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FLIM for High Content Screening: Thinking Outside of the Box

机译:用于高内涵放映的电影:跳出思维

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摘要

The quantification of fluorescence lifetime has been used by spectroscopists for many years. More recently high throughput screening, which can be thought of as automated, batch spectroscopy, has increasingly used fluorescence lifetime based assays. High content screening's heritage is microscopy rather than spectroscopy - being based on quantification of images rather than bulk measurements of solutions. Microscopy has traditionally borrowed from spectroscopy as microscopy hardware evolves to allow measurements to be scaled from wells or cuvettes to the level of pixels in an image. A good example of this is the recent profusion of 'spectral-confocals' capable of performing spectral analysis at the level of a single pixel. Fluorescence lifetime analysis is another tool from the spectroscopist's toolkit that is starting to be adopted by microscopists in the guise of fluorescence lifetime imaging (FLIM). This aim of this article is to highlight some of the ways in which the use of FLIM is being explored in the biosciences and look forward to how FLIM may be used in high content screening as a hook for novel targets.
机译:荧光寿命的量化已经被光谱学家使用了很多年。最近,可以被认为是自动化的批量光谱学的高通量筛选已经越来越多地使用基于荧光寿命的测定法。高含量筛选的传统是显微镜而不是光谱-基于图像的量化而不是溶液的整体测量。显微镜在传统上是从光谱学中借用的,因为显微镜硬件的发展使得测量范围可以从孔或比色皿缩放到图像中的像素水平。一个很好的例子是最近在“光谱共焦”中能够在单个像素级别执行光谱分析的例子。荧光寿命分析是光谱学家工具包中的另一种工具,微观学家开始以荧光寿命成像(FLIM)的名义采用荧光寿命分析。本文的目的是突出显示在生物科学中探索FLIM使用的一些方式,并期待FLIM如何在高含量筛选中用作新靶标的钩子。

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