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Influence of GST gene polymorphisms on busulfan pharmacokinetics in children
Author(s) -
Marc Ansari,
Jean-François Lauzon-Joset,
Vachon Mf,
Michel Duval,
Yves Théôret,
Champagne Ma,
Maja Krajinović
Publication year - 2009
Publication title -
bone marrow transplantation
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.609
H-Index - 127
eISSN - 1476-5365
pISSN - 0268-3369
DOI - 10.1038/bmt.2009.143
Subject(s) - gstp1 , pharmacokinetics , medicine , busulfan , cmax , pharmacology , oncology , genotype , hematopoietic stem cell transplantation , dosing , cyp3a5 , gastroenterology , pharmacogenetics , transplantation , gene , biology , genetics
Busulfan (BU) is a key compound in conditioning myeloablative regimens for children undergoing hematopoietic stem cell transplantation (HSCT). There are wide interindividual differences in BU pharmacokinetics, which increase the risk of veno-occlusive disease, graft rejection and disease relapse. As BU is mainly metabolized by glutathione S-transferase (GST), it is hypothesized that functional polymorphisms in GST genes may explain in part the variability in BU pharmacokinetics. We analyzed polymorphisms in GSTA1 (C-69T, A-513G, G-631T, C-1142G), GSTM1 (deletion) and GSTP1 (A1578G, C2293T) genes in 28 children undergoing HSCT. All patients had individualized dosing based on pharmacokinetics after the first dose of intravenous BU. GSTM1-null individuals had higher drug exposure (P(Cmax)=0.008; P(AUC)=0.003; P(Css)=0.02) and lower clearance (P(CL)=0.001). Multivariate regression models showed that, other than the drug dose and age, the GSTM1 genotype was the best predictor of first-dose pharmacokinetic variability. GSTM1-null patients also received lower cumulative BU doses (P=0.02). No association was found between BU exposure and major GSTA1 or GSTP1 gene variants. In children, GSTM1 polymorphism seems to modify BU pharmacokinetics after intravenous drug administration.

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