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Measuring plasma membrane fluidity using confocal microscopy

  • Pablo Carravilla
  • , Luca Andronico
  • , Jan Schlegel
  • , Yagmur B. Urem
  • , Ellen Sjule
  • , Franziska Ragaller
  • , Florian Weber
  • , Cenk O. Gurdap
  • , Yavuz Ascioglu
  • , Taras Sych
  • , Joseph Lorent
  • , Erdinc Sezgin*
  • *Corresponding author for this work
  • Karolinska Institutet
  • Upper Austria University of Applied Sciences

Research output: Contribution to journalReview articlepeer-review

Abstract

Membrane fluidity is a crucial parameter for cellular physiology. Recent evidence suggests that fluidity varies between cell types and states and in diseases. As membrane fluidity has gradually become an important consideration in cell biology and biomedicine, it is essential to have reliable and quantitative ways to measure it in cells. In the past decade, there has been substantial progress both in chemical probes and in imaging tools to make membrane fluidity measurements easier and more reliable. We have recently established a robust pipeline, using confocal imaging and new environment-sensitive probes, that has been successfully used for several studies. Here we present our detailed protocol for membrane fluidity measurement, from labeling to imaging and image analysis. The protocol takes ~4 h and requires basic expertise in cell culture, wet lab and microscopy.

Original languageEnglish
Pages (from-to)1976-2004
Number of pages29
JournalNature protocols
Volume20
Issue number7
Early online date19 Feb 2025
DOIs
Publication statusPublished - Jul 2025

Bibliographical note

Publisher Copyright:
© Springer Nature Limited 2025.

Funding

We thank A. Klymchenko for sharing the probes. This work is supported by Swedish Research Council Starting Grant (grant no. 2020-02682), Wellcome Leap's Dynamic Resilience Program (jointly funded by Temasek Trust), Human Frontier Science Program (RGP0025/2022) and Longevity Impetus Grant from Norn Group, Hevolution Foundation and Rosenkranz Foundation. We thank the SciLifeLab Advanced Light Microscopy facility and National Microscopy Infrastructure (VR-RFI 2016-00968) for their support on imaging.

FundersFunder number
Human Frontier Science Program (HFSP)2020-02682
Swedish Research Council Starting GrantRGP0025/2022
Wellcome Leap's Dynamic Resilience Program - (Temasek Trust), Human Frontier Science ProgramVR-RFI 2016-00968
Rosenkranz Foundation

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