Drug Metabolism and Pharmacokinetics
Online ISSN : 1880-0920
Print ISSN : 1347-4367
ISSN-L : 1347-4367

この記事には本公開記事があります。本公開記事を参照してください。
引用する場合も本公開記事を引用してください。

Mechanism-based inhibition profiles of erythromycin and clarithromycin with cytochrome P450 3A4 genetic variants
Takeshi AkiyoshiMarie ItoSaori MuraseMitsue MiyazakiF. Peter GuengerichKatsunori NakamuraKoujirou YamamotoHisakazu Ohtani
著者情報
ジャーナル フリー 早期公開

論文ID: DMPK-12-RG-134

この記事には本公開記事があります。
詳細
抄録
  Inhibition of cytochrome P450 (CYP) 3A4 is the major cause of drug-drug interactions (DDI). We have previously reported that the genetic variation of CYP3A4 significantly affected the inhibitory profiles of typical competitive inhibitors. In addition to competitive inhibition, some clinically significant DDI are attributable to mechanism-based inhibition (MBI). However, the differences in the MBI kinetics among CYP3A4 genetic variants remain to be characterized. In this study, we quantitatively investigated the inhibition kinetics of MBI inhibitors, erythromycin and clarithromycin, on the CYP3A4 variants CYP3A4.1, .2, .7, .16, and .18. The activity of CYP3A4 was assessed using testosterone 6β-hydroxylation with recombinant CYP3A4. Both erythromycin and clarithromycin decreased the activity of CYP3A4 in a time-dependent manner. The maximum inactivation rate constants, kinact,max, of erythromycin for CYP3A4.2 and CYP3A4.7 were 0.5-fold that for CYP3A4.1, while that for CYP3A4.16 and CYP3A4.18 were similar to the CYP3A4.1. The KI values of erythromycin for CYP3A4.2, .7, .16, and.18 were 1.2-, 0.4-, 2.2- and 0.72-fold those of CYP3A4.1, respectively. Similar results were obtained for clarithromycin. In conclusion, the inhibitory profiles of MBI inhibitors, as well as competitive inhibitors, may possibly differ among CYP3A4 variants. This difference may contribute to interindividual differences in the extent of DDI based on MBI.
著者関連情報

この記事は最新の被引用情報を取得できません。

© 2013 by The Japanese Society for the Study of Xenobiotics
feedback
Top