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用于转染细胞阵列评估和标准化的生物发光成像。

Bioluminescence imaging for assessment and normalization in transfected cell arrays.

作者信息

Pannier Angela K, Ariazi Eric A, Bellis Abigail D, Bengali Zain, Jordan V Craig, Shea Lonnie D

机构信息

Department of Interdepartmental Biological Sciences, Northwestern University, Evanston, Illinois.

出版信息

Biotechnol Bioeng. 2007 Oct 1;98(2):486-97. doi: 10.1002/bit.21477.

Abstract

Transfected cell arrays (TCAs) represent a high-throughput technique to correlate gene expression with functional cell responses. Despite advances in TCAs, improvements are needed for the widespread application of this technology. We have developed a TCA that combines a two-plasmid system and dual-bioluminescence imaging to quantitatively normalize for variability in transfection and increase sensitivity. The two-plasmids consist of: (i) normalization plasmid present within each spot, and (ii) functional plasmid that varies between spots, responsible for the functional endpoint of the array. Bioluminescence imaging of dual-luciferase reporters (renilla, firefly luciferase) provides sensitive and quantitative detection of cellular response, with minimal post-transfection processing. The array was applied to quantify estrogen receptor alpha (ERalpha) activity in MCF-7 breast cancer cells. A plasmid containing an ERalpha-regulated promoter directing firefly luciferase expression was mixed with a normalization plasmid, complexed with cationic lipids and deposited into an array. ER induction mimicked results obtained through traditional assays methods, with estrogen inducing luciferase expression 10-fold over the antiestrogen fulvestrant or vehicle. Furthermore, the array captured a dose response to estrogen, demonstrating the sensitivity of bioluminescence quantification. This system provides a tool for basic science research, with potential application for the development of patient specific therapies.

摘要

转染细胞阵列(TCAs)是一种将基因表达与细胞功能反应相关联的高通量技术。尽管TCAs取得了进展,但该技术的广泛应用仍需改进。我们开发了一种结合双质粒系统和双生物发光成像的TCA,以定量归一化转染变异性并提高灵敏度。这两种质粒包括:(i)每个斑点中存在的归一化质粒,以及(ii)斑点间变化的功能质粒,负责阵列的功能终点。双荧光素酶报告基因(海肾荧光素酶、萤火虫荧光素酶)的生物发光成像提供了对细胞反应的灵敏且定量的检测,转染后处理最少。该阵列用于定量MCF-7乳腺癌细胞中雌激素受体α(ERα)的活性。将含有指导萤火虫荧光素酶表达的ERα调节启动子的质粒与归一化质粒混合,与阳离子脂质复合并沉积到阵列中。ER诱导模拟了通过传统检测方法获得的结果,雌激素诱导荧光素酶表达比抗雌激素氟维司群或溶剂对照高10倍。此外,该阵列捕捉到了对雌激素的剂量反应,证明了生物发光定量的灵敏度。该系统为基础科学研究提供了一种工具,在开发患者特异性疗法方面具有潜在应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/adf7/2648395/d119cebade41/nihms72730f1.jpg

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