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Integration of DNA sequencing with population pharmacokinetics to improve the prediction of irinotecan exposure in cancer patients

  • Spinel Karas
  • , Amy S. Etheridge
  • , Deborah A. Nickerson
  • , Nancy J. Cox
  • , Karen L. Mohlke
  • , Erika Cecchin
  • , Giuseppe Toffoli
  • , Ron H.J. Mathijssen
  • , Alan Forrest
  • , Robert R. Bies
  • , Federico Innocenti
  • University of North Carolina at Chapel Hill
  • University of Washington
  • Vanderbilt University
  • IRCCS Centro di Riferimento Oncologico - Aviano PN
  • Erasmus University Rotterdam

Research output: Contribution to journalArticlepeer-review

11 Scopus citations

Abstract

Background: Irinotecan (CPT-11) is an anticancer agent widely used to treat adult solid tumours. Large interindividual variability in the clearance of irinotecan and SN-38, its active and toxic metabolite, results in highly unpredictable toxicity. Methods: In 217 cancer patients treated with intravenous irinotecan single agent or in combination, germline DNA was used to interrogate the variation in 84 genes by next-generation sequencing. A stepwise analytical framework including a population pharmacokinetic model with SNP- and gene-based testing was used to identify demographic/clinical/genetic factors that influence the clearance of irinotecan and SN-38. Results: Irinotecan clearance was influenced by rs4149057 in SLCO1B1, body surface area, and co-administration of 5-fluorouracil/leucovorin/bevacizumab. SN-38 clearance was influenced by rs887829 in UGT1A1, pre-treatment total bilirubin, and EGFR rare variant burden. Within each UGT1A1 genotype group, elevated pre-treatment total bilirubin and/or presence of at least one rare variant in EGFR resulted in significantly lower SN-38 clearance. The model reduced the interindividual variability in irinotecan clearance from 38 to 34% and SN-38 clearance from 49 to 32%. Conclusions: This new model significantly reduced the interindividual variability in the clearance of irinotecan and SN-38. New genetic factors of variability in clearance have been identified.

Original languageEnglish
Pages (from-to)640-651
Number of pages12
JournalBritish Journal of Cancer
Volume126
Issue number4
DOIs
StatePublished - Mar 9 2022

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