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 Practice

Author:

Kocur Arkadiusz1ORCID,Czajkowska Agnieszka2,Moczulski Mateusz3,Kot Bartłomiej3,Rubik Jacek4,Pawiński Tomasz1ORCID

Affiliation:

1. Department of Drug Chemistry, Pharmaceutical and Biomedical Analysis, Medical University of Warsaw, Banacha 1, 02-097 Warsaw, Poland

2. Therapeutic Drug Monitoring, Clinical Pharmacokinetics and Toxicology Laboratory, Department of Clinical Biochemistry, The Children’s Memorial Health Institute in Warsaw, Dzieci Polskich 20, 04-730 Warsaw, Poland

3. Student Scientific Association “Drug” in Department of Drug Chemistry, Pharmaceutical and Biomedical Analysis, Medical University of Warsaw, Banacha 1, 02-097 Warsaw, Poland

4. Department of Nephrology, Kidney Transplantation and Hypertension, The Children’s Memorial Health Institute, Dzieci Polskich 20, 04-730 Warsaw, Poland

Abstract

Ganciclovir (GCV) and its prodrug valganciclovir (VGCV) are antiviral medications primarily used to treat infections caused by cytomegalovirus (CMV), particularly in immunocompromised individuals such as solid organ transplant (SOT) recipients. Therapy with GCV is associated with significant side effects, including bone marrow suppression. Therefore, therapeutic drug monitoring (TDM) is mandatory for an appropriate balance between subtherapeutic and toxic drug levels. This study aimed to develop and validate three novel methods based on liquid chromatography-tandem mass spectrometry (LC-MS/MS) for GCV determination in serum (reference methodology), dried serum spots (DSS), and VAMS-Mitra™ devices. The methods were optimized and validated in the 0.1–25 mg/L calibration range. The obtained results fulfilled the EMA acceptance criteria for bioanalytical method validation. Assessment of DSS and VAMS techniques extended GCV stability to serum for up to a minimum of 49 days (at room temperature, with desiccant). Developed methods were effectively evaluated using 80 clinical serum samples from pediatric renal transplant recipients. Obtained samples were used for DSS, and dried serum VAMS samples were manually generated in the laboratory. The results of GCV determination using serum-, DSS- and VAMS-LC-MS/MS methods were compared using regression analysis and bias evaluation. The conducted statistical analysis confirmed the interchangeability between developed assays. The DSS and VAMS samples are more accessible and stable during storage, transport and shipment than classic serum samples.

Funder

The Medical University of Warsaw

Publisher

MDPI AG

Reference27 articles.

1. Therapeutic Drug Monitoring of Ganciclovir: Where Are We;Edwina;Ther. Drug Monit.,2022

2. European Medicines Agency (2024, August 07). Cymevene: Summary of Product Characteristics, Labelling and Package Leaflet. Available online: https://www.ema.europa.eu/en/documents/referral/cymevene-article-30-referral-annex-iii_en.pdf.

3. Electronic Medicines Compendium (2024, August 07). Valcyte: Summary of product Characteristics, Labelling and Package Leaflet. Available online: https://www.medicines.org.uk/emc/product/14225/smpc.

4. Does therapeutic drug monitoring (TDM) of trough concentrations suffice for optimizing preemptive therapy with ganciclovir of cytomegalovirus infections in non-renal solid organ transplant recipients;Gatti;Transpl. Infect. Dis.,2023

5. Ganciclovir therapeutic drug monitoring in transplant recipients;Edwina;J. Antimicrob. Chemother.,2021

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