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Image artifacts in Single Molecule Localization Microscopy: why optimization of sample preparation protocols matters

机译:单分子定位显微镜中的图像伪影:为什么优化样品制备方案很重要

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摘要

Single molecule localization microscopy (SMLM) techniques allow for sub-diffraction imaging with spatial resolutions better than 10?nm reported. Much has been discussed relating to different variations of SMLM and all-inclusive microscopes can now be purchased, removing the need for in-house software or hardware development. However, little discussion has occurred examining the reliability and quality of the images being produced, as well as the potential for overlooked preparative artifacts. As a result of the up to an order-of-magnitude improvement in spatial resolution, substantially more detail is observed, including changes in distribution and ultrastructure caused by the many steps required to fix, permeabilize, and stain a sample. Here we systematically investigate many of these steps including different fixatives, fixative concentration, permeabilization concentration and timing, antibody concentration, and buffering. We present three well-optimized fixation protocols for staining microtubules, mitochondria and actin in a mammalian cell line and then discuss various artifacts in relation to images obtained from samples prepared using the protocols. The potential for such errors to go undetected in SMLM images and the complications in defining a ‘good’ image using previous parameters applied to confocal microscopy are also discussed.
机译:单分子定位显微镜技术(SMLM)允许亚衍射成像,其空间分辨率优于所报道的10?nm。关于SMLM的不同变型,已经进行了很多讨论,现在可以购买全包式显微镜,从而无需内部软件或硬件开发。但是,几乎没有讨论过检查所生成图像的可靠性和质量以及被忽视的制备伪影的可能性。由于空间分辨率提高了一个数量级,因此可以观察到更多的细节,包括分布,超微结构的变化,这些变化是由固定,渗透和染色样品所需的许多步骤引起的。在这里,我们系统地研究了许多这些步骤,包括不同的固定剂,固定剂浓度,通透性浓度和时间,抗体浓度和缓冲液。我们为哺乳动物细胞系中的微管,线粒体和肌动蛋白染色提供了三种优化的固定方案,然后讨论了与使用方案制备的样品获得的图像有关的各种伪影。还讨论了在SMLM图像中无法检测到此类错误的可能性,以及使用先前用于共聚焦显微镜的参数来定义“好”图像的复杂性。

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