All-optical strategies to minimize photobleaching in reversibly switchable fluorescent proteins

G Guillem Marín-Aguilera F Francesca Pennacchietti A Andrea Volpato A Alessia Papalini A Abhilash Kulkarni N Niusha Bagheri (Experimental Biomolecular Physics, Department of Applied Physics, Royal Institute of Technology (Kungliga Tekniska högskolan), Albanova University Center) G Guillaume Minet J Jerker Widengren (Experimental Biomolecular Physics, Department of Applied Physics, Royal Institute of Technology (Kungliga Tekniska högskolan), Albanova University Center) I Ilaria Testa

Abstract

Abstract Photobleaching is a general hurdle of fluorescence-based techniques especially in high-resolution microscopy that relies on prolonged and complex illumination. Strategies to reduce photobleaching require chemical modifications of the cell medium, which often compromise physiological cellular conditions. Here, we outline an all-optical strategy to minimize photobleaching in reversibly switching fluorescent proteins (RSFPs), a class of probes used in super-resolution and protein-multiplexing imaging techniques. By identifying the photobleaching pathways, we develop imaging schemes to increase the number of on-off photoswitching cycles, either modulating the on-switching light or co-irradiating the RSFPs with light at longer wavelengths with respect to fluorescence excitation. We apply the optimized imaging scheme to achieve imaging multiplexing at high-spatiotemporal resolutions and to record longer time-lapse imaging of sub-cellular structures with both confocal microscopy and parallelized RESOLFT nanoscopy.

Article Details

Volume / Issue Vol. 16, Issue 1
Published December 01, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (9)

G

Guillem Marín-Aguilera

F

Francesca Pennacchietti

A

Andrea Volpato

A

Alessia Papalini

A

Abhilash Kulkarni

N

Niusha Bagheri

Experimental Biomolecular Physics, Department of Applied Physics, Royal Institute of Technology (Kungliga Tekniska högskolan), Albanova University Center

G

Guillaume Minet

J

Jerker Widengren

Experimental Biomolecular Physics, Department of Applied Physics, Royal Institute of Technology (Kungliga Tekniska högskolan), Albanova University Center

I

Ilaria Testa