, location and transaction history. This evolution has closely mirrored and in some ways been driven by the electronic submission (formerly CANDA). The integration of the electronic submissions and document management with R&D data warehousing initiatives should provide a platform by which companies can address compliance with 21 CFR Part 11. Now more than ever "corporate memory" is being extended to the data itself. The when, why and how of successes and failures are constantly being probed by R&D management teams. The volume of information being generated by today's pharmaceutical companies requires mining of historical data on a routine basis. Data warehousing represents a core technology to assist in this endeavor. New initiatives in this field address the necessity of data portals through which warehouse data can be web-enabled and exploited by diverse data customers both internal and external to the company. The epiphany of data warehousing technologies within the pharmaceutical industry has begun and promises to change the way in which companies process and provide data to regulatory agencies. The improvements in drug discovery and reduction in development timelines remain to be seen but would seem to be rational if such technology is fully exploited.

Drug Industry↗

Pharmacodynamics of intravenous and subcutaneous tinzaparin and heparin in healthy volunteers.

The pharmacodynamics of i.v. and subcutaneous (s.c.) tinzaparin sodium compared with heparin in healthy volunteers were studied. A randomized, open-label, five-treatment, five-period-crossover study with a Latin square design was performed in 30 healthy men to estimate tinzaparin pharmacodynamics (anti-Xa and anti-IIa activities) after single-dose i.v. and s.c. administration, to evaluate absolute bioavailability, to determine the effect of a preservative (benzyl alcohol), to evaluate the dose-activity relationship, and to compare tinzaparin with unfractionated heparin. Treatments were (1) heparin 5,000 units s.c., (2) tinzaparin 4,500 anti-Xa IU without preservative s.c., (3) tinzaparin 4,500 anti-Xa IU without preservative i.v., (4) tinzaparin 12,250 anti-Xa IU with preservative s.c., and (5) tinzaparin 4,500 anti-Xa IU with preservative s.c. Blood samples for the measurement of anti-Xa and anti-IIa activities were drawn over 24 hours. Anti-Xa and anti-IIa activities were determined by chromogenic methods; data were analyzed by using a noncompartmental approach. The clearance of tinzaparin based on anti-Xa activity ranged from 1.14 to 2.04 L/hr. The volume of distribution was 3.1-5.0 L, suggesting that the molecular entities responsible for anti-Xa and anti-IIa activities are confined to the intravascular space. Mean peak anti-Xa activity occurred three to four hours after s.c. injection, independent of the dose. The mean half-life of anti-Xa activity after s.c. injection ranged from 3.41 to 4.13 hours and was independent of the dose. The mean absolute bioavailability of s.c. tinzaparin was 86.7%. Intersubject pharmacodynamic variability was low for tinzaparin compared with heparin. Benzyl alcohol did not affect tinzaparin pharmacodynamics. A clear dose-activity relationship was seen for the two fixed doses of tinzaparin (12,250 and 4,500 IU). Single doses of tinzaparin were safe and well tolerated after administration by either route. The anti-Xa profile of tinzaparin supports the pharmacodynamic superiority of low-molecular-weight heparins over standard i.v. heparin administration. This pharmacodynamic study in healthy volunteers indicates that s.c. tinzaparin sodium was well absorbed; the presence of a preservative, benzyl alcohol, did not affect the activity of tinzaparin; and tinzaparin activity is dose-related.

Adult↗

Anticoagulant pharmacodynamics of tinzaparin following 175 iu/kg subcutaneous administration to healthy volunteers.

Tinzaparin, a sodium salt of a low-molecular-weight heparin (LMWH) produced via heparinase digestion, is used for the treatment of deep vein thrombosis (DVT) and pulmonary embolism in conjunction with warfarin for the prevention of DVT in patients undergoing hip or knee replacement surgery, and as an anticoagulant in hemodialysis circuits. Its average molecular weight ranges between 5500 and 7500 daltons (Da); the percentage of chains with molecular weight lower than 2000 Da is not more than 10% in the marketed tinzaparin formulation. While this fraction is generally considered pharmacologically inactive, this has never been evaluated in vivo. The importance of the < 2000 Da fraction on the anticoagulant pharmacodynamics of tinzaparin assessed by anti-Xa and anti-IIa activity was studied in a two-way crossover trial. In this trial, 30 healthy volunteers received a single 175 IU/kg subcutaneous administration of tinzaparin containing approximately 3.5% of the < 2000 Da fraction and a tinzaparin-like LMWH containing 18.3% of the < 2000 Da fraction. The anti-Xa/anti-IIa ratios of the drug substances were comparable at 1.5 and 1.7 for tinzaparin and the tinzaparin-like LMWH, respectively. Both formulations were safe and well tolerated. Mean maximum plasma anti-Xa activity (A(max)) was approximately 0.818 IU/ml at 4 h following tinzaparin injection. Mean maximum plasma anti-IIa activity was 0.308 IU/ml at 5 h postdose. Intersubject variation was lower (< 18% for both anti-Xa and anti-IIa metrics) than in previous fixed-dose administration studies. There was no correlation between anti-Xa or anti-IIa AUC or A(max) and bodyweight in the present study supporting the weight-adjusted dosing regimen. Individual anti-Xa and anti-IIa profiles following the single 175 IU/kg subcutaneous administration of the tinzaparin-like LMWH were similar to that obtained with tinzaparin. Based on average equivalence criteria, the two LMWH preparations were determined to be bioequivalent using either anti-Xa or anti-IIa activity as biomarkers. The calculated intrasubject variabilities were low (< 14% for anti-Xa activity and < 18% for anti-IIa activity) yielding little evidence for a significant Subject x Formulation interaction. In summary, anti-Xa and anti-IIa activity following a single subcutaneous administration of tinzaparin 175 IU/kg to healthy volunteers yielded activity consistent with targeted therapeutic levels derived from previous trials in adult DVT patients. Weight-based dosing for the treatment of DVT appears rational based on the reduction in anti-Xa and anti-IIa variability consistent with the recommendation derived from earlier fixed-dose pharmacokinetic studies. Furthermore, differences in the percentage of molecules in the < 2000 Da molecular weight fraction of tinzaparin do not translate into differences in anti-Xa and anti-IIa activity in vivo.

Adult↗

Population pharmacodynamics in patients receiving tinzaparin for the prevention and treatment of deep vein thrombosis.

OBJECTIVES: We conducted population anticoagulant pharmacodynamic analysis for patients administered the low-molecular weight heparin tinzaparin. METHODS: Data from 425 patients (2,631 observations) who participated in 2 Phase III clinical studies were utilized in an analysis based on a pharmacodynamic structural model of anti-Xa activity using non-linear mixed effects modeling techniques. Anti-Xa activity from patients participating in a multicenter, randomized, double-blind clinical trial comparing intravenous once daily subcutaneous tinzaparin (175 IU/kg) with heparin for the treatment of deep vein thrombosis (DVT) was first examined using a 2-compartment model with first-order absorption and endogenous anti-Xa activity. Covariates included renal function, body weight, age, gender, race, obesity, concomitant administration of warfarin, and diabetes. RESULTS: The population estimates and 90% confidence intervals (CI) for oral clearance (CL) and apparent volume of distribution of the plasma compartment (Vc) were 0.0176 l/h/kg (CI = 0.012-0.023) and 0.098 l/kg (CI = 0.088 - 0.109), respectively. The elimination half-life was 3.9 h (CI = 2.5-5.2). These estimates are similar to findings in healthy volunteers. The inter-patient variability in clearance was related to plasma creatinine and percent above ideal body weight. Clearance decreased by 22% for patients with severe renal function impairment (creatinine clearance < 30 ml/min), and by about 25% in obese patients (BMI > 30 kg/m2). CONCLUSIONS: Changes of these magnitudes were not clinically important in pooled clinical trial safety and efficacy analyses. Body weight was not a significant covariate in the model supporting the observations in earlier well-defined trials, where tinzaparin was dosed on a weight basis (lU/kg). Clearance was not influenced by age, race or gender. The same model was applied to data obtained from a prospective, randomized, double-blind clinical trial comparing tinzaparin (4,500 IU) to enoxaparin (40 mg) once daily in patients undergoing total hip replacement. Model parameters were similar to those previously obtained supporting the extension of these results across dose and indication. Population analysis in patients with disease and heterogeneity indicated similar pharmacodynamics as in volunteers, supporting weight-based dosing and identified the dependence of clearance on obesity and severe renal function, although the magnitude of these effects are probably not clinically significant.

Adult↗

PhRMA perspective on population and individual bioequivalence.

The Food and Drug Administration (FDA) issued a second-draft guidance in August 1999 on the subject of in vivo bioequivalence, which is based on the concepts of individual and population bioequivalence (IBE and PBE, respectively). The intention of this guidance is to replace the 1992 guidance that requires that in vivo bioequivalence be demonstrated by average bioequivalence (ABE). Although the concepts of population and individual bioequivalence are intuitively reasonable, a detailed review of the literature has not uncovered clinical evidence to justify the additional burden to the innovator and generic companies as well as the consumer that the new guidelines would impose. The criteria for bioequivalence described in the draft guidance employ aggregate statistics that combine information about differences in bioavailability between formulation means and differences in bioavailability variation of formulations between and within subjects. The purely technical aspects of the statistical approach are reasonably sound. However, PhRMA believes that important operational issues remain that need to be resolved before any changes to current practice are implemented. PhRMA believes that the ideals of prescribability and switchability are intuitively reasonable, but it is uncertain of the extent to which the proposed guidance can achieve these goals. It is not clear whether the attainment of such goals is necessary in the evaluation of bioequivalence given the role this plays in drug development, and the lack of clinical evidence argues against a pressing need to change current practice. PhRMA is concerned that the trade-off offered by the aggregate criteria may ultimately represent more harm than good to the public interest. PhRMA recommends more rigorous evaluation of methods based on two-way crossover designs before moving to methods that require more complex designs. One such method is identified herein and contains procedures for estimating prescribability and switchability. The possibility of a phase-in or trial period to collect replicate crossover data to further evaluate IBE and PBE and possibly allow market access based on these criteria as they are being evaluated has been proposed. PhRMA believes this is unprecedented and will offer little additional information beyond that which can be obtained by simulation or has already been collected by the FDA. Simulation studies have the advantage of allowing evaluation of the sensitivity of various procedures to represent the data patterns as created within the simulation. Operating characteristics by which proposed criteria can be adequately judged have not yet been defined. The limitations of ABE for highly variable drugs and narrow therapeutic drugs are well appreciated and may be addressed by means other than a wholesale change in the current criteria.

Humans↗

Disposition and exposure of the fibrinogen receptor antagonist XV459 on alphaIIBbeta3 binding sites in the guinea pig.

The disposition of XV459, a potent, selective GP IIb/IIIa antagonist, has been examined following intravenous administration of XP280, the benzenesulphonate salt, and 3H-SA202, the trifluroacetic acid salt, to male guinea pigs. A liquid chromatography-mass spectrometry (LC-MS) method was developed and validated for XV459 quantitation in guinea pig plasma with an LLOQ of 0.1 ng/mL. Intravenous infusions (30 min) of XP280 at doses of 0.5 and 2.0 microg/kg were administered to guinea pigs which were sequentially sacrificed at 0.5, 1, 1.5, 4, 8, 12, 24, 48 and 72 h postinitiation of infusion. Maximum total (unbound and GP IIb/IIIa displaced) XV459 plasma concentration of approximately 3.5 microg/mL was obtained at the 2.0 microg/kg dose. Pooling individual concentration-time data yielded a systemic clearance of 1.42 mL/min/kg, Vss of 0.24 L/kg, and a terminal half-life of 2.8 h in the guinea pig at the 0.5 microg/kg dose. The 2.0 microg/kg dose yielded XV459 exposure that was less than proportional to the previous dose. Similar behaviour has been observed in human trials. Cumulative (up to 72 h) urinary and faecal recovery of total radioactivity was 66.4 and 11.2%, respectively. The time course of spleen, marrow and whole blood radioactivity profiles was similar, suggesting that XV459 was not preferentially sequestered on non-plasma GP IIb/IIIa binding sites. Tissue to blood ratios of 20.7 and 8.3 for the spleen and bone marrow, respectively, indicate that increased (relative to blood) exposure was evident for sites containing the GP IIb/IIIa receptor. In vitro studies confirmed the similarity of XV459 binding to both resting and activated platelets in the guinea pig and humans. Given the comparability of dissociation rate constants and IC50s based on in vitro platelet aggregation, human dosimetry estimates should assume similar partitioning of radiolabelled XV459 as in the guinea pig. These results suggest that the guinea pig may indeed be an appropriate animal model for pharmacokinetic and distribution studies with DMP754; in conjunction with recent pharmacological findings with GP IIb/IIIa antagonists, our results suggest that the guinea pig may be the rodent species of choice for preclinical studies with some other GP IIb/IIIa antagonists.

Amino Acids↗

Moricizine bioavailability via simultaneous, dual, stable isotope administration: bioequivalence implications.

The relative bioavailability of a 200 mg film-coated tablet of [12C]moricizine.HCl in comparison to a 200 mg [13C6]moricizine.HCl oral solution was determined after simultaneous administration to 8 young healthy male subjects. Concentrations of [12C]moricizine.HCl and [13C6]moricizine.HCl were determined by thermospray liquid chromatography-mass spectrometry (LC-MS) using [2H11]moricizine.HCl as the internal standard. The mean absorption and disposition parameters of the tablet versus the solution were the following (%CV): maximum concentration, 0.83 (39%) versus 0.79 (39%) microgram/mL; time of maximum concentration, 0.81 (40%) versus 0.65 (28%) hours; area under the concentration-time curve (AUC), 1.58 (39%) versus 1.49 (37%) micrograms.h/mL; apparent oral clearance, 150.7 (52%) versus 158.1 (50%) L/h; and t1/2, 1.9 (42%) versus 1.9 (42%) hours. The AUC for the tablet averaged 106% of the solution, which likely reflects a greater first-pass effect with the oral solution. Partitioning sources of variation confirmed the low (< 6%) intrasubject coefficient of variation (cv epsilon) afforded via the single-period, dual-isotope design. In contrast, a previous study using the conventional two-period crossover design determined the cv epsilon about moricizine metrics to be in excess of 30%, resulting in classification of this drug as having highly variable absorption. The results of this study further illustrate the benefits of dual, stable isotopes to assess bioavailability and bioequivalence. This paradigm results in a reduction in experimental time and subject inconvenience and lower costs in comparison with the standard crossover study. Perhaps most important is the improved statistical power for the evaluation of bioavailability or bioequivalence in the absence of period and sequence effects that confound the assessment of intrasubject variation in the standard crossover design.

Adult↗

Toxicokinetic evaluation of a selegiline transdermal system in the dog.

The toxicology and toxicokinetics of a selegiline transdermal system (STS) were evaluated in a 3 month dog study of daily 24 h applications of placebo 4, 8, or 12 STSs in 32 male and 32 female beagle dogs. Each STS delivered approximately 5 mg selegiline over 24 h. No drug-related signs of toxicity were noted in any group with respect to clinical observations, dermal effects, body weight, food consumption, hematology, urinalysis data, or ophthalmoscopic or electrocardiographic examinations. Clinical chemistry data revealed no consistent adverse effects except for an increase in alanine aminotransferase in dogs receiving 8 and 12 STSs. Histological evaluation of tissues revealed the presence of pigment in the Kupffer cells of dogs treated with 8 and 12 STSs. There were no pathology findings suggestive of hemolysis or cholestasis. The no-effect level (NOEL) was 4 STSs (2.9 mg kg-1 d-1). There were no degenerative or life-threatening toxic effects up to 12 STSs (8.5 mg kg-1 d-1). Gender-related differences in steady-state plasma levels were not observed. Steady-state plasma concentrations were similar to maximum plasma concentrations obtained in single-dose studies, suggesting that drug accumulation was not evident. Simulation of systemic exposure following oral administration of 16.8 mg kg-1 d-1 from previous toxicology studies indicated that selegiline exposure following 12 STSs is sixfold greater while N-desmethylselegiline, L-amphetamine, and L-methamphetamine exposure is 0.5, 0.15, and 0.14 times the exposure in the oral study. The threefold difference in NOEL between oral and transdermal studies in the dog (0.8 versus 2.9 mg kg-1 d-1) is probably related to greater L-amphetamine and L-methamphetamine exposure following oral administration. The reduction in metabolite formation, relative exposure of selegiline in the dog at the NOEL compared to oral toxicology studies, and margin of safety provided, given that the expected clinical dose is less than the dosage of oral Eldepryl (0.15 mg kg-1 d-1), documents the safety of the selegiline drug substance and indicates that additional toxicologic findings with the STS may not be expected.

Administration, Cutaneous↗

Integrated pharmacokinetic and metabolic modeling of selegiline and metabolites after transdermal administration.

Selegiline (SEL) is a selective, irreversible inhibitor of MAO-B, used in the treatment of Parkinson's disease, either alone or as an adjunct to L-DOPA. Selegiline hydrochloride (HCl) undergoes significant first-pass metabolism following oral administration. Transdermal delivery avoids the first-pass effect and provides greater and more prolonged levels of unchanged SEL and reduced levels of metabolites (N-desmethylselegiline (DES), L-amphetamine (AMP), and L-methamphetamine (MET) compared to the oral regimen. An integrated pharmacokinetic-metabolic model which predicts plasma concentrations of SEL and metabolites following a single 24 h application of a selegiline transdermal system (STS) is proposed. The model is based on the metabolic conversion of SEL to DES and MET and subsequently to AMP. The input function is described by a zero-order constant for the delivery of SEL from the STS system based on in vitro studies of penetration of SEL across human skin. The elimination-non-metabolic constants for each analyte account for the urinary elimination. Plasma concentration data from a pilot pharmacokinetic study in which six healthy male volunteers were administered single 24 h applications of a 1.8 mg cm2, 10 cm2 STS were used to examine this model. The coefficient of determination was 0.98 and model selection criterion was 3.4 for mean data fits, supporting the goodness of fit of the model. The pharmacokinetic parameters obtained by non-compartmental analysis were comparable to those predicted by a compartmental model. The model also predicted urinary recoveries for AMP and MET and negligible recovery for SEL and DES consistent with recent studies with the STS in which urine was collected. The metabolic conversion constant from SEL to DES was significantly lower than the conversion constant from SEL to MET, indicating that metabolism of SEL is primarily driven towards MET following transdermal administration. The metabolic conversion from MET to AMP was less than the conversion from DES to AMP. This simultaneous prediction of the SEL and metabolites is essential as the metabolic ratios have been linked to the neuroprotective effects of SEL. These findings support the proposed regional delivery advantage attributed to the transdermal route compared to the conventional therapy with the oral tablet. Future model applications may also help identify significant covariates (i.e. age, gender, and disease state) in upcoming clinical trials.

Administration, Cutaneous↗

Pharmacokinetic evaluation of a selegiline pulsatile oral delivery system.

Selegiline is a selective, irreversible inhibitor of MAO-B, used in the treatment of Parkinson's disease, either alone or as an adjunct to L-DOPA. The sole recommended dosing regimen is 5 mg given in the morning and at noon with breakfast and lunch. A pulsatile oral dosage form was developed to mimic the conventional tablet release from two oral administrations separated by 4 h, to permit once-daily dosing and increase compliance. The pharmacokinetics of the pulsatile delivery system was studied in six healthy male volunteers. The plasma concentration-time profile from the pulsatile system of selegiline and metabolites is dissimilar to that obtained from the 5 mg bid administration of the conventional tablet and cannot be considered to be bioequivalent. The initial pulse of the delivery system is rapidly absorbed but to a lesser extent than the conventional regimen; the second pulse exhibits absorption which is delayed and prolonged. The decrease in the selegiline concentration may be due to the less absorptive surface of the lower GI tract which is available to the second pulse. Another reason could be the disparity between the in vitro and in vivo release profiles from the second pulse. Compartmental analysis indicates that the ratio of formation-absorption rate constant for the selegiline to N-desmethylselegiline pathway decreases from 1.57 +/- 1.04 for the first pulse to 0.61 +/- 0.54 for the second pulse of the pulsatile delivery system, suggesting that the upper portion of the GI tract has a greater capacity to convert selegiline to N-desmethylselegiline than the lower GI tract. The lack of in vivo and in vitro correlation is most likely due to site specific absorption/metabolism. Regimen has been previously shown to be a significant factor in estimating the extent of selegiline and metabolite exposure following oral administration. The inequivalence of dosing regimens of the same total daily dose may ultimately be linked to the saturability of gut wall metabolism. This phenomenon may preclude the development of novel delivery systems designed to mimic the recommended dosing regimen of the conventional Eldepryl tablet.

Administration, Oral↗

Pressor response to tyramine after single 24-hour application of a selegiline transdermal system in healthy males.

Orally administered selegiline hydrochloride is a selective monoamine oxidase type B inhibitor at the recommended regimen of 10 mg/day, but it loses selectivity at higher doses. In bypassing first-pass metabolism, a 24-hour application of transdermally administered selegiline (7.8 mg/24 hr) yields fifty times greater systemic exposure than is provided by single oral doses. The current study was designed to demonstrate that, similar to the oral regimen, transdermally administered selegiline is devoid of the pressor effects associated with tyramine and classic monoamine oxidase type A inhibitors. A single-blind, staggered, parallel-group study of pressor response to tyramine during a single 24-hour application of one-quarter, one-half, or one selegiline transdermal system relative to baseline (drug-free) response to tyramine was conducted in three groups, each with five healthy male volunteers. The end point of pressor response was declared if a participant's systolic blood pressure rose by > 30 mmHg, heart rate decreased by > 25 bpm with an associated > 20-mmHg rise in systolic blood pressure, or a clinically significant change was observed in the electrocardiogram. Doses up to 600 mg were administered during the baseline phase and up to 200 mg during the active-treatment phase. Participants received escalating tyramine doses every 4 hours until the maximum or threshold dose was achieved. Doses up to 200 mg were tolerated without apparent increase in sensitivity in participants receiving one-quarter, one-half, or one selegiline transdermal system. All participants completed the trial, and no significant adverse events were reported. Monoamine oxidase type B inhibition was complete (100%) by 12 hours after initial application in all treatment groups while plasma levels of 3-methoxy-4-hydroxyphenylglycol (MHPG) after 24-hour application were unaffected relative to baseline. These results suggest that systemic selegiline levels may not predict the propensity for a hypertensive crisis associated with presumed nonselective doses and that the avoidance of peripheral monoamine oxidase type A inhibition in the gut via the selegiline transdermal system may provide a safe vehicle for administering selegiline at plasma levels beyond that which can be safely obtained after oral administration. These findings will need to be confirmed in a long-term dose setting.

Administration, Cutaneous↗