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Long Preservation of AAV-Transduced Fluorescence by a Modified Organic Solvent-Based Clearing Method
by
Masaya Nakamura
, Narihito Nagoshi
, Tao Lu
, Munehisa Shinozaki
, Hideyuki Okano
in
AAV; retrograde tracing; tissue clearing; endogenous fluorescence; light-sheet fluorescence microscopy
/ Brain
/ Imaging, Three-Dimensional
/ Methods
/ Microscopy
/ Microscopy, Fluorescence
/ Morphology
/ Solvents
/ Spinal Cord
/ Three dimensional imaging
2022
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Long Preservation of AAV-Transduced Fluorescence by a Modified Organic Solvent-Based Clearing Method
by
Masaya Nakamura
, Narihito Nagoshi
, Tao Lu
, Munehisa Shinozaki
, Hideyuki Okano
in
AAV; retrograde tracing; tissue clearing; endogenous fluorescence; light-sheet fluorescence microscopy
/ Brain
/ Imaging, Three-Dimensional
/ Methods
/ Microscopy
/ Microscopy, Fluorescence
/ Morphology
/ Solvents
/ Spinal Cord
/ Three dimensional imaging
2022
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
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Long Preservation of AAV-Transduced Fluorescence by a Modified Organic Solvent-Based Clearing Method
by
Masaya Nakamura
, Narihito Nagoshi
, Tao Lu
, Munehisa Shinozaki
, Hideyuki Okano
in
AAV; retrograde tracing; tissue clearing; endogenous fluorescence; light-sheet fluorescence microscopy
/ Brain
/ Imaging, Three-Dimensional
/ Methods
/ Microscopy
/ Microscopy, Fluorescence
/ Morphology
/ Solvents
/ Spinal Cord
/ Three dimensional imaging
2022
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Long Preservation of AAV-Transduced Fluorescence by a Modified Organic Solvent-Based Clearing Method
Journal Article
Long Preservation of AAV-Transduced Fluorescence by a Modified Organic Solvent-Based Clearing Method
2022
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Overview
The development of tissue clearing technologies allows 3D imaging of whole tissues and organs, especially in studies of the central nervous system innervated throughout the body. Although the three-dimensional imaging of solvent-cleared organs (3DISCO) method provides a powerful clearing capacity and high transparency, the rapid quenching of endogenous fluorescence and peroxide removal process decreases its practicability. This study provides a modified method named tDISCO to solve these limitations. The tDISCO protocol can preserve AAV-transduced endogenous EGFP fluorescence for months and achieve high transparency in a fast and simple clearing process. In addition to the brain, tDISCO was applied to other organs and even hard bone tissue. tDISCO also enabled us to visualize the long projection neurons and axons with high resolution. This method provides a fast and simple clearing protocol for 3D visualization of the AAV- transduced long projection neurons throughout the brain and spinal cord.
Publisher
MDPI AG,MDPI
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