Stabilized real-time Brillouin microscopy reveals fractal organization of protein condensates in living cells

C Claudia Testi E Emanuele Pontecorvo C Chiara Bartoli C Chiara Marzaro F Fabrizio Gala L Li Zhang G Giulia Zanini N Noemi D’Abbondanza M Maria Giovanna Garone V Valeria de Turris A Andrea Giuliani G Gaia Di Timoteo I Irene Bozzoni A Alessandro Rosa (Biology Program, The Graduate Center at the City University of New York) G Giancarlo Ruocco

Abstract

Abstract Mechanical alterations of protein condensates are increasingly recognized in the etiology of several neurodegenerative diseases, yet their characterization remains technically challenging. Although Brillouin microscopy could offer a promising solution, its use is hindered by instrumental instabilities demanding frequent adjustments and manual calibrations with reference materials. Here, we present an enhanced Brillouin Microscope that incorporates an electro-optic modulator, serving simultaneously as frequency reference, spectrometer calibrator, and temporal stabilizer. This integration enables robust, real-time spectral stability over multiple days in a fully automated workflow. Using this system, we quantify Brillouin shifts of several protein condensates in living cells and validate our findings with FRAP. The correlation between techniques reveals a fractal internal architecture of the condensates, providing important insights into their physical nature while probing the mechanical behavior of entire compartments containing multiple protein species. Our method offers a unique framework for distinguishing physiological from pathological condensates, paving the way for long-term, user-independent, high-precision mechanical measurements in living cells.

Article Details

Volume / Issue Vol. 17, Issue 1
Published February 05, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (15)

C

Claudia Testi

E

Emanuele Pontecorvo

C

Chiara Bartoli

C

Chiara Marzaro

F

Fabrizio Gala

L

Li Zhang

G

Giulia Zanini

N

Noemi D’Abbondanza

M

Maria Giovanna Garone

V

Valeria de Turris

A

Andrea Giuliani

G

Gaia Di Timoteo

I

Irene Bozzoni

A

Alessandro Rosa

Biology Program, The Graduate Center at the City University of New York

G

Giancarlo Ruocco