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Easy performance of 6-color confocal immunofluorescence with 4-laser line microscopes

机译:使用4激光线显微镜轻松实现6色共聚焦免疫荧光

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摘要

Confocal laser scanning microscopy is an advanced technique for imaging tissue samples in vitro and in vivo at high optical resolution. The development of new fluorochrome variants do not only make it possible to perform multicolor flow cytometry of single cells, but in combination with high resolution laser scanning systems also to investigate the distribution of cells in lymphoid tissues by confocal immunofluorescence analyses, thus allowing the distinction of various cell populations directly in the tissue. Here, we provide a protocol for the visualization of at least six differently fluorochrome-labeled antibodies at the same time using a conventional confocal laser scanning microscope with four laser lines (405. nm, 488. nm, 555. nm, and 639. nm laser wavelength) in both murine and human tissue samples. We further demonstrate that compensation correction algorithms are not necessary to reduce spillover of fluorochromes into other channels when the used fluorochromes are combined according to their specific emission bands and the varying Stokes shift for co-excited fluorochromes with the same laser line.
机译:共聚焦激光扫描显微镜是一种先进的技术,可以在体外和体内以高光学分辨率对组织样品进行成像。新荧光染料变体的开发不仅使单细胞的多色流式细胞术成为可能,而且与高分辨率激光扫描系统结合使用,还可以通过共聚焦免疫荧光分析来研究淋巴组织中细胞的分布,从而可以区分各种细胞直接在组织中。在这里,我们提供了一种协议,用于使用具有四个激光线(405. nm,488。nm,555。nm和639. nm)的常规共聚焦激光扫描显微镜同时可视化至少六个不同的荧光染料标记的抗体。鼠和人体组织样本中的激光波长)。我们进一步证明,当使用的荧光染料根据其特定的发射谱带和同一激发线的共激发荧光染料变化的斯托克斯位移进行组合时,补偿校正算法对于减少荧光染料向其他通道的溢出是不必要的。

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