Three-dimensional nanoscopy of whole cells and tissues with in situ point spread function retrieval

被引:0
|
作者
Fan Xu
Donghan Ma
Kathryn P. MacPherson
Sheng Liu
Ye Bu
Yu Wang
Yu Tang
Cheng Bi
Tim Kwok
Alexander A. Chubykin
Peng Yin
Sarah Calve
Gary E. Landreth
Fang Huang
机构
[1] Purdue University,Weldon School of Biomedical Engineering
[2] Indiana University School of Medicine,Department of Anatomy and Cell Biology
[3] Harvard University,Wyss Institute for Biologically Inspired Engineering
[4] Harvard Medical School,Department of Systems Biology
[5] Purdue University,Department of Biological Sciences
[6] Purdue University,Purdue Institute for Integrative Neuroscience
[7] Purdue University,Birck Nanotechnology Center
[8] Indiana University School of Medicine,Stark Neurosciences Research Institute
[9] Purdue University,Purdue Institute of Inflammation, Immunology and Infectious Disease
来源
Nature Methods | 2020年 / 17卷
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摘要
Single-molecule localization microscopy is a powerful tool for visualizing subcellular structures, interactions and protein functions in biological research. However, inhomogeneous refractive indices inside cells and tissues distort the fluorescent signal emitted from single-molecule probes, which rapidly degrades resolution with increasing depth. We propose a method that enables the construction of an in situ 3D response of single emitters directly from single-molecule blinking datasets, and therefore allows their locations to be pinpointed with precision that achieves the Cramér-Rao lower bound and uncompromised fidelity. We demonstrate this method, named in situ PSF retrieval (INSPR), across a range of cellular and tissue architectures, from mitochondrial networks and nuclear pores in mammalian cells to amyloid-β plaques and dendrites in brain tissues and elastic fibers in developing cartilage of mice. This advancement expands the routine applicability of super-resolution microscopy from selected cellular targets near coverslips to intra- and extracellular targets deep inside tissues.
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页码:531 / 540
页数:9
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