内分泌干扰物的重组细胞生物测定:用于检测雌激素和抗雌激素化学物质的稳定转染人卵巢细胞系的建立。

In vitro & molecular toxicology Pub Date : 2000-01-01
J M Rogers, M S Denison
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引用次数: 0

摘要

近年来,各种化合物破坏正常内分泌稳态的能力,并可能破坏生物体的生理和生殖能力,引起了全世界的关注。为了鉴定这些化合物,并研究它们发挥作用的机制,我们构建了含有萤火虫荧光素酶基因的报告质粒载体,在激素诱导的雌激素、雄激素或视黄酸反应性DNA增强子元件的控制下。将这些载体瞬时转染到适当的含有受体的细胞系中,发现它们能够通过诱导荧光素酶对各自的激素作出反应。在这里,我们描述了重组人卵巢癌细胞系(BG-1)的开发和优化,该细胞系已经稳定地转染了雌激素反应性荧光素酶报告质粒。得到的重组细胞系(BG1Luc4E(2))对低至1pm浓度的17 -雌二醇有反应。BG1Luc4E(2)细胞作为环境雌激素的生物测定筛选系统,其对已知的异种雌激素的反应,以及两种多氯联苯(2,3',4,4 ','-四氯联苯和2,2',3,5',6-五氯联苯)作为新型雌激素化学物质的推测,证明了其效用。这些细胞生物测定系统用于快速筛选,鉴定和表征内分泌干扰化学物质。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Recombinant cell bioassays for endocrine disruptors: development of a stably transfected human ovarian cell line for the detection of estrogenic and anti-estrogenic chemicals.

The ability of a variety of compounds to disrupt normal endocrine homeostasis, and potentially, the physiological and reproductive capacity of an organism, has gained worldwide attention in recent years. In an attempt to identify such compounds, and to examine the mechanism(s) by which they may exert their actions, we have constructed reporter plasmid vectors that contain the firefly luciferase gene under hormone-inducible control of estrogen-, androgen-, or retinoic acid-responsive DNA enhancer elements. Transient transfection of these vectors into appropriate receptor-containing cell lines revealed their ability to respond to their respective hormones with the induction of luciferase. Here, we describe development and optimization of a recombinant human ovarian carcinoma (BG-1) line, which has been stably transfected with the estrogen responsive luciferase reporter plasmid. The resulting recombinant cell line (BG1Luc4E(2)) responds to 17beta-estradiol at concentrations as low as 1 pM. The utility of BG1Luc4E(2) cells as a bioassay screening system for environmental estrogens was demonstrated by their response to known xenoestrogens, and also by the putative identification of two polychlorinated biphenyls (2,3',4, 4,'-tetrachlorobiphenyl and 2,2',3,5',6-pentachlorobiphenyl) as novel estrogenic chemicals. These cell bioassay systems have applications for rapid screening, identification, and characterization of endocrine disrupting chemicals.

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