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Published on: October 23, 2018
Developmental pharmacokinetics and pharmacodynamics of nizatidine
Susan M Abdel-Rahman1, Franklin K Johnson, James D Connor
1Children's Mercy Hospital, Kansas City, Missouri, 64108, USA.
Insights
Nizatidine pharmacokinetics are similar in children and adults. However, children may experience a greater response to weight-based nizatidine doses, with improved intragastric pH control.
Area of Science:
- Pharmacology
- Pediatric Drug Development
- Drug Metabolism
Background:
- Nizatidine is a histamine H2 receptor antagonist used to reduce gastric acid production.
- Understanding the impact of development on drug pharmacokinetics (PK) and pharmacodynamics (PD) is crucial for safe and effective pediatric dosing.
Purpose of the Study:
- To characterize the impact of development on the pharmacokinetics and pharmacodynamics of nizatidine in pediatric and adult populations.
- To evaluate age-related differences in nizatidine absorption, distribution, metabolism, and excretion.
Main Methods:
- Four open-label trials enrolled children (5 days-18 years) and adults (18-50 years).
- Nizatidine doses and formulations varied by age group (infants: IV; children: oral liquids; adolescents/adults: capsules).
- Plasma concentrations of nizatidine and N-desmethylnizatidine were measured using HPLC-MS/MS; intragastric pH was monitored for 24 hours post-dose.
Main Results:
- Dose-normalized exposure showed no significant age dependence.
- Extemporaneous formulations in apple juice reduced maximum plasma concentration and AUC.
- Bioavailability was formulation-dependent, not age-dependent; age-related changes in elimination were linked to renal function maturation.
- Nizatidine administration significantly increased intragastric pH compared to baseline.
Conclusions:
- The biodisposition of nizatidine is similar between pediatric and adult populations.
- Comparable weight-based doses of nizatidine result in equal or potentially greater pharmacodynamic response in children.
- Nizatidine effectively increases intragastric pH in both age groups.
Objectives:
To characterize the impact of development on the pharmacokinetics and pharmacodynamics of nizatidine.
Methods:
Children (age range, 5 days-18 years) and adults (age range, 18-50 years) were enrolled in four open-label trials. Nizatidine formulation and dose were determined by age: infants received 2 or 4 mg/kg i.v., children 2.5 or 5 mg/kg in one of three oral liquid formulations, and adolescents and adults received a fixed 150-mg capsule. Nizatidine and N-desmethylnizatidine concentrations were measured in serial post-dose plasma samples by a high-performance liquid chromatographic assay with mass spectrometric detection. Intragastric pH was recorded during a 24-hour post-dose interval.
Results:
Data on 93 subjects were combined with previous values from 36 individuals to cover an age group not adequately captured and to control for formulation effects. Dose-normalized exposure estimates revealed no apparent age dependence; however, maximum plasma concentration (298.5 +/- 100.7 v 552.8 +/- 152.4 ng/mL per mg/kg dose) and AUC0-infinity (954.4 +/- 379.8 v 1,573.0 +/- 347.4 ng*hour/mL per mg/kg dose) were reduced in extemporaneous formulations in apple juice. The apparent modest age dependence observed for total body clearance (Cl/F) (r = 0.365) and Vss/F (r = 0.221) reflected a formulation-dependent decrease in bioavailability rather than a true age effect. The age-associated changes in lambda z observed for nizatidine and its metabolite were predictable and consistent with developmental acquisition of renal function. Mean and median pH, as well as fraction of time that the dosing interval remained above target pH values, were significantly greater with administration of the drug than without.
Conclusions:
The biodisposition of nizatidine in children and adults is similar; however, response after a comparable weight-based dose is equal and potentially greater in children.
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