Dihydropyrimidine Dehydrogenase Genotype–Phenotype Correlations in Plasma and Peripheral Blood Mononuclear Cells

The chemotherapeutic 5‐fluorouracil (5‐FU) is commonly used to treat solid tumors, especially colorectal cancer. Deleterious variants in DPYD, which encodes dihydropyrimidine dehydrogenase (DPD), are strongly associated with severe and potentially lethal 5‐FU toxicity. Phenotypic assays for DPD function have been proposed as alternative or complementary approaches to identify DPD deficiencies with the rationale that they may capture unrecognized causes. These assays include the direct measurement of DPD activity in peripheral blood mononuclear cell (PBMC) lysates and measuring plasma metabolites uracil (U), dihydrouracil (UH 2 ), and the dihydrouracil/uracil (UH 2 :U) ratio. We evaluated correlations between PBMC DPD activity and plasma metabolite measures in matched samples from 203 patients with available DPYD exome sequencing data. We also compared the ability of phenotypic measures to identify carriers of deleterious DPYD variants. In addition to established high‐risk variants, we identified three rare DPYD variants predicted to be deleterious: c.274C>G, c.966C>A, and c.1435G>A. Collectively, these variants were associated with impaired DPD function with effect sizes comparable to well‐studied toxicity‐associated variants. At the population level and within carriers of specific genotypes, weak but significant correlations were observed between PBMC DPD activity and either UH 2 :U ratio or U level. These findings suggest that although phenotypic assays can detect severe DPD deficiency, high variability limits their utility as standalone diagnostic tools. Integration with genetic testing may provide a more robust pretreatment risk assessment strategy.

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Journal
Clinical Pharmacology & Therapeutics
Published
2026-10-06
DOI
https://doi.org/10.1002/cpt.70511
Primary Topic
Pharmacogenetics and Drug Metabolism
Type
article
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article

Dihydropyrimidine Dehydrogenase Genotype–Phenotype Correlations in Plasma and Peripheral Blood Mononuclear Cells

Seid Hamzic, Steven M. Offer, Brianna M. Bembenek, Kelly J. Bouchonville et al.
Clinical Pharmacology & Therapeutics
Pharmacogenetics and Drug Metabolism
article

Dihydropyrimidine Dehydrogenase Genotype–Phenotype Correlations in Plasma and Peripheral Blood Mononuclear Cells

Seid Hamzic, Steven M. Offer, Brianna M. Bembenek, Kelly J. Bouchonville, Carlo Rodolfo Largiadèr
article en

Abstract

The chemotherapeutic 5‐fluorouracil (5‐FU) is commonly used to treat solid tumors, especially colorectal cancer. Deleterious variants in DPYD, which encodes dihydropyrimidine dehydrogenase (DPD), are strongly associated with severe and potentially lethal 5‐FU toxicity. Phenotypic assays for DPD function have been proposed as alternative or complementary approaches to identify DPD deficiencies with the rationale that they may capture unrecognized causes. These assays include the direct measurement of DPD activity in peripheral blood mononuclear cell (PBMC) lysates and measuring plasma metabolites uracil (U), dihydrouracil (UH 2 ), and the dihydrouracil/uracil (UH 2 :U) ratio. We evaluated correlations between PBMC DPD activity and plasma metabolite measures in matched samples from 203 patients with available DPYD exome sequencing data. We also compared the ability of phenotypic measures to identify carriers of deleterious DPYD variants. In addition to established high‐risk variants, we identified three rare DPYD variants predicted to be deleterious: c.274C>G, c.966C>A, and c.1435G>A. Collectively, these variants were associated with impaired DPD function with effect sizes comparable to well‐studied toxicity‐associated variants. At the population level and within carriers of specific genotypes, weak but significant correlations were observed between PBMC DPD activity and either UH 2 :U ratio or U level. These findings suggest that although phenotypic assays can detect severe DPD deficiency, high variability limits their utility as standalone diagnostic tools. Integration with genetic testing may provide a more robust pretreatment risk assessment strategy.

Clinical Pharmacology & Therapeutics
University of Bern (CH), University of Iowa (US), Mayo Clinic (US), University Hospital of Bern (CH)
Openalex Percentile: Top 10%
Pharmacogenetics and Drug Metabolism
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