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A new population pharmacokinetic model for recombinant factor IX-Fc fusion concentrate including young children with haemophilia B

  • Sjoerd F. Koopman
  • , Tine M.H.J. Goedhart
  • , Laura H. Bukkems
  • , Trevor M. Mulders
  • , Frank W.G. Leebeek
  • , Karin Fijnvandraat
  • , Michiel Coppens
  • , Mary Mathias
  • , Peter W. Collins
  • , R. Campbell Tait
  • , Catherine N. Bagot
  • , Nicola Curry
  • , Jeanette Payne
  • , Pratima Chowdary
  • , Marjon H. Cnossen
  • , Ron A.A. Mathôt*
  • *Corresponding author for this work
  • Amsterdam UMC
  • University of Amsterdam
  • Great Ormond Street Hospital for Children NHS Foundation Trust
  • Cardiff University
  • Glasgow Royal Infirmary
  • NIHR Biomedical Research Centres (BRC)
  • Sheffield Children's NHS Foundation Trust
  • Royal Free London NHS Foundation Trust

Research output: Contribution to journalArticleAcademicpeer-review

4 Citations (Web of Science)
81 Downloads (Pure)

Abstract

Aims: 

Recombinant factor IX Fc fusion protein (rFIX-Fc) is an extended half-life factor concentrate administered to haemophilia B patients. So far, a population pharmacokinetic (PK) model has only been published for patients aged ≥12 years. The aim was to externally evaluate the predictive performance of the published rFIX-Fc population PK model for patients of all ages and develop a model that describes rFIX-Fc PK using real-world data. 

Methods: 

We collected prospective and retrospective data from patients with haemophilia B treated with rFIX-Fc and included in the OPTI-CLOT TARGET study (NTR7523) or United Kindom (UK)-EHL Outcomes Registry (NCT02938156). Predictive performance was assessed by comparing predicted with observed FIX activity levels. A new population PK model was constructed using nonlinear mixed-effects modelling. 

Results: 

Real-world data were obtained from 37 patients (median age: 16 years, range 2–71) of whom 14 were aged <12 years. Observed FIX activity levels were significantly higher than levels predicted using the published model, with a median prediction error of −48.8%. The new model showed a lower median prediction error (3.4%) and better described rFIX-Fc PK, especially for children aged <12 years. In the new model, an increase in age was correlated with a decrease in clearance (P <.01). 

Conclusions: 

The published population PK model significantly underpredicted FIX activity levels. The new model better describes rFIX-Fc PK, especially for children aged <12 years. This study underlines the necessity to strive for representative population PK models, thereby avoiding extrapolation outside the studied population.

Original languageEnglish
Pages (from-to)220-231
Number of pages12
JournalBritish Journal of Clinical Pharmacology
Volume90
Issue number1
Early online date11 Aug 2023
DOIs
Publication statusPublished - Jan 2024

Bibliographical note

Funding information:

Nederlandse Organisatie voor
Wetenschappelijk Onderzoek, Grant/Award
Number: NWA.1160.18.038

Publisher Copyright:
© 2023 The Authors. British Journal of Clinical Pharmacology published by John Wiley & Sons Ltd on behalf of British Pharmacological Society.

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