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Quantitative Localization Microscopy: Effects of Photophysics and Labeling Stoichiometry
Author(s) -
Robert P. J. Nieuwenhuizen,
Mark Bates,
Anna Szymborska,
Keith A. Lidke,
Bernd Rieger,
Sjoerd Stallinga
Publication year - 2015
Publication title -
plos one
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.99
H-Index - 332
ISSN - 1932-6203
DOI - 10.1371/journal.pone.0127989
Subject(s) - fluorophore , microscopy , stoichiometry , fluorescence , biophysics , fluorescence microscope , chemistry , materials science , analytical chemistry (journal) , biological system , biology , optics , physics , chromatography , organic chemistry
Quantification in localization microscopy with reversibly switchable fluorophores is severely hampered by the unknown number of switching cycles a fluorophore undergoes and the unknown stoichiometry of fluorophores on a marker such as an antibody. We overcome this problem by measuring the average number of localizations per fluorophore, or generally per fluorescently labeled site from the build-up of spatial image correlation during acquisition. To this end we employ a model for the interplay between the statistics of activation, bleaching, and labeling stoichiometry. We validated our method using single fluorophore labeled DNA oligomers and multiple-labeled neutravidin tetramers where we find a counting error of less than 17% without any calibration of transition rates. Furthermore, we demonstrated our quantification method on nanobody- and antibody-labeled biological specimens.

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