Summary of 319-Shou-RESORT

SSBD:database
SSBD:database URL
Title
Super-resolution vibrational imaging based on photoswitchable Raman probe
Description
-
Relase date
2024-11-25
Updated date
-
License
CC BY
Kind
Image data based on Experiment
Number of Datasets
11 ( Image datasets: 11, Quantitative data datasets: 0 )
Size of Datasets
11.5 MB ( Image datasets: 11.5 MB, Quantitative data datasets: 0 bytes )

Organism(s)
Drosophila, Homo sapiens
Cell lines(s)
HeLa cell
Gene symbol(s)
NA
Protein name(s)
NA

Datatype
-
Molecular Function (MF)
-
Biological Process (BP)
-
Cellular Component (CC)
mitochondrion
Biological Imaging Method
inelastic scattering of photons, reversible saturable optical Raman transitions (RESORT) microscopy
T scale
-

Image Acquisition
Experiment type
-
Microscope type
-
Acquisition mode
-
Contrast method
-
Microscope model
-
Detector model
-
Objective model
-
Filter set
-

Related paper(s)

Jingwen Shou, Ayumi Komazawa, Yuusaku Wachi, Minoru Kawatani, Hiroyoshi Fujioka, Spencer John Spratt, Takaha Mizuguchi, Kenichi Oguchi, Hikaru Akaboshi, Fumiaki Obata, Ryo Tachibana, Shun Yasunaga, Yoshio Mita, Yoshihiro Misawa, Ryosuke Kojima, Yasuteru Urano, Mako Kamiya, Yasuyuki Ozeki (2023) Super-resolution vibrational imaging based on photoswitchable Raman probe., Science advances, Volume 9, Number 24, pp. eade9118

Published in 2023 Jun 16 (Electronic publication in June 16, 2023, midnight )

(Abstract) Super-resolution vibrational microscopy is promising to increase the degree of multiplexing of nanometer-scale biological imaging because of the narrower spectral linewidth of molecular vibration compared to fluorescence. However, current techniques of super-resolution vibrational microscopy suffer from various limitations including the need for cell fixation, high power loading, or complicated detection schemes. Here, we present reversible saturable optical Raman transitions (RESORT) microscopy, which overcomes these limitations by using photoswitchable stimulated Raman scattering (SRS). We first describe a bright photoswitchable Raman probe (DAE620) and validate its signal activation and depletion characteristics when exposed to low-power (microwatt level) continuous-wave laser light. By harnessing the SRS signal depletion of DAE620 through a donut-shaped beam, we demonstrate super-resolution vibrational imaging of mammalian cells with excellent chemical specificity and spatial resolution beyond the optical diffraction limit. Our results indicate RESORT microscopy to be an effective tool with high potential for multiplexed super-resolution imaging of live cells.
(MeSH Terms)

Contact
Yasuyuki Ozeki, Mako Kamiya , The University of Tokyo, The University of Tokyo , Department of Electrical Engineering and Information Systems, Graduate School of Medicine
Contributors
Jingwen Shou, Ayumi Komazawa, Yuusaku Wachi, Hiroyoshi Fujioka, Minoru Kawatani, Takaha Mizuguchi, Hikaru Akaboshi


Dataset List of 319-Shou-RESORT

#
Dataset ID
Kind
Size
4D View
SSBD:OMERO
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# 11507
Datast ID Fig3A_switch1503
Dataset Kind Image data
Dataset Size 1.9 MB
4D view
SSBD:OMERO
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# 11508
Datast ID Fig3A_switch1523
Dataset Kind Image data
Dataset Size 1.9 MB
4D view
SSBD:OMERO
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# 11509
Datast ID Fig4C_Normal
Dataset Kind Image data
Dataset Size 492.5 KB
4D view
SSBD:OMERO
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# 11510
Datast ID Fig4C_Resort
Dataset Kind Image data
Dataset Size 492.5 KB
4D view
SSBD:OMERO
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# 11511
Datast ID Fig4G_Normal
Dataset Kind Image data
Dataset Size 498.3 KB
4D view
SSBD:OMERO
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# 11512
Datast ID Fig4G_Resort
Dataset Kind Image data
Dataset Size 492.2 KB
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SSBD:OMERO
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# 11513
Datast ID FigS9_switch1503
Dataset Kind Image data
Dataset Size 977.1 KB
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SSBD:OMERO
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# 11514
Datast ID FigS9_switch1527
Dataset Kind Image data
Dataset Size 977.1 KB
4D view
SSBD:OMERO
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# 11515
Datast ID FigS13E_switch1503
Dataset Kind Image data
Dataset Size 1.9 MB
4D view
SSBD:OMERO
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# 11516
Datast ID FigS13E_switch1523
Dataset Kind Image data
Dataset Size 1.9 MB
4D view
SSBD:OMERO
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# 11517
Dataset Kind Image data
Dataset Size 2.6 KB
4D view
SSBD:OMERO
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