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开发一种适用于 384 微孔板格式的双荧光素酶活性和荧光胺蛋白测定法:降低针对内分泌活性物质的人源荧光素酶转激活细胞系的变异性。

Development of a dual luciferase activity and fluorescamine protein assay adapted to a 384 micro-well plate format: Reducing variability in human luciferase transactivation cell lines aimed at endocrine active substances.

机构信息

Columbia Environmental Research Center, U.S. Geological Survey, 4200 New Haven Road, Columbia, MO 65201, USA.

Columbia Environmental Research Center, U.S. Geological Survey, 4200 New Haven Road, Columbia, MO 65201, USA.

出版信息

Toxicol In Vitro. 2018 Mar;47:18-25. doi: 10.1016/j.tiv.2017.10.030. Epub 2017 Nov 8.

DOI:10.1016/j.tiv.2017.10.030
PMID:29104035
Abstract

There is a need to adapt cell bioassays to 384-well and 1536-well formats instead of the traditional 96-well format as high-throughput screening (HTS) demands increase. However, the sensitivity and performance of the bioassay must be re-verified in these higher micro-well plates, and verification of cell health must also be HT (high-throughput). We have adapted two commonly used human breast luciferase transactivation cell bioassays, the recently re-named estrogen agonist/antagonist screening VM7Luc4E2 cell bioassay (previously designated BG1Luc4E2) and the androgen/glucocorticoid screening MDA-kb2 cell bioassay, to 384-well formats for HTS of endocrine-active substances (EASs). This cost-saving adaptation includes a fast, accurate, and easy measurement of protein amount in each well via the fluorescamine assay with which to normalize luciferase activity of cell lysates without requiring any transfer of the cell lysates. Here we demonstrate that by accounting for protein amount in the cell lysates, antagonistic agents can easily be distinguished from cytotoxic agents in the MDA-kb2 and VM7Luc4E2 cell bioassays. Additionally, we demonstrate via the fluorescamine assay improved interpretation of luciferase activity in wells along the edge of the plate (the so-called "edge effect"), thereby increasing usable wells to the entire plate, not just interior wells.

摘要

随着高通量筛选 (HTS) 需求的增加,需要将细胞生物测定法适应于 384 孔和 1536 孔格式,而不是传统的 96 孔格式。但是,必须在这些更高的微孔板中重新验证生物测定法的灵敏度和性能,并且还必须对细胞健康进行 HT(高通量)验证。我们已经将两种常用的人类乳腺萤光素酶转激活细胞生物测定法,最近重新命名的雌激素激动剂/拮抗剂筛选 VM7Luc4E2 细胞生物测定法(以前称为 BG1Luc4E2)和雄激素/糖皮质激素筛选 MDA-kb2 细胞生物测定法,适应于 384 孔格式,用于内分泌活性物质 (EASs) 的 HTS。这种节省成本的适应方法包括通过荧光胺测定法快速,准确且轻松地测量每个孔中的蛋白质含量,从而无需转移细胞裂解物即可对细胞裂解物中的萤光素酶活性进行标准化。在这里,我们证明通过在细胞裂解物中考虑蛋白质含量,可以轻松区分 MDA-kb2 和 VM7Luc4E2 细胞生物测定法中的拮抗剂和细胞毒性剂。此外,我们通过荧光胺测定法证明了改善了对板边缘孔(所谓的“边缘效应”)中萤光素酶活性的解释,从而增加了可用于整个板的孔,而不仅仅是内部孔。

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