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Fluorescence lifetime biosensing with DNA microarrays and a CMOS-SPAD imager

机译:DNA微阵列和CMOS-SPAD的荧光寿命生物传感 成像仪

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摘要

Fluorescence lifetime of dye molecules is a sensitive reporter on local microenvironment which is generally independent of fluorophores concentration and can be used as a means of discrimination between molecules with spectrally overlapping emission. It is therefore a potentially powerful multiplexed detection modality in biosensing but requires extremely low light level operation typical of biological analyte concentrations, long data acquisition periods and on-chip processing capability to realize these advantages. We report here fluorescence lifetime data obtained using a CMOS-SPAD imager in conjunction with DNA microarrays and TIRF excitation geometry. This enables acquisition of single photon arrival time histograms for a 320 pixel FLIM map within less than 26 seconds exposure time. From this, we resolve distinct lifetime signatures corresponding to dye-labelled HCV and quantum-dot-labelled HCMV nucleic acid targets at concentrations as low as 10 nM.
机译:染料分子的荧光寿命是局部微环境中的敏感报告分子,通常与荧光团浓度无关,可以用作区分光谱重叠发射的分子的手段。因此,它在生物传感中是潜在强大的多路复用检测方式,但需要极低的光水平操作(典型的生物分析物浓度),较长的数据采集时间和片上处理能力才能实现这些优势。我们在这里报告使用CMOS-SPAD成像仪结合DNA微阵列和TIRF激发几何获得的荧光寿命数据。这样就可以在不到26秒的曝光时间内获取320像素FLIM图的单个光子到达时间直方图。由此,我们可以解决低至10 nM浓度下与染料标记的HCV和量子点标记的HCMV核酸靶标相对应的不同寿命标记。

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