4.4 Article

The Role of Inosine-5′-Monophosphate Dehydrogenase in Thiopurine Metabolism in Patients With Inflammatory Bowel Disease

期刊

THERAPEUTIC DRUG MONITORING
卷 33, 期 2, 页码 200-208

出版社

LIPPINCOTT WILLIAMS & WILKINS
DOI: 10.1097/FTD.0b013e31820b42bb

关键词

inosine-5-monophosphate dehydrogenase; IMPDH; 6-TGN; meTIMP; thiopurines; therapeutic drug monitoring

资金

  1. Futurum-the Academy for Healthcare
  2. County Council of Jonkoping
  3. Medical Research Council of Southeast Sweden (FORSS)
  4. Swedish Society of Medicine
  5. County Council of Ostergotland
  6. Swedish Cancer Society
  7. Swedish Childhood Cancer Foundation
  8. Rut and Richard Juhlin's Foundation
  9. Swedish Research Council

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Background: There is a large interindividual variability in thiopurine metabolism. High concentrations of methylthioinosine-5'-monophosphate (meTIMP) and low concentrations of 6-thioguanine nucleotides (6-TGNs) have been associated with a lower response rate and an increased risk of adverse events. In this study, the role of inosine-5'-monophosphate dehydrogenase (IMPDH) for differences in metabolite patterns of thiopurines was investigated. Methods: IMPDH activity and thiopurine metabolite concentrations were determined in patients with inflammatory bowel disease and a normal thiopurine methyltransferase (TPMT) phenotype and meTIMP/6-TGN concentration ratio > 20 (n = 26), in patients with a metabolite ratio <= 20 (n = 21), in a subgroup with a metabolite ratio < 4 (n = 6), and in 10 patients with reduced TPMT activity. In vitro studies were conducted on human embryonic kidney cells (HEK293) with genetically engineered IMPDH and TPMT activities. Results: Patients with metabolite ratios > 20 had lower IMPDH activity than those with ratios <= 20 (P < 0.001). Metabolite ratios > 20 were only observed in patients with normal TPMT activity. Downregulation of IMPDH activity in HEK293 cells was associated with an increase in the concentration of meTIMP (fold change: 17 up to 93, P < 0.001) but, unexpectedly, also of 6-thioguanosine monophosphate (fold change: 2.6 up to 5.0, P < 0.001). Conclusions: These data question the general view of IMPDH as the rate-limiting enzyme in the phosphorylation of thiopurines. Investigations of other mechanisms are needed to more fully explain the various metabolite patterns and outcomes in patients under treatment.

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