Usami N, Tateoka Y, Watanabe K, Yamamoto I, Yoshimura H
Shinshin Chemical Industry Co., Ltd, Toyama, Japan.
Biol Pharm Bull. 1995 Apr;18(4):529-35. doi: 10.1248/bpb.18.529.
Carbon monoxide (CO) was generated in the process of hepatic microsomal oxidative metabolism of cannabidiol (CBD). After the generated CO was reduced to methane (CH4) with a methanizer, CH4 formed was determined by gas chromatography (GC) with a flame ionization detector. After oxidation with hopcalite, CO was also identified as CO2 by gas chromatography/mass spectrometry (GC/MS). The reaction was NADPH-dependent and required molecular oxygen. It was inhibited by addition of some inhibitors of cytochrome P450-dependent monooxygenase. When CBD (191 microM) was incubated with hepatic microsomes of mice in the presence of an NADPH-generating system and oxygen, concentration of CO determined by GC was 4.7 +/- 0.5 ppm/nmol P450 in the incubation atmosphere. Pretreatment with phenobarbital (100 mg/kg, i.p. for 3d) but not 3-methylcholanthrene (80 mg/kg, i.p.) increased the CO formation 78%, while pretreatment with cobaltous chloride (40 mg/kg, i.p. for 3 d) decreased the formation 56%. When CBD was incubated under oxygen-18 gas, molecular oxygen was not incorporated into the CO molecule. 8,9-Dihydro- and 1,2,8,9-tetrahydro-CBDs also produced CO to some extent, whereas CBD monomethyl- and dimethylethers reduced the ability to produce CO. In addition, cannabidivarin and olivetol produced CO, although none of delta 9-tetrahydrocannabinol, cannabinol and d-limonene did. Thus, the resorcinol moiety of CBD is important for CO formation.
一氧化碳(CO)是大麻二酚(CBD)在肝脏微粒体氧化代谢过程中产生的。生成的CO通过甲烷化器还原为甲烷(CH4)后,用带有火焰离子化检测器的气相色谱法(GC)测定生成的CH4。在用霍加拉特氧化后,CO也通过气相色谱/质谱联用仪(GC/MS)鉴定为CO2。该反应依赖于NADPH且需要分子氧。它会被添加一些细胞色素P450依赖性单加氧酶抑制剂所抑制。当在有NADPH生成系统和氧气存在的情况下,将CBD(191微摩尔)与小鼠肝脏微粒体一起孵育时,通过GC测定的孵育气氛中CO的浓度为4.7±0.5 ppm/纳摩尔P450。用苯巴比妥(100毫克/千克,腹腔注射,持续3天)预处理可使CO生成增加78%,而用3-甲基胆蒽(80毫克/千克,腹腔注射)预处理则不会,而用氯化钴(40毫克/千克,腹腔注射,持续3天)预处理可使生成减少56%。当在18O2气体下孵育CBD时,分子氧不会掺入CO分子中。8,9-二氢大麻二酚和1,2,8,9-四氢大麻二酚在一定程度上也会产生CO,而大麻二酚单甲醚和二甲醚则会降低产生CO的能力。此外,大麻二酚戊酸酯和油醇会产生CO,而Δ9-四氢大麻酚、大麻酚和d-柠檬烯则不会。因此,CBD的间苯二酚部分对于CO的形成很重要。