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Daptomycin Exposure as a Risk Factor for Daptomycin-Induced Eosinophilic Pneumonia and Muscular Toxicity
Romain Garreau1,2, Truong-Thanh Pham3,4, Laurent Bourguignon1,2,5
1Hospices Civils de Lyon, Groupement Hospitalier Nord, Service de Pharmacie, Lyon, France.
Background:
High-dose daptomycin is increasingly used in patients with bone and joint infection (BJI). This raises concerns about a higher risk of adverse events (AEs), including daptomycin-induced eosinophilic pneumonia (DIEP) and myotoxicity. We aimed to examine pharmacokinetic and other potential determinants of DIEP and myotoxicity in patients with BJI receiving daptomycin.
Methods:
All patients receiving daptomycin for BJI were identified in a prospective cohort study. Cases were matched at a 1:3 ratio, with controls randomly selected from the same cohort. Bayesian estimation of the daptomycin daily area under the concentration-time curve over 24 hours (AUC24h) was performed with the Monolix software based on therapeutic drug monitoring (TDM) data. Demographic and biological data were also collected. Risk factors of AEs were analyzed using Cox proportional hazards model.
Results:
From 1130 patients followed over 7 years, 9 with DIEP, 26 with myotoxicity, and 106 controls were included in the final analysis. Daptomycin AUC24h, C-reactive protein, and serum protein levels were associated with the risk of AEs. The adjusted hazard ratio of DIEP or myotoxicity was 3.1 (95% confidence interval [CI], 1.48-6.5; P < .001) for daptomycin AUC24h > 939 mg/h/L, 9.8 (95% CI, 3.94-24.5; P < .001) for C-reactive protein > 21.6 mg/L, and 2.4 (95% CI, 1.02-5.65; P = .04) for serum protein <72 g/L.
Conclusions:
We identified common determinants of DIEP and myotoxicity in patients with BJI. Because the risk of AEs was associated with daptomycin exposure, daptomycin TDM and model-informed precision dosing may help optimize the efficacy and safety of daptomycin treatment in this setting. A target AUC24h range of 666 to 939 mg/h/L is suggested.
Insights
High-dose daptomycin for bone and joint infections increases adverse events like eosinophilic pneumonia and myotoxicity. Monitoring daptomycin levels and C-reactive protein can optimize treatment safety and efficacy.
Area of Science:
- Pharmacology
- Infectious Diseases
- Clinical Toxicology
Background:
- High-dose daptomycin use for bone and joint infections (BJI) is rising.
- This increases concerns regarding adverse events (AEs), specifically daptomycin-induced eosinophilic pneumonia (DIEP) and myotoxicity.
- Identifying determinants of these AEs is crucial for patient safety.
Purpose of the Study:
- To investigate pharmacokinetic and other factors influencing DIEP and myotoxicity in BJI patients on daptomycin.
- To analyze risk factors associated with daptomycin-related AEs in this population.
Main Methods:
- Prospective cohort study of BJI patients receiving daptomycin.
- Case-control analysis matching DIEP/myotoxicity cases (9/26) with controls (106) at a 1:3 ratio.
- Bayesian estimation of daptomycin AUC24h using therapeutic drug monitoring (TDM) data and Cox proportional hazards modeling for risk factor analysis.
Main Results:
- Daptomycin AUC24h, C-reactive protein, and serum protein levels were linked to AE risk.
- Higher daptomycin AUC24h (>939 mg/h/L) increased AE risk (HR 3.1).
- Elevated C-reactive protein (>21.6 mg/L) and low serum protein (<72 g/L) were also significant risk factors.
Conclusions:
- Common determinants for DIEP and myotoxicity in BJI patients were identified.
- Daptomycin TDM and model-informed precision dosing can enhance treatment efficacy and safety.
- A target AUC24h range of 666-939 mg/h/L is proposed for daptomycin therapy in BJI.
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