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Autonomously Bioluminescent Mammalian Cells for Continuous and Real-time Monitoring of Cytotoxicity

机译:自主生物发光哺乳动物细胞用于连续和实时监测细胞毒性

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摘要

Mammalian cell-based in vitro assays have been widely employed as alternatives to animal testing for toxicological studies but have been limited due to the high monetary and time costs of parallel sample preparation that are necessitated due to the destructive nature of firefly luciferase-based screening methods. This video describes the utilization of autonomously bioluminescent mammalian cells, which do not require the destructive addition of a luciferin substrate, as an inexpensive and facile method for monitoring the cytotoxic effects of a compound of interest. Mammalian cells stably expressing the full bacterial bioluminescence (luxCDABEfrp) gene cassette autonomously produce an optical signal that peaks at 490 nm without the addition of an expensive and possibly interfering luciferin substrate, excitation by an external energy source, or destruction of the sample that is traditionally performed during optical imaging procedures. This independence from external stimulation places the burden for maintaining the bioluminescent reaction solely on the cell, meaning that the resultant signal is only detected during active metabolism. This characteristic makes the lux-expressing cell line an excellent candidate for use as a biosentinel against cytotoxic effects because changes in bioluminescent production are indicative of adverse effects on cellular growth and metabolism. Similarly, the autonomous nature and lack of required sample destruction permits repeated imaging of the same sample in real-time throughout the period of toxicant exposure and can be performed across multiple samples using existing imaging equipment in an automated fashion.
机译:基于哺乳动物细胞的体外测定法已被广泛用作毒理学研究中动物实验的替代方法,但由于基于萤火虫荧光素酶的筛查方法具有破坏性,因此需要平行样品制备的金钱和时间成本很高,因此受到限制。该视频描述了不需要破坏性添加荧光素底物的自主生物发光哺乳动物细胞的利用,将其作为监测目标化合物的细胞毒性作用的廉价且简便的方法。稳定表达完整细菌生物发光(luxCDABEfrp)基因盒的哺乳动物细胞自动产生在490 nm处达到峰值的光信号,而无需添加昂贵且可能会干扰的萤光素底物,外部能源激发或传统上破坏样品在光学成像过程中执行。这种不受外界刺激的独立性使仅在细胞上维持生物发光反应的负担增加,这意味着仅在活跃的新陈代谢过程中才能检测到所产生的信号。该特性使表达勒克斯的细胞系成为抗细胞毒性作用的生物前哨的极佳候选者,因为生物发光产生的变化表明对细胞生长和代谢产生不利影响。类似地,自主性和所需样品销毁的缺乏允许整个有毒物质暴露期间对同一样品进行实时重复成像,并且可以使用现有的成像设备以自动化方式跨多个样品执行。

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