Label-free imaging of membrane potential using membrane electromotility

  • Oh, S.
  • Fang-Yen, C.
  • Choi, W.
  • Yaqoob, Z.
  • Fu, D.
  • 외 3명
Citations

SCOPUS

51

초록

Electrical activity may cause observable changes in a cell's structure in the absence of exogenous reporter molecules. In this work, we report a low-coherence interferometric microscopy technique that can detect an optical signal correlated with the membrane potential changes in individual mammalian cells without exogenous labels. By measuring milliradian-scale phase shifts in the transmitted light, we can detect changes in the cells' membrane potential. We find that the observed optical signals are due to membrane electromotility, which causes the cells to deform in response to the membrane potential changes. We demonstrate wide-field imaging of the propagation of electrical stimuli in gap-junction-coupled cell networks. Membrane electromotility-induced cell deformation may be useful as a reporter of electrical activity. © 2012 Biophysical Society.

키워드

action potentialarticlecell membranecell strain HEK293electrical synapsehumanlight related phenomenamolecular imagingpatch clampphase contrast microscopyphysiologyultrastructureAction PotentialsCell MembraneElectrical SynapsesHEK293 CellsHumansMicroscopy, InterferenceMolecular ImagingOptical ProcessesPatch-Clamp TechniquesMammalia
제목
Label-free imaging of membrane potential using membrane electromotility
저자
Oh, S.Fang-Yen, C.Choi, W.Yaqoob, Z.Fu, D.Park, Y.Dassari, R.R.Feld, M.S.
DOI
10.1016/j.bpj.2012.05.020
발행일
2012
유형
Article
저널명
Biophysical Journal
103
1
페이지
11 ~ 18