Fluorescence nanoscopy with optical sectioning by two-photon induced molecular switching using continuous-wave lasers

2008 | journal article; research paper. A publication with affiliation to the University of Göttingen.

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​Fluorescence nanoscopy with optical sectioning by two-photon induced molecular switching using continuous-wave lasers​
Fölling, J. ; Belov, V. N. ; Riedel, D. ; Schoenle, A. ; Egner, A. ; Eggeling, C.   & Bossi, M. L.  et al.​ (2008) 
ChemPhysChem9(2) pp. 321​-326​.​ DOI: https://doi.org/10.1002/cphc.200700655 

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Authors
Fölling, Jonas ; Belov, Vladimir N. ; Riedel, Dietmar ; Schoenle, Andreas ; Egner, Alexander ; Eggeling, Christian ; Bossi, Mariano L. ; Hell, Stefan 
Abstract
During the lost decade for-field fluorescence microscopy methods have evolved that have resolution for below the wavelength of light. To outperform the limiting role of diffraction, all these methods, in one way or another, switch the ability of a molecule to emit fluorescence. Here we present a novel rhodamine amide that can be photoswitched from a nonfluorescent to a fluorescent state by absorption of one or two photons from a continuous-wave loser beam. This bright marker enables strict control of on/off switching and provides single-molecule localization precision down to 15 nm in the focal plane. Two-photon induced nonlinear photoswitching of this marker with continuous-wave illumination offers optical sectioning with simple loser equipment. Future synthesis of similar compounds holds great promise for cost-effective fluorescence nanoscopy with noninvasive optical sectioning.
Issue Date
2008
Journal
ChemPhysChem 
ISSN
1439-4235
Language
English

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