在IncuCyte®成像系统中使用荧光染料转染的细胞实时可视化癌细胞死亡,存活和增殖。

Journal of biological methods Pub Date : 2020-06-12 eCollection Date: 2020-01-01 DOI:10.14440/jbm.2020.323
Thomas M Lanigan, Stephanie M Rasmussen, Daniel P Weber, Kalana S Athukorala, Phillip L Campbell, David A Fox, Jeffrey H Ruth
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引用次数: 7

摘要

癌症免疫疗法是一种快速发展和可行的方法来治疗癌症与更传统的形式的治疗。实时细胞分析技术可以检测癌细胞和免疫系统细胞之间的动态相互作用,这对于评估新的治疗方法变得越来越重要。在本报告中,我们使用IncuCyte®成像系统来研究各种免疫细胞对癌细胞系的杀伤潜力。IncuCyte®系统跟踪活细胞,用红色荧光蛋白标记,和细胞死亡,如caspase-3/7试剂所示,在凋亡途径激活时产生绿色荧光信号。尽管这种方法很强大,但获得商业荧光癌细胞系是昂贵的,而且在可用的细胞系范围内是有限的。为了克服这一障碍,我们开发了一种廉价的方法,使用表达核定位mKate2红色荧光蛋白的慢病毒构建物来稳定地标记癌细胞。我们证明这种方法在标记各种细胞系方面是有效的,允许分析不同的癌症以及同一类型癌症的不同细胞系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Real time visualization of cancer cell death, survival and proliferation using fluorochrome-transfected cells in an IncuCyte<sup>®</sup> imaging system.

Real time visualization of cancer cell death, survival and proliferation using fluorochrome-transfected cells in an IncuCyte<sup>®</sup> imaging system.

Real time visualization of cancer cell death, survival and proliferation using fluorochrome-transfected cells in an IncuCyte<sup>®</sup> imaging system.

Real time visualization of cancer cell death, survival and proliferation using fluorochrome-transfected cells in an IncuCyte® imaging system.

Cancer immunotherapy is a rapidly advancing and viable approach to treating cancer along with more traditional forms of therapy. Real-time cell analysis technologies that examine the dynamic interactions between cancer cells and the cells of the immune system are becoming more important for assessment of novel therapeutics. In this report, we use the IncuCyte® imaging system to study the killing potential of various immune cells on cancer cell lines. The IncuCyte® system tracks living cells, labeled by a red fluorescent protein, and cell death, as indicated by the caspase-3/7 reagent, which generates a green fluorescent signal upon activation of apoptotic pathways. Despite the power of this approach, obtaining commercially fluorescent cancer cell lines is expensive and limited in the range of cell lines that are available. To overcome this barrier, we developed an inexpensive method using a lentiviral construct expressing nuclear localized mKate2 red fluorescent protein to stably label cancer cells. We demonstrate that this method is effective in labeling a wide variety of cell lines, allowing for analyses of different cancers as well as different cell lines of the same type of cancer.

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