Literature DB >> 33651949

Measuring Absolute Membrane Potential Across Space and Time.

Julia R Lazzari-Dean1, Anneliese M M Gest1, Evan W Miller1,2,3.   

Abstract

Membrane potential (Vmem) is a fundamental biophysical signal present in all cells. Vmem signals range in time from milliseconds to days, and they span lengths from microns to centimeters. Vmem affects many cellular processes, ranging from neurotransmitter release to cell cycle control to tissue patterning. However, existing tools are not suitable for Vmem quantification in many of these areas. In this review, we outline the diverse biology of Vmem, drafting a wish list of features for a Vmem sensing platform. We then use these guidelines to discuss electrode-based and optical platforms for interrogating Vmem. On the one hand, electrode-based strategies exhibit excellent quantification but are most effective in short-term, cellular recordings. On the other hand, optical strategies provide easier access to diverse samples but generally only detect relative changes in Vmem. By combining the respective strengths of these technologies, recent advances in optical quantification of absolute Vmem enable new inquiries into Vmem biology.

Entities:  

Keywords:  electrophysiology; fluorescence; fluorescence lifetime; membrane potential; microscopy; quantitative imaging

Mesh:

Year:  2021        PMID: 33651949      PMCID: PMC8327616          DOI: 10.1146/annurev-biophys-062920-063555

Source DB:  PubMed          Journal:  Annu Rev Biophys        ISSN: 1936-122X            Impact factor:   12.981


  122 in total

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Authors:  Hope T Beier; Caleb C Roth; Joel N Bixler; Anna V Sedelnikova; Bennett L Ibey
Journal:  Biophys J       Date:  2018-12-01       Impact factor: 4.033

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Authors:  D Novo; N G Perlmutter; R H Hunt; H M Shapiro
Journal:  Cytometry       Date:  1999-01-01

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Authors:  Rishikesh U Kulkarni; Evan W Miller
Journal:  Biochemistry       Date:  2017-07-26       Impact factor: 3.162

7.  Optical estimation of absolute membrane potential using fluorescence lifetime imaging.

Authors:  Julia R Lazzari-Dean; Anneliese Mm Gest; Evan W Miller
Journal:  Elife       Date:  2019-09-23       Impact factor: 8.140

8.  Enhanced Dendritic Compartmentalization in Human Cortical Neurons.

Authors:  Lou Beaulieu-Laroche; Enrique H S Toloza; Marie-Sophie van der Goes; Mathieu Lafourcade; Derrick Barnagian; Ziv M Williams; Emad N Eskandar; Matthew P Frosch; Sydney S Cash; Mark T Harnett
Journal:  Cell       Date:  2018-10-18       Impact factor: 41.582

9.  Combining membrane potential imaging with L-glutamate or GABA photorelease.

Authors:  Kaspar E Vogt; Stephan Gerharz; Jeremy Graham; Marco Canepari
Journal:  PLoS One       Date:  2011-10-11       Impact factor: 3.240

10.  The interplay between genetic and bioelectrical signaling permits a spatial regionalisation of membrane potentials in model multicellular ensembles.

Authors:  Javier Cervera; Salvador Meseguer; Salvador Mafe
Journal:  Sci Rep       Date:  2016-10-12       Impact factor: 4.379

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  2 in total

1.  Optical Estimation of Absolute Membrane Potential Using One- and Two-Photon Fluorescence Lifetime Imaging Microscopy.

Authors:  Julia R Lazzari-Dean; Evan W Miller
Journal:  Bioelectricity       Date:  2021-09-09

2.  VoltageFluor dyes and fluorescence lifetime imaging for optical measurement of membrane potential.

Authors:  Anneliese M M Gest; Susanna K Yaeger-Weiss; Julia R Lazzari-Dean; Evan W Miller
Journal:  Methods Enzymol       Date:  2021-03-29       Impact factor: 1.600

  2 in total

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