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OpenSampling

2020 · Journal of pharmaceutical and biomedical analysis · paywalled

Development and validation of a volumetric absorptive microsampling- liquid chromatography mass spectrometry method for the analysis of cefepime in human whole blood: Application to pediatric pharmacokinetic study

Moorthy et al.

The finding, in our words

The study developed and validated a VAMS-based method for measuring cefepime in small volumes of paediatric blood with high accuracy and precision, enabling less invasive therapeutic drug monitoring in children. This advances decentralised, patient-centric sampling by allowing reliable pharmacokinetic studies without repeated venous draws.

A paraphrase to the Library’s standard, never the abstract. The source is one link away and is always the authority.

Labels

  1. 2026

    The study developed and validated a rapid LC-MS/MS method for quantifying cefazolin in capillary whole blood collected via VAMS, plasma, and plasma ultrafiltrate, showing robust performance across matrices and successful application in a pediatric pilot cohort for therapeutic drug monitoring.

    Rapid, robust LC-MS/MS quantification of cefazolin in whole blood microsamples, plasma, and plasma ultrafiltrate: Analytical method validation and preliminary clinical application in pediatric populationKocur et al., Clinica chimica acta; international journal of clinical chemistry (paywalled) · source ↗

    • vams
    • neoteryx-mitra
    • blood
    • tdm
    • haematocrit
    • dried
    • antimicrobials
    • capillary
    • pediatric
    • validation
  2. 2025

    This study validated a method for quantifying fluconazole using the Mitra device, demonstrating sufficient accuracy and precision for therapeutic drug monitoring in paediatric patients.

    Determination of Fluconazole in Children in Small Blood Volumes Using Volumetric Absorptive Microsampling (VAMS) and Isocratic High-Performance Liquid Chromatography-Ultraviolet (HPLC-UV) DetectionZimbelmann et al., Pharmaceutics · source ↗

    • blood
    • dried
    • vams
    • neoteryx-mitra
    • validation
    • pediatric
    • tdm
    • antimicrobials
  3. 2024

    The study developed and validated LC-MS/MS methods for ganciclovir in serum, dried serum spots, and VAMS-Mitra devices. In 80 pediatric renal transplant recipients, VAMS showed interchangeability with serum samples while extending stability to at least 49 days at room temperature, making decentralised therapeutic drug monitoring more feasible for transplant patients.

    Assessment of Dried Serum Spots (DSS) and Volumetric-Absorptive Microsampling (VAMS) Techniques in Therapeutic Drug Monitoring of (Val)Ganciclovir-Comparative Study in Analytical and Clinical PracticeKocur et al., International journal of molecular sciences · source ↗

    • blood
    • dried
    • vams
    • neoteryx-mitra
    • validation
    • pediatric
    • tdm
    • antimicrobials
  4. 2024

    A validated LC-MS method quantified multiple antibiotics from a single volumetric absorptive microsample, with stability up to 90 days for most analytes and minimal haematocrit effect except vancomycin, enabling pharmacokinetic and pharmacodynamic studies in decentralised settings.

    Bioanalysis of six antibiotics from volumetric microsamples: a new tool for precision dosing in critically ill childrenTakyi-Williams et al., Bioanalysis (paywalled) · source ↗

    • blood
    • dried
    • vams
    • neoteryx-mitra
    • validation
    • pediatric
    • tdm
    • antimicrobials
    • haematocrit
  5. 2023

    Volumetric absorptive microsampling of whole blood did not provide a reliable basis for calculating meropenem plasma concentrations in critically ill children, so a validated low volume plasma method was required for paediatric therapeutic drug monitoring.

    Developing a Method for Quantifying Meropenem in Children-Volumetric Adsorptive Microsampling Versus Plasma SamplingRamadan et al., Therapeutic drug monitoring (paywalled) · source ↗

    • blood
    • dried
    • vams
    • neoteryx-mitra
    • validation
    • venous-agreement
    • pediatric
    • tdm
    • antimicrobials