Single-Center Pharmacokinetic Study and Simulation of a Low Meropenem Concentration in Brain-Dead Organ Donors

Jae-Myeong Lee1, Joo Won Lee2, Tae Seok Jeong2

  • 1Department of Surgery, Ajou University School of Medicine, Yeongtong-gu, Suwon, Republic of Korea.

Insights

Standard meropenem doses are insufficient for brain-dead organ donors. Higher doses and extended infusions are recommended to achieve therapeutic meropenem plasma concentrations in these critically ill patients.

Area of Science:

  • Pharmacology
  • Critical Care Medicine

Background:

  • Meropenem, an ultrabroad-spectrum carbapenem antibiotic, is crucial for treating severe infections.
  • Standard meropenem dosages may not achieve therapeutic concentrations in brain-dead organ donors due to altered pharmacokinetics.

Purpose of the Study:

  • To determine meropenem plasma concentrations with standard dosing in brain-dead organ donors.
  • To estimate an optimized meropenem dosage regimen for this patient population.

Main Methods:

  • Administered 1g meropenem infusions every 8 hours to brain-dead organ donors.
  • Collected blood samples for pharmacokinetic analysis of meropenem plasma concentrations.
  • Utilized Simcyp simulations to predict optimal dosing based on individual pharmacokinetic parameters.

Main Results:

  • Maximum meropenem plasma concentration (3.29 μg/ml) was below the target of 4x MIC (8 μg/ml).
  • Elevated volume of distribution (Vss) and total body clearance (CL) were observed, likely due to fluid loading.
  • Simulations indicated a need for increased meropenem dose and infusion time, plus a loading dose.

Conclusions:

  • Standard meropenem regimens are inadequate for achieving therapeutic drug levels in brain-dead organ donors.
  • Increased meropenem dosage, extended or continuous infusions, and a loading dose are recommended.
  • Optimized dosing is essential for effective antimicrobial therapy in this unique patient group.

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