Department of Veterinary Clinical Sciences, College of Veterinary Medicine, Washington State University, Pullman, Washington, USA.
Department of Veterinary Internal Medicine, Graduate School of Agricultural and Life Sciences, The University of Tokyo, Tokyo, Japan.
Xenobiotica. 2024 May;54(5):217-225. doi: 10.1080/00498254.2024.2326973. Epub 2024 Mar 13.
Understanding cytochrome P450 (CYP) enzymes in the canine intestine is vital for predicting drug metabolism and developing safer oral medications. This study evaluates canine colonoids as a model to assess the expression and induction of essential intestinal CYP enzymes.Canine colonoids were cultured in expansion medium (EM) with Wnt-3A and in differentiation medium (DM) without Wnt-3A. We assessed the mRNA expression of , , , and using qPCR and examined the effects of rifampicin and phenobarbital as inducers.Our findings show that DM significantly increased the mRNA expression of and , but not , compared to EM. , not typically expressed in the intestine, remained unexpressed in colonoids. Rifampicin induced CYP3A98, aligning with pregnane x receptor (PXR) regulation, while phenobarbital did not, suggesting no constitutive androstane receptor (CAR) involvement. CYP2B11 did not respond to either inducer, suggesting alternative regulatory pathways in canine colonoids.This study is a pioneering effort to establish conditions for studying P450 expression in canine colonoids, confirming significant CYP3A98 expression in the canine intestine. It demonstrated colonoids can induce CYP activity post drug treatments. Further research is needed to enhance species-specific drug metabolism understanding and validate this model for broader applications.
了解犬肠道中的细胞色素 P450(CYP)酶对于预测药物代谢和开发更安全的口服药物至关重要。本研究评估了犬结肠类器官作为评估重要肠道 CYP 酶表达和诱导的模型。
犬结肠类器官在含有 Wnt-3A 的扩展培养基(EM)和不含 Wnt-3A 的分化培养基(DM)中培养。我们使用 qPCR 评估了 、 、 、 和 的 mRNA 表达,并研究了利福平利福平利福平和苯巴比妥作为诱导剂的作用。
我们的研究结果表明,与 EM 相比,DM 显著增加了 和 的 mRNA 表达,但 没有增加。在肠道中通常不表达的 ,在结肠类器官中仍未表达。利福平诱导了 CYP3A98,与孕烷 X 受体(PXR)调节一致,而苯巴比妥则没有,这表明没有组成型雄烷受体(CAR)参与。CYP2B11 对两种诱导剂均无反应,这表明犬结肠类器官中存在替代的调节途径。
本研究是首次建立研究犬结肠类器官中 P450 表达的条件的努力,证实了犬肠道中 CYP3A98 的显著表达。它表明结肠类器官可以在药物治疗后诱导 CYP 活性。需要进一步研究来增强对物种特异性药物代谢的理解,并验证该模型的更广泛应用。