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Published on: October 12, 2012
Enoxaparin Dosing and Target anti-Factor Xa Achievement in Infants by Postmenstrual Age
Densley Perez1, Kristen Mathew2
1Department of Pharmacy (DP), NewYork-Presbyterian Hospital - Morgan Stanley Children's Hospital, New York, NY.
Insights
Infants require higher enoxaparin doses for therapeutic anti-factor Xa levels as postmenstrual age (PMA) increases. PMA is a better dosing guide than gestational or postnatal age for pediatric enoxaparin therapy.
Area of Science:
- Pediatric Pharmacology
- Neonatal Medicine
- Pharmacokinetics
Background:
- Optimal enoxaparin dosing in premature and infant populations lacks literature.
- Establishing appropriate enoxaparin doses is crucial for effective anticoagulation in neonates.
Purpose of the Study:
- To determine the enoxaparin dose required for therapeutic anti-factor Xa concentrations in infants.
- To stratify infants by postmenstrual age (PMA) to guide enoxaparin dosing.
Main Methods:
- Retrospective, single-center cohort study of infants receiving enoxaparin (Sept 2020 - Sept 2023).
- Primary endpoint: enoxaparin dose to achieve therapeutic anti-factor Xa levels, stratified by PMA.
- Secondary endpoints: time in therapeutic range, bleeding, and acute kidney injury rates.
Main Results:
- Infants with lower PMA (<40 weeks) required higher enoxaparin doses (median 1.80 mg/kg) compared to those with higher PMA (>44 weeks, median 1.49 mg/kg).
- Significant difference in required dose based on PMA (p < 0.001).
- Median time in therapeutic range was 71%; 6 cases of minimal bleeding reported.
Conclusions:
- Lower postmenstrual age necessitates higher enoxaparin doses for therapeutic efficacy.
- Postmenstrual age is a more suitable parameter for enoxaparin dosing in infants than gestational or postnatal age.
Objective:
Currently, there is little literature delineating the optimal doses of enoxaparin required within the premature and infant populations. This study aims to assess the enoxaparin dose needed to achieve therapeutic anti-factor Xa concentrations through stratifying infants by postmenstrual age (PMA).
Methods:
This is a retrospective, single-center, cohort study of infants who received at least 1 dose of treatment enoxaparin between September 2020 and September 2023. The primary endpoint was dose required to achieve therapeutic anti-factor Xa concentrations stratified by PMA group. Secondary endpoints were time in therapeutic range, average dose throughout course, number of dose adjustments and rates of bleeding and acute kidney injury.
Results:
Eighty-four patient encounters met inclusion criteria in which there were 108 unique courses of enoxaparin. Subjects were primarily of term gestation (median 37.5 weeks) and admitted for congenital heart disease (79.8%). The dose needed to achieve the first therapeutic anti-factor Xa concentration by course was significantly different based on PMA (p < 0.001): median 1.80 mg/kg (IQR 1.53-2.20 mg/kg) with PMA < 40 weeks, 1.64 mg/kg (IQR 1.55-1.77 mg/kg) with PMA 40 to 44 weeks and 1.49 mg/kg (IQR 1.19-1.74 mg/kg) with PMA >44 weeks. The median time in therapeutic range was 71% (IQR 53%-90%) per course. Overall, there were 6 cases of bleeding (5 were classified as minimal and none as severe).
Conclusions:
Subjects with lower postmenstrual ages required significantly higher enoxaparin doses to achieve therapeutic anti-factor Xa concentrations. Postmenstrual age may provide a more appropriate basis for dosing enoxaparin compared with gestational age and postnatal age.
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