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Inflammation and cardiovascular status impact midazolam pharmacokinetics in critically ill children: An
Bikalpa Neupane1,2, Hitesh Pandya1, Tej Pandya3
1Department of Respiratory Sciences, College of Life Sciences, University of Leicester, Leicester, UK.
Insights
Critical illness significantly alters midazolam pharmacokinetics in children. Factors like inflammation and cardiovascular status increase drug concentrations, risking oversedation and adverse events.
Area of Science:
- Pharmacology
- Critical Care Medicine
- Pediatrics
Background:
- Altered physiology in critical illness can impact drug pharmacokinetics.
- Midazolam pharmacokinetics may be significantly affected in critically ill children, leading to adverse outcomes.
Purpose of the Study:
- To investigate the impact of critical illness-related factors on midazolam pharmacokinetics in children.
- To identify covariates influencing midazolam disposition using population modeling.
Main Methods:
- Observational, prospective, controlled study comparing critically-ill children receiving continuous IV midazolam infusions with healthy children receiving a single IV bolus dose.
- Population pharmacokinetic modeling was used to analyze midazolam and 1-OH-midazolam concentrations.
- Covariates assessed included C-Reactive Protein (CRP), cardiovascular status, and weight.
Main Results:
- Midazolam clearance was significantly altered by acute inflammation (CRP), cardiovascular status, and weight.
- Simulations indicated that elevated CRP and compromised cardiovascular function can lead to 10-fold higher midazolam concentrations in critically-ill children compared to healthy controls.
- High midazolam concentrations in some critically-ill children suggest a risk of over-dosing with current regimens.
Conclusions:
- Critical illness profoundly impacts midazolam pharmacokinetics in children.
- Clinicians must be vigilant for potential midazolam oversedation in critically-ill pediatric patients due to altered drug disposition.
- Adjusted monitoring and potentially modified dosing strategies are warranted for midazolam in critically ill children.
Abstract:
Altered physiology caused by critical illness may change midazolam pharmacokinetics and thereby result in adverse reactions and outcomes in this vulnerable patient population. This study set out to determine which critical illness-related factors impact midazolam pharmacokinetics in children using population modeling. This was an observational, prospective, controlled study of children receiving IV midazolam as part of routine care. Children recruited into the study were either critically-ill receiving continuous infusions of midazolam or otherwise well, admitted for elective day-case surgery (control) who received a single IV bolus dose of midazolam. The primary outcome was to determine the population pharmacokinetics and identify covariates that influence midazolam disposition during critical illness. Thirty-five patients were recruited into the critically ill arm of the study, and 54 children into the control arm. Blood samples for assessing midazolam and 1-OH-midazolam concentrations were collected opportunistically (critically ill arm) and in pre-set time windows (control arm). Pharmacokinetic modeling demonstrated a significant change in midazolam clearance with acute inflammation (measured using C-Reactive Protein), cardio-vascular status, and weight. Simulations predict that elevated C-Reactive Protein and compromised cardiovascular function in critically ill children result in midazolam concentrations up to 10-fold higher than in healthy children. The extremely high concentrations of midazolam observed in some critically-ill children indicate that the current therapeutic dosing regimen for midazolam can lead to over-dosing. Clinicians should be aware of this risk and intensify monitoring for oversedation in such patients.
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