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Use of Fluorescence Lifetime Imaging Microscopy (FLIM) as a Timer of Cell Cycle S Phase

机译:使用荧光寿命成像显微镜(FLIM)作为细胞周期S期的计时器

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摘要

Incorporation of thymidine analogues in replicating DNA, coupled with antibody and fluorophore staining, allows analysis of cell proliferation, but is currently limited to monolayer cultures, fixed cells and end-point assays. We describe a simple microscopy imaging method for live real-time analysis of cell proliferation, S phase progression over several division cycles, effects of anti-proliferative drugs and other applications. It is based on the prominent (~ 1.7-fold) quenching of fluorescence lifetime of a common cell-permeable nuclear stain, Hoechst 33342 upon the incorporation of 5-bromo-2’-deoxyuridine (BrdU) in genomic DNA and detection by fluorescence lifetime imaging microscopy (FLIM). We show that quantitative and accurate FLIM technique allows high-content, multi-parametric dynamic analyses, far superior to the intensity-based imaging. We demonstrate its uses with monolayer cell cultures, complex 3D tissue models of tumor cell spheroids and intestinal organoids, and in physiological study with metformin treatment.
机译:将胸苷类似物掺入复制的DNA中,再加上抗体和荧光团染色,可以分析细胞增殖,但目前仅限于单层培养,固定细胞和终点检测。我们描述了一种简单的显微镜成像方法,用于实时实时分析细胞增殖,几个分裂周期的S期进程,抗增殖药的作用和其他应用。它基于将常见的可渗透细胞的核染色剂Hoechst 33342的荧光寿命显着(〜1.7倍)猝灭,即将5-溴-2'-脱氧尿苷(BrdU)掺入基因组DNA并通过荧光寿命检测成像显微镜(FLIM)。我们证明了定量和精确的FLIM技术可以进行高含量,多参数的动态分析,远优于基于强度的成像。我们证明了其与单层细胞培养,肿瘤细胞球体和肠类器官的复杂3D组织模型以及在用二甲双胍治疗的生理研究中的用途。

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