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Merck

MINSTED nanoscopy enters the Ångström localization range.

Nature biotechnology (2022-11-08)
Michael Weber, Henrik von der Emde, Marcel Leutenegger, Philip Gunkel, Sivakumar Sambandan, Taukeer A Khan, Jan Keller-Findeisen, Volker C Cordes, Stefan W Hell
ABSTRACT

Super-resolution techniques have achieved localization precisions in the nanometer regime. Here we report all-optical, room temperature localization of fluorophores with precision in the Ångström range. We built on the concept of MINSTED nanoscopy where precision is increased by encircling the fluorophore with the low-intensity central region of a stimulated emission depletion (STED) donut beam while constantly increasing the absolute donut power. By blue-shifting the STED beam and separating fluorophores by on/off switching, individual fluorophores bound to a DNA strand are localized with σ = 4.7 Å, corresponding to a fraction of the fluorophore size, with only 2,000 detected photons. MINSTED fluorescence nanoscopy with single-digit nanometer resolution is exemplified by imaging nuclear pore complexes and the distribution of nuclear lamin in mammalian cells labeled by transient DNA hybridization. Because our experiments yield a localization precision σ = 2.3 Å, estimated for 10,000 detected photons, we anticipate that MINSTED will open up new areas of application in the study of macromolecular complexes in cells.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
Monoclonal Anti-Lamin A/C antibody produced in mouse, clone 4C11, purified from hybridoma cell culture
Sigma-Aldrich
Anti-Vimentin antibody, Mouse monoclonal, clone V9, purified from hybridoma cell culture
Sigma-Aldrich
Pyranose Oxidase from Coriolus sp., recombinant, expressed in E. coli, ≥2.7 units/mg solid
Roche
Streptavidin, recombinant, liquid, ≥17 units/mg protein, pH range 5.0-9.0