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丁香酚对微粒体脂质过氧化和单加氧酶活性的抑制作用。

Inhibition of microsomal lipid peroxidation and monooxygenase activities by eugenol.

作者信息

Nagababu E, Lakshmaiah N

机构信息

Biochemistry Division, Indian Council of Medical Research, Jamai Osmania PO, Hyderabad.

出版信息

Free Radic Res. 1994 Apr;20(4):253-66. doi: 10.3109/10715769409147521.

Abstract

Previously we reported that eugenol (4-allyl-2-methoxyphenol) inhibits non-enzymatic peroxidation in liver mitochondria (E. Nagababu and N. Lakshmaiah, 1992, Biochemical Pharmacology. 43, 2393-2400). In the present study, we examined the effect of eugenol on microsomal mixed function oxidase mediated peroxidation using Fe+3-ADP-NADPH, carbon tetrachloride (CCL4)-NADPH and cumene hydroperoxide (CumOOH) systems. In the presence of eugenol the formation of thiobarbituric acid reactive substances (TBARS) was decreased in all the systems (IC50 values: 14 microM for Fe+3-ADP-NADPH, 4.0 microM for CCl4-NADPH and 15 microM for CumOOH). Oxygen uptake was also inhibited to a similar extent with Fe+3-ADP-NADPH and CumOOH systems. A comparative evaluation with other antioxidants showed that in Fe+3-ADP-NADPH and CumOOH systems, the antioxidant efficacy was in the order: butylated hydroxytoluene (BHT) > eugenol > alpha-tocopherol, while in CCl4-NADPH system the order was alpha-tocopherol > BHT > eugenol. Time course of inhibition by eugenol indicated interference in initiation as well as propagation of peroxidation. Eugenol did not inhibit cytochrome P-450 reductase activity but it inhibited P-450 - linked monooxygenase activities such as aminopyrine-N-demethylase, N-nitrosodimethylamine demethylase, benzo(a)pyrene hydroxylase and ethoxyresorufin-O-deethylase to different extents. However, CumOOH supported monooxygenases (aminopyrine-N-demethylase and benzo(a)pyrene hydroxylase) required much higher concentrations of eugenol for inhibition. The concentration of eugenol required to inhibit monooxygenase activities was more than that required to inhibit peroxidation in all the systems. Eugenol elicited type 1 changes in the spectrum of microsomal cytochrome P-450. These results suggest that the inhibitory effect of eugenol on lipid peroxidation is predominantly due to its free radical quenching ability. Eugenol significantly protected against the degradation of cytochrome P-450 during lipid peroxidation with all the systems tested. These findings suggest that eugenol has the potential to be used as a therapeutic antioxidant. Further evaluation may throw more light on this aspect.

摘要

此前我们报道过丁香酚(4-烯丙基-2-甲氧基苯酚)可抑制肝线粒体中的非酶促过氧化反应(E. 纳加巴布和N. 拉克什马亚,1992年,《生化药理学》。43卷,2393 - 2400页)。在本研究中,我们使用Fe +3 - ADP - NADPH、四氯化碳(CCl4)- NADPH和氢过氧化异丙苯(CumOOH)体系,研究了丁香酚对微粒体混合功能氧化酶介导的过氧化反应的影响。在丁香酚存在的情况下,所有体系中硫代巴比妥酸反应性物质(TBARS)的形成均减少(IC50值:Fe +3 - ADP - NADPH体系为14 microM,CCl4 - NADPH体系为4.0 microM,CumOOH体系为15 microM)。Fe +3 - ADP - NADPH和CumOOH体系中的氧气摄取也受到了类似程度的抑制。与其他抗氧化剂的比较评估表明,在Fe +3 - ADP - NADPH和CumOOH体系中,抗氧化效果的顺序为:丁基羟基甲苯(BHT)>丁香酚>α-生育酚,而在CCl4 - NADPH体系中顺序为α-生育酚>BHT>丁香酚。丁香酚抑制作用的时间进程表明其对过氧化反应的引发和传播均有干扰。丁香酚不抑制细胞色素P - 450还原酶活性,但它不同程度地抑制与P - 450相关的单加氧酶活性,如氨基比林 - N - 脱甲基酶、N - 亚硝基二甲胺脱甲基酶、苯并(a)芘羟化酶和乙氧基亚香豆素 - O - 脱乙基酶。然而,CumOOH支持的单加氧酶(氨基比林 - N - 脱甲基酶和苯并(a)芘羟化酶)需要更高浓度的丁香酚才能被抑制。在所有体系中,抑制单加氧酶活性所需的丁香酚浓度均高于抑制过氧化反应所需的浓度。丁香酚使微粒体细胞色素P - 450的光谱发生1型变化。这些结果表明,丁香酚对脂质过氧化的抑制作用主要归因于其自由基淬灭能力。在所有测试体系中,丁香酚均能显著保护细胞色素P - 450在脂质过氧化过程中不被降解。这些发现表明丁香酚有潜力用作治疗性抗氧化剂。进一步评估可能会在这方面提供更多信息。

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