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柠檬草(香茅)对大鼠结肠中由氧化偶氮甲烷诱导的DNA加合物形成及异常隐窝灶的抑制作用。

Inhibitory effects of lemon grass (Cymbopogon citratus Stapf) on formation of azoxymethane-induced DNA adducts and aberrant crypt foci in the rat colon.

作者信息

Suaeyun R, Kinouchi T, Arimochi H, Vinitketkumnuen U, Ohnishi Y

机构信息

Department of Bacteriology, School of Medicine, The University of Tokushima, Kuramoto-cho, Japan.

出版信息

Carcinogenesis. 1997 May;18(5):949-55. doi: 10.1093/carcin/18.5.949.

Abstract

The 80%-ethanol extract of lemon grass (Cymbopogon citratus Stapf), a medicinal plant in Thailand, has been reported to be antimutagenic against various known mutagens in the Salmonella mutation assay. To investigate chemoprevention in an animal carcinogenesis model, we examined inhibitory effects of the lemon grass extract on the formation of azoxymethane (AOM)-induced DNA adducts and aberrant crypt foci (ACF) in the rat colon. One week after the start of the treatment with lemon grass extract at doses of 0.5 or 5 g/kg body wt by gavage, F344 rats received two s.c. injections of 15 mg of AOM per kg body weight at 1 week apart. For DNA adduct analysis of the colon and liver, the rats were killed 12 h after the second AOM injection. The DNA from the liver and colon were used for O6-methylguanine and N7-methylguanine analysis. For ACF analysis in the initiation stage, AOM-injected rats were continuously treated with lemon grass extract and were killed 3 weeks after the second AOM injection. For analysis in the promotion stage the treatment with the lemon grass extract (0.5 g/kg) started 2 weeks after the second AOM injection and continued for 12 weeks until the animals were killed. Lemon grass treatment significantly inhibited DNA adduct formation in both the colonic mucosa and the muscular layer but not in the liver. In addition, lemon grass extract treatment significantly inhibited ACF formation in both the initiation stage and the promotion stage. Especially in the promotion stage, lemon grass treatment inhibited the formation of larger ACF (with four or more crypts per focus), which was predictive of tumor incidence. Furthermore, lemon grass extract inhibited fecal beta-glucuronidase competitively and had antioxidant activity. These results suggest that the lemon grass extract inhibits the release of activated aglycon, methylazoxymethanol, from a glucuronide conjugate in the colon, and decreases the DNA adducts and ACF formation in the rat colon.

摘要

柠檬草(Cymbopogon citratus Stapf)是泰国的一种药用植物,据报道,其80%乙醇提取物在沙门氏菌突变试验中对各种已知诱变剂具有抗诱变作用。为了研究动物致癌模型中的化学预防作用,我们检测了柠檬草提取物对大鼠结肠中由氧化偶氮甲烷(AOM)诱导的DNA加合物形成和异常隐窝灶(ACF)的抑制作用。在用剂量为0.5或5 g/kg体重的柠檬草提取物经口灌胃处理1周后,F344大鼠每隔1周皮下注射两次,每次每千克体重注射15 mg AOM。为了对结肠和肝脏进行DNA加合物分析,在第二次注射AOM后12小时处死大鼠。肝脏和结肠的DNA用于O6-甲基鸟嘌呤和N7-甲基鸟嘌呤分析。对于起始阶段的ACF分析,给注射AOM的大鼠连续给予柠檬草提取物处理,并在第二次注射AOM后3周处死。对于促癌阶段的分析,在第二次注射AOM后2周开始用柠檬草提取物(0.5 g/kg)处理,并持续12周直至处死动物。柠檬草处理显著抑制了结肠黏膜和肌层中的DNA加合物形成,但对肝脏没有影响。此外,柠檬草提取物处理在起始阶段和促癌阶段均显著抑制了ACF的形成。特别是在促癌阶段,柠檬草处理抑制了较大ACF(每个病灶有四个或更多隐窝)的形成,而较大ACF可预测肿瘤发生率。此外,柠檬草提取物具有竞争性抑制粪便β-葡萄糖醛酸酶的作用,并具有抗氧化活性。这些结果表明,柠檬草提取物可抑制结肠中葡糖醛酸苷结合物释放出活化苷元甲基偶氮甲醇,并减少大鼠结肠中DNA加合物和ACF的形成。

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