Department of Nanophysics, Istituto Italiano di Tecnologia, Genova, Italy.
PLoS One. 2013 Jul 2;8(7):e67667. doi: 10.1371/journal.pone.0067667. Print 2013.
Light-sheet microscopy is a useful tool for performing biological investigations of thick samples and it has recently been demonstrated that it can also act as a suitable architecture for super-resolution imaging of thick biological samples by means of individual molecule localization. However, imaging in depth is still limited since it suffers from a reduction in image quality caused by scattering effects. This paper sets out to investigate the advantages of non-linear photoactivation implemented in a selective plane illumination configuration when imaging scattering samples. In particular, two-photon excitation is proven to improve imaging capabilities in terms of imaging depth and is expected to reduce light-sample interactions and sample photo-damage. Here, two-photon photoactivation is coupled to individual molecule localization methods based on light-sheet illumination (IML-SPIM), allowing super-resolution imaging of nuclear pH2AX in NB4 cells.
光片显微镜是一种用于对厚样品进行生物学研究的有用工具,最近已经证明,它也可以作为通过单个分子定位对厚生物样品进行超分辨率成像的合适结构。然而,由于散射效应导致图像质量下降,深度成像仍然受到限制。本文旨在研究在散射样品成像中采用选择性平面照明模式的非线性光活化的优势。具体而言,双光子激发被证明可以提高成像深度的成像能力,并且预计可以减少光-样品相互作用和样品光损伤。在这里,双光子光活化与基于光片照明的单个分子定位方法(IML-SPIM)相结合,允许对 NB4 细胞中的核 pH2AX 进行超分辨率成像。