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进行性慢性肾脏病对肝脏药物代谢的影响。

The impact of progressive chronic kidney disease on hepatic drug metabolism.

作者信息

Hartjes Emily D, Lim Yong Jin, Velenosi Thomas J, Al Kait F, Macklaim Jean M, Kucey Andrew S, Reid Gregor, Burton Jeremy P, Gloor Gregory B, Urquhart Bradley L

机构信息

Department of Physiology and Pharmacology, Schulich School of Medicine and Dentistry, Western University, London, Ontario, Canada.

Faculty of Pharmaceutical Sciences, University of British Columbia, Vancouver, British Columbia, Canada.

出版信息

Drug Metab Dispos. 2025 Jun;53(6):100085. doi: 10.1016/j.dmd.2025.100085. Epub 2025 Apr 28.

Abstract

Nonrenal clearance pathways such as drug metabolism are decreased in severe chronic kidney disease (CKD). The impact of progression of CKD on hepatic drug metabolism is unknown. We characterized the effect of progressive CKD on hepatic cytochrome P450 expression and evaluated dysbiosis and uremia as kidney function declined. Rats fed control or CKD-inducing adenine diet were studied at 5 time points over 42 days. Cytochrome P450 expression and activity were compared with alterations in the (1) plasma and liver metabolome and (2) gut bacterial microbiota. CYP3A2 and CYP2C11 were downregulated in CKD by ≥76% (P < .001) concurrently with or slightly prior to CKD onset as defined by serum creatinine. Metabolite profiles were altered prior to changes in the gut microbiota, and gut-derived uremic toxins including indoxyl sulfate, phenyl sulfate, and 4-ethylphenyl sulfate correlated with CYP3A2 or CYP2C11 expression. Bacterial genera Turicibacter and Parabacteroides were identified as being characteristic of CKD. In conclusion, CYP3A2 and CYP2C11 are downregulated before dysbiosis and uremia. SIGNIFICANCE STATEMENT: This study describes the effect of progressive kidney disease on hepatic CYP2C11 and CYP3A2 enzyme expression and activity in a rat model of CKD. Expression and activity of drug metabolizing enzymes occurs prior to uremia or dysbiosis.

摘要

在严重慢性肾脏病(CKD)中,诸如药物代谢等非肾清除途径会减少。CKD进展对肝脏药物代谢的影响尚不清楚。我们描述了进行性CKD对肝脏细胞色素P450表达的影响,并在肾功能下降时评估了生态失调和尿毒症情况。给喂食对照或诱导CKD的腺嘌呤饮食的大鼠在42天内的5个时间点进行研究。将细胞色素P450的表达和活性与(1)血浆和肝脏代谢组以及(2)肠道细菌微生物群的变化进行比较。CKD中CYP3A2和CYP2C11下调≥76%(P <.001),与血清肌酐所定义的CKD发作同时或略早于此发生。代谢物谱在肠道微生物群变化之前就发生了改变,包括硫酸吲哚酚、硫酸苯酯和硫酸4-乙基苯酯在内的肠道源性尿毒症毒素与CYP3A2或CYP2C11表达相关。已确定Turicibacter和Parabacteroides细菌属为CKD的特征。总之,CYP3A2和CYP2C11在生态失调和尿毒症之前就被下调。意义声明:本研究描述了进行性肾脏疾病对CKD大鼠模型中肝脏CYP2C11和CYP3A2酶表达及活性的影响。药物代谢酶的表达和活性在尿毒症或生态失调之前就已出现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1941/12264556/8a13b63760e8/gr1.jpg

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