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High‐resolution imaging of fluorescent whole mouse brains using stabilised organic media (sDISCO)
Author(s) -
Hahn Christian,
Becker Klaus,
Saghafi Saiedeh,
Pende Marko,
Avdibašić Alma,
Foroughipour Massih,
Heinz Daniel E.,
Wotjak Carsten T.,
Dodt HansUlrich
Publication year - 2019
Publication title -
journal of biophotonics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.877
H-Index - 66
eISSN - 1864-0648
pISSN - 1864-063X
DOI - 10.1002/jbio.201800368
Subject(s) - fluorescence , benzyl benzoate , chemistry , green fluorescent protein , benzyl alcohol , clearing , biophysics , biology , biochemistry , organic chemistry , optics , physics , finance , economics , gene , catalysis
Optical tissue clearing using dibenzyl ether (DBE) or BABB (1 part benzyl alcohol and 2 parts benzyl benzoate) is easy in application and allows deep‐tissue imaging of a wide range of specimens. However, in both substances, optical clearing and storage times of enhanced green fluorescent protein (EGFP)‐expressing specimens are limited due to the continuous formation of peroxides and aldehydes, which severely quench fluorescence. Stabilisation of purified DBE or BABB by addition of the antioxidant propyl gallate efficiently preserves fluorescence signals in EGFP‐expressing samples for more than a year. This enables longer clearing times and improved tissue transparency with higher fluorescence signal intensity. The here introduced clearing protocol termed stabilised DISCO allows to image spines in a whole mouse brain and to detect faint changes in the activity‐dependent expression pattern of tdTomato.
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