Clinical and Biochemical Factors Associated with Infliximab Pharmacokinetics in Paediatric Patients with Inflammatory
Ka Yu Wang1, Omnia Salah Heikal1, Patrick F van Rheenen2
1Department of Clinical Pharmacy and Pharmacology, University Medical Centre Groningen, 9713 GZ Groningen, The Netherlands.
Insights
Optimizing infliximab (IFX) therapy in pediatric inflammatory bowel disease (IBD) requires personalized dosing. Sub-therapeutic IFX levels are common, especially during induction, necessitating therapeutic drug monitoring (TDM).
Area of Science:
- Pharmacokinetics and pharmacodynamics of biologics in pediatric gastroenterology.
- Therapeutic drug monitoring (TDM) for optimizing biologic therapy in pediatric IBD.
- Biomarkers influencing infliximab (IFX) exposure and efficacy in children.
Background:
- Infliximab (IFX) therapy is crucial for pediatric inflammatory bowel diseases (IBD).
- Low response rates in children are often linked to inadequate IFX exposure.
- Significant variability in IFX trough concentrations necessitates optimized dosing strategies.
Purpose of the Study:
- To investigate IFX pharmacokinetics (PK) in pediatric IBD patients during induction and maintenance phases.
- To identify clinical and biochemical covariates associated with IFX PK.
- To evaluate target attainment of IFX dosing regimens and inform personalized treatment.
Main Methods:
- Single-center retrospective cohort study of pediatric IBD patients receiving IFX (2018-2023).
- Analysis of demographic, clinical, and laboratory parameters from electronic health records.
- Linear mixed model analysis to assess associations between covariates and IFX trough concentrations; target attainment evaluated.
Main Results:
- 115 children (417 IFX concentrations) included; multivariate analysis showed IFX and albumin positively correlated with IFX concentrations.
- Higher IFX dose was associated with increased IFX concentrations, while treatment phase showed an inverse association.
- Sub-therapeutic IFX concentrations observed in 57.2% during induction and 30.6% during maintenance phases.
Conclusions:
- Personalized dosing strategies are essential for pediatric IBD patients, particularly during induction.
- Therapeutic drug monitoring (TDM) and consideration of clinical/biochemical factors can improve IFX efficacy.
- Optimized IFX dosing may enhance clinical outcomes, reduce treatment failure, and minimize switching to alternative therapies.
Abstract:
Monitoring infliximab (IFX) concentrations is crucial for optimizing IFX therapy in children with inflammatory bowel diseases (IBDs) who show low response rates due to inadequate drug exposure. Substantial variation occurs in IFX trough concentrations in paediatric patients. Objectives: This study aimed to investigate IFX pharmacokinetics (PK) in children with IBD during both the induction phase and maintenance phases and to identify covariates associated with IFX PK. Methods: This single-centre retrospective cohort study was conducted at an academic children's hospital. Data was extracted from paediatric IBD patients receiving IFX between January 2018 and October 2023 and included demographic-, clinical- and laboratory parameters collected from electronic health records. Linear mixed model analysis was performed to investigate associations between these parameters and IFX trough concentrations. Target attainment [≥15 μg/mL in induction or 5-10 μg/mL in maintenance phase] of the IFX dosing regimens was evaluated. Results and Conclusions: A total of 115 children (417 unique IFX concentrations) were included. Multivariate analysis revealed significant positive associations between IFX and albumin concentrations (β = 0.388, p = 0.010) and IFX concentrations with dose (β = 6.534, p < 0.001), and an inversion association between IFX concentrations and treatment phase (β = -4.922, p < 0.001). During the induction and maintenance phases, 57.2% and 30.6% of IFX concentrations were subtherapeutic, respectively. A systematic search of studies investigating factors influencing IFX concentrations was concurrently performed. Our findings were critically compared against existing literature to assess relevant clinical and biochemical determinants of IFX PK in children with IBD. Our findings highlight the need for personalized dosing strategies in pediatric IBD patients, particularly during the induction phase. By implementing therapeutic drug monitoring (TDM) and considering clinical and biochemical factors, clinicians can implement more personalized strategies, potentially improving treatment efficacy and reducing the risk of treatment failure or adverse effects. This approach could lead to better target attainment, potentially enhancing clinical outcomes and minimizing premature switching to other therapies.
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