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Synthesis and reactivity of the catechol metabolites from the equine estrogen, 8,9-dehydroestrone.

机译:马雌激素8,9-脱氢雌酮的邻苯二酚代谢产物的合成和反应性。

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The risk factors for women developing breast and endometrial cancers are all associated with a lifetime of estrogen exposure. Estrogen replacement therapy in particular has been correlated with an increased cancer risk. Previously, we showed that the equine estrogens equilin and equilenin, which are major components of the widely prescribed estrogen replacement formulation Premarin, are metabolized to highly cytotoxic quinoids which caused oxidative stress and alkylation of DNA in vitro [Bolton, J. L., Pisha, E., Zhang, F., and Qiu, S. Chem. Res. Toxicol. 1998, 11, 1113-1127]. In this study, we have synthesized 8,9-dehydroestrone (a third equine estrogen component of Premarin) and its potential catechol metabolites, 4-hydroxy-8,9-dehydroestrone and 2-hydroxy-8,9-dehydroestrone. Both 2-hydroxy-8,9-dehydroestrone and 4-hydroxy-8,9-dehydroestrone were oxidized by tyrosinase or rat liver microsomes to o-quinones which reacted with GSH to give one mono-GSH conjugate and two di-GSH conjugates. Like endogenous estrogens, 8,9-dehydroestrone was primarily converted by rat liver microsomes to the 2-hydroxylated rather than the 4-hydroxylated o-quinone GSH conjugates; the ratio of 2-hydroxy-8,9-dehydroestrone versus 4-hydroxy-8,9-dehydroestrone was 6:1. Also in contrast to experiments with equilin, 4-hydroxyequilenin was not observed in microsomal incubations with 8,9-dehydroestrone or its catechols. The behavior of 2-hydroxy-8,9-dehydroestrone was found to be more complex than 4-hydroxy-8,9-dehydroestrone as GSH conjugates resulting from 2-hydroxy-8,9-dehydroestrone were detected even without oxidative enzyme catalysis. Under physiological conditions, 2-hydroxy-8,9-dehydroestrone isomerized to 2-hydroxyequilenin to form the very stable 2-hydroxyequilenin catechol; however, 4-hydroxy-8,9-dehydroestrone was found to be stable under similar conditions. Finally, preliminary studies conducted with the human breast tumor S-30 cell lines demonstrated that the catechol metabolites of 8,9-dehydroestrone were much less toxic than 4-hydroxyequilenin (20-40-fold). These results suggest that the catechol metabolites of 8,9-dehydroestrone may have the ability to cause cytotoxicity in vivo primarily through formation of o-quinones; however, most of the adverse effects of Premarin estrogens are likely due to formation of 4-hydroxyequilenin o-quinone from equilin and equilenin.
机译:女性患乳腺癌和子宫内膜癌的危险因素都与雌激素的终生暴露有关。特别是雌激素替代疗法与癌症风险增加相关。以前,我们表明马雌激素马雌马鞭草素和马马列宁是广泛使用的雌激素替代制剂Premarin的主要成分,它们被代谢为高度细胞毒性的醌类化合物,在体外引起DNA的氧化应激和烷基化[Bolton,JL,Pisha,E. ,Zhang F.和Qiu S. Chem。 Res。毒药。 1998,11,1113-1127]。在这项研究中,我们合成了8,9-脱氢雌酮(Premarin的第三种马雌激素成分)及其潜在的儿茶酚代谢产物4-羟基-8,9-脱氢雌酮和2-羟基-8,9-脱氢雌酮。 2-羟基-8,9-脱氢雌酮和4-羟基-8,9-脱氢雌酮都被酪氨酸酶或大鼠肝微粒体氧化成邻醌,后者与GSH反应生成一个单GSH结合物和两个di-GSH结合物。像内源性雌激素一样,8,9-脱氢雌酮主要是由大鼠肝脏微粒体转化为2-羟基化而不是4-羟基化的邻醌GSH偶联物。 2-羟基-8,9-脱氢雌酮与4-羟基-8,9-脱氢雌酮之比为6∶1。另外,与马equi素的实验相反,在与8,9-脱氢雌酮或其儿茶酚的微粒体温育中未观察到4-羟基e烯。发现2-羟基-8,9-脱氢雌酮的行为比4-羟基-8,9-脱氢雌酮更复杂,因为即使没有氧化酶催化也检测到由2-羟基-8,9-脱氢雌酮产生的GSH缀合物。在生理条件下,将2-羟基-8,9-脱氢雌酮异构化为2-羟基e烯酮,形成非常稳定的2-羟基e烯邻苯二酚;然而,发现4-羟基-8,9-脱氢雌酮在相似条件下是稳定的。最后,对人乳腺肿瘤S-30细胞系进行的初步研究表明,8,9-脱氢雌酮的儿茶酚代谢物的毒性远低于4-羟基鹰嘴豆素(20-40倍)。这些结果表明8,9-脱氢雌酮的儿茶酚代谢物可能具有通过体内形成邻醌而引起细胞毒性的能力。然而,Premarin雌激素的大多数不利作用可能是由于由马鞭草素和马鞭草素形成的4-羟基马鞭草酮邻醌。

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