Pharmacogenomic Assessment of Genes Implicated in Thiopurine Metabolism and Toxicity in a UK Cohort of Pediatric Patients With Inflammatory Bowel Disease

硫嘌呤甲基转移酶 医学 炎症性肠病 硫唑嘌呤 毒性 胃肠病学 内科学 药物遗传学 队列 基因分型 不利影响 药物基因组学 ITPA 基因型 药理学 疾病 免疫学 生物 基因 遗传学 丙型肝炎病毒 病毒 利巴韦林
作者
Tracy Coelho,Guo Cheng,Sophie Lewis,James J. Ashton,Farah M. Barakat,Kouros Driscoll,Adebola E Sholeye-Bolaji,Akshay Batra,Nadeem Afzal,R. Mark Beattie,Sarah Ennis
出处
期刊:Inflammatory Bowel Diseases [Oxford University Press]
被引量:2
标识
DOI:10.1093/ibd/izae126
摘要

Abstract Background Thiopurine drugs are effective treatment options in inflammatory bowel disease and other conditions but discontinued in some patients due to toxicity. Methods We investigated thiopurine-induced toxicity in a pediatric inflammatory bowel disease cohort by utilizing exome sequencing data across a panel of 46 genes, including TPMT and NUDT15. Results The cohort included 487 patients with a median age of 13.1 years. Of the 396 patients exposed to thiopurines, myelosuppression was observed in 11%, gastroenterological intolerance in 11%, hepatotoxicity in 4.5%, pancreatitis in 1.8%, and “other” adverse effects in 2.8%. TPMT (thiopurine S-methyltransferase) enzyme activity was normal in 87.4%, intermediate 12.3%, and deficient in 0.2%; 26% of patients with intermediate activity developed toxicity to thiopurines. Routinely genotyped TPMT alleles associated with defective enzyme activity were identified in 28 (7%) patients: TPMT*3A in 4.5%, *3B in 1%, and *3C in 1.5%. Of these, only 6 (21%) patients developed toxic responses. Three rare TPMT alleles (*3D, *39, and *40) not assessed on routine genotyping were identified in 3 patients, who all developed toxic responses. The missense variant p.R139C (NUDT15*3 allele) was identified in 4 patients (azathioprine 1.6 mg/kg/d), but only 1 developed toxicity. One patient with an in-frame deletion variant p.G13del in NUDT15 developed myelosuppression at low doses. Per-gene deleteriousness score GenePy identified a significant association for toxicity in the AOX1 and DHFR genes. Conclusions A significant association for toxicity was observed in the AOX1 and DHFR genes in individuals negative for the TPMT and NUDT15 variants. Patients harboring the NUDT15*3 allele, which is associated with myelosuppression, did not show an increased risk of toxicity.
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