Individualization of Irinotecan Treatment: A Review of Pharmacokinetics, Pharmacodynamics, and Pharmacogenetics

Индивидуализация лечения иринотеканом: обзор фармакокинетики, фармакодинамики и фармакогенетики
Ron H.J. Mathijssen, Ron H. N. van Schaik, Femke M. de Man, Andrew K.L. Goey, Sander Bins
2018-03-08

Irinotecan treatmentPharmacogeneticsPharmacokineticsSN-38 metabolismUGT1A genetic variants
Since its clinical introduction in 1998, the topoisomerase I inhibitor irinotecan has been widely used in the treatment of solid tumors, including colorectal, pancreatic, and lung cancer. Irinotecan therapy is characterized by several dose-limiting toxicities and large interindividual pharmacokinetic variability. Irinotecan has a highly complex metabolism, including hydrolyzation by carboxylesterases to its active metabolite SN-38, which is 100- to 1000-fold more active compared with irinotecan itself. Several phase I and II enzymes, including cytochrome P450 (CYP) 3A4 and uridine diphosphate glucuronosyltransferase (UGT) 1A, are involved in the formation of inactive metabolites, making its metabolism prone to environmental and genetic influences. Genetic variants in the DNA of these enzymes and transporters could predict a part of the drug-related toxicity and efficacy of treatment, which has been shown in retrospective and prospective trials and meta-analyses. Patient characteristics, lifestyle and comedication also influence irinotecan pharmacokinetics. Other factors, including dietary restriction, are currently being studied. Meanwhile, a more tailored approach to prevent excessive toxicity and optimize efficacy is warranted. This review provides an updated overview on today's literature on irinotecan pharmacokinetics, pharmacodynamics, and pharmacogenetics.
1
CYP3A4, UGT1A enzymes, transporters, and other metabolic pathways generate inactive metabolites and contribute to irinotecan disposition.
2
Carboxylesterases convert irinotecan into SN-38, an active metabolite reported to be 100- to 1000-fold more potent.
3
Genetic variants in drug-metabolizing enzymes and transporters can predict part of irinotecan-related toxicity and treatment efficacy, supported by clinical studies and meta-analyses.
4
Irinotecan treatment exhibits dose-limiting toxicities and substantial interindividual pharmacokinetic variability.
5
Patient characteristics, lifestyle, comedications, and potentially dietary factors influence irinotecan pharmacokinetics, supporting more individualized dosing strategies.

Irinotecan therapy in patients with solid tumors

Pharmacokinetics, pharmacodynamics, pharmacogenetics, and individual determinants of irinotecan toxicity and efficacy

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2018-03-08
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Ron H.J. Mathijssen
Ron H. N. van Schaik
Femke M. de Man
Andrew K.L. Goey
Sander Bins
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