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花生四烯酸、前列腺素、视黄醇、视黄酸和胆钙化醇对人细胞色素P450酶催化的外源物氧化的影响。

Effects of arachidonic acid, prostaglandins, retinol, retinoic acid and cholecalciferol on xenobiotic oxidations catalysed by human cytochrome P450 enzymes.

作者信息

Yamazaki H, Shimada T

机构信息

Osaka Prefectural Institute of Public Health, Japan.

出版信息

Xenobiotica. 1999 Mar;29(3):231-41. doi: 10.1080/004982599238632.

Abstract
  1. Effects of arachidonic acid, prostaglandins, retinol, retinoic acid and cholecalciferol on xenobiotic oxidations catalysed by 12 recombinant human cytochrome P450 (P450 or CYP) enzymes and by human liver microsomes have been investigated. 2. Arachidonic acid (50 microM) significantly inhibited CYP1A1- and 1A2-dependent 7-ethoxycoumarin O-deethylations, CYP2C8-dependent taxol 6alpha-hydroxylation and CYP2C19-dependent R-warfarin 7-hydroxylation. This chemical also inhibited slightly the xenobiotic oxidations catalysed by CYP1B1, 2B6, 2C9, 2D6, 2E1 and 3A4 in recombinant enzyme systems. 3. Retinol, retinoic acid and cholecalciferol were strong inhibitors for xenobiotic oxidations catalysed by recombinant CYP1A1, 2C8 and 2C19. 4. Dixon plots of inhibitions of CYP1A1-, 1A2-, 2C8- and 2C19-dependent xenobiotic oxidations by arachidonic acid, of CYP1A1-, 2B6- and 2C19-dependent activities by retinol, and of CYP1A1- and 2C19-dependent activities by cholecalciferol indicated that these chemicals inhibit P450 activities mainly through a competitive mechanism. 5. In human liver microsomes, arachidonic acid inhibited CYP1A2-dependent theophylline hydroxylation, CYP2C8-dependent taxol 6alpha-hydroxylation and CYP2C19-dependent omeprazole 5-hydroxylation. Taxol 6alpha-hydroxylation was also inhibited by retinol and retinoic acid, and omeprazole 5-hydroxylation was inhibited by retinol in human liver microsomes. 6. These results suggest that xenobiotic oxidations by P450 enzymes are affected by endobiotic chemicals and that the endobiotic-xenobiotic interactions as well as drug-drug interactions may be of great importance when understanding the basis for pharmacological and toxicological actions of a number of xenobiotic chemicals.
摘要
  1. 研究了花生四烯酸、前列腺素、视黄醇、视黄酸和胆钙化醇对12种重组人细胞色素P450(P450或CYP)酶以及人肝微粒体催化的外源性物质氧化的影响。2. 花生四烯酸(50微摩尔)显著抑制CYP1A1和1A2依赖性的7-乙氧基香豆素O-脱乙基作用、CYP2C8依赖性的紫杉醇6α-羟基化作用以及CYP2C19依赖性的R-华法林7-羟基化作用。这种化学物质在重组酶系统中也略微抑制了CYP1B1、2B6、2C9、2D6、2E1和3A4催化的外源性物质氧化。3. 视黄醇、视黄酸和胆钙化醇是重组CYP1A1、2C8和2C19催化的外源性物质氧化的强抑制剂。4. 花生四烯酸对CYP1A1、1A2、2C8和2C19依赖性外源性物质氧化的抑制作用、视黄醇对CYP1A1、2B6和2C19依赖性活性的抑制作用以及胆钙化醇对CYP1A1和2C19依赖性活性的抑制作用的Dixon图表明,这些化学物质主要通过竞争机制抑制P450活性。5. 在人肝微粒体中,花生四烯酸抑制CYP1A2依赖性的茶碱羟基化作用、CYP2C8依赖性的紫杉醇6α-羟基化作用以及CYP2C19依赖性的奥美拉唑5-羟基化作用。在人肝微粒体中,视黄醇和视黄酸也抑制紫杉醇6α-羟基化作用,视黄醇抑制奥美拉唑5-羟基化作用。6. 这些结果表明,P450酶催化的外源性物质氧化受内源性化学物质影响,在理解许多外源性化学物质的药理和毒理作用基础时,内源性-外源性相互作用以及药物-药物相互作用可能非常重要。

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