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雄激素依赖性和自主性的静冈癌115细胞体外定量分析方法的开发。

Development of methods for the quantitative in vitro analysis of androgen-dependent and autonomous Shionogi carcinoma 115 cells.

作者信息

Stanley E R, Palmer R E, Sohn U

出版信息

Cell. 1977 Jan;10(1):35-44. doi: 10.1016/0092-8674(77)90137-4.

Abstract

Androgen-dependent and androgen-independent (autonomous), cloned, cultured cell lines of the androgen-dependent mouse mammary adenocarcinoma, Shionogi carcinoma 115, have been established. Growth of the dependent cells requires the presence of androgen, provided they are growth in suspension culture in medium containing dextran-charcoal-treated fetal calf serum. The growth rate of autonomous cells in the presence or absence of DHT is similar to that of dependent cells grown in its presence. An agar culture method has been developed that enables the proportion of dependent and autonomous cells in mixed populations to be determined. Autonomous cells appear in dependent clones, and their frequency increases with increasing time of subculture. Dependent cells form tumors preferentially in male animals and dependent cell cytosols contain significant amounts (approximately 300 femtomoles per mg protein) of a specific androgen-binding macromolecule. Autonomous cells formed tumors equally well in both male and female mice, and autonomous cell cytols contain very low levels (less than or equal to 7 femtomoles per mg protein) of the specific androgen-binding macromolecule(s). These studies delineate a system which can be used to investigate the mechanism of steroid hormone-dependent and autonomous tumor growth, and the transitions between the hormone-dependent and autonomous states.

摘要

已建立了雄激素依赖型和雄激素非依赖型(自主型)的克隆培养细胞系,这些细胞系来自雄激素依赖型小鼠乳腺腺癌——狮王吉氏癌115。依赖型细胞的生长需要雄激素的存在,前提是它们在含有葡聚糖 - 活性炭处理的胎牛血清的培养基中进行悬浮培养。在有无双氢睾酮(DHT)的情况下,自主型细胞的生长速率与在有DHT存在时生长的依赖型细胞相似。已开发出一种琼脂培养方法,可用于确定混合群体中依赖型和自主型细胞的比例。自主型细胞出现在依赖型克隆中,且其频率随传代培养时间的增加而增加。依赖型细胞在雄性动物中优先形成肿瘤,且依赖型细胞的胞质溶胶含有大量(约每毫克蛋白质300飞摩尔)特定的雄激素结合大分子。自主型细胞在雄性和雌性小鼠中形成肿瘤的能力相同,且自主型细胞的胞质溶胶含有极低水平(小于或等于每毫克蛋白质7飞摩尔)的特定雄激素结合大分子。这些研究描绘了一个可用于研究类固醇激素依赖性和自主性肿瘤生长机制以及激素依赖型和自主型状态之间转变的系统。

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