Related Experiment Video
Updated: Sep 1, 2025

Multiplex Therapeutic Drug Monitoring by Isotope-dilution HPLC-MS/MS of Antibiotics in Critical Illnesses
Published on: August 30, 2018
Relationship Between Linezolid Exposure and the Typical Clinical Laboratory Safety and Bacterial Clearance in Chinese
Ben-Nian Huo1, Yue-E Wu2, Ling Shu1
1Ministry of Education Key Laboratory of Child Development and Disorders, Chongqing Key Laboratory of Pediatrics, Department of Pharmacy, National Clinical Research Center for Child Health and Disorders, Children's Hospital of Chongqing Medical University, Chongqing, China.
Insights
This study found that linezolid (LZD) treatment in children can lead to hematological adverse events like thrombocytopenia and low hemoglobin. Careful monitoring of these indicators during and after LZD therapy is crucial for pediatric patient safety.
Area of Science:
- Pharmacology
- Pediatric Medicine
- Infectious Diseases
Background:
- Limited data exists on linezolid (LZD) safety and efficacy in pediatric populations.
- Understanding drug exposure-response relationships is vital for optimizing pediatric antimicrobial therapy.
Purpose of the Study:
- To evaluate the association between linezolid exposure and clinical safety and efficacy in Chinese pediatric patients.
- To identify potential thresholds for adverse events based on linezolid pharmacokinetic parameters.
Main Methods:
- Retrospective cross-sectional study of pediatric patients (≤18 years) receiving linezolid for ≥3 days.
- Pharmacokinetic analysis using non-linear mixed-effects modeling (NONMEM) to determine AUC24.
- Logistic regression and ROC curves to assess associations between AUC24 and laboratory adverse events; efficacy assessed by bacterial clearance.
Main Results:
- Linezolid treatment was associated with increased adverse events in TBil, AST, ALT, PLT, hemoglobin, WBC, and neutrophils.
- Most common adverse events were thrombocytopenia (17.8%) and low hemoglobin (15.2%).
- Higher AUC24 values were linked to post-treatment low hemoglobin and thrombocytopenia; 92.6% bacterial clearance was observed, with 69.8% achieving AUC24/MIC > 80.
Conclusions:
- Close monitoring of hematological parameters, particularly thrombocytopenia and low hemoglobin, is essential during and after linezolid treatment in children.
- A balance between therapeutic drug exposure and safety is necessary, necessitating further research into optimal AUC24/MIC targets for pediatric patients.
- Individualized treatment strategies considering patient complications and concomitant medications are recommended.
Abstract:
Objectives: There have been limited studies concerning the safety and efficacy of linezolid (LZD) in children. This study aimed to evaluate the association between LZD exposure and clinical safety and efficacy in Chinese pediatric patients. Methods: This retrospective cross-sectional study included patients ≤18 years of age who received ≥3 days of LZD treatment between 31 January 2015, and 31 December 2020. Demographic characteristics, medication information, laboratory test information, and bacterial culture results were collected from the Hospital Information System (HIS). Exposure was defined as AUC24 and calculated by the non-linear mixed-effects modeling program (NONMEM), version 7.2, based on two validated population pharmacokinetic models. Binary logistic regression analyses were performed to analyze the associations between AUC24 and laboratory adverse events, and receiver operating characteristic curves were used to calculate the cut-off values. Efficacy was evaluated by bacterial clearance. Results: A total of 413 paediatric patients were included, with an LZD median (interquartile range) dose, duration, clearance and AUC24 of 30.0 (28.1-31.6) mg/kg/day, 8 (4‒15) days,1.31 (1.29-1.32) L/h and 81.1 (60.6-108.7) mg/L·h, respectively. Adverse events associated with TBil, AST, ALT, PLT, hemoglobin, WBC, and neutrophil count increased during and after LZD treatment when compared with before medication (p < 0.05), and the most common adverse events were thrombocytopaenia (71/399, 17.8%) and low hemoglobin (61/401, 15.2%) during the LZD treatment. Patients with AUC24 higher than 120.69 mg/L h might be associated with low hemoglobin 1-7 days after the end of the LZD treatment, and those with an AUC24 higher than 92.88 mg/L∙h might be associated with thrombocytopaenia 8-15 days after the end of the LZD treatment. A total of 136 patients underwent bacterial culture both before and after LZD treatment, and the infection was cleared in 92.6% (126/136) of the patients, of whom 69.8% (88/126) had AUC24/MIC values greater than 80. Conclusion: Hematological indicators should be carefully monitored during LZD treatment, especially thrombocytopaenia and low hemoglobin, and a continuous period of monitoring after LZD withdrawal is also necessary. Since the AUC24 cut-off values for laboratory adverse events were relatively low, a trade-off is necessary between the level of drug exposure required for treatment and safety, and the exposure target (AUC24/MIC) in pediatric patients should be further studied, especially for patients with complications and concomitant medications.
More Related Videos
09:26Antibiotic Efficacy Testing in an Ex vivo Model of Pseudomonas aeruginosa and Staphylococcus aureus Biofilms in the Cystic Fibrosis Lung
Published on: January 22, 2021
09:34An Automated Culture System for Use in Preclinical Testing of Host-Directed Therapies for Tuberculosis
Published on: August 16, 2021
Related Concept Videos
Clearance Models: Compartment Models
Clearance Models: Noncompartmental Models
The noncompartmental approach capitalizes on extensive sampling data, correlating the volume of distribution to systemic exposure and the administered dosage. This method enables...
Drug Elimination: The Concept of Clearance
Drug clearance is not limited to renal excretion but encompasses all organs involved in drug elimination,...