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非离子表面活性剂在体外和体内都是细胞色素P450 3A生物转化活性的强效抑制剂。

Nonionic surfactants are strong inhibitors of cytochrome P450 3A biotransformation activity in vitro and in vivo.

作者信息

Ren Xiuhua, Mao Xinliang, Cao Lei, Xue Kewen, Si Luqin, Qiu Jun, Schimmer Aaron D, Li Gao

机构信息

School of Pharmacy, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, Hubei, 430030, PR China.

出版信息

Eur J Pharm Sci. 2009 Mar 2;36(4-5):401-11. doi: 10.1016/j.ejps.2008.11.002. Epub 2008 Nov 8.

Abstract

Nonionic surfactants are commonly used as excipients in pharmaceutical formulation, but recent studies demonstrate that the ingredients affect the pharmacokinetics of the active drugs. However, the mechanisms are largely unknown. Here, we examined the effects of four common nonionic surfactants polysorbate 20, polyoxyl 35 castor oil, polyoxyl 40 stearate and poloxamer 188, on cytochrome P450 3A in vitro and in vivo using midazolam as a probe. We first examined the effects of these surfactants on the 1'-hydroxylation of midazolam in isolated rat liver and intestinal microsomes. All the surfactants tested inhibited midazolam 1'-hydroxylation in a concentration-dependent manner and presented a mixed competitive inhibitory model with decreased V(max) and increased K(m) values in vitro. Among the tested nonionic surfactants, polysorbate 20 was the most potent inhibitor of midazolam 1'-hydroxylation with an IC(50) of 2.06 and 0.39mgml(-1) in the liver and intestinal microsomes, respectively. These surfactants were also tested in vivo as we investigated their effects on the pharmacokinetics of midazolam in rats. These four surfactants displayed different inhibitory patterns in terms of the AUC of midazolam and 1'-hydroxymidazolam. Polysorbate 20 significantly increased both AUC(0-4h) and AUC(0-infinity) of midazolam and decreased the AUC(0-4h) of 1'-hydroxymidazolam to about 40% (p<0.05) in both single- and multiple-treated rats, along with a significant decrease of the metabolic ratio of 1'-hydroxymidazolam/midazolam to 25%. Polyoxyl 35 castor oil, polyoxyl 40 stearate and poloxamer 188 displayed complicated inhibition on the 1'-hydroxylation of midazolam dependent on the administration formula. These results confirmed that effects of these surfactants would have potential inhibitory effects on cytochrome P450 3A and altered midazolam bioavailability. Therefore, caution is needed when selecting nonionic surfactants in drug formulation.

摘要

非离子表面活性剂在药物制剂中常用作辅料,但最近的研究表明这些成分会影响活性药物的药代动力学。然而,其作用机制大多未知。在此,我们以咪达唑仑为探针,在体外和体内研究了四种常见的非离子表面活性剂聚山梨酯20、聚氧乙烯蓖麻油35、聚氧乙烯硬脂酸酯40和泊洛沙姆188对细胞色素P450 3A的影响。我们首先在离体大鼠肝脏和肠道微粒体中研究了这些表面活性剂对咪达唑仑1'-羟化反应的影响。所有测试的表面活性剂均以浓度依赖性方式抑制咪达唑仑1'-羟化反应,在体外呈现出混合竞争性抑制模型,V(max)降低,K(m)值升高。在所测试的松离子表面活性剂中,聚山梨酯20是咪达唑仑1'-羟化反应最有效的抑制剂,在肝脏和肠道微粒体中的IC(50)分别为2.06和0.39mgml(-1)。我们还在体内对这些表面活性剂进行了测试,研究它们对大鼠体内咪达唑仑药代动力学的影响。就咪达唑仑和1'-羟基咪达唑仑的AUC而言,这四种表面活性剂表现出不同的抑制模式。在单次和多次给药的大鼠中,聚山梨酯20均显著增加了咪达唑仑的AUC(0-4h)和AUC(0-无穷大),并将1'-羟基咪达唑仑的AUC(0-4h)降低至约40%(p<0.05),同时1'-羟基咪达唑仑/咪达唑仑的代谢率显著降低至25%。聚氧乙烯蓖麻油35、聚氧乙烯硬脂酸酯40和泊洛沙姆188对咪达唑仑1'-羟化反应的抑制作用因给药方式而异。这些结果证实,这些表面活性剂可能对细胞色素P450 3A有潜在抑制作用,并改变咪达唑仑的生物利用度。因此,在药物制剂中选择非离子表面活性剂时需要谨慎。

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