Pharmacokinetics of polymyxin B in different populations: a systematic review
Xing Wang1, Wenqiang Xiong1, Maolian Zhong1
1School of Pharmacy, Jiangxi Medical College, Nanchang University, Nanchang, 330006, China.
Background And Objectives:
Despite being clinically utilized for the treatment of infections, the limited therapeutic range of polymyxin B (PMB), along with considerable interpatient variability in its pharmacokinetics and frequent occurrence of acute kidney injury, has significantly hindered its widespread utilization. Recent research on the population pharmacokinetics of PMB has provided valuable insights. This study aims to review relevant literature to establish a theoretical foundation for individualized clinical management.
Methods:
Follow PRISMA (Preferred Reporting Items for Systematic Reviews and Meta-Analyses) guidelines, Pop-PK studies of PMB were searched in PubMed and EMBASE database systems from the inception of the database until March 2023.
Result:
To date, a total of 22 population-based studies have been conducted, encompassing 756 subjects across six different countries. The recruited population in these studies consisted of critically infected individuals with multidrug-resistant bacteria, patients with varying renal functions, those with cystic fibrosis, kidney or lung transplant recipients, patients undergoing extracorporeal membrane oxygenation (ECMO) or continuous renal replacement therapy (CRRT), as well as individuals with obesity or pediatric populations. Among these studies, seven employed a one-compartmental model, with the range of typical clearance (CL) and volume (Vc) being 1.18-2.5L /h and 12.09-47.2 L, respectively. Fifteen studies employed a two-compartmental model, with the ranges of the clearance (CL) and volume of the central compartment (Vc), the volume of the peripheral compartment (Vp), and the intercompartment clearance (Q) were 1.27-8.65 L/h, 5.47-38.6 L, 4.52-174.69 L, and 1.34-24.3 L/h, respectively. Primary covariates identified in these studies included creatinine clearance and body weight, while other covariates considered were CRRT, albumin, age, and SOFA scores. Internal evaluation was conducted in 19 studies, with only one study being externally validated using an independent external dataset.
Conclusion:
We conclude that small sample sizes, lack of multicentre collaboration, and patient homogeneity are the primary reasons for the discrepancies in the results of the current studies. In addition, most of the studies limited in the internal evaluation, which confined the implementation of model-informed precision dosing strategies.
Insights
This review highlights limitations in polymyxin B (PMB) population pharmacokinetic studies, including small sample sizes and lack of external validation. These factors hinder precise dosing strategies for PMB treatment.
Area of Science:
- Pharmacology
- Infectious Diseases
- Clinical Pharmacy
Background:
- Polymyxin B (PMB) is crucial for treating multidrug-resistant infections but faces challenges due to narrow therapeutic range, variable pharmacokinetics, and nephrotoxicity.
- Population pharmacokinetic (Pop-PK) studies offer insights into optimizing PMB dosing.
- This review synthesizes existing Pop-PK literature to support individualized PMB therapy.
Approach:
- Systematic literature search of PubMed and EMBASE databases for PMB Pop-PK studies.
- Adherence to PRISMA (Preferred Reporting Items for Systematic Reviews and Meta-Analyses) guidelines.
- Data extraction and analysis of study characteristics, models, covariates, and validation methods.
Key Points:
- 22 studies involving 756 subjects were analyzed, covering diverse patient populations (critically ill, transplant, obese, pediatric).
- One- and two-compartmental models were utilized, with clearance and volume parameters varying across studies.
- Creatinine clearance and body weight were primary covariates; limited external validation was noted.
Conclusions:
- Discrepancies in PMB Pop-PK study results stem from small sample sizes, limited multicenter collaboration, and patient homogeneity.
- Insufficient external validation restricts the implementation of model-informed precision dosing for PMB.
- Further robust, multicenter studies are needed to refine PMB dosing guidelines.
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