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Therapeutic Drug Monitoring and Dosage Adjustments of Immunosuppressive Drugs When Combined with Nirmatrelvir/Ritonavir in Patients with COVID-19

  • Florian Lemaitre*
  • , Klemens Budde
  • , Teun Van Gelder
  • , Stein Bergan
  • , Roland Lawson
  • , Ofelia Noceti
  • , Raman Venkataramanan
  • , Laure Elens
  • , Dirk Jan A.R. Moes
  • , Dennis A. Hesselink
  • , Tomasz Pawinski
  • , Kamisha L. Johnson-Davis
  • , Brenda C.M. De Winter
  • , Smita Pattanaik
  • , Mercè Brunet
  • , Satohiro Masuda
  • , Loralie J. Langman
  • *Corresponding author for this work
  • CHU de Rennes
  • Centre d'Investigation Clinique de Rennes
  • Charité – Universitätsmedizin Berlin
  • Oslo University Hospital
  • Université de Limoges
  • Army Forces Hospital
  • University of Pittsburgh School of Medicine
  • Leiden University Medical Centre
  • Medical University of Warsaw
  • University of Utah
  • Postgraduate Institute of Medical Education and Research
  • University of Barcelona
  • Himeji Dokkyo University
  • Mayo Clinic College of Medicine and Science
  • University of Pittsburgh

Research output: Contribution to journalReview articleAcademicpeer-review

61 Citations (Scopus)

Abstract

Abstract:Nirmatrelvir/ritonavir (Paxlovid) consists of a peptidomimetic inhibitor (nirmatrelvir) of the SARS-CoV-2 main protease and a pharmacokinetic enhancer (ritonavir). It is approved for the treatment of mild-to-moderate COVID-19. This combination of nirmatrelvir and ritonavir can mediate significant and complex drug-drug interactions (DDIs), primarily due to the ritonavir component. Indeed, ritonavir inhibits the metabolism of nirmatrelvir through cytochrome P450 3A (CYP3A) leading to higher plasma concentrations and a longer half-life of nirmatrelvir. Coadministration of nirmatrelvir/ritonavir with immunosuppressive drugs (ISDs) is particularly challenging given the major involvement of CYP3A in the metabolism of most of these drugs and their narrow therapeutic ranges. Exposure of ISDs will be drastically increased through the potent ritonavir-mediated inhibition of CYP3A, resulting in an increased risk of adverse drug reactions. Although a decrease in the dosage of ISDs can prevent toxicity, an inappropriate dosage regimen may also result in insufficient exposure and a risk of rejection. Here, we provide some general recommendations for therapeutic drug monitoring of ISDs and dosing recommendations when coadministered with nirmatrelvir/ritonavir. Particularly, tacrolimus should be discontinued, or patients should be given a microdose on day 1, whereas cyclosporine dosage should be reduced to 20% of the initial dosage during the antiviral treatment. Dosages of mammalian target of rapamycin inhibitors (m-TORis) should also be adjusted while dosages of mycophenolic acid and corticosteroids are expected to be less impacted.

Original languageEnglish
Pages (from-to)191-199
Number of pages9
JournalTherapeutic Drug Monitoring
Volume45
Issue number2
DOIs
Publication statusPublished - Apr 2023

Bibliographical note

Publisher Copyright:
© The Author(s), 2022. Published by Cambridge University Press on behalf of The Society for Healthcare Epidemiology of America.

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