首页> 外文期刊>The Journal of Steroid Biochemistry and Molecular Biology >2-Methoxymethylestradiol: a new 2-methoxy estrogen analog that exhibits antiproliferative activity and alters tubulin dynamics.
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2-Methoxymethylestradiol: a new 2-methoxy estrogen analog that exhibits antiproliferative activity and alters tubulin dynamics.

机译:2-甲氧基甲基雌二醇:一种新型的2-甲氧基雌激素类似物,具有抗增殖活性并改变微管蛋白动力学。

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摘要

An estradiol metabolite, 2-methoxyestradiol (2-MeOE(2)), has shown antiproliferative effects in both hormone-dependent and hormone-independent breast cancer cells. Previously, a series of 2-hydroxyalkyl estradiol analogs had been synthesized in our laboratories as potential probes for comparison of estrogen receptor (ER)-mediated versus non-ER-mediated effects in breast cancer cells. A methoxy derivative of 2-hydroxymethyl estradiol was prepared for biological evaluation and comparison with 2-MeOE(2). Estrogenic activity of the synthetic analogs was evaluated in two ways, one by examining affinity of the analogs for the estrogen receptor in MCF-7 cells and the other by examining the ability of the analogs to induce estrogen-responsive gene expression. The analog, 2-methoxymethyl estradiol (2-MeOMeE(2)), demonstrated weak affinity for the estrogen receptor (0.9% of estradiol) and weak ability to stimulate estrogen-induced expression of the pS2 gene (0.02% of estradiol). Antitumor activity was evaluated both in vitro and in vivo. The steroidal nucleus seems to be an attractive target for developing novel tubulin polymerization inhibitors. Additionally, such steroidal compounds may have low toxicity compared to the natural products known to interact with tubulin. Interestingly, 2-MeOMeE(2) inhibited tubulin polymerization in vitro at concentrations of 1 and 3 microM and was more effective than 2-MeOE(2). In cells, 2-MeOMeE(2) was effective in suppressing growth and inducing cytotoxicity in MCF-7 and MDA-MB-231 breast cancer cells. The cytotoxic effects of 2-MeOMeE(2) are associated with alterations in tubulin dynamics, with the frequent appearance of misaligned chromosomes, a significant mitotic delay, and the formation of multinucleated cells. In comparison, 2-MeOE(2) was more effective than 2-MeOMeE(2) in producing cytotoxicity and altering tubulin dynamics in intact cells. Assessment of in vivo antitumor activity was performed in athymic mice containing human breast tumor xenografts. Nude mice bearing MDA-MB-435 tumor xenografts were treated i.p. with 50 mg/kg per day of 2-MeOMeE(2) or vehicle control for 45 days. Treatment with 2-MeOMeE(2) resulted in an approximate 50% reduction in mean tumor volume at treatment day 45 when compared to control animals and had no effect on animal weight. Thus, 2-MeOMeE(2) is an estrogen analog with minimal estrogenic properties that demonstrates antiproliferative effects both in vitro and in the human xenograft animal model of human breast cancer.
机译:雌二醇代谢物2-甲氧基雌二醇(2-MeOE(2))在激素依赖型和激素依赖型乳腺癌细胞中均显示出抗增殖作用。以前,在我们的实验室中已经合成了一系列2-羟烷基雌二醇类似物,作为比较乳腺癌细胞中雌激素受体(ER)介导的和非ER介导的作用的潜在探针。制备2-羟甲基雌二醇的甲氧基衍生物用于生物学评估并与2-MeOE(2)进行比较。用两种方法评估了合成类似物的雌激素活性,一种是通过检查类似物对MCF-7细胞中雌激素受体的亲和力,另一种是通过检查类似物诱导雌激素反应性基因表达的能力。类似物2-甲氧基甲基雌二醇(2-MeOMeE(2))对雌激素受体的亲和力较弱(雌二醇的0.9%),刺激雌激素诱导的pS2基因表达的能力较弱(雌二醇的0.02%)。在体外和体内均评估了抗肿瘤活性。类固醇核似乎是开发新型微管蛋白聚合抑制剂的有吸引力的目标。另外,与已知与微管蛋白相互作用的天然产物相比,此类甾族化合物可能具有低毒性。有趣的是,2-MeOMeE(2)在体外以1和3 microM的浓度抑制微管蛋白的聚合,比2-MeOE(2)更有效。在细胞中,2-MeOMeE(2)可有效抑制MCF-7和MDA-MB-231乳腺癌细胞的生长并诱导其细胞毒性。 2-MeOMeE(2)的细胞毒性作用与微管蛋白动力学改变有关,染色体错位的频繁出现,明显的有丝分裂延迟和多核细胞的形成。相比之下,2-MeOE(2)比2-MeOMeE(2)在产生细胞毒性和改变完整细胞中微管蛋白动力学方面更有效。在含有人乳腺肿瘤异种移植物的无胸腺小鼠中进行体内抗肿瘤活性的评估。腹膜内处理携带MDA-MB-435肿瘤异种移植物的裸鼠。每天服用50 mg / kg的2-MeOMeE(2)或使用载体控制45天。与对照动物相比,在治疗第45天使用2-MeOMeE(2)进行治疗可使平均肿瘤体积减少约50%,并且对动物体重没有影响。因此,2-MeOMeE(2)是具有最小雌激素特性的雌激素类似物,在体外和人类乳腺癌的人类异种移植动物模型中均显示出抗增殖作用。

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