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Multiplex Therapeutic Drug Monitoring by Isotope-dilution HPLC-MS/MS of Antibiotics in Critical Illnesses
Published on: August 30, 2018
High target attainment for β-lactam antibiotics in intensive care unit patients when actual minimum inhibitory
H Woksepp1,2, A Hällgren3, S Borgström4
1Department of Clinical Microbiology, Kalmar County Hospital, 391 85, Kalmar, Sweden. hanna.woksepp@ltkalmar.se.
Abstract:
Patients in the intensive care unit (ICU) are at risk for suboptimal levels of β-lactam antibiotics, possibly leading to poor efficacy. Our aim was to investigate whether the actual minimum inhibitory concentration (MIC) compared to the more commonly used arbitrary epidemiological cut-off values (ECOFFs) would affect target attainment in ICU patients on empirical treatment with broad-spectrum β-lactam antibiotics and to identify risk factors for not reaching target. In a prospective, multicenter study, ICU patients ≥18 years old and treated with piperacillin/tazobactam, meropenem, or cefotaxime were included. Clinical and laboratory data were recorded. Serum trough antibiotic levels from three consecutive days were analyzed by liquid chromatography-mass spectrometry (LC-MS). The target was defined as the free trough concentration above the MIC (100% fT>MIC). MICECOFF was used as the target and, when available, the actual MIC (MICACTUAL) was applied. The median age of the patients was 70 years old, 52% (58/111) were males, and the median estimated glomerular filtration rate (eGFR) was 48.0 mL/min/1.73 m2. The rate of patients reaching 100% fT > MICACTUAL was higher (89%, 31/35) compared to the same patients using MICECOFF (60%, p = 0.002). In total, 55% (61/111) reached 100% fT > MICECOFF. Increased renal clearance was independently associated to not reaching 100% fT > MICECOFF. On repeated sampling, >77% of patients had stable serum drug levels around the MICECOFF. Serum concentrations of β-lactam antibiotics vary extensively between ICU patients. The rate of patients not reaching target was markedly lower for the actual MIC than when the arbitrary MIC based on the ECOFF was used, which is important to consider in future studies.
Insights
Using actual minimum inhibitory concentration (MIC) significantly improved antibiotic target attainment in intensive care unit (ICU) patients compared to arbitrary epidemiological cut-off values (ECOFFs). This finding is crucial for optimizing empirical β-lactam antibiotic therapy in critically ill patients.
Area of Science:
- Pharmacology
- Infectious Diseases
- Critical Care Medicine
Background:
- Suboptimal β-lactam antibiotic levels in intensive care unit (ICU) patients can lead to reduced treatment efficacy.
- Empirical antibiotic therapy in ICUs often relies on arbitrary epidemiological cut-off values (ECOFFs) for target attainment, which may not reflect individual patient needs.
Purpose of the Study:
- To compare target attainment rates for broad-spectrum β-lactam antibiotics using actual minimum inhibitory concentrations (MICs) versus ECOFFs in ICU patients.
- To identify risk factors associated with failing to achieve therapeutic targets.
Main Methods:
- Prospective, multicenter study involving ICU patients (≥18 years) receiving piperacillin/tazobactam, meropenem, or cefotaxime.
- Serum trough antibiotic levels were measured using liquid chromatography-mass spectrometry (LC-MS) over three consecutive days.
- Therapeutic target was defined as 100% free trough concentration above the MIC (100% fT>MIC), assessed against both actual MIC (MIC_ACTUAL) and MIC_ECOFF.
Main Results:
- The rate of achieving 100% fT>MIC_ACTUAL was significantly higher (89%) compared to using MIC_ECOFF (60%, p=0.002).
- Overall, 55% of patients achieved 100% fT>MIC_ECOFF.
- Increased renal clearance was an independent risk factor for not reaching the 100% fT>MIC_ECOFF target.
Conclusions:
- Individualized antibiotic dosing based on actual MICs, rather than ECOFFs, is critical for optimizing β-lactam therapy in ICU patients.
- Higher renal clearance necessitates careful consideration to ensure adequate drug exposure and efficacy.
- These findings have implications for refining empirical antibiotic strategies in critical care settings.
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