Azobenzene photoisomerization probes cell membrane viscosity

The viscosity of cell membranes is a crucial parameter that affects the diffusion of small molecules both across and within the lipid membrane and that is related to several diseases. Therefore, the possibility to measure quantitatively membrane viscosity on the nanoscale is of great interest. Here,...

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Veröffentlicht in:Physical chemistry chemical physics : PCCP 2022-04, Vol.24 (15), p.8716-8723
Hauptverfasser: Magni, Arianna, Bondelli, Gaia, Paternò, Giuseppe M, Sardar, Samim, Sesti, Valentina, D'Andrea, Cosimo, Bertarelli, Chiara, Lanzani, Guglielmo
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Sprache:eng
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Zusammenfassung:The viscosity of cell membranes is a crucial parameter that affects the diffusion of small molecules both across and within the lipid membrane and that is related to several diseases. Therefore, the possibility to measure quantitatively membrane viscosity on the nanoscale is of great interest. Here, we report a complete investigation of the photophysics of an amphiphilic membrane-targeted azobenzene (ZIAPIN2) and we propose its use as a viscosity probe for cell membranes. We exploit ZIAPIN2 - photoisomerization to develop a molecular viscometer and to assess the viscosity of bacteria membranes employing time-resolved fluorescence spectroscopy. Fluorescence lifetime measurements of ZIAPIN2 in bacteria suspensions correctly indicate that the membrane viscosity decreases as the temperature of the sample increases. Given the non-homogeneity and the anisotropy of cell membranes, as supported by the photophysical characterization of the probe within the lipid bilayer, we shed new light on the intricate membrane rheology.
ISSN:1463-9076
1463-9084
DOI:10.1039/d1cp05881a