Factors involved in phenoconversion of CYP3A using 4β-hydroxycholesterol in stable kidney transplant recipients

Yosuke Suzuki1, Nanako Muraya2, Takashi Fujioka2

  • 1Department of Clinical Pharmacy, Oita University Hospital, 1-1 Hasama-machi, Oita, 879-5593, Japan; Department of Medication Use Analysis and Clinical Research, Meiji Pharmaceutical University, 2-522-1 Noshio, Kiyose, Tokyo, 204-8588, Japan.

Abstract

Insights

Phenoconversion, a decrease in drug metabolism, was observed in kidney transplant patients with the CYP3A5*1 allele. High indoxyl sulfate levels were linked to this reduced CYP3A activity, suggesting potential drug dose adjustments.

Area of Science:

  • Pharmacogenomics
  • Renal Transplantation
  • Drug Metabolism

Background:

  • Phenoconversion describes a temporary reduction in drug-metabolizing enzyme activity.
  • Renal failure is known to reduce CYP3A activity, potentially influenced by indoxyl sulfate, PTH, IL-6, and TNF-α.
  • This study investigated these factors in kidney transplant recipients to understand CYP3A phenoconversion.

Purpose of the Study:

  • To measure plasma concentrations of indoxyl sulfate, PTH, IL-6, and TNF-α in stable kidney transplant recipients.
  • To evaluate the relationship between these compounds and CYP3A phenoconversion, assessed by 4β-hydroxycholesterol levels.
  • To identify factors contributing to CYP3A phenoconversion in this patient population.

Main Methods:

  • Sixty-three Japanese kidney transplant recipients (post-180 days) were enrolled.
  • Plasma concentrations of 4β-hydroxycholesterol, indoxyl sulfate, PTH, IL-6, and TNF-α were measured.
  • CYP3A5 polymorphism was analyzed to assess its impact on CYP3A activity.

Main Results:

  • Higher plasma 4β-hydroxycholesterol was found in recipients with the CYP3A5*1 allele (n=23) versus without (n=40).
  • Ten CYP3A5*1 allele carriers exhibited CYP3A activity below the 40.0 ng/mL cutoff, indicating phenoconversion.
  • Significantly higher plasma indoxyl sulfate concentrations were observed in patients with CYP3A phenoconversion.

Conclusions:

  • Elevated plasma indoxyl sulfate may contribute to CYP3A phenoconversion in kidney transplant recipients.
  • Patients with the CYP3A5*1 allele and high indoxyl sulfate may require adjusted dosages for CYP3A-metabolized drugs.
  • This highlights the importance of pharmacogenomic and biomarker monitoring in transplant patients.

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