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线虫杀虫剂芬苯达唑与杀吸虫剂三氯苯达唑之间的药理学相互作用评估:牛肝微粒体和切片的体外研究

Assessment of the pharmacological interactions between the nematodicidal fenbendazole and the flukicidal triclabendazole: In vitro studies with bovine liver microsomes and slices.

作者信息

Viviani P, Lifschitz A L, Maté M L, García J P, Lanusse C E, Virkel G L

机构信息

Facultad de Ciencias Veterinarias, Laboratorio de Farmacología, Centro de Investigación Veterinarias de Tandil (CIVETAN-CONICET-CICPBA), Universidad Nacional del Centro de la Provincia de Buenos Aires (FCV-UNCPBA), Tandil, Argentina.

Facultad de Ciencias Veterinarias, Área Clínica de Grandes Animales, Universidad Nacional del Centro de la Provincia de Buenos Aires (FCV-UNCPBA), Tandil, Argentina.

出版信息

J Vet Pharmacol Ther. 2018 Jun;41(3):476-484. doi: 10.1111/jvp.12492. Epub 2018 Feb 21.

Abstract

Parasitic diseases have a significant impact on livestock production. Nematodicidal drugs, such as fenbendazole (FBZ) or its oxidized metabolite oxfendazole (OFZ), can be used along with the trematodicidal triclabendazole (TCBZ), to broaden the spectrum of anthelmintic activity. However, co-exposure to these compounds could lead to drug-drug (D-D) interactions and eventually alter the clinical profile of each active principle. The aim of this study was to assess the presence of such interactions by means of two in vitro models, namely bovine liver microsomal fractions and bovine precision-cut liver slices (PCLSs). To this end, an in vitro assessment involving incubation of FBZ and TCBZ or a combination of FBZ and TCBZ was carried out. Results with microsomal fractions showed a 78.4% reduction (p = .002) in the rate of OFZ production upon co-incubation, whereas the sulfoxide metabolite of TCBZ (TCBZSO) exhibited a decreasing tendency. With PCLS, OFZ accumulation in the incubation medium increased 1.8-fold upon co-incubation, whereas TCBZSO accumulation decreased by 28%. The accumulation of FBZ and OFZ in the liver tissue increased upon 2-hr co-incubation, from 2.1 ± 1.5 to 18.2 ± 6.1 (p = .0009) and from 0.4 ± 0.1 to 1.3 ± 0.3 nmol (p = .0005), respectively. These results confirm the presence of D-D interactions between FBZ and TCBZ. Further studies are needed to determine the extent of involvement of drug-metabolizing enzymes and membrane transporters in interactions between compounds largely used in livestock production systems.

摘要

寄生虫病对畜牧业生产有重大影响。杀线虫药物,如芬苯达唑(FBZ)或其氧化代谢产物奥芬达唑(OFZ),可与杀吸虫的三氯苯达唑(TCBZ)一起使用,以扩大驱虫活性谱。然而,同时接触这些化合物可能会导致药物-药物(D-D)相互作用,并最终改变每种活性成分的临床特征。本研究的目的是通过两种体外模型,即牛肝微粒体组分和牛精密肝切片(PCLS),评估此类相互作用的存在。为此,进行了一项体外评估,涉及FBZ和TCBZ的孵育或FBZ与TCBZ的组合孵育。微粒体组分的结果显示,共同孵育时OFZ生成率降低了78.4%(p = 0.002),而TCBZ的亚砜代谢产物(TCBZSO)呈现下降趋势。对于PCLS,共同孵育时孵育培养基中OFZ的积累增加了1.8倍,而TCBZSO的积累减少了28%。共同孵育2小时后,肝组织中FBZ和OFZ的积累增加,分别从2.1±1.5增至18.2±6.1(p = 0.0009)和从0.4±0.1增至1.3±0.3 nmol(p = 0.0005)。这些结果证实了FBZ和TCBZ之间存在D-D相互作用。需要进一步研究以确定药物代谢酶和膜转运蛋白在畜牧生产系统中大量使用的化合物之间相互作用中的参与程度。

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