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Updated: Jan 28, 2026

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Published on: July 19, 2021
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.
Background:
Phenoconversion is a phenomenon whereby some genotypic extensive metabolizers transiently exhibit drug metabolizing enzyme activity at similar level as that of poor metabolizers. Renal failure is known to decrease CYP3A activity in humans. Indoxyl sulfate, parathyroid hormone (PTH), interleukin-6 (IL-6), and tumor necrosis factor-alpha (TNF-α) have been reported to cause CYP3A downregulation in renal failure. We measured plasma concentrations of the above compounds in stable kidney transplant recipients, and evaluated their relations with phenoconversion of CYP3A evaluated by plasma concentration of 4β-hydroxycholesterol, a biomarker of CYP3A activity. Phenoconversion was defined as a genotypic extensive/intermediate metabolizer exhibiting CYP3A activity below the cutoff value that discriminates extensive/intermediate from poor metabolizers.
Methods:
Sixty-three Japanese kidney transplant recipients who underwent transplantation more than 180 days prior to the study were included. Morning blood samples were collected, and CYP3A5 polymorphism as well as plasma concentrations of 4β-hydroxycholesterol, indoxyl sulfate, intact-PTH, IL-6 and TNF-α were determined.
Results:
Significantly higher plasma 4β-hydroxycholesterol concentration was observed in recipients with CYP3A5*1 allele (n = 23) compared to those without the allele (n = 40), and the cut-off value was 40.0 ng/mL. Ten recipients with CYP3A5*1 allele exhibited CYP3A activity below 40.0 ng/mL (phenoconversion). Only plasma indoxyl sulfate concentration was significantly higher in recipients with CYP3A phenoconversion compared to those without phenoconversion.
Conclusions:
These findings suggest that higher plasma indoxyl sulfate concentration may be involved in CYP3A phenoconversion. Dose adjustment of drugs metabolized by CYP3A may be needed in patients with CYP3A5*1 allele and high blood indoxyl sulfate.
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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