Li Y, Li N Y, Sellers E M
Department of Pharmacology, University of Toronto, Ontario, Canada.
Eur J Drug Metab Pharmacokinet. 1997 Oct-Dec;22(4):295-304. doi: 10.1007/BF03190960.
Comparison of 7-hydroxylation of coumarin, a CYP2A6 substrate, in human and African green and cynomolgus monkey liver microsomes was made by means of an HPLC assay with UV detection. In human liver microsomes, the Km and Vmax values for the metabolic conversion were 2.1 microM and 0.79 nmol/mg/min, respectively. While African green monkey showed Km and Vmax values of 2.7 microM and 0.52 nmol/mg/min, which were similar to human, higher Km and Vmax values were found in cynomolgus monkey. Coumarin 7-hydroxylation in human and African green monkey was selectively inhibited by methoxsalen and pilocarpine (CYP2A6 inhibitors) but not by other inhibitors, i.e. alpha-naphthoflavone (CYP1A1), orphenadrine (CYP2B6), sulfaphenazole (CYP2C9), quinidine (CYP2D6) and ketoconazole (CYP3A4). Immunoinhibition results supported CYP2A6 involvement in human and its homolog in monkey in coumarin 7-hydroxylation, as only anti-CYP2A6, but not CYP2B1, CYP2C13, CYP2D6, CYP2E1 or CYP3A antibodies, inhibited this conversion. African green monkey was found to be similar to human in catalytic activity of coumarin 7-hydroxylation and response to CYP2A6 inhibitors or antibody inhibition. However, the monkey CYP2A6 is not identical to the human in that Ki values were different, and differences were observed with some CYP2A6 inhibitors, such as nicotine and methoxsalen, suggesting that, under some circumstances, studies of nicotine kinetics and drug taking behavior in monkey may not be comparable to human.
通过带紫外检测的高效液相色谱法,对人、非洲绿猴和食蟹猴肝微粒体中细胞色素P450 2A6(CYP2A6)底物香豆素的7-羟基化反应进行了比较。在人肝微粒体中,代谢转化的米氏常数(Km)和最大反应速度(Vmax)值分别为2.1微摩尔/升和0.79纳摩尔/毫克/分钟。非洲绿猴的Km和Vmax值分别为2.7微摩尔/升和0.52纳摩尔/毫克/分钟,与人的相似,而食蟹猴的Km和Vmax值更高。人及非洲绿猴的香豆素7-羟基化反应被甲氧沙林和毛果芸香碱(CYP2A6抑制剂)选择性抑制,但不被其他抑制剂抑制,即α-萘黄酮(CYP1A1)、苯海拉明(CYP2B6)、磺胺苯吡唑(CYP2C9)、奎尼丁(CYP2D6)和酮康唑(CYP3A4)。免疫抑制结果支持CYP2A6参与人及猴体内香豆素的7-羟基化反应,因为只有抗CYP2A6抗体,而不是抗CYP2B1、CYP2C13、CYP2D6、CYP2E1或CYP3A抗体,能抑制这种转化。发现非洲绿猴在香豆素7-羟基化的催化活性及对CYP2A6抑制剂或抗体抑制的反应方面与人相似。然而,猴的CYP2A6与人类的并不相同,因为其抑制常数(Ki)值不同,并且在一些CYP2A6抑制剂(如尼古丁和甲氧沙林)方面存在差异,这表明在某些情况下,猴的尼古丁动力学和药物摄取行为研究可能无法与人类进行比较。