A proof of concept using the Ussing chamber methodology to study pediatric intestinal drug transport and

Eva J Streekstra1,2, Márton Kiss1, Jeroen van den Heuvel1

  • 1Department of Pharmacology and Toxicology, Radboud University Medical Center, Nijmegen, The Netherlands.

Insights

The Ussing chamber effectively models pediatric intestinal drug absorption, revealing differences in drug transport between children and adults. This method aids in understanding how age impacts drug processing in the gut.

Area of Science:

  • Pharmacology
  • Pediatric Gastroenterology
  • Drug Metabolism and Transport

Background:

  • Limited understanding of age-related changes in human intestinal drug absorption.
  • The Ussing chamber, a tool for studying tissue barrier transport, has not been applied to pediatric drug absorption.
  • Investigating pediatric drug absorption is crucial for safe and effective medication use in children.

Purpose of the Study:

  • To assess the feasibility of using the Ussing chamber for pediatric intestinal drug absorption studies.
  • To compare intestinal drug transport processes between children and adults.
  • To explore the influence of age on these transport mechanisms.

Main Methods:

  • Utilized Ussing chamber methodology with fresh human terminal ileal tissues from pediatric and adult surgical leftovers.
  • Investigated paracellular (enalaprilat), transcellular (propranolol), and carrier-mediated transport (MDR1/talinolol, BCRP/rosuvastatin).
  • Calculated apparent permeability coefficients and efflux ratios, analyzing their correlation with postnatal age.

Main Results:

  • Successful Ussing chamber experiment rates were comparable between pediatric (58%) and adult (67%) tissues.
  • Significantly higher serosal to mucosal transport of talinolol (MDR1) and rosuvastatin (BCRP) was observed in adult tissues compared to pediatric.
  • No clear age-related correlation for efflux transport was found within the pediatric cohort.

Conclusions:

  • The Ussing chamber is a viable model for pediatric intestinal drug absorption research.
  • This methodology can help elucidate the ontogeny of intestinal pharmacokinetic processes in children.
  • Findings highlight age-dependent differences in drug transport, particularly involving MDR1 and BCRP.

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