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Live-Cell Localization Microscopy with a Fluorogenic and Self-Blinking Tetrazine Probe.


ABSTRACT: Recent developments in fluorescence microscopy call for novel small-molecule-based labels with multiple functionalities to satisfy different experimental requirements. A current limitation in the advancement of live-cell single-molecule localization microscopy is the high excitation power required to induce blinking. This is in marked contrast to the minimal phototoxicity required in live-cell experiments. At the same time, quality of super-resolution imaging depends on high label specificity, making removal of excess dye essential. Approaching both hurdles, we present the design and synthesis of a small-molecule label comprising both fluorogenic and self-blinking features. Bioorthogonal click chemistry ensures fast and highly selective attachment onto a variety of biomolecular targets. Along with spectroscopic characterization, we demonstrate that the probe improves quality and conditions for regular and single-molecule localization microscopy on live-cell samples.

SUBMITTER: Werther P 

PROVIDER: S-EPMC6972563 | biostudies-literature | 2020 Jan

REPOSITORIES: biostudies-literature

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Live-Cell Localization Microscopy with a Fluorogenic and Self-Blinking Tetrazine Probe.

Werther Philipp P   Yserentant Klaus K   Braun Felix F   Kaltwasser Nicolai N   Popp Christoph C   Baalmann Mathis M   Herten Dirk-Peter DP   Wombacher Richard R  

Angewandte Chemie (International ed. in English) 20191118 2


Recent developments in fluorescence microscopy call for novel small-molecule-based labels with multiple functionalities to satisfy different experimental requirements. A current limitation in the advancement of live-cell single-molecule localization microscopy is the high excitation power required to induce blinking. This is in marked contrast to the minimal phototoxicity required in live-cell experiments. At the same time, quality of super-resolution imaging depends on high label specificity, m  ...[more]

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