| Literature DB >> 29544505 |
Sangjun Park1,2,3, Wooyoung Kang1,2,3, Yeong-Dae Kwon3,4, Jaehoon Shim5, Siyong Kim5, Bong-Kiun Kaang5, Sungchul Hohng6,7,8.
Abstract
Three-dimensional (3D) reconstruction of thick samples using superresolution fluorescence microscopy remains challenging due to high level of background noise and fast photobleaching of fluorescence probes. We develop superresolution fluorescence microscopy that can reconstruct 3D structures of thick samples with both high localization accuracy and no photobleaching problem. The background noise is reduced by optically sectioning the sample using line-scan confocal microscopy, and the photobleaching problem is overcome by using the DNA-PAINT (Point Accumulation for Imaging in Nanoscale Topography). As demonstrations, we take 3D superresolution images of microtubules of a whole cell, and two-color 3D images of microtubules and mitochondria. We also present superresolution images of chemical synapse of a mouse brain section at different z-positions ranging from 0 μm to 100 μm.Entities:
Keywords: DNA-PAINT; Line-scan confocal microscopy; Single-molecule localization microscopy; Superresolution microscopy; Three-dimensional reconstruction
Mesh:
Year: 2018 PMID: 29544505 PMCID: PMC5856285 DOI: 10.1186/s13041-018-0361-z
Source DB: PubMed Journal: Mol Brain ISSN: 1756-6606 Impact factor: 4.041
Fig. 1Schematic diagram of the microscope. L: lens, CL: cylindrical lens, OL: objective lens, M: mirror, DM: dichroic mirror, GM: galvanometric mirror, BPF: band pass filter
Fig. 2Superresolution, 3D reconstruction of microtubules of a whole COS-7 cell. a Perspective view of the whole-cell super-resolution image. b Top-view image of (a). c-e Maximum intensity projection images of black-dashed box in (b) at indicated z-regions. f Zoom-in image of the red box in (d). g-i Cross sectional images at three different positions in (f). In the images of g-i, the z-direction is aligned to the vertical direction
Fig. 3Multi-color imaging of microtubule and mitochondria. a Two-color super-resolution images of microtubule (green) and mitochondria (red). The image was acquired from z = 0–500 nm. b Zoom-in image of the yellow box in (a). c-d Cross-sectional images for white lines of (b). e-h Maximum intensity projection images for different z-regions of (b). i Zoom-in image of mitochondria of the blue box in (a). j Optical z-axis sectional image in the range of z = 0 nm to 150 nm in (i). k Cross-sectional image for white line of (i). In the images of (c), (d), and (k), the z-direction is aligned to the vertical direction
Fig. 4Superresolution imaging of thick brain tissue. a Maximum intensity projection superresolution image of presynapse (green) and postsynapse (red) of a 100 μm-thick mouse brain tissue. The image was acquired from z = 18.0 ~ 18.6 μm. b Perspective view of the yellow box in (a). c Side-view of the yellow box in (a). d-i Superresolution synapse images at different z-positions indicated