This paper deals with press-coated modified release tablets in which the drug dose is situated in the core or is divided between the core and the coat. The coat contains polymer (sodium alginate or hydroxypropylmethyl cellulose, HPMC) to control drug release. The main objective was to investigate how the pharmacokinetic profile of the model drug could be modified by altering the proportion of the drug between the core and the coat. The effect of the amount of the polymer in the coat was also studied. Bioavailability tests were carried out on healthy volunteers. In the absorption curves of the tablets containing 50%, 67% and 80% of the drug in the core and 180 mg HPMC in the coat a bimodal profile was observed. No bimodal release pattern in the in vitro dissolution studies was found. If the whole dose was incorporated in the core the absorption curve has only one clear t(max) value at about 10 h. Doubling the amount of HPMC in the coat dramatically decreased drug absorption. It was concluded that, if a slightly reduced t(max)-value was required, the viscosity grade of HPMC used should be lowered.
A common belief is that one tablet or suppository containing, e.g. 100 mg of a drug can be substituted, without any changes in the therapeutic effect, with two units of the same brand containing 50 mg of the drug. In the present study a single dose of paracetamol was administered to healthy volunteers as (a) two tablets of 500 mg, (b) two suppositories of 500 mg, and (c) one suppository of 1000 mg. There were statistically significant differences in all bioavailability parameters (t(max), C(max) and AUC) between the three treatments. The relative bioavailability of the 500 mg suppositories was 77% and that of the 1000 mg suppositories 66%. The absorption rate from suppositories was markedly lower than from the tablets. Especially low absorption rate was obtained with the suppository of 1000 mg. The two strengths, although having the same trade name, were not therefore bioequivalent.
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