Schwartzman M L, Masferrer J, Dunn M W, McGiff J C, Abraham N G
Curr Eye Res. 1987 Apr;6(4):623-30. doi: 10.3109/02713688709025223.
Little information is available on drug metabolizing enzymes in ocular tissues. We investigated the presence of various cytochrome P450 isozymes by measuring different drug metabolizing enzymes, i.e., aryl hydrocarbon hydroxylase, 7 ethoxycoumarin-o-deethylase and benzphetamine demethylase activities in ciliary body, corneal epithelium and endothelium, retina and retinal pigment epithelium. Our results demonstrate that the ciliary body and the retinal pigment epithelium possess the highest activities of cytochrome P450-dependent monooxygenases in the eye. The highest activity of drug metabolizing enzymes is accompanied by high activity of NADPH cytochrome P450 (C) reductase, an integral component of this enzyme system. Heme oxygenase, a key enzyme for the regulation of heme availability to hemoproteins such as cytochrome P450 also demonstrate high activity in these two ocular tissues. Although the corneal epithelium has a lower activity of drug metabolizing enzymes, it possesses the highest activity of cytochrome P450 species capable of metabolizing arachidonic acid to biologically active compounds, whereas the other ocular tissues possess cyclooxygenase as the main microsomal enzyme that metabolizes arachidonic acid. Whether the observed catalytic activities of drug metabolizing enzymes seen in ocular tissues are associated with major or minor forms of cytochrome P450 is not yet know. However, the specialized location of cytochrome P450 isozymes in ocular tissues suggests a physiological function related to activation of endogenous compounds such as arachidonic acid, in addition to detoxification of drugs.
关于眼组织中的药物代谢酶,目前可用信息较少。我们通过测量不同的药物代谢酶,即睫状体、角膜上皮和内皮、视网膜及视网膜色素上皮中的芳烃羟化酶、7-乙氧基香豆素-O-脱乙基酶和苄非他明脱甲基酶活性,来研究各种细胞色素P450同工酶的存在情况。我们的结果表明,睫状体和视网膜色素上皮在眼中具有最高的细胞色素P450依赖性单加氧酶活性。药物代谢酶的最高活性伴随着NADPH细胞色素P450(C)还原酶的高活性,该还原酶是该酶系统的一个组成部分。血红素加氧酶是调节血红素向细胞色素P450等血红蛋白供应的关键酶,在这两种眼组织中也表现出高活性。虽然角膜上皮的药物代谢酶活性较低,但它具有将花生四烯酸代谢为生物活性化合物的细胞色素P450种类的最高活性,而其他眼组织则以环氧化酶作为代谢花生四烯酸的主要微粒体酶。目前尚不清楚在眼组织中观察到的药物代谢酶催化活性是否与细胞色素P450的主要或次要形式相关。然而,细胞色素P450同工酶在眼组织中的特殊定位表明,除了药物解毒外,它还具有与花生四烯酸等内源性化合物激活相关的生理功能。