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Time-resolved single-cell analysis of induced and programmed cell death via non-invasive propidium iodide and counterstain perfusion

机译:通过无创碘化丙啶和复染液对诱导和程序性细胞死亡进行时间分辨的单细胞分析

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摘要

Conventional propidium iodide (PI) staining requires the execution of multiple steps prior to analysis, potentially affecting assay results as well as cell vitality. In this study, this multistep analysis method has been transformed into a single-step, non-toxic, real-time method via live-cell imaging during perfusion with 0.1 μM PI inside a microfluidic cultivation device. Dynamic PI staining was an effective live/dead analytical tool and demonstrated consistent results for single-cell death initiated by direct or indirect triggers. Application of this method for the first time revealed the apparent antibiotic tolerance of wild-type Corynebacterium glutamicum cells, as indicated by the conversion of violet fluorogenic calcein acetoxymethyl ester (CvAM). Additional implementation of this method provided insight into the induced cell lysis of Escherichia coli cells expressing a lytic toxin-antitoxin module, providing evidence for non-lytic cell death and cell resistance to toxin production. Finally, our dynamic PI staining method distinguished necrotic-like and apoptotic-like cell death phenotypes in Saccharomyces cerevisiae among predisposed descendants of nutrient-deprived ancestor cells using PO-PRO-1 or green fluorogenic calcein acetoxymethyl ester (CgAM) as counterstains. The combination of single-cell cultivation, fluorescent time-lapse imaging, and PI perfusion facilitates spatiotemporally resolved observations that deliver new insights into the dynamics of cellular behaviour.
机译:常规碘化丙啶(PI)染色需要在分析之前执行多个步骤,从而可能影响测定结果以及细胞活力。在这项研究中,这种多步分析方法已经通过在微流控培养装置内灌注0.1μμMPI的过程中通过活细胞成像转换为单步无毒实时方法。动态PI染色是一种有效的生/死分析工具,并证明了由直接或间接触发引发的单细胞死亡的一致结果。该方法的首次应用揭示了野生型谷氨酸棒杆菌细胞对抗生素的明显耐受性,如紫色荧光钙黄绿素乙酰氧基甲基酯(CvAM)的转化所表明的。此方法的其他实现方式提供了对表达溶菌毒素-抗毒素模块的大肠杆菌细胞诱导细胞裂解的深入了解,为非溶菌细胞死亡和细胞对毒素产生的抗性提供了证据。最后,我们的动态PI染色方法使用PO-PRO-1或绿色荧光钙黄绿素乙酰氧基甲基酯(CgAM)作为反染剂,在营养丰富的祖先细胞的易感后代中区分了酿酒酵母中的坏死样细胞和凋亡样细胞死亡表型。单细胞培养,荧光延时成像和PI灌注的结合促进了时空分辨的观察,从而为细胞行为的动力学提供了新的见解。

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