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Factors Influencing Drug Absorption: Drug Dissolution01:27

Factors Influencing Drug Absorption: Drug Dissolution

The pharmacokinetic journey of drugs from solid oral dosage forms into systemic circulation is multifaceted. It begins with disintegration, a prerequisite ensuring a solid dosage form's subdivision into minute particles. Dissolution occurs next as these granulated entities solubilize in gastrointestinal fluids. This solubilization is crucial for the succeeding stage, permeation, which describes the traversal of the drug across the intestinal membrane and its subsequent entry into the blood...
Factors Influencing Drug Absorption: Presystemic Elimination01:24

Factors Influencing Drug Absorption: Presystemic Elimination

The pharmacokinetic journey of oral drugs begins with a crucial first pass through the hepatic portal system, called the first-pass effect. This first pass significantly impacts bioavailability — the proportion of a drug that enters systemic circulation and is available for therapeutic action. The primary route sees the drug absorbed by intestinal membranes and then shunted to the liver via the hepatic portal vein. Here, pre-systemic elimination occurs as drugs face metabolism or biliary...
Factors Affecting Dissolution: Drug Permeability, Stability and Stereochemistry01:20

Factors Affecting Dissolution: Drug Permeability, Stability and Stereochemistry

Orally administered drugs primarily enter the systemic circulation via passive diffusion through the intestinal membranes. The drug's absorption is influenced by drug stability in the gastrointestinal GI tract, membrane permeability, the surface area available for absorption, luminal drug concentration, and residence time in the lumen. Drug permeability can be enhanced by adjusting the lipophilicity, polarity, or molecular size of the drug, promoting its passive transport across intestinal...
Dosage Regimen: Multiple Oral Dosage01:25

Dosage Regimen: Multiple Oral Dosage

Understanding how a drug's concentration fluctuates within the body over time is crucial in pharmacokinetics, particularly with multiple oral doses. A graphical representation of multiple oral dosages provides insight into these dynamics. Typical accumulation curves of a drug's concentration in the body reveal a sawtooth pattern, indicating periodic peaks and troughs correlating with each dose administration and the drug's subsequent elimination.The plasma concentration at any time during an...
IV Infusion to Oral Dosing: Conversion Methods01:28

IV Infusion to Oral Dosing: Conversion Methods

The development of extended-release formulations has facilitated the transition from intravenous to oral medication, offering a more convenient and patient-friendly approach to drug administration. This transition, however, requires careful management to ensure that therapeutic drug levels are maintained, preserving efficacy and avoiding adverse effects. Understanding pharmacokinetic principles and dosage calculations is critical during this process.Pharmacokinetics of the...
Modified-Release Drug Delivery Systems: Bioavailability01:30

Modified-Release Drug Delivery Systems: Bioavailability

Modified-release (MR) dosage forms are designed to extend drug release over time, thereby maintaining stable plasma concentrations and reducing dosing frequency. However, their bioavailability is typically below 100% due to incomplete drug release and presystemic metabolism, and limitations in drug permeability across the gastrointestinal epithelium, all of which can restrict the fraction of the drug reaching systemic circulation. Consequently, studying the in vivo bioavailability of MR...

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Related Experiment Video

Updated: Jun 23, 2026

Coherent anti-Stokes Raman Scattering (CARS) Microscopy Visualizes Pharmaceutical Tablets During Dissolution
09:59

Coherent anti-Stokes Raman Scattering (CARS) Microscopy Visualizes Pharmaceutical Tablets During Dissolution

Published on: July 4, 2014

Intrasubject variation in sustained-release theophylline absorption

R A Dederich, S J Szefler, E R Green

    The Journal of Allergy and Clinical Immunology
    |June 1, 1981
    PubMed
    Summary

    Sustained-release theophylline absorption shows significant day-to-day variability in individuals, even with the same product. Mean data can mask these crucial differences for patient care.

    Area of Science:

    • Pharmacokinetics
    • Drug Absorption
    • Clinical Pharmacology

    Background:

    • Theophylline is a widely used bronchodilator with a narrow therapeutic index.
    • Sustained-release formulations aim to provide stable plasma concentrations.
    • Understanding drug absorption variability is critical for effective therapeutic drug monitoring.

    Purpose of the Study:

    • To investigate the intrasubject variability in the absorption of two sustained-release theophylline products.
    • To determine if mean data adequately represent individual absorption profiles.
    • To discuss the clinical implications of dose-to-dose absorption variations.

    Main Methods:

    • Eight healthy volunteers received two different sustained-release theophylline products (Slo-Phyllin Gyrocap and Theo-dur) on separate occasions.

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    Coherent anti-Stokes Raman Scattering (CARS) Microscopy Visualizes Pharmaceutical Tablets During Dissolution
    09:59

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    Published on: July 4, 2014

    High-throughput and Comprehensive Drug Surveillance Using Multisegment Injection-Capillary Electrophoresis-Mass Spectrometry
    10:17

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    An Intestine/Liver Microphysiological System for Drug Pharmacokinetic and Toxicological Assessment
    08:59

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    Published on: December 3, 2020

  • Plasma samples were collected over 24 hours post-dose.
  • Theophylline plasma concentrations were assayed to determine pharmacokinetic parameters.
  • Main Results:

    • Significant intrasubject variability was observed in key absorption parameters, including peak plasma concentration and time to peak.
    • Variations in absorption were evident when analyzing individual dose-response curves, not just mean data.
    • Parameters like absorption rate and time to 90% absorption also showed considerable day-to-day differences within subjects.

    Conclusions:

    • Intrasubject variability in theophylline absorption from sustained-release formulations is substantial.
    • Relying solely on mean pharmacokinetic data can obscure important individual patient variability.
    • These findings highlight the need for individualized therapeutic drug monitoring for theophylline.