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Updated: Feb 7, 2026

Single Port Donor Nephrectomy
Published on: March 12, 2011
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.
Abstract:
Meropenem is an ultrabroad-spectrum antibiotic of the carbapenem family. In brain-dead organ donors, administration of standard meropenem dosages does not reach therapeutic levels. Our objectives were to determine the plasma concentration of meropenem after the administration of standard meropenem dose and to estimate an improved dosage regimen for these patients. One gram of meropenem was administered as a 1-h infusion every 8 h for 1 to 3 days, and blood samples were collected. The plasma concentration of meropenem was measured and subjected to pharmacokinetic analysis. Simcyp simulation was performed to predict the optimum plasma levels and dosage based on the patients' individual pharmacokinetic parameters. The maximum plasma concentration of meropenem was 3.29 μg/ml, which was lower than four times the MIC of 8 μg/ml. Although the mean creatinine clearance of patients was moderately low (67.5 ml/min), the apparent volume of distribution at steady state (Vss) and time-averaged total body clearance (CL) of meropenem were markedly elevated (4.97 liters/kg and 2.06 liters/h/kg, respectively), owing to massive fluid loading to decrease the high sodium levels and to treat shock or dehydration. The simulation revealed that dose and infusion time of meropenem should be increased based on patients' Vss and CL, and a loading dose is recommended to reach rapidly the target concentration. In conclusion, a standard meropenem regimen is insufficient to achieve optimal drug levels in brain-dead patients, and an increase in dose and extended or continuous infusion with intravenous bolus administration of a loading dose are recommended for these patients.
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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