Pharmacokinetics of isoniazid in low-birth-weight and premature infants

A Bekker1, H S Schaaf, H I Seifart

  • 1Department of Paediatrics and Child Health, Faculty of Medicine and Health Sciences, Stellenbosch University, Tygerberg, South Africa.

Insights

Isoniazid (INH) preventive therapy in low-birth-weight infants achieves adult-like blood concentrations. However, reduced drug elimination in smaller, younger, or slow-acetylator infants suggests caution with higher doses.

Area of Science:

  • Pharmacology
  • Pediatrics
  • Infectious Diseases

Background:

  • Isoniazid (INH) is crucial for post-tuberculosis exposure preventive therapy in children.
  • Limited pharmacokinetic data exist for INH in low-birth-weight (LBW) infants due to their unique physiological development.
  • Understanding INH pharmacokinetics in LBW infants is vital for optimizing treatment efficacy and safety.

Purpose of the Study:

  • To determine INH pharmacokinetic parameters in LBW infants at a 10 mg/kg/day dose.
  • To correlate INH pharmacokinetics with the arylamine N-acetyltransferase-2 (NAT2) genotype.
  • To assess the safety and tolerability of INH in this vulnerable population.

Main Methods:

  • Prospective pharmacokinetic study involving 20 LBW infants in South Africa.
  • Intensive blood sampling at 2, 3, 4, and 5 hours postdose to measure INH plasma concentrations.
  • Noncompartmental analysis to calculate key pharmacokinetic parameters (Cmax, Tmax, AUC2-5, t1/2, kel).
  • Assessment of NAT2 acetylation status (SS, FS, FF) for each infant.

Main Results:

  • LBW infants achieved target INH blood concentrations comparable to adult values.
  • Median Cmax was 5.63 μg/ml, Tmax was 2 h, AUC2-5 was 13.56 μg·h/ml, t1/2 was 4.69 h, and kel was 0.15 h(-1).
  • Reduced INH elimination was observed in smaller, younger infants and those with a slow NAT2 acetylator genotype.

Conclusions:

  • The standard 10 mg/kg/day INH dose appears effective in LBW infants, reaching therapeutic concentrations.
  • Infant factors like size, age, and NAT2 genotype influence INH elimination, necessitating careful dose adjustments.
  • Limited safety data are reassuring, but further research is needed for newborn infants.

Related Concept Videos

Factors Affecting Drug Response: Overview01:21

Factors Affecting Drug Response: Overview

When it comes to infants and young children, they are typically administered smaller doses of medication in comparison to adults. This is primarily because their organ functions still need to fully develop, meaning their bodies are not as efficient at metabolizing or eliminating drugs. Additionally, their blood-brain barrier is more permeable than in adults. As a result, high concentrations of drugs can easily penetrate the central nervous system (CNS), potentially leading to neurological...
Drug Dosing: Infants and Children01:29

Drug Dosing: Infants and Children

Pediatric patient dosages diverge from adults due to disparities in body surface area, total body water, and extracellular fluid per kilogram of body weight. The dosing regimen considers the variations in pharmacokinetics and pharmacology across distinct age groups, encompassing preterm newborns, infants, young children, older children, and adolescents. Calculation of pediatric patient doses is predicated on determining body surface area, which exhibits a superior correlation with the child's...
Pharmacokinetics in Pediatric Patients: Overview and Drug Absorption01:23

Pharmacokinetics in Pediatric Patients: Overview and Drug Absorption

Understanding the physiological differences in the pediatric population is crucial for effective pharmacotherapy. Neonates, infants, and children exhibit significant variations in gastric pH, gastric emptying time, intestinal transit time, and biliary function. These variations profoundly affect oral drug absorption, necessitating a nuanced approach to pediatric dosing.Neonates present with a unique physiological profile, having a gastric pH greater than 4 and faster and more irregular gastric...
Pharmacokinetics in Pediatric Patients: Drug Distribution01:17

Pharmacokinetics in Pediatric Patients: Drug Distribution

Drug distribution in the pediatric population exhibits unique challenges and considerations due to the physiological differences between children, particularly neonates and infants, and adults. A crucial aspect of pediatric pharmacology is understanding how these differences impact the pharmacokinetics of various drugs, necessitating age-specific dosing strategies to ensure efficacy and safety.Neonates and infants have a higher total body water content, ~75%–90% of their body weight, compared...
Pharmacokinetics in Pediatric Patients: Drug Metabolism01:24

Pharmacokinetics in Pediatric Patients: Drug Metabolism

In pediatric care, understanding the nuances of hepatic drug metabolism is crucial, as it significantly differs from that of adults. This divergence is primarily due to the developmental stage of drug-metabolizing enzymes, which affects how medications are processed in the body. In neonates, for instance, the activity of Phase I enzymes—critical for the initial breakdown of drugs—is markedly reduced, functioning at just 20–40% of the levels seen in adults. This reduction poses a challenge in...
Pharmacokinetics in Pediatric Patients: Drug Excretion01:26

Pharmacokinetics in Pediatric Patients: Drug Excretion

In pediatric medicine, understanding the renal function and drug elimination nuances is crucial for administering safe and effective treatments. Newborns, in particular, display markedly slower renal functions than adults, profoundly affecting how drugs are cleared from their bodies. This slower drug clearance requires clinicians to extend the dosing intervals for many medications to prevent drug accumulation and toxicity while ensuring therapeutic efficacy.One key area where these adjustments...