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Unbalanced estrogen metabolism in ovarian cancer

机译:卵巢癌中雌激素代谢失衡

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Greater exposure to estrogens is a risk factor for ovarian cancer. To investigate the role of estrogens in ovarian cancer, a spot urine sample and a saliva sample were obtained from 33 women with ovarian cancer and 34 age-matched controls. Thirty-eight estrogen metabolites, conjugates and DNA adducts were analyzed in the urine samples using ultraperformance liquid chromatography/ tandem mass spectrometry, and the ratio of adducts to metabolites and conjugates was calculated for each sample. The ratio of depurinating estrogen-DNA adducts to estrogen metabolites and conjugates was significantly higher in cases compared to controls (p < 0.0001), demonstrating high specificity and sensitivity. DNA was purified from the saliva samples and analyzed for genetic polymorphisms in the genes for two estrogen-metabolizing enzymes. Women with two low-activity alleles of catechol-O-methyltransferase plus one or two high-activity alleles of cytochrome P450 1B1 had higher levels of estrogen-DNA adducts and were more likely to have ovarian cancer. These findings indicate that estrogen metabolism is unbalanced in ovarian cancer and suggest that formation of estrogen-DNA adducts plays a critical role in the initiation of ovarian cancer.
机译:大量暴露于雌激素是卵巢癌的危险因素。为了研究雌激素在卵巢癌中的作用,从33位卵巢癌女性和34位年龄匹配的对照组中获得了尿样和唾液样本。使用超高效液相色谱/串联质谱法分析尿液样品中的38种雌激素代谢物,结合物和DNA加合物,并计算每个样品的加合物与代谢物和结合物的比例。与对照组相比,病例中的嘌呤脱嘌呤-DNA加合物与雌激素代谢产物和缀合物的比例显着更高(p <0.0001),这表明其具有很高的特异性和敏感性。从唾液样品中纯化DNA,并分析两种雌激素代谢酶基因的遗传多态性。具有儿茶酚-O-甲基转移酶的两个低活性等位基因加上细胞色素P450 1B1的一个或两个高活性等位基因的女性,雌激素-DNA加合物的含量较高,并且更可能患有卵巢癌。这些发现表明,卵巢癌中雌激素的代谢不平衡,并表明雌激素-DNA加合物的形成在卵巢癌的发病中起关键作用。

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