Clarifying busulfan metabolism and drug interactions to support new therapeutic drug monitoring strategies: a comprehensive review

Alan L. Myers, Jitesh D. Kawedia, Richard E. Champlin, Mark A. Kramer, Yago Nieto, Romi Ghose, Borje S. Andersson

Research output: Contribution to journalReview articlepeer-review

74 Scopus citations

Abstract

Introduction: Busulfan (Bu) is an alkylating agent with a limited therapeutic margin and exhibits inter-patient variability in pharmacokinetics (PK). Despite decades of use, mechanisms of Bu PK-based drug-drug interactions (DDIs), as well as the negative downstream effects of these DDIs, have not been fully characterized. Areas covered: This article provides an overview of Bu PK, with a primary focus on how known and potentially unknown drug metabolism pathways influence Bu-associated DDIs. In addition, pharmacogenomics of Bu chemotherapy and Bu-related DDIs observed in the stem cell transplant clinic (SCT) are summarized. Finally the increasing importance of Bu therapeutic drug monitoring is highlighted. Expert opinion: Mechanistic studies of Bu metabolism have shown that in addition to GST isoenzymes, other oxidative enzymes (CYP, FMO) and ABC/MDR drug transporters likely contribute to the overall clearance of Bu. Despite many insights, results from clinical studies, especially in polypharmacy settings and between pediatric and adult patients, remain conflicting. Further basic science and clinical investigative efforts are required to fully understand the key factors determining Bu PK characteristics and its effects on complications after SCT. Improved TDM strategies are promising components to further investigate, for instance DDI mechanisms and patient outcomes, in the highly complex SCT treatment setting.

Original languageEnglish (US)
Pages (from-to)901-923
Number of pages23
JournalExpert Opinion on Drug Metabolism and Toxicology
Volume13
Issue number9
DOIs
StatePublished - Sep 2 2017

Keywords

  • Busulfan
  • CYP
  • GST
  • drug interaction
  • drug metabolism
  • hematopoietic stem cell transplant
  • pharmacogenomics
  • pharmacokinetics
  • therapeutic drug monitoring

ASJC Scopus subject areas

  • Toxicology
  • Pharmacology

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