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Optical painting and fluorescence activated sorting of single adherent cells labelled with photoswitchable Pdots

机译:光学绘画和荧光激活的分选标记有光可切换Pdots的单个贴壁细胞

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摘要

The efficient selection and isolation of individual cells of interest from a mixed population is desired in many biomedical and clinical applications. Here we show the concept of using photoswitchable semiconducting polymer dots (Pdots) as an optical ‘painting' tool, which enables the selection of certain adherent cells based on their fluorescence, and their spatial and morphological features, under a microscope. We first develop a Pdot that can switch between the bright (ON) and dark (OFF) states reversibly with a 150-fold contrast ratio on irradiation with ultraviolet or red light. With a focused 633-nm laser beam that acts as a ‘paintbrush' and the photoswitchable Pdots as the ‘paint', we select and ‘paint' individual Pdot-labelled adherent cells by turning on their fluorescence, then proceed to sort and recover the optically marked cells (with 90% recovery and near 100% purity), followed by genetic analysis.
机译:在许多生物医学和临床应用中,需要从混合群体中有效地选择和分离感兴趣的单个细胞。在这里,我们展示了使用可光电转换的半导体聚合物点(Pdots)作为光学“绘画”工具的概念,该工具可以在显微镜下根据某些粘附细胞的荧光以及它们的空间和形态特征对其进行选择。我们首先开发出一种Pdot,它可以在紫外线或红光照射下以150倍的对比度可逆地在亮(ON)和暗(OFF)状态之间切换。用聚焦的633 nm激光束充当“画笔”,将可光开关的Pdots作为“ paint”,我们通过打开其荧光来选择和“绘制”单个Pdot标记的贴壁细胞,然后进行分类和回收。光学标记的细胞(具有90%的回收率和接近100%的纯度),然后进行遗传分析。

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