Accurate determination of membrane dynamics with line-scan FCS

Research output: Contribution to journalResearch articleContributedpeer-review

Contributors

  • Jonas Ries - , TUD Dresden University of Technology (Author)
  • Salvatore Chiantia - , TUD Dresden University of Technology (Author)
  • Petra Schwille - , Chair of Biophysics (Author)

Abstract

Here we present an efficient implementation of line-scan fluorescence correlation spectroscopy (i.e., one-dimensional spatio-temporal image correlation spectroscopy) using a commercial laser scanning microscope, which allows the accurate measurement of diffusion coefficients and concentrations in biological lipid membranes within seconds. Line-scan fluorescence correlation spectroscopy is a calibration-free technique. Therefore, it is insensitive to optical artifacts, saturation, or incorrect positioning of the laser focus. In addition, it is virtually unaffected by photobleaching. Correction schemes for residual inhomogeneities and depletion of fluorophores due to photobleaching extend the applicability of line-scan fluorescence correlation spectroscopy to more demanding systems. This technique enabled us to measure accurate diffusion coefficients and partition coefficients of fluorescent lipids in phase-separating supported bilayers of three commonly used raft-mimicking compositions. Furthermore, we probed the temperature dependence of the diffusion coefficient in several model membranes, and in human embryonic kidney cell membranes not affected by temperature-induced optical aberrations.

Details

Original languageEnglish
Pages (from-to)1999-2008
Number of pages10
JournalBiophysical journal
Volume96
Issue number5
Publication statusPublished - 2009
Peer-reviewedYes

External IDs

PubMed 19254560

Keywords

ASJC Scopus subject areas