Reductively Caged, Photoactivatable DNA-PAINT for High-Throughput Super-resolution Microscopy

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초록

In DNA points accumulation in nanoscale topography (DNA-PAINT), capable of single-molecule localization microscopy with sub-10-nm resolution, the high background stemming from the unbound fluorescent probes in solution limits the imaging speed and throughput. Herein, we reductively cage the fluorescent DNA probes conjugated with a cyanine dye to hydrocyanine, acting as a photoactivatable dark state. The additional dark state from caging lowered the fluorescent background while enabling optically selective activation by total internal reflection (TIR) illumination at 405 nm. These benefits from "reductive caging" helped to increase the localization density or the imaging speed while preserving the image quality. With the aid of high-density analysis, we could further increase the imaging speed of conventional DNA-PAINT by two orders of magnitude, making DNA-PAINT capable of high-throughput super-resolution imaging.

키워드

cyanine dyesDNA-PAINTfluorescent probesreductive cagingsuper-resolution microscopyLOCALIZATION MICROSCOPYBINDING
제목
Reductively Caged, Photoactivatable DNA-PAINT for High-Throughput Super-resolution Microscopy
저자
Jang, SoohyunKim, MingiShim, Sang-Hee
DOI
10.1002/anie.201915377
발행일
2020-07-13
유형
Article
저널명
Angewandte Chemie International Edition
59
29
페이지
11758 ~ 11762