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多胺与培养的大鼠乳腺癌中雌二醇调节生长因子的合成

Polyamines and the synthesis of estradiol-regulated growth factors in rat mammary cancer in culture.

作者信息

Manni A, Wright C, Luk G D, Davis G, Demers L M

出版信息

Breast Cancer Res Treat. 1987;9(1):45-51. doi: 10.1007/BF01806693.

Abstract

We have recently provided evidence to suggest that the polyamine pathway plays an essential role in the expression of the growth-promoting effect of estradiol (E2) regulated growth factors in the N-nitrosomethylurea (NMU) induced rat mammary tumor cultured in vitro in the soft agar clonogenic assay. To further explore the interaction between the polyamine pathway and autocrine control of tumor growth by E2, we tested whether, in our system, polyamines play a role in the synthesis of E2-regulated growth factors. Conditioned medium (CM) obtained from tumors treated with E2 and the polyamine biosynthesis inhibitor alpha-difluoromethyl-ornithine (DFMO) (1 mM) no longer exhibited the colony-stimulating effect which was consistently observed with E2-CM. Such growth promoting activity was restored in a dose-dependent fashion with CM obtained from tumors treated with E2, DFMO, and increasing concentrations of spermidine (from 1 to 100 microM). Conditioned medium obtained from tumors treated with DFMO with and without spermidine in the absence of E2 had no discernible effects on colony formation. The colony stimulating effect of the CM employed could not be accounted for by the contaminating presence in the media of E2, DFMO, or polyamines. These results indicate that, in our system, the polyamine pathway plays an important role in the synthesis of E2-regulated growth factors.

摘要

我们最近提供的证据表明,在体外软琼脂克隆形成试验中培养的N-亚硝基甲基脲(NMU)诱导的大鼠乳腺肿瘤中,多胺途径在雌二醇(E2)调节生长因子的促生长作用表达中起着至关重要的作用。为了进一步探索多胺途径与E2对肿瘤生长的自分泌控制之间的相互作用,我们测试了在我们的系统中多胺是否在E2调节生长因子的合成中发挥作用。用E2和多胺生物合成抑制剂α-二氟甲基鸟氨酸(DFMO)(1 mM)处理的肿瘤获得的条件培养基(CM)不再表现出用E2-CM始终观察到的集落刺激作用。用E2、DFMO和浓度不断增加的亚精胺(从1到100 microM)处理的肿瘤获得的CM以剂量依赖性方式恢复了这种促生长活性。在没有E2的情况下,用DFMO处理且添加或不添加亚精胺的肿瘤获得的条件培养基对集落形成没有明显影响。所用CM的集落刺激作用不能用培养基中污染存在的E2、DFMO或多胺来解释。这些结果表明,在我们的系统中,多胺途径在E2调节生长因子的合成中起着重要作用。

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