Search PubMed⌕ Search

PubMed · 11996212

Methylphenidate bioavailability from two extended-release formulations.

Abstract

OBJECTIVE: The objective of these studies was to compare the rate and extent of absorption of d,l-threo-methylphenidate (MPH) from two extended-release products--a capsule formulation containing coated beads and an OROS tablet formulation--in healthy male and female subjects under fasted conditions. MATERIALS: Metadate CD (methylphenidate HCl, USP) Extended-Release Capsules and Concerta (methylphenidate hydrochloride) Extended-Release Tablets. METHODS: Two studies were conducted: (1) A single dose, randomized, two-way crossover study in 36 adults comparing a 20 mg capsule and an 18 mg tablet, and (2) a single dose, randomized, four-way crossover study in 24 adults comparing 2 x 20 mg capsules, one 36 mg tablet, 3 x 20 mg capsules and one 54 mg tablet. Blood samples were collected over 24 hours and MPH plasma concentrations were used to calculate pharmacokinetic parameters for each treatment. Equivalence of pharmacokinetic parameters for comparable doses of the formulations was concluded if the 90% confidence intervals (CI) for the ratio between test and reference means were within the 80-125% equivalence criterion. RESULTS: Both formulations exhibited biphasic plasma concentration-time profiles and were equivalent in terms of total exposure (AUC(0-last) and AUC(0-infinity)). However, early exposure (AUC(0-4) and AUC(0-6), the first maximum measured plasma concentration (C(max-1), and early plasma MPH concentrations (1.5, 3 and 4 hours) were greater with the capsule formulation, while later plasma MPH concentrations (8, 10 and 12 hours) were greater with the tablet formulation (the CIs were outside the 80-125% required for equivalence and p < 0.001 for all). Similar results were obtained whether or not the data were normalized for the difference in total dose. CONCLUSIONS: The two formulations are not bioequivalent. The capsule fonnulation produces greater exposure to MPH and higher MPH concentrations during the first 6 hours following dosing. MPH is frequently used in school children, and this period would correspond to a major part of the school day.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

M A González, H S Pentikis, N Anderl, M F Benedict, H H DeCory, S J Hirshey Dirksen, S J Hatch. 2002. Methylphenidate bioavailability from two extended-release formulations.. https://doi.org/10.5414/cpp40175

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Adsorption, absorption, and biological degradation of ammonia in different biofilter organic media.

A tailor-made apparatus called ammoniometer, which is a batch mode respirometer applied to the study of ammonia biodegradation in biofilter media, has been used to evaluate adsorption, absorption, and biodegradation in five different organic materials (compost, coconut fibre, bark, pruning wastes, and peat) obtained from full-scale biofilters in operation in several waste treatment plants. The results showed that absorption could be represented by a Henry's law linear equation, with values of the Henry coefficient significantly higher (from 1,866 to 15,320) than that of pure water (1,498). Adsorption data were successfully fitted to Langmuir and Freundlich isotherms and maximum adsorption capacity varies from 1.06 to 1.81 mg NH(3)/g dry media. Ammonia biodegradation rates for each organic material were also calculated. Biodegradation rates varied from 0.67 to 7.82 mg NH(3)/kg media/d depending on the material tested. The data obtained showed important differences in the behaviour of the biofilter organic media, which has important implications in the design and modelling of these systems.

Absorption↗

The use of an oil absorber as a strategy to overcome starvation periods in degrading 1,2-dichloroethane in waste gas.

This work investigates the use of an oil absorber as an operational strategy in vapor phase bioreactors exposed to starvation periods, during the treatment of inhibitory pollutants. After being exposed to 1,2-dichloroethane (DCE) starvation periods, the response and stability of a combined oil-absorber-bioscrubber (OAB) system was compared to that of a bioscrubber only (BO) system. In the BO system, after a 5.2 days starvation period, the DCE removal efficiency was reduced to 12%, and 6 days were needed to recover the initial removal efficiency when the DCE feed resumed. The total organic discharged (TOD(DCE)) was 16,500 g(DCE) m(bioscrubber) (-3) after the DCE starvation. Biomass analysis performed using fluorescence in situ hybridisation (FISH) showed that the microbial activity was significantly reduced during the starvation period and that 5 days were needed to recover the initial activity, after the re-introduction of DCE. In contrast, the performance of the OAB system was stable during 5.2 days of DCE starvation. The DCE removal efficiency was not affected when the DCE feed resumed and the TOD(DCE) was significantly reduced to 2,850 g(DCE) m(bioscrubber) (-3). During starvation, the activity of the microbial culture in the OAB system showed a substantially lower decrease than in the BO system and recovered almost immediately the initial activity after the re-introduction of DCE. Additionally, a mathematical model describing the performance of the OAB system was developed. The results of this study show that the OAB system can effectively sustain the biological treatment of waste gas during starvation periods of inhibitory pollutants.

Absorption↗

Pterin pigment granules are responsible for both broadband light scattering and wavelength selective absorption in the wing scales of pierid butterflies.

A small but growing literature indicates that many animal colours are produced by combinations of structural and pigmentary mechanisms. We investigated one such complex colour phenotype: the highly chromatic wing colours of pierid butterflies including oranges, yellows and patterns which appear white to the human eye, but strongly absorb the ultraviolet (UV) wavelengths visible to butterflies. Pierids produce these bright colours using wing scales that contain collections of minute granules. However, to date, no work has directly characterized the molecular composition or optical properties of these granules. We present results that indicate these granules contain pterin pigments. We also find that pterin granules increase light reflection from single wing scales, such that wing scales containing denser granule arrays reflect more light than those with less dense granule collections. As male wing scales contain more pterin granules than those of females, the sexual dichromatism found in many pierid species can be explained by differences in wing scale pterin deposition. Additionally, the colour pattern elements produced by these pterins are known to be important during mating interactions in a number of pierid species. Therefore, we discuss the potential relevance of our results within the framework of sexual selection and colour signal evolution.

Absorption↗