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  2. Bioavailability - Wikipedia

    en.wikipedia.org/wiki/Bioavailability

    The absolute bioavailability is the dose-corrected area under curve (AUC) non-intravenous divided by AUC intravenous. The formula for calculating the absolute bioavailability, F, of a drug administered orally (po) is given below (where D is dose administered).

  3. Area under the curve (pharmacokinetics) - Wikipedia

    en.wikipedia.org/wiki/Area_under_the_curve...

    Absolute bioavailability refers to the bioavailability of a drug when administered via an extravascular dosage form (i.e. oral tablet, suppository, subcutaneous, etc.) compared with the bioavailability of the same drug administered intravenously (IV). This is done by comparing the AUC of the non-intravenous dosage form with the AUC for the drug ...

  4. Pharmacokinetics - Wikipedia

    en.wikipedia.org/wiki/Pharmacokinetics

    where De is the effective dose, B bioavailability and Da the administered dose. Therefore, if a drug has a bioavailability of 0.8 (or 80%) and it is administered in a dose of 100 mg, the equation will demonstrate the following: De = 0.8 × 100 mg = 80 mg

  5. Drug accumulation ratio - Wikipedia

    en.wikipedia.org/wiki/Drug_accumulation_ratio

    The accumulation ratio of a specific drug in humans is determined by clinical studies.According to a 2013 analysis, such studies are typically done with 10 to 20 subjects who are given one single dose followed by a washout phase of seven days (), and then seven to 14 repeated doses to reach steady state conditions.

  6. Volume of distribution - Wikipedia

    en.wikipedia.org/wiki/Volume_of_distribution

    Therefore, the dose required to give a certain plasma concentration can be determined if the V D for that drug is known. The V D is not a physiological value; it is more a reflection of how a drug will distribute throughout the body depending on several physicochemical properties, e.g. solubility, charge, size, etc.

  7. Elimination rate constant - Wikipedia

    en.wikipedia.org/wiki/Elimination_rate_constant

    The solution of this differential equation is useful in calculating the concentration after the administration of a single dose of drug via IV bolus injection: = C t is concentration after time t; C 0 is the initial concentration (t=0) K is the elimination rate constant

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  9. Pharmaceutical formulation - Wikipedia

    en.wikipedia.org/wiki/Pharmaceutical_formulation

    These are also called injectable formulations and are used with intravenous, subcutaneous, intramuscular, and intra-articular administration. The drug is stored in liquid or if unstable, lyophilized form. Many parenteral formulations are unstable at higher temperatures and require storage at refrigerated or sometimes frozen conditions.